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 DATASHEET
8-CHANNEL HIGH DEFINITION AUDIO CODEC Description
The STAC9227/9228/9229/9230 are a family of Theater Quality 8-channel audio CODECs that enable systems with 7.1 audio or 5.1 audio playing simultaneously with VoIP or another stereo audio stream. SigmaTel's proprietary technology provides high fidelity with an estimated DAC SNR up to 105dB. Up to four digital microphones are supported enabling high quality voice input for increased usability of voice applications.
STAC9227/9228/9229/9230
* * *
Digital PC Beep to all outputs +3.3 V to +5 V analog power supply options Environmental 48-pin LQFP package option
Software Support
* *
SKPI (Kernel Processing Interface)
* *
Enables plug-ins that can operate globally on all audio streams of the system Constant, system-level effects tuned to optimize a particular platform can be combined with user-mode "presets" tailored for specific acoustical environments and applications System-level effects automatically disabled when external connections made Enables improved voice articulation Compressor/limiter allows higher average noise level without resonances Dolby Master StudioTM Dolby Home TheaterTM Dolby Sound RoomTM Dolby HeadphoneTM, Dolby Virtual SpeakerTM Dolby ProLogic IITM, Dolby ProLogic IIxTM Dolby Digital LiveTM
Features
* *
High performance HD Audio CODEC provides Theater Quality Audio High performance technology
12 band parametric equalizer SKPI plug-in
* * * * * * *
105dB DAC SNR 90dB ADC SNR Supports 7.1 audio or 5.1 audio with simultaneous Real Time Communication (RTC) channel such as VoIP or separate stereo audio stream
* * * * *
Four Stereo DACs and three stereo ADCs
Dynamics Processing SKPI plug-in
24-bit resolution with up to 192 KHz sample rates Digital Microphone Interface
Dolby PC Entertainment Experience Logo Program
* * * * * * * *
Direct interface up to four Digital Microphones Microphone Boost 0, 10, 20, 30, 40dB Six adjustable Vref outputs for microphone bias
Analog Stereo Microphone
* * * * * * * * * *
Dolby Technologies
Integrated Headphone Amps (3). S/PDIF In and Out ADAT(R) Optical "Lightpipe" Output Support
Intel Audio StudioTM from Sonic Focus Maxx PlayerTM from Waves Microphone Beam Forming, Acoustic Echo Cancellation, & Noise Suppression from KnowlesTM
Volume Up/Down Control Jack Insertion Detect and Impedance Sensing Supports Jack Retasking and Universal Jacks
IDTTM
8-CHANNEL HIGH DEFINITION AUDIO CODEC
1 IDT CONFIDENTIAL
STAC9227/9228/9229/9230V 1.0 MARCH 2007
STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
TABLE OF CONTENTS
1. DESCRIPTION ......................................................................................................................... 15 2. CHARACTERISTICS ............................................................................................................... 16 2.1. Audio Fidelity ................................................................................................................... 16 2.2. Electrical Specifications .................................................................................................. 16 2.3. STAC9227/9228/9229/9230 5V, 4.5V, 4.0V, and 3.3V Analog Performance Char.............18 3. DETAILED DESCRIPTION ...................................................................................................... 23 3.1. Universal JacksTM .......................................................................................................... 23 3.2. Impedance Sense ........................................................................................................... 24 3.3. SPDIF Input ..................................................................................................................... 24 3.4. SPDIF Output .................................................................................................................. 24 3.5. ADAT(R) Output ................................................................................................................. 25 3.6. Digital Microphone Support ............................................................................................. 25 3.7. Analog PC-Beep ............................................................................................................. 29 3.8. Headphone Drivers (Restrictions) ................................................................................... 29 3.9. Device IDs ....................................................................................................................... 29 4. FUNCTIONAL BLOCK DIAGRAMS ........................................................................................ 30 4.1. Without ADAT ................................................................................................................. 30 4.2. Without ADAT or Digital Microphone .............................................................................. 31 5. WIDGET DIAGRAM ................................................................................................................. 33 5.1. Pin Configuration Default Register Settings .................................................................... 35 6. WIDGET INFORMATION FOR THE STAC9227/9228/9229/9230 ......................................... 36 6.1. Root Node (NID = 0x00) ................................................................................................. 38 6.2. AFG Node (NID = 0x01) .................................................................................................. 40 6.3. DAC0 Node (NID = 0x02) ............................................................................................... 64 6.4. DAC1 Node (NID = 0x03) ............................................................................................... 69 6.5. DAC2 Node (NID = 0x04) ............................................................................................... 74 6.6. DAC3 Node (NID = 0x05) ............................................................................................... 79 6.7. DAC4 Node (NID = 0x06) ............................................................................................... 84 6.8. ADC0 Node (NID = 0x07) ............................................................................................... 90 6.9. ADC1 Node (NID = 0x08) ............................................................................................... 95 6.10. ADC2 Node (NID = 0x09) ........................................................................................... 100 6.11. SPDIFOut Node (NID = 0x1E) .................................................................................... 105 6.12. SPDIFIn Node (NID = 0x20) ....................................................................................... 111 6.13. PortA Node (NID = 0x0A) ............................................................................................ 121 6.14. PortB Node (NID = 0x0B) ............................................................................................ 127 6.15. PortC Node (NID = 0x0C) ........................................................................................... 133 6.16. PortD Node (NID = 0x0D) ........................................................................................... 138 6.17. PortE Node (NID = 0x0E) ............................................................................................ 145 6.18. PortF Node (NID = 0x0F) ............................................................................................ 151 6.19. PortG Node (NID = 0x10) ............................................................................................ 157 6.20. PortH Node (NID = 0x11) ............................................................................................ 163 6.21. DMic0 Node (NID = 0x13) ........................................................................................... 169 6.22. DMic1 Node (NID = 0x14) ........................................................................................... 172 6.23. DigOut0 Node (NID = 0x21) ........................................................................................ 176 6.24. DigIn Node (NID = 0x22) ............................................................................................. 183 6.25. InPort0Mux Node (NID = 0x15) ................................................................................... 189 6.26. InPort1Mux Node (NID = 0x16) ................................................................................... 194 6.27. InPort2Mux Node (NID = 0x17) ................................................................................... 200
IDTTM
8-CHANNEL HIGH DEFINITION AUDIO CODEC
2 IDT CONFIDENTIAL
STAC9227/9228/9229/9230V 1.0 MARCH 2007
STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
6.28. PCBEEP Node (NID = 0x23) ...................................................................................... 205 6.29. CD Node (NID = 0x12) ................................................................................................ 208 6.30. ADATOut Node (NID = 0x1F) ..................................................................................... 211 6.31. VolumeKnob Node (NID = 0x24) ................................................................................ 219 6.32. InPort0Vol Node (NID = 0x18) .................................................................................... 222 6.33. InPort1Vol Node (NID = 0x19) .................................................................................... 225 6.34. InPort2Vol Node (NID = 0x1A) .................................................................................... 228 6.35. ADC0Mux Node (NID = 0x1B) .................................................................................... 231 6.36. ADC1Mux Node (NID = 0x1C) .................................................................................... 236 6.37. ADC2Mux Node (NID = 0x1D) .................................................................................... 241 7. ORDERING INFORMATION .................................................................................................. 247 7.1. STAC9227/9228/9229/9230 Options and Part Order Numbers .................................... 247 8. PIN INFORMATION ............................................................................................................... 248 8.1. STAC927x family 48-Pin LQFP Diagram ...................................................................... 248 8.2. Pin Table for STAC927x Family in 48-Pin LQFP .......................................................... 249 9. PACKAGE OUTLINE AND PACKAGE DIMENSIONS ......................................................... 254 9.1. 48-Pin LQFP ................................................................................................................. 255 10. 48-PIN LQFP SOLDER REFLOW PROFILE ....................................................................... 256 10.1. Standard Reflow Profile Data ...................................................................................... 256 10.2. Pb Free Process - Package Classification Reflow Temperatures ............................... 257 11. REVISION HISTORY ........................................................................................................... 258
List of Figures
Figure 1. Single Digital Microphone (data is ported to both left and right channels) ..................................... 26 Figure 2. Stereo Digital Microphone Configuration ........................................................................................ 27 Figure 3. Quad Digital Microphone Configuration .......................................................................................... 28 Figure 4. 48-Pin LQFP Pinout .................................................................................................................... 248 Figure 5. 48-Pin LQFP Package Outline and Package Dimensions ........................................................... 255 Figure 6. Solder Reflow Profile ................................................................................................................... 256
List of Tables
Table 1. Absolute Maximum Ratings ............................................................................................................. 16 Table 2. Recommended Operation Conditions .............................................................................................. 16 Table 3. Audio Jack Presence Detect ............................................................................................................ 23 Table 5. Valid Digital Microphone Configurations .......................................................................................... 25 Table 6. DMIC_CLK, DMIC_0 and DMIC_1 Operation During Power States ............................................... 26 Table 7. Device IDs ....................................................................................................................................... 29 Table 8. CODEC IDs ..................................................................................................................................... 29 Table 9. Pin Configuration Default Settings ................................................................................................... 35 Table 10. High Definition Audio Widget List .................................................................................................. 36 Table 11. Root ID Command Verb Format .................................................................................................... 38 Table 12. Root ID Command Response Format ........................................................................................... 38 Table 13. Root RevID Command Verb Format .............................................................................................. 38 Table 14. Root RevID Command Response Format ..................................................................................... 38 Table 15. Root NodeInfo Command Verb Format ......................................................................................... 40 Table 16. Root NodeInfo Command Response Format ................................................................................ 40
IDTTM
8-CHANNEL HIGH DEFINITION AUDIO CODEC
3 IDT CONFIDENTIAL
STAC9227/9228/9229/9230V 1.0 MARCH 2007
STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 17. AFG Reset Command Verb Format .............................................................................................. 40 Table 18. AFG Reset Command Response Format ...................................................................................... 40 Table 19. AFG NodeInfo Command Verb Format ......................................................................................... 41 Table 20. AFG NodeInfo Command Response Format ................................................................................. 41 Table 21. AFG Type Command Verb Format ................................................................................................ 41 Table 22. AFG Type Command Response Format ....................................................................................... 41 Table 23. AFG Cap Command Verb Format ................................................................................................. 41 Table 24. AFG Cap Command Response Format ......................................................................................... 42 Table 25. AFG PCMCap Command Verb Format ......................................................................................... 42 Table 26. AFG PCMCap Command Response Format ................................................................................. 42 Table 27. AFG Stream Command Verb Format ............................................................................................ 44 Table 28. AFG Stream Command Response Format .................................................................................... 44 Table 29. AFG InAmpCap Command Verb Format ....................................................................................... 44 Table 30. AFG InAmpCap Command Response Format .............................................................................. 44 Table 31. AFG SupPwrState Command Verb Format ................................................................................... 45 Table 32. AFG SupPwrState Command Response Format .......................................................................... 45 Table 33. AFG GPIOCnt Command Verb Format ......................................................................................... 45 Table 34. AFG GPIOCnt Command Response Format ................................................................................. 46 Table 35. AFG OutAmpCap Command Verb Format .................................................................................... 46 Table 36. AFG OutAmpCap Command Response Format ........................................................................... 46 Table 37. AFG PwrState Command Verb Format ......................................................................................... 48 Table 38. AFG PwrState Command Response Format ................................................................................. 48 Table 39. AFG UnsolResp Command Verb Format ...................................................................................... 48 Table 40. AFG UnsolResp Command Response Format .............................................................................. 48 Table 41. AFG GPIO Command Verb Format ............................................................................................... 50 Table 42. AFG GPIO Command Response Format ...................................................................................... 50 Table 43. AFG GPIOEn Command Verb Format .......................................................................................... 51 Table 44. AFG GPIOEn Command Response Format .................................................................................. 51 Table 45. AFG GPIODir Command Verb Format .......................................................................................... 51 Table 46. AFG GPIODir Command Response Format .................................................................................. 52 Table 47. AFG GPIOWakeEn Command Verb Format ................................................................................. 52 Table 48. AFG GPIOWakeEn Command Response Format ......................................................................... 52 Table 49. AFG GPIOUnsol Command Verb Format ...................................................................................... 54 Table 50. AFG GPIOUnsol Command Response Format ............................................................................. 54 Table 51. AFG GPIOSticky Command Verb Format ..................................................................................... 55 Table 52. AFG GPIOSticky Command Response Format ............................................................................. 55 Table 53. AFG SubID Command Verb Format .............................................................................................. 57 Table 54. AFG SubID Command Response Format ..................................................................................... 57 Table 55. AFG TCKT Command Verb Format .............................................................................................. 57 Table 56. AFG TCKT Command Response Format ...................................................................................... 57 Table 57. AFG Sply Command Verb Format ................................................................................................. 58 Table 58. AFG Sply Command Response Format ........................................................................................ 58 Table 59. AFG DACMode Command Verb Format ....................................................................................... 58 Table 60. AFG DACMode Command Response Format ............................................................................... 58 Table 61. AFG GPIOPlrty Command Verb Format ........................................................................................ 60 Table 62. AFG GPIOPlrty Command Response Format ............................................................................... 60 Table 63. AFG GPIODrive Command Verb Format ...................................................................................... 62 Table 64. AFG GPIODrive Command Response Format .............................................................................. 62 Table 65. AFG DMic Command Verb Format ................................................................................................ 62 Table 66. AFG DMic Command Response Format ....................................................................................... 63 Table 67. DAC0 Cnvtr Command Verb Format ............................................................................................. 64 Table 68. DAC0 Cnvtr Command Response Format .................................................................................... 64 Table 69. DAC0 OutAmpRight Command Verb Format ................................................................................ 66 Table 70. DAC0 OutAmpRight Command Response Format ....................................................................... 66 Table 71. DAC0 OutAmpLeft Command Verb Format .................................................................................. 66
IDTTM
8-CHANNEL HIGH DEFINITION AUDIO CODEC
4 IDT CONFIDENTIAL
STAC9227/9228/9229/9230V 1.0 MARCH 2007
STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 72. DAC0 OutAmpLeft Command Response Format .......................................................................... 66 Table 73. DAC0 WCap Command Verb Format ............................................................................................ 66 Table 74. DAC0 WCap Command Response Format ................................................................................... 67 Table 75. DAC0 PwrState Command Verb Format ....................................................................................... 67 Table 76. DAC0 PwrState Command Response Format .............................................................................. 68 Table 77. DAC0 CnvtrID Command Verb Format ......................................................................................... 68 Table 78. DAC0 CnvtrID Command Response Format ................................................................................. 68 Table 79. DAC0 LR Command Verb Format ................................................................................................. 69 Table 80. DAC0 LR Command Response Format ........................................................................................ 69 Table 81. DAC1 Cnvtr Command Verb Format ............................................................................................. 69 Table 82. DAC1 Cnvtr Command Response Format .................................................................................... 69 Table 83. DAC1 OutAmpRight Command Verb Format ................................................................................ 71 Table 84. DAC1 OutAmpRight Command Response Format ....................................................................... 71 Table 85. DAC1 OutAmpLeft Command Verb Format .................................................................................. 71 Table 86. DAC1 OutAmpLeft Command Response Format .......................................................................... 71 Table 87. DAC1 WCap Command Verb Format ............................................................................................ 71 Table 88. DAC1 WCap Command Response Format ................................................................................... 72 Table 89. DAC1 PwrState Command Verb Format ....................................................................................... 72 Table 90. DAC1 PwrState Command Response Format .............................................................................. 73 Table 91. DAC1 CnvtrID Command Verb Format ......................................................................................... 73 Table 92. DAC1 CnvtrID Command Response Format ................................................................................. 73 Table 93. DAC1 LR Command Verb Format ................................................................................................. 74 Table 94. DAC1 LR Command Response Format ........................................................................................ 74 Table 95. DAC2 Cnvtr Command Verb Format ............................................................................................. 74 Table 96. DAC2 Cnvtr Command Response Format .................................................................................... 74 Table 97. DAC2 OutAmpRight Command Verb Format ................................................................................ 76 Table 98. DAC2 OutAmpRight Command Response Format ....................................................................... 76 Table 99. DAC2 OutAmpLeft Command Verb Format .................................................................................. 76 Table 100. DAC2 OutAmpLeft Command Response Format ........................................................................ 76 Table 101. DAC2 WCap Command Verb Format .......................................................................................... 76 Table 102. DAC2 WCap Command Response Format ................................................................................. 77 Table 103. DAC2 PwrState Command Verb Format ..................................................................................... 77 Table 104. DAC2 PwrState Command Response Format ............................................................................ 78 Table 105. DAC2 CnvtrID Command Verb Format ....................................................................................... 78 Table 106. DAC2 CnvtrID Command Response Format ............................................................................... 78 Table 107. DAC2 LR Command Verb Format ............................................................................................... 79 Table 108. DAC2 LR Command Response Format ...................................................................................... 79 Table 109. DAC3 Cnvtr Command Verb Format ........................................................................................... 79 Table 110. DAC3 Cnvtr Command Response Format .................................................................................. 79 Table 111. DAC3 OutAmpRight Command Verb Format .............................................................................. 81 Table 112. DAC3 OutAmpRight Command Response Format ..................................................................... 81 Table 113. DAC3 OutAmpLeft Command Verb Format ................................................................................ 81 Table 114. DAC3 OutAmpLeft Command Response Format ........................................................................ 81 Table 115. DAC3 WCap Command Verb Format .......................................................................................... 81 Table 116. DAC3 WCap Command Response Format ................................................................................. 82 Table 117. DAC3 PwrState Command Verb Format ..................................................................................... 82 Table 118. DAC3 PwrState Command Response Format ............................................................................ 83 Table 119. DAC3 CnvtrID Command Verb Format ....................................................................................... 83 Table 120. DAC3 CnvtrID Command Response Format ............................................................................... 83 Table 121. DAC3 LR Command Verb Format ............................................................................................... 84 Table 122. DAC3 LR Command Response Format ...................................................................................... 84 Table 123. DAC4 Cnvtr Command Verb Format ........................................................................................... 84 Table 124. DAC4 Cnvtr Command Response Format .................................................................................. 84 Table 125. DAC4 OutAmpRight Command Verb Format .............................................................................. 86 Table 126. DAC4 OutAmpRight Command Response Format ..................................................................... 86
IDTTM
8-CHANNEL HIGH DEFINITION AUDIO CODEC
5 IDT CONFIDENTIAL
STAC9227/9228/9229/9230V 1.0 MARCH 2007
STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 127. DAC4 OutAmpLeft Command Verb Format ................................................................................ 86 Table 128. DAC4 OutAmpLeft Command Response Format ........................................................................ 86 Table 129. DAC4 WCap Command Verb Format .......................................................................................... 86 Table 130. DAC4 WCap Command Response Format ................................................................................. 87 Table 131. DAC4 PwrState Command Verb Format ..................................................................................... 88 Table 132. DAC4 PwrState Command Response Format ............................................................................ 88 Table 133. DAC4 CnvtrID Command Verb Format ....................................................................................... 88 Table 134. DAC4 CnvtrID Command Response Format ............................................................................... 88 Table 135. DAC4 LR Command Verb Format ............................................................................................... 90 Table 136. DAC4 LR Command Response Format ...................................................................................... 90 Table 137. ADC0 Cnvtr Command Verb Format ........................................................................................... 90 Table 138. ADC0 Cnvtr Command Response Format .................................................................................. 90 Table 139. ADC0 WCap Command Verb Format .......................................................................................... 92 Table 140. ADC0 WCap Command Response Format ................................................................................. 92 Table 141. ADC0 ConLst Command Verb Format ........................................................................................ 93 Table 142. ADC0 ConLst Command Response Format ................................................................................ 93 Table 143. ADC0 ConLstEntry Command Verb Format ................................................................................ 93 Table 144. ADC0 ConLstEntry Command Response Format ....................................................................... 93 Table 145. ADC0 ProcState Command Verb Format .................................................................................... 93 Table 146. ADC0 ProcState Command Response Format ........................................................................... 94 Table 147. ADC0 PwrState Command Verb Format ..................................................................................... 94 Table 148. ADC0 PwrState Command Response Format ............................................................................ 94 Table 149. ADC0 CnvtrID Command Verb Format ....................................................................................... 95 Table 150. ADC0 CnvtrID Command Response Format ............................................................................... 95 Table 151. ADC1 Cnvtr Command Verb Format ........................................................................................... 95 Table 152. ADC1 Cnvtr Command Response Format .................................................................................. 95 Table 153. ADC1 WCap Command Verb Format .......................................................................................... 97 Table 154. ADC1 WCap Command Response Format ................................................................................. 97 Table 155. ADC1 ConLst Command Verb Format ........................................................................................ 98 Table 156. ADC1 ConLst Command Response Format ................................................................................ 98 Table 157. ADC1 ConLstEntry Command Verb Format ................................................................................ 98 Table 158. ADC1 ConLstEntry Command Response Format ....................................................................... 98 Table 159. ADC1 ProcState Command Verb Format .................................................................................... 98 Table 160. ADC1 ProcState Command Response Format ........................................................................... 99 Table 161. ADC1 PwrState Command Verb Format ..................................................................................... 99 Table 162. ADC1 PwrState Command Response Format ............................................................................ 99 Table 163. ADC1 CnvtrID Command Verb Format ..................................................................................... 100 Table 164. ADC1 CnvtrID Command Response Format ............................................................................. 100 Table 165. ADC2 Cnvtr Command Verb Format ......................................................................................... 100 Table 166. ADC2 Cnvtr Command Response Format ................................................................................ 100 Table 167. ADC2 WCap Command Verb Format ........................................................................................ 102 Table 168. ADC2 WCap Command Response Format ............................................................................... 102 Table 169. ADC2 ConLst Command Verb Format ...................................................................................... 103 Table 170. ADC2 ConLst Command Response Format .............................................................................. 103 Table 171. ADC2 ConLstEntry Command Verb Format .............................................................................. 103 Table 172. ADC2 ConLstEntry Command Response Format ..................................................................... 103 Table 173. ADC2 ProcState Command Verb Format .................................................................................. 103 Table 174. ADC2 ProcState Command Response Format ......................................................................... 104 Table 175. ADC2 PwrState Command Verb Format ................................................................................... 104 Table 176. ADC2 PwrState Command Response Format .......................................................................... 104 Table 177. ADC2 CnvtrID Command Verb Format ..................................................................................... 105 Table 178. ADC2 CnvtrID Command Response Format ............................................................................. 105 Table 179. SPDIFOut Cnvtr Command Verb Format .................................................................................. 105 Table 180. SPDIFOut Cnvtr Command Response Format .......................................................................... 105 Table 181. SPDIFOut WCap Command Verb Format ................................................................................. 107
IDTTM
8-CHANNEL HIGH DEFINITION AUDIO CODEC
6 IDT CONFIDENTIAL
STAC9227/9228/9229/9230V 1.0 MARCH 2007
STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 182. SPDIFOut WCap Command Response Format ........................................................................ 107 Table 183. SPDIFOut PCM Command Verb Format ................................................................................... 108 Table 184. SPDIFOut PCM Command Response Format .......................................................................... 108 Table 185. SPDIFOut Stream Command Verb Format ............................................................................... 110 Table 186. SPDIFOut Stream Command Response Format ....................................................................... 110 Table 187. SPDIFOut CnvtrID Command Verb Format ............................................................................... 110 Table 188. SPDIFOut CnvtrID Command Response Format ...................................................................... 110 Table 189. SPDIFOut DigCnvtr Command Verb Format ............................................................................. 111 Table 190. SPDIFOut DigCnvtr Command Response Format .................................................................... 111 Table 191. SPDIFIn Cnvtr Command Verb Format ..................................................................................... 111 Table 192. SPDIFIn Cnvtr Command Response Format ............................................................................ 112 Table 193. SPDIFIn WCap Command Verb Format .................................................................................... 113 Table 194. SPDIFIn WCap Command Response Format ........................................................................... 113 Table 195. SPDIFIn PCMCap Command Verb Format ............................................................................... 114 Table 196. SPDIFIn PCMCap Command Response Format ...................................................................... 114 Table 197. SPDIFIn Stream Command Verb Format .................................................................................. 116 Table 198. SPDIFIn Stream Command Response Format ......................................................................... 116 Table 199. SPDIFIn ConLst Command Verb Format .................................................................................. 116 Table 200. SPDIFIn ConLst Command Response Format .......................................................................... 116 Table 201. SPDIFIn ConLstEntry Command Verb Format .......................................................................... 116 Table 202. SPDIFIn ConLstEntry Command Response Format ................................................................. 117 Table 203. SPDIFIn CnvtrID Command Verb Format ................................................................................. 117 Table 204. SPDIFIn CnvtrID Command Response Format ......................................................................... 117 Table 205. SPDIFIn DigCnvtr Command Verb Format ................................................................................ 117 Table 206. SPDIFIn DigCnvtr Command Response Format ....................................................................... 118 Table 207. SPDIFIn VCSR0 Command Verb Format .................................................................................. 118 Table 208. SPDIFIn VCSR0 Command Response Format ......................................................................... 118 Table 209. PortA WCap Command Verb Format ........................................................................................ 121 Table 210. PortA WCap Command Response Format ................................................................................ 121 Table 211. PortA PinCap Command Verb Format ...................................................................................... 122 Table 212. PortA PinCap Command Response Format .............................................................................. 122 Table 213. PortA ConLst Command Verb Format ....................................................................................... 122 Table 214. PortA ConLst Command Response Format .............................................................................. 123 Table 215. PortA ConLstEntry Command Verb Format .............................................................................. 123 Table 216. PortA ConLstEntry Command Response Format ...................................................................... 123 Table 217. PortA ConSelectCtrl Command Verb Format ............................................................................ 123 Table 218. PortA ConSelectCtrl Command Response Format ................................................................... 124 Table 219. PortA PinWCntrl Command Verb Format .................................................................................. 124 Table 220. PortA PinWCntrl Command Response Format ......................................................................... 124 Table 221. PortA UnsolResp Command Verb Format ................................................................................. 125 Table 222. PortA UnsolResp Command Response Format ........................................................................ 125 Table 223. PortA ChSense Command Verb Format ................................................................................... 125 Table 224. PortA ChSense Command Response Format ........................................................................... 126 Table 225. PortA ConfigDefault Command Verb Format ............................................................................ 126 Table 226. PortA ConfigDefault Command Response Format .................................................................... 126 Table 227. PortB WCap Command Verb Format ........................................................................................ 127 Table 228. PortB WCap Command Response Format ................................................................................ 127 Table 229. PortB PinCap Command Verb Format ...................................................................................... 128 Table 230. PortB PinCap Command Response Format .............................................................................. 128 Table 231. PortB ConLst Command Verb Format ....................................................................................... 128 Table 232. PortB ConLst Command Response Format .............................................................................. 129 Table 233. PortB ConLstEntry Command Verb Format .............................................................................. 129 Table 234. PortB ConLstEntry Command Response Format ...................................................................... 129 Table 235. PortB ConSelectCtrl Command Verb Format ............................................................................ 129 Table 236. PortB ConSelectCtrl Command Response Format ................................................................... 130
IDTTM
8-CHANNEL HIGH DEFINITION AUDIO CODEC
7 IDT CONFIDENTIAL
STAC9227/9228/9229/9230V 1.0 MARCH 2007
STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 237. PortB PinWCntrl Command Verb Format .................................................................................. 130 Table 238. PortB PinWCntrl Command Response Format ......................................................................... 130 Table 239. PortB UnsolResp Command Verb Format ................................................................................. 131 Table 240. PortB UnsolResp Command Response Format ........................................................................ 131 Table 241. PortB ChSense Command Verb Format ................................................................................... 131 Table 242. PortB ChSense Command Response Format ........................................................................... 132 Table 243. PortB ConfigDefault Command Verb Format ............................................................................ 132 Table 244. PortB ConfigDefault Command Response Format .................................................................... 132 Table 245. PortC WCap Command Verb Format ........................................................................................ 133 Table 246. PortC WCap Command Response Format ............................................................................... 133 Table 247. PortC PinCap Command Verb Format ...................................................................................... 134 Table 248. PortC PinCap Command Response Format .............................................................................. 134 Table 249. PortC ConLst Command Verb Format ....................................................................................... 134 Table 250. PortC ConLst Command Response Format .............................................................................. 135 Table 251. PortC ConLstEntry Command Verb Format .............................................................................. 135 Table 252. PortC ConLstEntry Command Response Format ...................................................................... 135 Table 253. PortC PinWCntrl Command Verb Format .................................................................................. 135 Table 254. PortC PinWCntrl Command Response Format ......................................................................... 136 Table 255. PortC UnsolResp Command Verb Format ................................................................................ 136 Table 256. PortC UnsolResp Command Response Format ........................................................................ 136 Table 257. PortC ChSense Command Verb Format ................................................................................... 137 Table 258. PortC ChSense Command Response Format ........................................................................... 137 Table 259. PortC ConfigDefault Command Verb Format ............................................................................ 137 Table 260. PortC ConfigDefault Command Response Format .................................................................... 138 Table 261. PortD WCap Command Verb Format ........................................................................................ 138 Table 262. PortD WCap Command Response Format ............................................................................... 138 Table 263. PortD PinCap Command Verb Format ...................................................................................... 140 Table 264. PortD PinCap Command Response Format .............................................................................. 140 Table 265. PortD ConLst Command Verb Format ....................................................................................... 140 Table 266. PortD ConLst Command Response Format .............................................................................. 141 Table 267. PortD ConLstEntry Command Verb Format .............................................................................. 141 Table 268. PortD ConLstEntry Command Response Format ...................................................................... 141 Table 269. PortD PinWCntrl Command Verb Format .................................................................................. 141 Table 270. PortD PinWCntrl Command Response Format ......................................................................... 142 Table 271. PortD UnsolResp Command Verb Format ................................................................................ 142 Table 272. PortD UnsolResp Command Response Format ........................................................................ 142 Table 273. PortD ChSense Command Verb Format ................................................................................... 144 Table 274. PortD ChSense Command Response Format ........................................................................... 144 Table 275. PortD ConfigDefault Command Verb Format ............................................................................ 144 Table 276. PortD ConfigDefault Command Response Format .................................................................... 145 Table 277. PortE WCap Command Verb Format ........................................................................................ 145 Table 278. PortE WCap Command Response Format ................................................................................ 145 Table 279. PortE PinCap Command Verb Format ...................................................................................... 147 Table 280. PortE PinCap Command Response Format .............................................................................. 147 Table 281. PortE ConLst Command Verb Format ....................................................................................... 147 Table 282. PortE ConLst Command Response Format .............................................................................. 148 Table 283. PortE ConLstEntry Command Verb Format .............................................................................. 148 Table 284. PortE ConLstEntry Command Response Format ...................................................................... 148 Table 285. PortE PinWCntrl Command Verb Format .................................................................................. 148 Table 286. PortE PinWCntrl Command Response Format ......................................................................... 149 Table 287. PortE UnsolResp Command Verb Format ................................................................................. 149 Table 288. PortE UnsolResp Command Response Format ........................................................................ 149 Table 289. PortE ChSense Command Verb Format ................................................................................... 150 Table 290. PortE ChSense Command Response Format ........................................................................... 150 Table 291. PortE ConfigDefault Command Verb Format ............................................................................ 150
IDTTM
8-CHANNEL HIGH DEFINITION AUDIO CODEC
8 IDT CONFIDENTIAL
STAC9227/9228/9229/9230V 1.0 MARCH 2007
STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 292. PortE ConfigDefault Command Response Format .................................................................... 151 Table 293. PortF WCap Command Verb Format ........................................................................................ 151 Table 294. PortF WCap Command Response Format ................................................................................ 151 Table 295. PortF PinCap Command Verb Format ....................................................................................... 153 Table 296. PortF PinCap Command Response Format .............................................................................. 153 Table 297. PortF ConLst Command Verb Format ....................................................................................... 153 Table 298. PortF ConLst Command Response Format .............................................................................. 154 Table 299. PortF ConLstEntry Command Verb Format ............................................................................... 154 Table 300. PortF ConLstEntry Command Response Format ...................................................................... 154 Table 301. PortF PinWCntrl Command Verb Format .................................................................................. 154 Table 302. PortF PinWCntrl Command Response Format .......................................................................... 155 Table 303. PortF UnsolResp Command Verb Format ................................................................................. 155 Table 304. PortF UnsolResp Command Response Format ........................................................................ 155 Table 305. PortF ChSense Command Verb Format .................................................................................... 156 Table 306. PortF ChSense Command Response Format ........................................................................... 156 Table 307. PortF ConfigDefault Command Verb Format ............................................................................. 156 Table 308. PortF ConfigDefault Command Response Format .................................................................... 157 Table 309. PortG WCap Command Verb Format ........................................................................................ 157 Table 310. PortG WCap Command Response Format ............................................................................... 157 Table 311. PortG PinCap Command Verb Format ...................................................................................... 159 Table 312. PortG PinCap Command Response Format ............................................................................. 159 Table 313. PortG ConLst Command Verb Format ...................................................................................... 159 Table 314. PortG ConLst Command Response Format .............................................................................. 160 Table 315. PortG ConLstEntry Command Verb Format .............................................................................. 160 Table 316. PortG ConLstEntry Command Response Format ..................................................................... 160 Table 317. PortG PinWCntrl Command Verb Format .................................................................................. 160 Table 318. PortG PinWCntrl Command Response Format ......................................................................... 161 Table 319. PortG UnsolResp Command Verb Format ................................................................................ 161 Table 320. PortG UnsolResp Command Response Format ........................................................................ 161 Table 321. PortG ChSense Command Verb Format ................................................................................... 162 Table 322. PortG ChSense Command Response Format .......................................................................... 162 Table 323. PortG ConfigDefault Command Verb Format ............................................................................ 162 Table 324. PortG ConfigDefault Command Response Format ................................................................... 163 Table 325. PortH WCap Command Verb Format ........................................................................................ 163 Table 326. PortH WCap Command Response Format ............................................................................... 163 Table 327. PortH PinCap Command Verb Format ...................................................................................... 165 Table 328. PortH PinCap Command Response Format .............................................................................. 165 Table 329. PortH ConLst Command Verb Format ....................................................................................... 165 Table 330. PortH ConLst Command Response Format .............................................................................. 166 Table 331. PortH ConLstEntry Command Verb Format .............................................................................. 166 Table 332. PortH ConLstEntry Command Response Format ...................................................................... 166 Table 333. PortH PinWCntrl Command Verb Format .................................................................................. 166 Table 334. PortH PinWCntrl Command Response Format ......................................................................... 167 Table 335. PortH UnsolResp Command Verb Format ................................................................................ 167 Table 336. PortH UnsolResp Command Response Format ........................................................................ 167 Table 337. PortH ChSense Command Verb Format ................................................................................... 168 Table 338. PortH ChSense Command Response Format ........................................................................... 168 Table 339. PortH ConfigDefault Command Verb Format ............................................................................ 168 Table 340. PortH ConfigDefault Command Response Format .................................................................... 169 Table 341. DMic0 WCap Command Verb Format ....................................................................................... 169 Table 342. DMic0 WCap Command Response Format .............................................................................. 169 Table 343. DMic0 PinCap Command Verb Format ..................................................................................... 171 Table 344. DMic0 PinCap Command Response Format ............................................................................. 171 Table 345. DMic0 PinWCntrl Command Verb Format ................................................................................. 171 Table 346. DMic0 PinWCntrl Command Response Format ........................................................................ 172
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8-CHANNEL HIGH DEFINITION AUDIO CODEC
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PC AUDIO
Table 347. DMic0 ConfigDefault Command Verb Format ........................................................................... 172 Table 348. DMic0 ConfigDefault Command Response Format ................................................................... 172 Table 349. DMic1 WCap Command Verb Format ....................................................................................... 173 Table 350. DMic1 WCap Command Response Format .............................................................................. 173 Table 351. DMic1 PinCap Command Verb Format ..................................................................................... 175 Table 352. DMic1 PinCap Command Response Format ............................................................................. 175 Table 353. DMic1 PinWCntrl Command Verb Format ................................................................................. 175 Table 354. DMic1 PinWCntrl Command Response Format ........................................................................ 176 Table 355. DMic1 ConfigDefault Command Verb Format ........................................................................... 176 Table 356. DMic1 ConfigDefault Command Response Format ................................................................... 176 Table 357. DigOut0 WCap Command Verb Format .................................................................................... 177 Table 358. DigOut0 WCap Command Response Format ........................................................................... 177 Table 359. DigOut0 PinCap Command Verb Format .................................................................................. 178 Table 360. DigOut0 PinCap Command Response Format .......................................................................... 178 Table 361. DigOut0 ConLst Command Verb Format ................................................................................... 178 Table 362. DigOut0 ConLst Command Response Format .......................................................................... 179 Table 363. DigOut0 ConLstEntry0 Command Verb Format ........................................................................ 179 Table 364. DigOut0 ConLstEntry0 Command Response Format ................................................................ 179 Table 365. DigOut0 ConLstEntry4 Command Verb Format ........................................................................ 179 Table 366. DigOut0 ConLstEntry4 Command Response Format ................................................................ 179 Table 367. DigOut0 ConSelectCtrl Command Verb Format ........................................................................ 181 Table 368. DigOut0 ConSelectCtrl Command Response Format ............................................................... 181 Table 369. DigOut0 PinWCntrl Command Verb Format .............................................................................. 181 Table 370. DigOut0 PinWCntrl Command Response Format ..................................................................... 181 Table 371. DigOut0 ConfigDefault Command Verb Format ........................................................................ 181 Table 372. DigOut0 ConfigDefault Command Response Format ................................................................ 183 Table 373. DigIn WCap Command Verb Format ......................................................................................... 183 Table 374. DigIn WCap Command Response Format ................................................................................ 183 Table 375. DigIn PinCap Command Verb Format ....................................................................................... 185 Table 376. DigIn PinCap Command Response Format .............................................................................. 185 Table 377. DigIn PwrState Command Verb Format .................................................................................... 185 Table 378. DigIn PwrState Command Response Format ............................................................................ 186 Table 379. DigIn PinWCntrl Command Verb Format ................................................................................... 186 Table 380. DigIn PinWCntrl Command Response Format .......................................................................... 186 Table 381. DigIn UnsolResp Command Verb Format ................................................................................. 186 Table 382. DigIn UnsolResp Command Response Format ......................................................................... 187 Table 383. DigIn ChSense Command Verb Format .................................................................................... 187 Table 384. DigIn ChSense Command Response Format ........................................................................... 187 Table 385. DigIn EAPD Command Verb Format ......................................................................................... 188 Table 386. DigIn EAPD Command Response Format ................................................................................ 188 Table 387. DigIn ConfigDefault Command Verb Format ............................................................................. 188 Table 388. DigIn ConfigDefault Command Response Format .................................................................... 189 Table 389. InPort0Mux WCap Command Verb Format ............................................................................... 189 Table 390. InPort0Mux WCap Command Response Format ...................................................................... 189 Table 391. InPort0Mux ConLst Command Verb Format ............................................................................. 191 Table 392. InPort0Mux ConLst Command Response Format ..................................................................... 191 Table 393. InPort0Mux OutAmpCap Command Verb Format ..................................................................... 191 Table 394. InPort0Mux OutAmpCap Command Response Format ............................................................ 191 Table 395. InPort0Mux OutAmpRight Command Verb Format ................................................................... 192 Table 396. InPort0Mux OutAmpRight Command Response Format ........................................................... 192 Table 397. InPort0Mux OutAmpLeft Command Verb Format ...................................................................... 192 Table 398. InPort0Mux OutAmpLeft Command Response Format ............................................................. 192 Table 399. InPort0Mux ConSelectCtrl Command Verb Format ................................................................... 193 Table 400. InPort0Mux ConSelectCtrl Command Response Format .......................................................... 193 Table 401. InPort0Mux ConLstEntry0 Command Verb Format ................................................................... 193 Table 402. InPort0Mux ConLstEntry0 Command Response Format .......................................................... 193
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8-CHANNEL HIGH DEFINITION AUDIO CODEC
10 IDT CONFIDENTIAL
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STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 403. InPort0Mux ConLstEntry4 Command Verb Format ................................................................... 193 Table 404. InPort0Mux ConLstEntry4 Command Response Format .......................................................... 194 Table 405. InPort0Mux ConLstEntry8 Command Verb Format ................................................................... 194 Table 406. InPort0Mux ConLstEntry8 Command Response Format .......................................................... 194 Table 407. InPort1Mux WCap Command Verb Format ............................................................................... 194 Table 408. InPort1Mux WCap Command Response Format ...................................................................... 195 Table 409. InPort1Mux ConLst Command Verb Format ............................................................................. 195 Table 410. InPort1Mux ConLst Command Response Format ..................................................................... 196 Table 411. InPort1Mux OutAmpCap Command Verb Format ..................................................................... 196 Table 412. InPort1Mux OutAmpCap Command Response Format ............................................................ 196 Table 413. InPort1Mux OutAmpRight Command Verb Format ................................................................... 196 Table 414. InPort1Mux OutAmpRight Command Response Format ........................................................... 197 Table 415. InPort1Mux OutAmpLeft Command Verb Format ...................................................................... 197 Table 416. InPort1Mux OutAmpLeft Command Response Format ............................................................. 197 Table 417. InPort1Mux ConSelectCtrl Command Verb Format ................................................................... 197 Table 418. InPort1Mux ConSelectCtrl Command Response Format .......................................................... 198 Table 419. InPort1Mux ConLstEntry0 Command Verb Format ................................................................... 198 Table 420. InPort1Mux ConLstEntry0 Command Response Format .......................................................... 198 Table 421. InPort1Mux ConLstEntry4 Command Verb Format ................................................................... 198 Table 422. InPort1Mux ConLstEntry4 Command Response Format .......................................................... 198 Table 423. InPort1Mux ConLstEntry8 Command Verb Format ................................................................... 200 Table 424. InPort1Mux ConLstEntry8 Command Response Format .......................................................... 200 Table 425. InPort2Mux WCap Command Verb Format ............................................................................... 200 Table 426. InPort2Mux WCap Command Response Format ...................................................................... 200 Table 427. InPort2Mux ConLst Command Verb Format ............................................................................. 202 Table 428. InPort2Mux ConLst Command Response Format ..................................................................... 202 Table 429. InPort2Mux OutAmpCap Command Verb Format ..................................................................... 202 Table 430. InPort2Mux OutAmpCap Command Response Format ............................................................ 202 Table 431. InPort2Mux OutAmpRight Command Verb Format ................................................................... 203 Table 432. InPort2Mux OutAmpRight Command Response Format ........................................................... 203 Table 433. InPort2Mux OutAmpLeft Command Verb Format ...................................................................... 203 Table 434. InPort2Mux OutAmpLeft Command Response Format ............................................................. 203 Table 435. InPort2Mux ConSelectCtrl Command Verb Format ................................................................... 204 Table 436. InPort2Mux ConSelectCtrl Command Response Format .......................................................... 204 Table 437. InPort2Mux ConLstEntry0 Command Verb Format ................................................................... 204 Table 438. InPort2Mux ConLstEntry0 Command Response Format .......................................................... 204 Table 439. InPort2Mux ConLstEntry4 Command Verb Format ................................................................... 204 Table 440. InPort2Mux ConLstEntry4 Command Response Format .......................................................... 205 Table 441. InPort2Mux ConLstEntry8 Command Verb Format ................................................................... 205 Table 442. InPort2Mux ConLstEntry8 Command Response Format .......................................................... 205 Table 443. PCBEEP OutAmpLeft Command Verb Format ......................................................................... 205 Table 444. PCBEEP OutAmpLeft Command Response Format ................................................................. 206 Table 445. PCBEEP WCap Command Verb Format ................................................................................... 206 Table 446. PCBEEP WCap Command Response Format .......................................................................... 206 Table 447. PCBEEP OutAmpCap Command Verb Format ......................................................................... 206 Table 448. PCBEEP OutAmpCap Command Response Format ................................................................ 207 Table 449. PCBEEP Gen Command Verb Format ...................................................................................... 207 Table 450. PCBEEP Gen Command Response Format ............................................................................. 208 Table 451. CD WCap Command Verb Format ............................................................................................ 208 Table 452. CD WCap Command Response Format ................................................................................... 208 Table 453. CD PinCap Command Verb Format .......................................................................................... 210 Table 454. CD PinCap Command Response Format .................................................................................. 210 Table 455. CD PinWCntrl Command Verb Format ...................................................................................... 210 Table 456. CD PinWCntrl Command Response Format ............................................................................. 211 Table 457. CD ConfigDefault Command Verb Format ................................................................................ 211
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PC AUDIO
Table 458. CD ConfigDefault Command Response Format ........................................................................ 211 Table 459. ADATOut Cnvtr Command Verb Format ................................................................................... 212 Table 460. ADATOut Cnvtr Command Response Format ........................................................................... 212 Table 461. ADATOut WCap Command Verb Format .................................................................................. 214 Table 462. ADATOut WCap Command Response Format ......................................................................... 214 Table 463. ADATOut CnvtrID Command Verb Format ................................................................................ 215 Table 464. ADATOut CnvtrID Command Response Format ....................................................................... 215 Table 465. ADATOut DigCnvtr Command Verb Format .............................................................................. 215 Table 466. ADATOut DigCnvtr Command Response Format ..................................................................... 215 Table 467. ADATOut VCSR0 Command Verb Format ................................................................................ 216 Table 468. ADATOut VCSR0 Command Response Format ....................................................................... 216 Table 469. VolumeKnob WCap Command Verb Format ............................................................................. 219 Table 470. VolumeKnob WCap Command Response Format .................................................................... 219 Table 471. VolumeKnob VolKnobCap Command Verb Format .................................................................. 219 Table 472. VolumeKnob VolKnobCap Command Response Format .......................................................... 219 Table 473. VolumeKnob ConLst Command Verb Format ........................................................................... 220 Table 474. VolumeKnob ConLst Command Response Format ................................................................... 220 Table 475. VolumeKnob ConLstEntry0 Command Verb Format ................................................................. 220 Table 476. VolumeKnob ConLstEntry0 Command Response Format ........................................................ 220 Table 477. VolumeKnob ConLstEntry4 Command Verb Format ................................................................. 220 Table 478. VolumeKnob ConLstEntry4 Command Response Format ........................................................ 221 Table 479. VolumeKnob UnsolResp Command Verb Format ..................................................................... 221 Table 480. VolumeKnob UnsolResp Command Response Format ............................................................ 221 Table 481. VolumeKnob Cntrl Command Verb Format ............................................................................... 222 Table 482. VolumeKnob Cntrl Command Response Format ...................................................................... 222 Table 483. VolumeKnob VCSR0 Command Verb Format ........................................................................... 222 Table 484. VolumeKnob VCSR0 Command Response Format .................................................................. 222 Table 485. InPort0Vol WCap Command Verb Format ................................................................................ 223 Table 486. InPort0Vol WCap Command Response Format ........................................................................ 223 Table 487. InPort0Vol ConLst Command Verb Format ............................................................................... 224 Table 488. InPort0Vol ConLst Command Response Format ...................................................................... 224 Table 489. InPort0Vol InAmpRight Command Verb Format ........................................................................ 224 Table 490. InPort0Vol InAmpRight Command Response Format ............................................................... 224 Table 491. InPort0Vol InAmpLeft Command Verb Format .......................................................................... 224 Table 492. InPort0Vol InAmpLeft Command Response Format ................................................................. 225 Table 493. InPort0Vol ConLstEntry Command Verb Format ....................................................................... 225 Table 494. InPort0Vol ConLstEntry Command Response Format .............................................................. 225 Table 495. InPort1Vol WCap Command Verb Format ................................................................................ 225 Table 496. InPort1Vol WCap Command Response Format ........................................................................ 225 Table 497. InPort1Vol ConLst Command Verb Format ............................................................................... 227 Table 498. InPort1Vol ConLst Command Response Format ...................................................................... 227 Table 499. InPort1Vol InAmpRight Command Verb Format ........................................................................ 227 Table 500. InPort1Vol InAmpRight Command Response Format ............................................................... 227 Table 501. InPort1Vol InAmpLeft Command Verb Format .......................................................................... 227 Table 502. InPort1Vol InAmpLeft Command Response Format ................................................................. 228 Table 503. InPort1Vol ConLstEntry Command Verb Format ....................................................................... 228 Table 504. InPort1Vol ConLstEntry Command Response Format .............................................................. 228 Table 505. InPort2Vol WCap Command Verb Format ................................................................................ 228 Table 506. InPort2Vol WCap Command Response Format ........................................................................ 228 Table 507. InPort2Vol ConLst Command Verb Format ............................................................................... 230 Table 508. InPort2Vol ConLst Command Response Format ...................................................................... 230 Table 509. InPort2Vol InAmpRight Command Verb Format ........................................................................ 230 Table 510. InPort2Vol InAmpRight Command Response Format ............................................................... 230 Table 511. InPort2Vol InAmpLeft Command Verb Format .......................................................................... 230 Table 512. InPort2Vol InAmpLeft Command Response Format ................................................................. 231
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STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 513. InPort2Vol ConLstEntry Command Verb Format ....................................................................... 231 Table 514. InPort2Vol ConLstEntry Command Response Format .............................................................. 231 Table 515. ADC0Mux WCap Command Verb Format ................................................................................. 231 Table 516. ADC0Mux WCap Command Response Format ........................................................................ 231 Table 517. ADC0Mux ConLst Command Verb Format ............................................................................... 233 Table 518. ADC0Mux ConLst Command Response Format ....................................................................... 233 Table 519. ADC0Mux ConSelectCtrl Command Verb Format ..................................................................... 233 Table 520. ADC0Mux ConSelectCtrl Command Response Format ............................................................ 233 Table 521. ADC0Mux ConLstEntry Command Verb Format ....................................................................... 233 Table 522. ADC0Mux ConLstEntry Command Response Format .............................................................. 234 Table 523. ADC0Mux LR Command Verb Format ...................................................................................... 234 Table 524. ADC0Mux LR Command Response Format .............................................................................. 234 Table 525. ADC0Mux OutAmpCap Command Verb Format ....................................................................... 234 Table 526. ADC0Mux OutAmpCap Command Response Format .............................................................. 235 Table 527. ADC0Mux OutAmpRight Command Verb Format ..................................................................... 235 Table 528. ADC0Mux OutAmpRight Command Response Format ............................................................. 235 Table 529. ADC0Mux OutAmpLeft Command Verb Format ........................................................................ 235 Table 530. ADC0Mux OutAmpLeft Command Response Format ............................................................... 236 Table 531. ADC1Mux WCap Command Verb Format ................................................................................. 236 Table 532. ADC1Mux WCap Command Response Format ........................................................................ 236 Table 533. ADC1Mux ConLst Command Verb Format ............................................................................... 238 Table 534. ADC1Mux ConLst Command Response Format ....................................................................... 238 Table 535. ADC1Mux ConSelectCtrl Command Verb Format ..................................................................... 238 Table 536. ADC1Mux ConSelectCtrl Command Response Format ............................................................ 238 Table 537. ADC1Mux ConLstEntry Command Verb Format ....................................................................... 238 Table 538. ADC1Mux ConLstEntry Command Response Format .............................................................. 239 Table 539. ADC1Mux LR Command Verb Format ...................................................................................... 239 Table 540. ADC1Mux LR Command Response Format .............................................................................. 239 Table 541. ADC1Mux OutAmpCap Command Verb Format ....................................................................... 239 Table 542. ADC1Mux OutAmpCap Command Response Format .............................................................. 240 Table 543. ADC1Mux OutAmpRight Command Verb Format ..................................................................... 240 Table 544. ADC1Mux OutAmpRight Command Response Format ............................................................. 240 Table 545. ADC1Mux OutAmpLeft Command Verb Format ........................................................................ 240 Table 546. ADC1Mux OutAmpLeft Command Response Format ............................................................... 241 Table 547. ADC2Mux WCap Command Verb Format ................................................................................. 241 Table 548. ADC2Mux WCap Command Response Format ........................................................................ 241 Table 549. ADC2Mux ConLst Command Verb Format ............................................................................... 243 Table 550. ADC2Mux ConLst Command Response Format ....................................................................... 243 Table 551. ADC2Mux ConSelectCtrl Command Verb Format ..................................................................... 243 Table 552. ADC2Mux ConSelectCtrl Command Response Format ............................................................ 243 Table 553. ADC2Mux ConLstEntry Command Verb Format ....................................................................... 243 Table 554. ADC2Mux ConLstEntry Command Response Format .............................................................. 244 Table 555. ADC2Mux LR Command Verb Format ...................................................................................... 244 Table 556. ADC2Mux LR Command Response Format .............................................................................. 244 Table 557. ADC2Mux OutAmpCap Command Verb Format ....................................................................... 244 Table 558. ADC2Mux OutAmpCap Command Response Format .............................................................. 245 Table 559. ADC2Mux OutAmpRight Command Verb Format ..................................................................... 245 Table 560. ADC2Mux OutAmpRight Command Response Format ............................................................. 245 Table 561. ADC2Mux OutAmpLeft Command Verb Format ........................................................................ 245 Table 562. ADC2Mux OutAmpLeft Command Response Format ............................................................... 246 Table 563. STAC9227/9228/9229/9230 Options and Part Order Numbers ................................................ 247 Table 564. Pin Table for STAC927x Family in 48-Pin LQFP ....................................................................... 249 Table 565. Pin Table for STAC927x Family in 56-Pad QFN ....................................................................... 252 Table 568. Pb Free Process - Package Classification Reflow Temperatures ............................................. 257
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STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
1. DESCRIPTION
The STAC9227/9228/9229/9230 are high fidelity, 8-channel audio CODECs compatible with the Intel High Definition (HD) Audio Interface. The STAC9227/9228/9229/9230 CODECs provide high quality, HD Audio capability to notebook and cost sensitive desktop PC applications. The STAC9227/9228/9229/9230 incorporate SigmaTel's proprietary technology to achieve a DAC SNR in excess of 100 dB. The higher performance and quality of SigmaTel's audio solutions brings consumer electronics level performance to the notebook, desktop and media center PC. The STAC9227/9228/9229/9230 provide stereo 24-bit, full duplex resolution supporting sample rates up to 192 KHz by the DAC and ADC. The STAC9227/9228/9229/9230 SPDIF In/Out support sample rates of 96 KHz, 48 KHz and 44.1 KHz plus SPDIF OUT supports 88.2 KHz. Additional sample rates are supported by the driver software. The STAC9227/9228/9229/9230 support all desired eight channel configurations, including switchable Headphone Out, and Universal JacksTM functionality for jack detection and re-tasking. The SPDIF interface provides connectivity to Consumer Electronic equipment like Dolby Digital decoders, powered speakers, mini disk drives or to a home entertainment system. All analog I/O pairs support LINE_IN, LINE_OUT and MIC. MIC inputs can be programmed with 0/10/20/30/40dB boost. For more advanced configurations, the STAC9227/9228/9229/9230 has up to four General Purpose I/O (GPIO) pin. The STAC9227/9228/ 9229/9230 also provide a single ended CD input for compatibility with DRM solutions and to support legacy OS issues. The STAC9227/9228/9229/9230 integrate a headphone amplifier which is available on Ports A, B and D. The headphone amplifier is dedicated to these three outputs for increased flexibility, enhanced user experience, and reduced implementation costs. The Universal Jack capabilities allow the CODECs to detect when audio devices are connected to the CODEC, and to allow the CODECs to be reconfigured to support these devices regardless of which port they are plugged into the system. SPDIF input sensing is also supported. The fully parametric SigmaTel SoftEQ can be initiated upon headphone jack insertion and removal for protection of notebook speakers. Note: The Jack Detect circuit and component selection are critical for accurate detection of audio jacks on individual ports. Please see the SigmaTel STAC927x reference design for circuit implementation details. The STAC9227/9228/9229/9230 operate with a 3.3 V digital supply and a 3.3 V to 5 V analog supply. The STAC9227/9228/9229/9230 are available in a 48-pin LQFP Environmental (ROHS) package.
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PC AUDIO
2. CHARACTERISTICS 2.1. Audio Fidelity
DAC SNR: ADC SNR: 105dB 90dB A-Weighted A-Weighted 5.0 V +/- 5% 5.0 V +/- 5%
2.2.
Electrical Specifications
2.2.1. Absolute Maximum Ratings
Stresses above the ratings listed below can cause permanent damage to the STAC9227/9228/9229/9230. These ratings, which are standard values for IDT commercially rated parts, are stress ratings only. Functional operation of the device at these or any other conditions above those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods can affect product reliability. Electrical parameters are guaranteed only over the recommended operating temperature range.
Item
Analog maximum supply voltage Digital maximum supply voltage VREFOUT output current Voltage on any pin relative to ground Operating temperature Storage temperature Soldering temperature
Pin
AVdd DVdd 6 Volts 5.5 Volts 5 mA
Maximum Rating
Vss - 0.3 V to Vdd + 0.3 V 0oC to +70oC -55 oC to +125 oC 260 oC for 10 seconds * Soldering temperature information for all available packages begins on page 229.
2.2.2.
Recommended Operation Conditions Parameter Min.
Digital - 3.3 V Analog - 3.3 V 3.135 3.135 3.8 4.275 4.75 0 Tcase (48-LQFP)
Typ.
3.3 3.3 4 4.5 5
Max.
3.465 3.465 4.2 4.725 5.25 +70 +90
Units
V V V V V C C
Power Supply Voltage
(Note: With Supply Override Enable Bit set to force 5 V operation.)
Analog - 4 V Analog - 4.5 V Analog - 5 V
Ambient Operating Temperature Case Temperature
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PC AUDIO
test equipment can accumulate and discharge electrostatic charges up to 4000 Volts without detection. Even though the STAC9227/9228/9229/9230 implements internal ESD protection circuitry, proper ESD precautions should be followed to avoid damaging the functionality or performance.
ESD: The STAC9227/9228/9229/9230 is an ESD (electrostatic discharge) sensitive device. The human body and
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STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
2.3.
STAC9227/9228/9229/9230 5V, 4.5V, 4.0V, and 3.3V Analog Performance Characteristics
(Tambient = 25 C, AVdd = Supply 5%, DVdd = 3.3 V 5%, AVss = DVss = 0 V; 1 KHz input sine wave; Sample Frequency = 48 KHz; 0 dB = 1 VRMS, 10 K/50 pF load, Testbench Characterization BW: 20 Hz - 20 KHz, 0 dB settings on all gain stages)
Parameter Digital to Analog Converters Resolution SNR - DAC to All Line-Out Ports (Note 4) THD+N - DAC to All Line-Out Ports (Note 3) SNR - DAC to All Line-Out Ports (Note 4) THD+N - DAC to All Line-Out Ports (Note 3) Dynamic Range: DAC to All Line Out Ports (Note2) SNR - DAC to All Headphone Ports (Note 4) THD+N - DAC to All Headphone Ports (Note 3) SNR - DAC to All Headphone Ports with 2 Headphone Outputs Operating (Note 4) THD+N - DAC to All Headphone Ports with 2 Headphone Outputs Operating (Note 3) Analog Mixer Disabled, PCM data All 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 24 105 101 100 98 90 88 86 84 90 88 87 85 80 78 77 75 95 93 92 90 105 101 100 98 85 83 82 80 100 98 97 95 82 80 79 77 Bits dB Conditions AVdd Min Typ Max Unit
Analog Mixer Disabled, -3dB Signal, PCM data
dB
Analog Mixer Enabled, PCM data
dB
Analog Mixer Enabled, -3dB Signal, PCM data
dB
-60dB signal level
dB
Analog Mixer Disabled, 10 K load, PCM data
dB
5V Analog Mixer Disabled, -3dB 4.5 V Signal, 10 K load, PCM data 4.0 V 3.3 V Analog Mixer Disabled, 32 load, PCM data 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V
dB
dB
Analog Mixer Disabled, -3dB Signal, 32 load, PCM data
dB
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STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Parameter SNR - DAC to All Headphone Ports (Note 4) THD+N - DAC to All Headphone Ports (Note 3) SNR - DAC to All Headphone Ports (Note 4) THD+N - DAC to All Headphone Ports (Note 3) SNR - DAC to All Headphone Ports (Note 4) THD+N - DAC to All Headphone Ports (Note 3) Any Analog Input to DAC Crosstalk Any Analog Input to DAC Crosstalk Gain Error Interchannel Gain Mismatch D/A Digital Filter Pass Band (Note 5) D/A Digital Filter Transition Band D/A Digital Filter Stop Band D/A Digital Filter Stop Band Rejcn (Note 6) D/A Out-of-Band Rejection (Note 7) Group Delay (48 KHz sample rate) Attenuation, Gain Step Size DIGITAL Gain Drift DAC Offset Voltage
Conditions Analog Mixer Disabled, 32 load, PCM data
AVdd 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V All All All All All All All All All All All All All
Min
Typ 100 98 97 95 85 83 82 80 90 88 87 85 79 77 76 74 87 85 84 82 74 72 71 69
Max
Unit dB
Analog Mixer Disabled, -3dB Signal, 32 load, PCM data
dB
Analog Mixer Enabled, 10 K load, PCM data
dB
Analog Mixer Enabled, -3dB Signal, 10k load, PCM data
dB
Analog Mixer Enabled, 32 load, PCM data
dB
Analog Mixer Enabled, -3dB Signal, 32 load, PCM data 10 KHz Signal Frequency 1 KHz Signal Frequency Analog Mixer Disabled Analog Mixer Disabled
dB
-
-85 -80
0.5 0.5
dB dB dB dB Hz Hz Hz dB dB ms dB ppm/C mV
20 19,200 28,800 -100 -55 -
0.75 100 100
19,200 28,800 1 20
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Parameter Deviation from Linear Phase Analog Outputs Full Scale All Line-Outs Full Scale All Line-Outs All Headphone Capable Outputs Analog inputs Full Scale Input Voltage All Analog Inputs with boost All Analog Inputs with boost All Analog Inputs with boost All Analog Inputs with boost Input Impedance Input Capacitance Analog Mixer SNR - CD to Ports A,B, & D Line-Out (Note 4) THD+N - CD to Ports A,B, & D Line-Out (Note 3) SNR - All Line-In to A,B, & D Line-Out (Note 4) THD+N - All Line-In to A,B, & D Line-Out (Note 3) SNR - Analog PC Beep to Ports A,B, & D Line-Out (Note 4) THD+N - Analog PC Beep to Ports A,B, & D Line-Out (Note 3) Analog to Digital Converter Resolution Dynamic Range, All Analog Inputs to A/D (Note 1) SNR All Analog Inputs to A/D (Note 4) THD+N All Analog Inputs to A/D (Note 3) Analog Frequency Response (Note 2)
Conditions
AVdd All 5V 4.5 V 4.0 V 3.3 V All All All All All All All All All
Min 1.00 1.00 1.00 0.70 2.83 31 1.00 0.31 0.10 0.03 0.01 -
Typ 1
Max 10
Unit degrees
DAC PCM Data DAC PCM Data 32 load 0dB Boost @ 4.75 V 10dB Boost 20dB Boost 30dB Boost 40dB Boost
50 50 15
-
Vrms Vp-p mW peak Vrms Vrms Vrms Vrms Vrms K pF
All -3dB Input All All -3dB Input All All -3dB Input All
90 70 90 70 85 70
dB dB dB dB dB dB
All High Pass Filer Enabled, 1 Vrms Input, No boost High Pass Filter enabled High Pass Filter enabled, -3dBV input Level All All All All 10 88 88
24 90 90 85 30,000
Bits dB dB dB Hz
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Parameter A/D Digital Filter Pass Band (Note 5) A/D Digital Filter Transition Band A/D Digital Filter Stop Band A/D Digital Filter Stop Band Rejection (Note 6) Group Delay (48 KHz sample rate) Any Analog Input to ADC Crosstalk Any Analog Input to ADC Crosstalk Spurious Tone Rejection Attenuation, Gain Step Size ANALOG Interchannel Gain Mismatch ADC Noise Floor when 40dB Mic Boost Enabled 40dB Mic Boost Enabled SNR 40dB Mic Boos Enabled THD+N Power Supply Power Supply Rejection Ratio Power Supply Rejection Ratio D0 Didd D0 Aidd D1 Didd D1 Aidd D2 Didd D2 Aidd D3 Didd D3 Aidd One Stereo ADC Didd One Stereo ADC Aidd One Stereo DAC Didd One Stereo DAC Aidd CD Input CD Common Mode Rejection (CMR) Voltage Reference Outputs
Conditions
AVdd All All All All All
Min 20 19,200 28,800 -100 -
Typ -85 -80 -100 1.5 -
Max 19,200 28,800 1 0.5 0.01
Unit Hz Hz Hz dB ms dB dB dB dB dB mV dB dB
10 KHz Signal Frequency 1 KHz Signal Frequency
All All All All All All
5 mV Input 5 mV Input 1 KHz 20 KHz 3.3 V 5.0 V, 4.5 V, & 4.0 V, 3.3 V 3.3 V 5.0 V, 4.5 V, & 4.0 V, 3.3 V 3.3 V 5.0 V, 4.5 V, & 4.0 V, 3.3 V 3.3 V 5.0 V, 4.5 V, & 4.0 V, 3.3 V 3.3 V 5.0 V, 4.5 V, & 4.0 V, 3.3 V 3.3 V 5.0 V, 4.5 V, & 4.0 V, 3.3 V
All All All All -
60 55 -70 -40 75 85 75 85 23 58 23 37 8 10 3 2 5 10 30 30 90 90
dB dB mA mA mA mA mA mA mA mA mA mA mA mA
All
50
55
dB
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Parameter VREFout (Note 8) VREFILT (VAG) Phased Locked Loop PLL lock time PLL (or Azalia Bit CLK) 24 MHz clock jitter Digital to Analog Converters Resolution SNR - DAC to All Line-Out Ports (Note 4) THD+N - DAC to All Line-Out Ports (Note 3) SNR - DAC to All Line-Out Ports (Note 4) THD+N - DAC to All Line-Out Ports (Note 3) Dynamic Range: DAC to All Line Out Ports (Note2) SNR - DAC to All Headphone Ports (Note 4)
Conditions
AVdd All All
Min -
Typ 0.5 X AVdd 0.45 X AVdd 96 150
Max -
Unit V V
All All
200 500
sec psec
All Analog Mixer Disabled, PCM data 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V 5V 4.5 V 4.0 V 3.3 V -
24 105 101 100 98 90 88 86 84 90 88 87 85 80 78 77 75 95 93 92 90 105 101 100 98 -
Bits dB
Analog Mixer Disabled, -3dB Signal, PCM data
dB
Analog Mixer Enabled, PCM data
dB
Analog Mixer Enabled, -3dB Signal, PCM data
dB
-60dB signal level
dB
Analog Mixer Disabled, 10K load, PCM data
dB
1. 2. 3. 4. 5. 6. 7. 8.
Ratio of Full Scale signal to noise output with -60dB signal, measured "A weighted" over a 20 Hz to a 20 KHz bandwidth. 3dB limits for Line Output & 0 dB gain, at -20dBV
Amplitude of THD+N, measured with A-weighting filter, over 20 Hz to 20 KHz bandwidth.
Ratio of Full Scale signal to idle channel noise output is measured "A weighted" over a 20 Hz to a 20 KHz bandwidth. (AES17-1991 Idle Channel Noise or EIAJ CP-307 Signal-to-noise Ratio). Peak-to-Peak Ripple over Passband meets 0.25dB limits, 48 KHz Sample Frequency. Stop Band rejection determines filter requirements. Out-of-Band rejection determines audible noise. The integrated Out-of-Band noise generated by the DAC process, during normal PCM audio playback, over a bandwidth 28.8 to 100 KHz, with respect to a 1 Vrms DAC output.
Can be set to 0.5 or 0.8 AVdd.
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3. DETAILED DESCRIPTION 3.1. Universal JacksTM
SigmaTel's Universal JacksTM technology allows for the greatest flexibility in board design and implementation. For the STAC9227/9228/9229/9230 family the Universal JacksTM capabilities are as follows1: * Ports A, B, and D support2: * Headphone Out * Line Out * Line In * Microphone with 0/10/20/30/40 dB Microphone boost3: Ports C, E, F, G, H support2: * Line Out * Line In * Microphone with 0/10/20/30/40 dB Microphone boost3: * Ports G & H do not have VrefOut Support
*
Note1: On the STAC9227/9228/9229/9230 family, only one function can be selected on each pin pair at a time. For example, a pin pair cannot be configured as an input and output at the same time. Configuration can be changed at any time. Note2: Three Headphones should not be used simultaneously. Performance degradation will occur when using two Headphones simultaneously. See electrical specifications for details. Note3: When the 40dB microphone boost feature is enabled, gain increases greater than 6dB may result in significant audio quality degradation of the microphone audio input. In particular, when the 40dB MIC boost is active, the SNR, THD+N and DC offset will significantly degrade regardless of the input signal level.
3.1.1.
Audio Jack Presence Detect
SENSE_A pin is used to detect the presence of plugs in ports A, B, C, and D. SENSE_B pin is used to detect the presence of plugs in ports E, F, G, ad H. Refer to the reference design for port detect circuitry. Select the precision of the resistors used as follows:
AVDD Nominal Resistor Tolerance Resistor Tolerance Resistor Tolerance Resistor Tolerance Voltage Sense A Sense A Sense B Sense B (+-5%) (If Port D is used) (If Port D is not used) (If Port H is used) (If Port H is not used) 5V 4.5 V 4V 3.3 V 1% 1% 0.50% 0.10% 1% 1% 1% 1% 1% 1% 0.50% 0.10% 1% 1% 1% 1%
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3.2.
Impedance Sense
Impedance Sense is accomplished by on-chip circuitry that measures the impedance at the pin of the chip and compares it to internal reference impedance. Below is a table that contains the bin information and codes returned when the pin widget impedance field in the Port Pin Sense widget is read. Please note that even under the best conditions, there is no method to guarantee 100% impedance sensing due to variations in external circuitry and impedance overlap of devices that can be plugged into a jack. The impedance sense table reflects both standard Line Out and Headphone output drivers. Please reference the HD Audio Universal Jack Application Note on the SigmaTel Extranet for more information. Table 1: Impedance Sense Bins
000b 001b 010b 011b 100b 101b 110b 111b
Return Hex Code
0064h 012Ch 028Ah 03E8h 07D0h 0BB8h 2710h 2710h
Impedance Level (Ohms)
Impedance < 300 Impedance = 300 +/- 25% 300 > Impedance < 1275 Impedance = 1275 +/- 25% 1275 > Impedance < 2000 Impedance = 2000 +/- 25% > 2000 > 2000
General Device Detected
Passive Speakers, Headset Speakers Some Headset Speakers Some Microphones Microphones Microphones Amplified Speakers Amplified Speakers, Line In Amplified Speakers, Line In
3.3.
SPDIF Input
SPDIF IN can operate at 44.1 KHz, 48 KHz and 96 KHz, and implements internal Jack Detect. A sophisticated digital PLL allows automatic rate detection and accurate data recovery. The ability to accept consumer SPDIF voltage levels directly eliminates the need for costly external receiver ICs. Advanced features such as record slot select and SPDIF_IN routing to the DAC allows for simultaneous record and play.
3.4.
SPDIF Output
SPDIF Ouput can operate at 44.1 KHz, 48 KHz, 88.2 KHz, and 96 KHz, as defined in the Intel High Definition Audio Specification, with resolutions up to 24 bits. This insures compatibility with all consumer audio gear and allows for convenient integration into home theater systems and media center PCs.
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3.5.
ADAT(R) Output
ADAT(R), or "Lightpipe" is available on all versions of STAC927x family. ADAT(R) is a single bit stream optical digital interface for up to 8 channels of uncompressed 24-bit data. Sample rates up to 192 KHz are supported for 2 channels, up to 96 KHz for 4 channels, or up to 48 KHz for 8 channels.
3.6.
Digital Microphone Support
The digital microphone interface permits connection of a digital microphone(s) to the STAC927x family via the DMIC0, DMIC1, and DMIC_CLK 3-pin interface. The DMIC0 and DMIC1 signals are inputs that carry individual channels of digital microphone data to the STAC927x family. In the event that a single microphone is used, the data is routed to both ADC channels. The DMIC_CLK output is programmable from 1.176 MHz to 4.704 MHz in 1.176 MHz increments, and is synchronous to the 24 MHz internal clock. The default frequency is 2.352 MHz. The STAC927x family supports the following digital microphone configurations:
Table 2. Valid Digital Microphone Configurations Digital Mics 0 1 Date Sample N/A Single Edge ADC Conn. N/A 0, 1, or 2 No Digital Microphones Available on either DMIC_0 or DMIC_1 Both ADC Channels produce data, may be in phase or out by 1/2 DMIC_CLK period depending upon external configuration and timing Available on either DMIC_0 or DMIC_1, External logic required to support sampling on a single Digital Mic pin channel on rising edge and second Digital Mic right channel on falling edge of DMIC_CLK for those digital microphones that don't support alternative clock edge capability. If both DMIC_0 and DMIC_1 are used to support 2 digital microphones, 2 separate ADC units will be used, however, this configuration is not recommended since it consumes two stereo ADC resources. Requires both DMIC_0 or DMIC_1, External logic required to support sampling on a single Digital Mic pin channel on rising edge and second Digital Mic right channel on falling edge of DMIC_CLK for those digital microphones that don't support alternative clock edge capability. Two ADC units are required to support this configuration Connected to DMIC_0 and DMIC_1, External logic required to support sampling on a single Digital Mic pin channel on rising edge and second Digital Mic right channel on falling edge of DMIC_CLK for those digital microphones that don't support alternative clock edge capability. Two ADC units are required to support this configuration Notes
2
Double Edge on either DMIC_0 or 1 OR Single Edge on DMIC_0 and 1 Double Edge on one DMIC pin and Single Edge on the second DMIC pin.
0, 1, or 2
3
0, 1, or 2
4
Double Edge
0, 1, or 2
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Table 3. DMIC_CLK, DMIC_0 and DMIC_1 Operation During Power States Power DMIC Widget State Enabled? D0 Yes DMIC_CLK Output DMIC_0,1 Notes
DMIC_CLK Output is Enabled when either DMIC_0 Clock Capable Input Capable or DMIC_1 Input Widget is Enabled. Otherwise, the DMIC_CLK remains Low DMIC_CLK Output is Enabled when either DMIC_0 Clock Capable Input Capable or DMIC_1 Input Widget is Enabled. Otherwise, the DMIC_CLK remains Low Clock Disabled Input Disabled DMIC_CLK Remains Low Clock Disabled Input Disabled DMIC_CLK Remains Low Clock Disabled Input Disabled DMIC_CLK is HIGH-Z with Weak Pull-down
D1 D2 D3 D0-D3
Yes Yes Yes No
Off-Chip Digital Microphone
On-Chip
DMIC_0 OR DMIC_1
D CK Q
Single Line In Stereo Channels Output
Pin
MUX
DMIC_CLK Pin
STEREO ADC0, 1 or 2
PCM
On-Chip Multiplexer Valid Data+1
DMIC_0 Or DMIC_1
Valid Data Right Channel Left Channel
DMIC_CLK
Figure 1. Single Digital Microphone (data is ported to both left and right channels)
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Off-Chip Digital Microphones
On-Chip
External Multiplexer DMIC_0 OR DMIC_1 Pin
On-Chip Multiplexer Stereo Channels Output
MUX
STEREO ADC0, 1 or 2
PCM
MUX
DMIC_CLK Pin
DMIC_0 Or DMIC_1
Valid R Data
Valid L Data
Right Channel
Left Channel
DMIC_CLK
Figure 2. Stereo Digital Microphone Configuration
Note: Some Digital Microphone Implementations support data on either edge, therefore, the external mux may not be required.
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Digital Microphones
Off-Chip External Multiplexer DMIC_0
MUX
On-Chip
On-Chip Multiplexer Stereo Channels Output For DMIC_0 L & R
Pin
STEREO ADC0
PCM
MUX
DMIC_CLK Pin
Note: Valid ADC Pairs include: ADC0/ADC1, ADC0/ADC2, ADC1/ADC2 On-Chip Multiplexer Stereo Channels Output For DMIC_1 L & R
DMIC_1
MUX
Pin External Multiplexer
STEREO ADC1
PCM
MUX
DMIC_0
Valid Data R0
Valid Data L0
Valid Data R0
Valid Data L0
DMIC_1
Valid Data R1
Valid Data L1
Valid Data R1
Valid Data L1
Right Left Right Channel Channel Channel
Left Channel
DMIC_CLK
Figure 3. Quad Digital Microphone Configuration
Note: Some Digital Microphone Implementations support data on either edge, therefore, the external mux may not be required.
3.7.
Analog PC-Beep
PC-Beep is NOT supported during Link Reset.
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3.8.
Headphone Drivers (Restrictions)
Three Headphones should not be used simultaneously. Performance degradation will occur when using two Headphones simultaneously. See electrical specifications for details.
3.9.
Device IDs
Table 4. Device IDs Part Number STAC9230X STAC9230D STAC9229X STAC9229D STAC9228X STAC9228D STAC9227X STAC9227D DAC SNR dB 105 105 95 95 95 95 95 95 VID DID Rev Step ID ID 01h 01h 01h 01h 01h 01h 01h 01h SSID* 000001h 000001h 000001h 000001h 000001h 000001h 000001h 000001h Assm ID* 00h 00h 00h 00h 00h 00h 00h 00h Dolby No MS No HT/SR No HT/SR No HT/SR Dig Volume or ADAT Mic DMIC Yes Yes Yes Yes Yes Yes No No Yes Yes Yes Yes No No No No Selectable Selectable Selectable Selectable Selectable Selectable Selectable Selectable
8384h 7612h 01h 8384h 7613h 01h 8384h 7614h 01h 8384h 7615h 01h 8384h 7616h 01h 8384h 7617h 01h 8384h 7618h 01h 8384h 7619h 01h
Note: SVIDs, SSIDs and Assembly IDs are read/writable by BIOS. All other ID fields are read-only. Note: MS refers to Master Studio and HT/SR refers to Home Theater/Sound Room
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4. FUNCTIONAL BLOCK DIAGRAMS 4.1. Without ADAT
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4.2.
Without ADAT or Digital Microphone
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5. WIDGET DIAGRAM
N ID = 2 4 h VO LU M E KNOB
VOLUME MUTE
N ID = 0 2 h DAC0
DAC0 DAC1 DAC4
N ID = 0 A h P o rtA N ID = 0 B h P o rtB N ID = 0 C h
N ID = 0 3 h DAC1
VOLUME MUTE
DAC0 DAC1 DAC4
N ID = 0 4 h
VOLUME MUTE
DAC2
DAC1
P o rtC N ID = 0 D h
N ID = 0 5 h
VOLUME MUTE
DAC3
DAC0
P o rtD N ID = 0 E h
N ID = 0 6 h
VOLUME MUTE
DAC4
DAC2
P o rtE N ID = 0 F h
N ID = 0 7 h ADC0
N ID = 1 B h ADC0 MUX N ID = 1 8 h IN P O R T 0 VOL A D C 0M U X
VOLUME
N ID = 1 5 h
A B C D DAC3
P o rtF N ID = 1 0 h
IN P O R T 0E MUX F
DAC2
G H CD
P o rtG N ID = 1 1 h
DAC1
P o rtH
A za lia L in k
N ID = 0 8 h ADC1
N ID = 1 C h ADC1 MUX N ID = 1 9 h IN P O R T 1 VOL A D C 1M U X
VOLUME
N ID = 1 6 h
A B C D
N ID = 2 3 h PCBEEP
IN P O R T 1 E MUX F
G H CD
N ID = 1 3 h D M IC 0 N ID = 1 4 h
N ID = 0 9 h ADC2
N ID = 1 D h ADC2 MUX
N ID = 1 7 h
A B C VOLUME
D M IC 1
N ID = 1 A h IN P O R T 2 VOL
IN P O R T 2 E MUX F
D
G H CD
N ID = 1 2 h CD N ID = 2 0 h S P D IF IN N ID = 2 2 h D IG IN
N ID = 1 F h ADAT OUT N ID = 1 E h S P D IF OUT A D C 0M U X A D C 1M U X
N ID = 2 1 h D IG O U T 0
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5.1.
Pin Configuration Default Register Settings
The following table shows the Pin Widget Configuration Default settings.
Table 5. Pin Configuration Default Settings Pin Name DigInPin Port Not Connected 01b Connect to Jack 00b Connect to Jack 00b Connect to Jack 00b Connect to Jack 00b Connect to Jack 00b Connect to Jack 00b Connect to Jack 00b Connect to Jack 00b Connect to Jack 00b Not Connected 01b Not Connected 01b Not Connected 01b Location Mainboard Rear 1h Mainboard Rear 1h Mainboard Front 2h Mainboard Front 2ht Mainboard Rear 1h Mainboard Rear 1h Mainboard Rear 1h Mainboard Rear 1h Mainboard Rear 1h Mainboard Rear 1h Internal 01000b Internal 01000b Internal 01000b Device SPDIF In Ch SPDIF Out 4h HP Out 2h Mic In Ah Line In 8h Line Out 0h Mic In Ah Line Out 0h Line Out 0h Line Out 0h CD 3h Mic In Ah Mic In Ah Connection RCA 4h RCA 4h 1/8 inch Jack 1h 1/8 inch Jack 1h 1/8 inch Jack 1h 1/8 inch Jack 1h 1/8 inch Jack 1h 1/8 inch Jack 1h 1/8 inch Jack 1h 1/8 inch Jack 1h ATAPI Internal 3h Unknown 0h Unknown 0h Color Gray 2h Gray 2h Green 4h Pink 9h Blue 3h Green 4h Pink 9h Black 1h Orange 6h Gray 2h Unknown 0h Unknown 0h Unknown 0h Misc Jack Detect Overide = 1 Jack Detect Overide = 0 Jack Detect Overide = 0 Jack Detect Overide = 0 Jack Detect Overide = 0 Jack Detect Overide = 0 Jack Detect Overide = 0 Jack Detect Overide = 0 Jack Detect Overide = 0 Jack Detect Overide = 0 Jack Detect Overide = 1 Jack Detect Overide = 1 Jack Detect Overide = 1 Assoc. 9h Seq 0h
DigOutPin
7h
0h
PortAPin
2h
0h
PortBPin
8h
0h
PortCPin
4h
Eh
PortDPin
1h
0h
PortEPin
4h
0h
PortFPin
1h
2h
PortGPin
1h
1h
PortHPin
1h
Fh
CDPin
Fh
0h
DigMicPin
Fh
0h
DigMicPin
Fh
0h
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6. WIDGET INFORMATION FOR THE STAC9227/9228/9229/9230
Table 6. High Definition Audio Widget List ID Widget Name Description
00h 01h 02h 03h 04h 05h 06h 07h 08h 09h 0Ah 0Bh 0Ch 0Dh 0Eh 0Fh 10h 11h 12h 13h 14h 15h 16h 17h
18h
Root Audio Function Group DAC0 DAC1 DAC2 DAC3 DAC4 ADC0 ADC1 ADC2 Port A Port B Port C Port D Port E Port F Port G Port H CD DigMic0 DigMic1 InPort0Mux InPort1Mux InPort2Mux InPort0Vol InPort1Vol InPort2Vol ADC0Mux ADC1Mux ADC2Mux SPDIF_OUT ADATOut SPDIF_IN
Root Node Audio Function Group Stereo Output Converter to DAC Stereo Output Converter to DAC Stereo Output Converter to DAC Stereo Output Converter to DAC Stereo Output Converter to DAC Stereo Input Converter to ADC Stereo Input Converter to ADC Stereo Input Converter to ADC Port A Pin Widget (Configurable as HP, Line In, Line Out, Mic) Port B Pin Widget (Configurable as HP, Line In, Line Out, Mic) Port C Pin Widget (Configurable as Line In, Line Out, Mic) Port D Pin Widget (Configurable as HP, Line In, Line Out, Mic) Port E Pin Widget (Configurable as Line In, Line Out, Mic) Port F Pin Widget (Configurable as Line In, Line Out, Mic) Port G Pin Widget (Configurable as Line In, Line Out, Mic) Port H Pin Widget (Configurable as Line In, Line Out, Mic) CD Pin Widget Digital Microphone 0 Pin Widget Digital Microphone 1 Pin Widget ADC0 Input Port Mux ADC1 Input Port Mux ADC2 Input Port Mux ADC0 Input Port Volume ADC1 Input Port Volume ADC2 Input Port Volume ADC0 Mux ADC1 Mux ADC2 Mux Stereo Output for SPDIF_Out ADAT Out Stereo Input for SPDIF_In
19h 1Ah 1Bh 1Ch 1Dh 1Eh 1Fh 20h
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Table 6. High Definition Audio Widget List ID Widget Name Description
21h 22h 23h 24h
DigOut DigIn PCBEEP VolumeKnob
Digital Output Pin Digital Microphone Input Pin Digital PC Beep Master Volume Controls
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6.1.
Root Node (NID = 0x00)
6.1.1. Root ID
Table 7. Root ID Command Verb Format Verb ID Get F00 Payload 00 Response See bitfield table.
Table 8. Root ID Command Response Format Bit [31:16] [15:8] [7:0] Bitfield Name Vendor DeviceFix DeviceProg RW R R R Reset 0x8384 0x76 0x10 Vendor ID. Fixed portion of Device ID. Dependent of device- See device ID table in section 5.8. Description
6.1.2.
Root RevID
Table 9. Root RevID Command Verb Format Verb ID Get F00 Payload 02 Response See bitfield table.
Table 10. Root RevID Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11:8] Bitfield Name Rsvd Major Minor VendorFix VendorProg RW R R R R R Reset 0x00 0x1 0x0 0x0 0x1 Reserved Major rev number of compliant Azalia spec. Minor rev number of compliant Azalia spec. Fixed portion of Vendor's rev number for this device. Vendor's rev number for this device. Description
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Table 10. Root RevID Command Response Format Bit [7:4] Bitfield Name SteppingFix RW R Reset 0x0 Description Fixed portion of vendor stepping number within the Vendor RevID. vendor stepping number within the Vendor RevID.
[3:0]
SteppingProg
R
0x1
6.1.3.
Root NodeInfo
Table 11. Root NodeInfo Command Verb Format Verb ID Get F00 Payload 04 Response See bitfield table.
Table 12. Root NodeInfo Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Rsvd2 StartNID Rsvd1 TotalNodes RW R R R R Reset 0x00 0x01 0x00 0x01 Reserved Starting node number (NID) of first function group Reserved Total number of nodes Description
6.2.
AFG Node (NID = 0x01)
6.2.1. AFG Reset
Table 13. AFG Reset Command Verb Format Verb ID Get Set1 7FF 7FF Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 14. AFG Reset Command Response Format Bit [31:0] Bitfield Name Response RW R Reset 0x0 Description Reserved. Overlaps Execute. Function Reset. Function Group reset is executed when the Set verb 7FF is written with 8-bit payload of 00h. The CODEC should issue a response to acknowledge receipt of the verb, and then reset the affected Function Group and all associated widgets to their power-on reset values. Some controls such as Configuration Default controls should not be reset. Overlaps Response.
[0]
Execute
W
0x0
6.2.2.
AFG NodeInfo
Table 15. AFG NodeInfo Command Verb Format Verb ID Get F00 Payload 04 Response See bitfield table.
Table 16. AFG NodeInfo Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Rsvd2 StartNID Rsvd1 TotalNodes RW R R R R Reset 0x0 0x2 0x0 0x23 Reserved Starting node number for function group subordinate nodes. Reserved Total number of nodes. Description
6.2.3.
AFG Type
Table 17. AFG Type Command Verb Format Verb ID Get F00 Payload 05 Response See bitfield table.
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Table 18. AFG Type Command Response Format Bit [31:9] Bitfield Name Rsvd RW R Reset 0x0 Reserved This node is capable of generating an unsolicited response, and will respond to the Unsolicited Response verb (Verb ID 708h). Node type = Audio Function Group Description
[8]
UnSol
R
0x1
[7:0]
NodeType
R
0x01
6.2.4.
AFG Cap
Table 19. AFG Cap Command Verb Format Verb ID Get F00 Payload 08 Response See bitfield table.
Table 20. AFG Cap Command Response Format Bit [31:17] [16] [15:12] Bitfield Name Rsvd3 BeepGen Rsvd2 RW R R R Reset 0x0 0x1 0x0 Reserved Optional Beep Generator is present Reserved Typical latency = 13 frames. Number of samples between when the sample is received as an analog signal at the pin and when the digital representation is transmitted on the Azalia link. Reserved Typical latency = 13 frames. Number of samples between when the signal is received from the Azalia link and when it appears as an analog signal at the pin. Description
[11:8]
InputDelay
R
0xD
[7:4]
Rsvd1
R
0x0
[3:0]
OutputDelay
R
0xD
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6.2.5.
AFG PCMCap
Table 21. AFG PCMCap Command Verb Format Verb ID Get F00 Payload 0A Response See bitfield table.
Table 22. AFG PCMCap Command Response Format Bit [31:21] [20] [19] [18] [17] [16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd2 B32 B24 B20 B16 B8 Rsvd1 R12 R11 R10 R9 R8 R7 R6 R5 R4 R3 R2 R1 RW R R R R R R R R R R R R R R R R R R R Reset 0x0 0x0 0x1 0x1 0x1 0x0 0x0 0x0 0x1 0x1 0x1 0x1 0x1 0x1 0x0 0x0 0x0 0x0 0x0 Reserved 32 bit audio formats are NOT supported 24 bit audio formats are supported 20 bit audio formats are supported 16 bit audio formats are supported 8 bit audio formats are NOT supported Reserved 384 KHz rate (8/1*48 KHz) NOT supported 192.0 KHz rate (4/1*48 KHz) supported 176.4 KHz rate (4/1*44.1 KHz) supported 96.0 KHz rate (2/1*48 KHz) supported 88.2 KHz rate (2/1*44.1 KHz) supported 48.0 KHz rate supported (REQUIRED) 44.1 KHz rate supported 32.0 KHz rate (2/3*48 KHz) supported 22.05 KHz rate (1/2*44.1 KHz) supported 16.0 KHz rate (1/3*48 KHz) supported 11.025 KHz rate (1/4*44.0 KHz) supported 8.0 KHz rate (1/6*48 KHz) supported Description
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6.2.6.
AFG Stream
Table 23. AFG Stream Command Verb Format Verb ID Get F00 Payload 0B Response See bitfield table.
Table 24. AFG Stream Command Response Format Bit [31:3] [2] [1] [0] Bitfield Name Rsvd NonPCM Float32 PCM RW R R R R Reset 0x0 0x0 0x0 0x1 Reserved No support for non-PCM data. No support for Float32 data. PCM-formatted data supported. Description
6.2.7.
AFG InAmpCap
Table 25. AFG InAmpCap Command Verb Format Verb ID Get F00 Payload 0D Response See bitfield table.
Table 26. AFG InAmpCap Command Response Format Bit [31] [30:23] [22:16] [15] [14:8] [7] [6:0] Bitfield Name Mute Rsvd3 StepSize Rsvd2 NumSteps Rsvd1 Offset RW R R R R R R R Reset 0x0 0x0 0x5 0x0 0x0E 0x0 0x00 Description No mute capability Reserved Size of each step in the gain range = 1.5dB Reserved Number of steps in the gain range = 15 (0dB to 22.5 dB) Reserved 0dB-step is programmed with this offset
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6.2.8.
AFG SupPwrState
Table 27. AFG SupPwrState Command Verb Format Verb ID Get F00 Payload 0F Response See bitfield table.
Table 28. AFG SupPwrState Command Response Format Bit [31:4] Bitfield Name Rsvd RW R Reset 0x0 Reserved Power State D3 is supported. Allows for lowest possible power consuming state under software control (and still properly respond to a subsequent Power State command). Power State D2 is supported. Allows for lowest possible power consuming state from which it can return to fully on state within 10ms. Power State D1 is supported. Allows for lowest possible power consuming state from which it can return to fully on state within 10ms, excepting analog pass-through circuits which must remain fully on. Power State D0 is supported. Node power state is fully on. Description
[3]
D3Sup
R
0x1
[2]
D2Sup
R
0x1
[1]
D1Sup
R
0x1
[0]
D0Sup
R
0x1
6.2.9.
AFG GPIOCnt
Table 29. AFG GPIOCnt Command Verb Format Verb ID Get F00 Payload 11 Response See bitfield table.
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Table 30. AFG GPIOCnt Command Response Format Bit Bitfield Name RW Reset Description Wake capability. Assuming the Wake Enable Mask controls are enabled, GPIO's configured as inputs can cause a wake (generate a Status Change event on the link) when there is a change in level on the pin. Unsolicited Response capability. Assuming the Unsolicited Enable Mask controls are enabled, GPIO's configured as inputs can generate an Unsolicited Response on the link when there is a change in level on the pin. Reserved Number of GPI pins supported by function Number of GPO pins supported by function Number of GPIO pins supported by function
[31]
GPIWake
R
0x1
[30]
GPIUnsol
R
0x1
[29:24] [23:16] [15:8] [7:0]
Rsvd NumGPIs NumGPOs NumGPIOs
R R R R
0x0 0x00 0x00
0x03 = 48pin
6.2.10.
AFG OutAmpCap
Table 31. AFG OutAmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table.
Table 32. AFG OutAmpCap Command Response Format Bit [31] [30:23] [22:16] [15] [14:8] Bitfield Name Mute Rsvd3 StepSize Rsvd2 NumSteps RW R R R R R Reset 0x1 0x0 0x02 0x0 0x7F Description Amplifier is capable of muting Reserved Size of each step in the gain range = 0.75dB Reserved Number of steps in the gain range = 128 (-96dB to +0dB)
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Table 32. AFG OutAmpCap Command Response Format Bit [7] [6:0] Bitfield Name Rsvd1 Offset RW R R Reset 0x0 0x7F Reserved 0dB-step is programmed with this offset Description
6.2.11.
AFG PwrState
Table 33. AFG PwrState Command Verb Format Verb ID Get Set1 F05 705 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 34. AFG PwrState Command Response Format Bit [31:8] [7:4] [3:2] Bitfield Name Rsvd2 Act Rsvd1 RW R R R Reset 0x0 0x2 0x0 Reserved PS-Act: Actual power state of referenced node. Reserved PS-Set: Current power setting of referenced node. 0: All Powered-On 1: D1 = > PR0, PR1 2: D2 = > PR0, PR1, PR2, PR6, EAPD 3: D3 = > PR6, PR5, PR3, PR2, PR1, PR0, EAPD Note: PR4 is not mapped in Azalia Description
[1:0]
Set
RW
0x2
6.2.12.
AFG UnsolResp
Table 35. AFG UnsolResp Command Verb Format Verb ID Get Set1 F08 708 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 36. AFG UnsolResp Command Response Format Bit [31:8] [7] [6] Bitfield Name Rsvd2 En Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved Allow generation of Unsolicited Responses. Reserved Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node. Description
[5:0]
Tag
RW
0x0
6.2.13.
AFG GPIO
Table 37. AFG GPIO Command Verb Format Verb ID Get Set1 F15 715 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 38. AFG GPIO Command Response Format Bit [31:5] Bitfield Name Rsvd RW R Reset 0x0 Reserved Data for GPIO4. If this GPIO bit is configured as Sticky (edge-sensitive) input, it can be cleared by writing zero (one) here when the corresponding Polarity Control bit is zero (one). Data for GPIO3. If this GPIO bit is configured as Sticky (edge-sensitive) input, it can be cleared by writing zero (one) here when the corresponding Polarity Control bit is zero (one). Data for GPIO2. If this GPIO bit is configured as Sticky (edge-sensitive) input, it can be cleared by writing zero (one) here when the corresponding Polarity Control bit is zero (one). Description
[4]
Data4
RW
0x0
[3]
Data3
RW
0x0
[2]
Data2
RW
0x0
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Table 38. AFG GPIO Command Response Format Bit Bitfield Name RW Reset Description Data for GPIO1. If this GPIO bit is configured as Sticky (edge-sensitive) input, it can be cleared by writing zero (one) here when the corresponding Polarity Control bit is zero (one). Data for GPIO0. If this GPIO bit is configured as Sticky (edge-sensitive) input, it can be cleared by writing zero (one) here when the corresponding Polarity Control bit is zero (one).
[1]
Data1
RW
0x0
[0]
Data0
RW
0x0
6.2.14.
AFG GPIOEn
Table 39. AFG GPIOEn Command Verb Format Verb ID Get Set1 F16 716 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 40. AFG GPIOEn Command Response Format Bit [31:5] Bitfield Name Rsvd RW R Reset 0x0 Reserved Enable for GPIO4: 0 = pin is disabled (Hi-Z state); 1 = pin is enabled; behavior determined by GPIO Direction control Enable for GPIO3: 0 = pin is disabled (Hi-Z state); 1 = pin is enabled; behavior determined by GPIO Direction control Enable for GPIO2: 0 = pin is disabled (Hi-Z state); 1 = pin is enabled; behavior determined by GPIO Direction control Description
[4]
Mask4
RW
0x0
[3]
Mask3
RW
0x0
[2]
Mask2
RW
0x0
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Table 40. AFG GPIOEn Command Response Format Bit Bitfield Name RW Reset Description Enable for GPIO1: 0 = pin is disabled (Hi-Z state); 1 = pin is enabled; behavior determined by GPIO Direction control Enable for GPIO0: 0 = pin is disabled (Hi-Z state); 1 = pin is enabled; behavior determined by GPIO Direction control
[1]
Mask1
RW
0x0
[0]
Mask0
RW
0x0
6.2.15.
AFG GPIODir
Table 41. AFG GPIODir Command Verb Format Verb ID Get Set1 F17 717 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 42. AFG GPIODir Command Response Format Bit [31:5] Bitfield Name Rsvd RW R Reset 0x0 Reserved Direction control for GPIO4 0 = GPIO signal is configured as input 1 = GPIO signal is configured as output Direction control for GPIO3 0 = GPIO signal is configured as input 1 = GPIO signal is configured as output Direction control for GPIO2 0 = GPIO signal is configured as input 1 = GPIO signal is configured as output Direction control for GPIO1 0 = GPIO signal is configured as input 1 = GPIO signal is configured as output Direction control for GPIO0 0 = GPIO signal is configured as input 1 = GPIO signal is configured as output Description
[4]
Control4
RW
0x0
[3]
Control3
RW
0x0
[2]
Control2
RW
0x0
[1]
Control1
RW
0x0
[0]
Control0
RW
0x0
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6.2.16.
AFG GPIOWakeEn
Table 43. AFG GPIOWakeEn Command Verb Format Verb ID Get Set1 F18 718 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 44. AFG GPIOWakeEn Command Response Format Bit [31:5] Bitfield Name Rsvd RW R Reset 0x0 Reserved Wake enable for GPIO4: 0 = wake-up event is disabled; 1 = when Azalia link is powered down (RST# is asserted), a wake-up event will trigger a Status Change Request event on the link. Wake enable for GPIO3: 0 = wake-up event is disabled; 1 = when Azalia link is powered down (RST# is asserted), a wake-up event will trigger a Status Change Request event on the link. Wake enable for GPIO2: 0 = wake-up event is disabled; 1 = when Azalia link is powered down (RST# is asserted), a wake-up event will trigger a Status Change Request event on the link. Wake enable for GPIO1: 0 = wake-up event is disabled; 1 = when Azalia link is powered down (RST# is asserted), a wake-up event will trigger a Status Change Request event on the link. Wake enable for GPIO0: 0 = wake-up event is disabled; 1 = when Azalia link is powered down (RST# is asserted), a wake-up event will trigger a Status Change Request event on the link. Description
[4]
W4
RW
0x0
[3]
W3
RW
0x0
[2]
W2
RW
0x0
[1]
W1
RW
0x0
[0]
W0
RW
0x0
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6.2.17.
AFG GPIOUnsol
Table 45. AFG GPIOUnsol Command Verb Format Verb ID Get Set1 F19 719 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 46. AFG GPIOUnsol Command Response Format Bit [31:5] Bitfield Name Rsvd RW R Reset 0x0 Reserved Unsolicited enable mask for GPIO4. If set, and the Unsolicited Response control for this widget has been enabled, an unsolicited response will be sent when GPIO0 is configured as input and changes state. Unsolicited enable mask for GPIO3. If set, and the Unsolicited Response control for this widget has been enabled, an unsolicited response will be sent when GPIO0 is configured as input and changes state. Unsolicited enable mask for GPIO2. If set, and the Unsolicited Response control for this widget has been enabled, an unsolicited response will be sent when GPIO0 is configured as input and changes state. Unsolicited enable mask for GPIO1. If set, and the Unsolicited Response control for this widget has been enabled, an unsolicited response will be sent when GPIO0 is configured as input and changes state. Unsolicited enable mask for GPIO0. If set, and the Unsolicited Response control for this widget has been enabled, an unsolicited response will be sent when GPIO0 is configured as input and changes state. Description
[4]
EnMask4
RW
0x0
[3]
EnMask3
RW
0x0
[2]
EnMask2
RW
0x0
[1]
EnMask1
RW
0x0
[0]
EnMask0
RW
0x0
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6.2.18.
AFG GPIOSticky
Table 47. AFG GPIOSticky Command Verb Format Verb ID Get Set1 F1A 71A Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 48. AFG GPIOSticky Command Response Format Bit [31:5] Bitfield Name Rsvd RW R Reset 0x0 Reserved GPIO4 input type (when configured as input): 0 = Non-Sticky (level-sensitive); 1 = Sticky (edge-sensitive). Sticky inputs are cleared by writing zero to corresponding bit of GPIO Data register. GPIOPolarity determines rising or falling edge sensitivity. GPIO3 input type (when configured as input): 0 = Non-Sticky (level-sensitive); 1 = Sticky (edge-sensitive). Sticky inputs are cleared by writing zero to corresponding bit of GPIO Data register. GPIOPolarity determines rising or falling edge sensitivity. GPIO2 input type (when configured as input): 0 = Non-Sticky (level-sensitive); 1 = Sticky (edge-sensitive). Sticky inputs are cleared by writing zero to corresponding bit of GPIO Data register. GPIOPolarity determines rising or falling edge sensitivity. Description
[4]
Mask4
RW
0x0
[3]
Mask3
RW
0x0
[2]
Mask2
RW
0x0
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Table 48. AFG GPIOSticky Command Response Format Bit Bitfield Name RW Reset Description GPIO1 input type (when configured as input): 0 = Non-Sticky (level-sensitive); 1 = Sticky (edge-sensitive). Sticky inputs are cleared by writing zero to corresponding bit of GPIO Data register. GPIOPolarity determines rising or falling edge sensitivity. GPIO0 input type (when configured as input): 0 = Non-Sticky (level-sensitive); 1 = Sticky (edge-sensitive). Sticky inputs are cleared by writing zero to corresponding bit of GPIO Data register. GPIOPolarity determines rising or falling edge sensitivity.
[1]
Mask1
RW
0x0
[0]
Mask0
RW
0x0
6.2.19.
AFG SubID
Table 49. AFG SubID Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F20 720 721 722 723 Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 50. AFG SubID Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Subsys3 Subsys2 Subsys1 Assembly RW RW RW RW RW Reset 0x00 0x00 0x01 0x00 Assembly ID. (Not applicable to CODEC vendors) Description Subsystem ID. (Any non-zero value)
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6.2.20.
AFG TCKT
Table 51. AFG TCKT Command Verb Format Verb ID Get Set1 FE5 7E5 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 52. AFG TCKT Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd AnaD3Enable TCKT RW R RW RW Reset 0x0 0x0 0x0 Reserved D3 enable signal for analog Test circuit (default reset on) TBD [6:0] Description
6.2.21.
AFG Sply
Table 53. AFG Sply Command Verb Format Verb ID Get Set1 FE6 7E6 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 54. AFG Sply Command Response Format Bit [31:7] Bitfield Name Rsvd RW R Reset 0x0 Reserved 00 = Normal Current; 01 = 80% nominal Analog Current; 10 = 120%nominal Analog Current; 11 = 140% nominal Analog Current Description
[6:5]
IBIAS
RW
0x0
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Table 54. AFG Sply Command Response Format Bit Bitfield Name RW Reset Description 0 = low-level SPDIF Input (special buffer for low level signals) 1 = standard SPDIF Input (for high level signals) Supply Override Control. See Table below: [0] = invert ADC supply; [1] = invert DAC supply; [2] = supply value; [3] = supply override enable
[4]
PinLvl
RW
0x1
[3:0]
SplyOvr
RW
0x0
6.2.22.
AFG DACMode
Table 55. AFG DACMode Command Verb Format Verb ID Get Set1 FEB 7EB Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 56. AFG DACMode Command Response Format Bit [31:7] [6] [5] [4] [3:0] Bitfield Name Rsvd2 ADCMixDAC FadeFast FadeLog Rsvd RW R RW RW RW R Reset 0x0 0x0 0x0 0x0 0x0 Reserved Enable mixing of ADC with DAC signal (for karaoke) Gain ramps at the maximum rate Gain ramping is dB linear instead of voltage linear over time Reserved Description
6.2.23.
AFG GPIOPlrty
Table 57. AFG GPIOPlrty Command Verb Format Verb ID Get Set1 FEE 7EE Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 58. AFG GPIOPlrty Command Response Format Bit [31:5] Bitfield Name Rsvd RW R Reset 0x0 Reserved GPIO4 Polarity; If configured as an output: 0 = inverting, 1 = non-inverting; If configured as a non-sticky input: 0 = inverting, 1 = non-inverting; If configured as a sticky input: 0 = falling events will be detected, 1 = rising events will be detected. GPIO3 Polarity; If configured as an output: 0 = inverting, 1 = non-inverting; If configured as a non-sticky input: 0 = inverting, 1 = non-inverting; If configured as a sticky input: 0 = falling events will be detected, 1 = rising events will be detected. GPIO2 Polarity; If configured as an output: 0 = inverting, 1 = non-inverting; If configured as a non-sticky input: 0 = inverting, 1 = non-inverting; If configured as a sticky input: 0 = falling events will be detected, 1 = rising events will be detected. Description
[4]
GP4
RW
0x1
[3]
GP3
RW
0x1
[2]
GP2
RW
0x1
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PC AUDIO
Table 58. AFG GPIOPlrty Command Response Format Bit Bitfield Name RW Reset Description GPIO1 Polarity; If configured as an output: 0 = inverting, 1 = non-inverting; If configured as a non-sticky input: 0 = inverting, 1 = non-inverting; If configured as a sticky input: 0 = falling events will be detected, 1 = rising events will be detected. GPIO0 Polarity; If configured as an output: 0 = inverting, 1 = non-inverting; If configured as a non-sticky input: 0 = inverting, 1 = non-inverting; If configured as a sticky input: 0 = falling events will be detected, 1 = rising events will be detected.
[1]
GP1
RW
0x1
[0]
GP0
RW
0x1
6.2.24.
AFG GPIODrive
Table 59. AFG GPIODrive Command Verb Format Verb ID Get Set1 FEF 7EF Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 60. AFG GPIODrive Command Response Format Bit [31:5] Bitfield Name Rsvd RW R Reset 0x0 Reserved GPIO4 Drive Mode; 0 = push-pull (drive 0 and 1), 1 = open drain (drive 0, float for 1). GPIO3 Drive Mode; 0 = push-pull (drive 0 and 1), 1 = open drain (drive 0, float for 1). Description
[4]
OD4
RW
0x0
[3]
OD3
RW
0x0
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PC AUDIO
Table 60. AFG GPIODrive Command Response Format Bit Bitfield Name RW Reset Description GPIO2 Drive Mode; 0 = push-pull (drive 0 and 1), 1 = open drain (drive 0, float for 1). GPIO1 Drive Mode; 0 = push-pull (drive 0 and 1), 1 = open drain (drive 0, float for 1). GPIO0 Drive Mode; 0 = push-pull (drive 0 and 1), 1 = open drain (drive 0, float for 1).
[2]
OD2
RW
0x0
[1]
OD1
RW
0x0
[0]
OD0
RW
0x0
6.2.25.
AFG DMic
Table 61. AFG DMic Command Verb Format Verb ID Get Set1 FF0 7F0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 62. AFG DMic Command Response Format Bit [31:4] Bitfield Name Rsvd RW R Reset 0x0 Reserved Selects what phase of the DigMic clock the data should be latched: 0 = rising edge 1 = center of high 2 = falling edge 3 = center of low Selects the DigMic rate: 0 = 4.704 MHz 1 = 3.528 MHz 2 = 2.352 MHz 3 = 1.176 MHz Description
[3:2]
PhAdj
RW
0x0
[1:0]
Rate
RW
0x2
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PC AUDIO
6.3.
DAC0 Node (NID = 0x02)
6.3.1. DAC0 Cnvtr
Table 63. DAC0 Cnvtr Command Verb Format Verb ID Get Set1 A 2 Payload 0000 See bits [15:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 64. DAC0 Cnvtr Command Response Format Bit [31:16] [15] Bitfield Name Rsvd2 StrmType RW R R Reset 0x0 0x0 Reserved Stream Type: only PCM streams are supported by this widget. Sample Base Rate 0 = 48 KHz 1 = 44.1 KHz Sample Base Rate Multiple 000 = 48 KHz / 44.1 KHz or less 001 = x2 010 = Reserved (x3) 011 = x4 100-111 = Reserved Sample Base Rate Divisor 000 = Divide by 1 001 = Divide by 2 010 = Divide by 3 011 = Divide by 4 100 = Divide by 5 101 = Divide by 6 110 = Divide by 7 111 = Divide by 8 Reserved Description
[14]
FrmtSmplRate
RW
0x0
[13:11]
SmplRateMultp
RW
0x0
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
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PC AUDIO
Table 64. DAC0 Cnvtr Command Response Format Bit Bitfield Name RW Reset Description Bits per Sample 000 = 8 bits 001 = 16 bits 010 = 20 bits 011 = 24 bits 100-111 = Reserved Number of Channels Number of channels in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[6:4]
BitsPerSmpl
RW
0x3
[3:0]
NmbrChan
RW
0x1
6.3.2.
DAC0 OutAmpRight
Table 65. DAC0 OutAmpRight Command Verb Format Verb ID Get Set1 B80 390 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 66. DAC0 OutAmpRight Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd Mute Gain RW R RW RW Reset 0x0 0x1 0x7F Reserved 1 = mute is active Amplifier gain step number Description
6.3.3.
DAC0 OutAmpLeft
Table 67. DAC0 OutAmpLeft Command Verb Format Verb ID Get Set1 BA0 3A0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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PC AUDIO
Table 68. DAC0 OutAmpLeft Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd Mute Gain RW R RW RW Reset 0x0 0x1 0x7F Reserved 1 = mute is active Amplifier gain step number Description
6.3.4.
DAC0 WCap
Table 69. DAC0 WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 70. DAC0 WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe RW R R R R R R R R R R R Reset 0x0 0x0 0xD 0x0 0x1 0x1 0x0 0x0 0x0 0x0 0x0 Reserved Widget type = Audio Output Number of sample delays through widget Reserved Left and right channels can be swapped Power State control is supported Widget supports an Analog stream No connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping No format info; use default format parameters from Audio Function node instead Description
[4]
FormatOvrd
R
0x0
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Table 70. DAC0 WCap Command Response Format Bit Bitfield Name RW Reset Description No amplifier info; use default amplifier parameters from Audio Function node instead Output amp No input amp Stereo widget
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x1 0x0 0x1
6.3.5.
DAC0 PwrState
Table 71. DAC0 PwrState Command Verb Format Verb ID Get Set1 F05 705 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 72. DAC0 PwrState Command Response Format Bit [31:8] [7:4] [3:2] Bitfield Name Rsvd2 Act Rsvd1 RW R R R Reset 0x0 0x3 0x0 Reserved PS-Act: Actual power state of referenced node. Reserved PS-Set: Current power setting of referenced node. 00 - Fully on. 01 - Fully on. 10 - Fully on. 11 - Powered down. Description
[1:0]
Set
RW
0x3
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6.3.6.
DAC0 CnvtrID
Table 73. DAC0 CnvtrID Command Verb Format Verb ID Get Set1 F06 706 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 74. DAC0 CnvtrID Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Software-programmable integer representing link stream ID used by the converter widget. By convention stream 0 is reserved as unused. Integer representing lowest channel used by converter. Description
[7:4]
Strm
RW
0x0
[3:0]
Ch
RW
0x0
6.3.7.
DAC0 LR
Table 75. DAC0 LR Command Verb Format Verb ID Get Set1 F0C 70C Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 76. DAC0 LR Command Response Format Bit [31:3] [2] [1:0] Bitfield Name Rsvd2 SwapEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved 1 = enable swapping of left and right channels. Reserved Description
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PC AUDIO
6.4.
DAC1 Node (NID = 0x03)
6.4.1. DAC1 Cnvtr
Table 77. DAC1 Cnvtr Command Verb Format Verb ID Get Set1 A 2 Payload 0000 See bits [15:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 78. DAC1 Cnvtr Command Response Format Bit [31:16] [15] Bitfield Name Rsvd2 StrmType RW R R Reset 0x0 0x0 Reserved Stream Type: only PCM streams are supported by this widget. Sample Base Rate 0 = 48 KHz 1 = 44.1 KHz Sample Base Rate Multiple 000 = 48 KHz / 44.1 KHz or less 001 = x2 010 = Reserved (x3) 011 = x4 100-111 = Reserved Sample Base Rate Divisor 000 = Divide by 1 001 = Divide by 2 010 = Divide by 3 011 = Divide by 4 100 = Divide by 5 101 = Divide by 6 110 = Divide by 7 111 = Divide by 8 Reserved Description
[14]
FrmtSmplRate
RW
0x0
[13:11]
SmplRateMultp
RW
0x0
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
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Table 78. DAC1 Cnvtr Command Response Format Bit Bitfield Name RW Reset Description Bits per Sample 000 = 8 bits 001 = 16 bits 010 = 20 bits 011 = 24 bits 100-111 = Reserved Number of Channels Number of channels in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[6:4]
BitsPerSmpl
RW
0x3
[3:0]
NmbrChan
RW
0x1
6.4.2.
DAC1 OutAmpRight
Table 79. DAC1 OutAmpRight Command Verb Format Verb ID Get Set1 B80 390 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 80. DAC1 OutAmpRight Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd Mute Gain RW R RW RW Reset 0x0 0x1 0x7F Reserved 1 = mute is active Amplifier gain step number Description
6.4.3.
DAC1 OutAmpLeft
Table 81. DAC1 OutAmpLeft Command Verb Format Verb ID Get Set1 BA0 3A0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 82. DAC1 OutAmpLeft Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd Mute Gain RW R RW RW Reset 0x0 0x1 0x7F Reserved 1 = mute is active Amplifier gain step number Description
6.4.4.
DAC1 WCap
Table 83. DAC1 WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 84. DAC1 WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe RW R R R R R R R R R R R Reset 0x0 0x0 0xD 0x0 0x1 0x1 0x0 0x0 0x0 0x0 0x0 Reserved Widget type = Audio Output Number of sample delays through widget Reserved Left and right channels can be swapped Power State control is supported Widget supports an Analog stream No connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping No format info; use default format parameters from Audio Function node instead Description
[4]
FormatOvrd
R
0x0
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Table 84. DAC1 WCap Command Response Format Bit Bitfield Name RW Reset Description No amplifier info; use default amplifier parameters from Audio Function node instead Output amp No input amp Stereo widget
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x1 0x0 0x1
6.4.5.
DAC1 PwrState
Table 85. DAC1 PwrState Command Verb Format Verb ID Get Set1 F05 705 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 86. DAC1 PwrState Command Response Format Bit [31:8] [7:4] [3:2] Bitfield Name Rsvd2 Act Rsvd1 RW R R R Reset 0x0 0x3 0x0 Reserved PS-Act: Actual power state of referenced node. Reserved PS-Set: Current power setting of referenced node. 00 - Fully on. 01 - Fully on. 10 - Fully on. 11 - Powered down. Description
[1:0]
Set
RW
0x3
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6.4.6.
DAC1 CnvtrID
Table 87. DAC1 CnvtrID Command Verb Format Verb ID Get Set1 F06 706 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 88. DAC1 CnvtrID Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Software-programmable integer representing link stream ID used by the converter widget. By convention stream 0 is reserved as unused. Integer representing lowest channel used by converter. Description
[7:4]
Strm
RW
0x0
[3:0]
Ch
RW
0x0
6.4.7.
DAC1 LR
Table 89. DAC1 LR Command Verb Format Verb ID Get Set1 F0C 70C Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 90. DAC1 LR Command Response Format Bit [31:3] [2] [1:0] Bitfield Name Rsvd2 SwapEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved 1 = enable swapping of left and right channels. Reserved Description
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6.5.
DAC2 Node (NID = 0x04)
6.5.1. DAC2 Cnvtr
Table 91. DAC2 Cnvtr Command Verb Format Verb ID Get Set1 A 2 Payload 0000 See bits [15:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 92. DAC2 Cnvtr Command Response Format Bit [31:16] [15] Bitfield Name Rsvd2 StrmType RW R R Reset 0x0 0x0 Reserved Stream Type: only PCM streams are supported by this widget. Sample Base Rate 0 = 48 KHz 1 = 44.1 KHz Sample Base Rate Multiple 000 = 48 KHz / 44.1 KHz or less 001 = x2 010 = Reserved (x3) 011 = x4 100-111 = Reserved Sample Base Rate Divisor 000 = Divide by 1 001 = Divide by 2 010 = Divide by 3 011 = Divide by 4 100 = Divide by 5 101 = Divide by 6 110 = Divide by 7 111 = Divide by 8 Reserved Description
[14]
FrmtSmplRate
RW
0x0
[13:11]
SmplRateMultp
RW
0x0
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
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Table 92. DAC2 Cnvtr Command Response Format Bit Bitfield Name RW Reset Description Bits per Sample 000 = 8 bits 001 = 16 bits 010 = 20 bits 011 = 24 bits 100-111 = Reserved Number of Channels Number of channels in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[6:4]
BitsPerSmpl
RW
0x3
[3:0]
NmbrChan
RW
0x1
6.5.2.
DAC2 OutAmpRight
Table 93. DAC2 OutAmpRight Command Verb Format Verb ID Get Set1 B80 390 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 94. DAC2 OutAmpRight Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd Mute Gain RW R RW RW Reset 0x0 0x1 0x7F Reserved 1 = mute is active Amplifier gain step number Description
6.5.3.
DAC2 OutAmpLeft
Table 95. DAC2 OutAmpLeft Command Verb Format Verb ID Get Set1 BA0 3A0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 96. DAC2 OutAmpLeft Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd Mute Gain RW R RW RW Reset 0x0 0x1 0x7F Reserved 1 = mute is active Amplifier gain step number Description
6.5.4.
DAC2 WCap
Table 97. DAC2 WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 98. DAC2 WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe RW R R R R R R R R R R R Reset 0x0 0x0 0xD 0x0 0x1 0x1 0x0 0x0 0x0 0x0 0x0 Reserved Widget type = Audio Output Number of sample delays through widget Reserved Left and right channels can be swapped Power State control is supported Widget supports an Analog stream No connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping No format info; use default format parameters from Audio Function node instead Description
[4]
FormatOvrd
R
0x0
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Table 98. DAC2 WCap Command Response Format Bit Bitfield Name RW Reset Description No amplifier info; use default amplifier parameters from Audio Function node instead Output amp No input amp Stereo widget
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x1 0x0 0x1
6.5.5.
DAC2 PwrState
Table 99. DAC2 PwrState Command Verb Format Verb ID Get Set1 F05 705 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 100. DAC2 PwrState Command Response Format Bit [31:8] [7:4] [3:2] Bitfield Name Rsvd2 Act Rsvd1 RW R R R Reset 0x0 0x3 0x0 Reserved PS-Act: Actual power state of referenced node. Reserved PS-Set: Current power setting of referenced node. 00 - Fully on. 01 - Fully on. 10 - Fully on. 11 - Powered down. Description
[1:0]
Set
RW
0x3
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6.5.6.
DAC2 CnvtrID
Table 101. DAC2 CnvtrID Command Verb Format Verb ID Get Set1 F06 706 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 102. DAC2 CnvtrID Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Software-programmable integer representing link stream ID used by the converter widget. By convention stream 0 is reserved as unused. Integer representing lowest channel used by converter. Description
[7:4]
Strm
RW
0x0
[3:0]
Ch
RW
0x0
6.5.7.
DAC2 LR
Table 103. DAC2 LR Command Verb Format Verb ID Get Set1 F0C 70C Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 104. DAC2 LR Command Response Format Bit [31:3] [2] [1:0] Bitfield Name Rsvd2 SwapEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved 1 = enable swapping of left and right channels. Reserved Description
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6.6.
DAC3 Node (NID = 0x05)
6.6.1. DAC3 Cnvtr
Table 105. DAC3 Cnvtr Command Verb Format Verb ID Get Set1 A 2 Payload 0000 See bits [15:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 106. DAC3 Cnvtr Command Response Format Bit [31:16] [15] Bitfield Name Rsvd2 StrmType RW R R Reset 0x0 0x0 Reserved Stream Type: only PCM streams are supported by this widget. Sample Base Rate 0 = 48 KHz 1 = 44.1 KHz Sample Base Rate Multiple 000 = 48 KHz / 44.1 KHz or less 001 = x2 010 = Reserved (x3) 011 = x4 100-111 = Reserved Sample Base Rate Divisor 000 = Divide by 1 001 = Divide by 2 010 = Divide by 3 011 = Divide by 4 100 = Divide by 5 101 = Divide by 6 110 = Divide by 7 111 = Divide by 8 Reserved Description
[14]
FrmtSmplRate
RW
0x0
[13:11]
SmplRateMultp
RW
0x0
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
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Table 106. DAC3 Cnvtr Command Response Format Bit Bitfield Name RW Reset Description Bits per Sample 000 = 8 bits 001 = 16 bits 010 = 20 bits 011 = 24 bits 100-111 = Reserved Number of Channels Number of channels in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[6:4]
BitsPerSmpl
RW
0x3
[3:0]
NmbrChan
RW
0x1
6.6.2.
DAC3 OutAmpRight
Table 107. DAC3 OutAmpRight Command Verb Format Verb ID Get Set1 B80 390 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 108. DAC3 OutAmpRight Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd Mute Gain RW R RW RW Reset 0x0 0x1 0x7F Reserved 1 = mute is active Amplifier gain step number Description
6.6.3.
DAC3 OutAmpLeft
Table 109. DAC3 OutAmpLeft Command Verb Format Verb ID Get Set1 BA0 3A0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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PC AUDIO
Table 110. DAC3 OutAmpLeft Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd Mute Gain RW R RW RW Reset 0x0 0x1 0x7F Reserved 1 = mute is active Amplifier gain step number Description
6.6.4.
DAC3 WCap
Table 111. DAC3 WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 112. DAC3 WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe RW R R R R R R R R R R R Reset 0x0 0x0 0xD 0x0 0x1 0x1 0x0 0x0 0x0 0x0 0x0 Reserved Widget type = Audio Output Number of sample delays through widget Reserved Left and right channels can be swapped Power State control is supported Widget supports an Analog stream No connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping No format info; use default format parameters from Audio Function node instead Description
[4]
FormatOvrd
R
0x0
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PC AUDIO
Table 112. DAC3 WCap Command Response Format Bit Bitfield Name RW Reset Description No amplifier info; use default amplifier parameters from Audio Function node instead Output amp No input amp Stereo widget
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x1 0x0 0x1
6.6.5.
DAC3 PwrState
Table 113. DAC3 PwrState Command Verb Format Verb ID Get Set1 F05 705 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 114. DAC3 PwrState Command Response Format Bit [31:8] [7:4] [3:2] Bitfield Name Rsvd2 Act Rsvd1 RW R R R Reset 0x0 0x3 0x0 Reserved PS-Act: Actual power state of referenced node. Reserved PS-Set: Current power setting of referenced node. 00 - Fully on. 01 - Fully on. 10 - Fully on. 11 - Powered down. Description
[1:0]
Set
RW
0x3
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PC AUDIO
6.6.6.
DAC3 CnvtrID
Table 115. DAC3 CnvtrID Command Verb Format Verb ID Get Set1 F06 706 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 116. DAC3 CnvtrID Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Software-programmable integer representing link stream ID used by the converter widget. By convention stream 0 is reserved as unused. Integer representing lowest channel used by converter. Description
[7:4]
Strm
RW
0x0
[3:0]
Ch
RW
0x0
6.6.7.
DAC3 LR
Table 117. DAC3 LR Command Verb Format Verb ID Get Set1 F0C 70C Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 118. DAC3 LR Command Response Format Bit [31:3] [2] [1:0] Bitfield Name Rsvd2 SwapEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved 1 = enable swapping of left and right channels. Reserved Description
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6.7.
DAC4 Node (NID = 0x06)
6.7.1. DAC4 Cnvtr
Table 119. DAC4 Cnvtr Command Verb Format Verb ID Get Set1 A 2 Payload 0000 See bits [15:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 120. DAC4 Cnvtr Command Response Format Bit [31:16] [15] Bitfield Name Rsvd2 StrmType RW R R Reset 0x0 0x0 Reserved Stream Type: only PCM streams are supported by this widget. Sample Base Rate 0 = 48 KHz 1 = 44.1 KHz Sample Base Rate Multiple 000 = 48 KHz / 44.1 KHz or less 001 = x2 010 = Reserved (x3) 011 = x4 100-111 = Reserved Sample Base Rate Divisor 000 = Divide by 1 001 = Divide by 2 010 = Divide by 3 011 = Divide by 4 100 = Divide by 5 101 = Divide by 6 110 = Divide by 7 111 = Divide by 8 Reserved Description
[14]
FrmtSmplRate
RW
0x0
[13:11]
SmplRateMultp
RW
0x0
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
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Table 120. DAC4 Cnvtr Command Response Format Bit Bitfield Name RW Reset Description Bits per Sample 000 = 8 bits 001 = 16 bits 010 = 20 bits 011 = 24 bits 100-111 = Reserved Number of Channels Number of channels in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[6:4]
BitsPerSmpl
RW
0x3
[3:0]
NmbrChan
RW
0x1
6.7.2.
DAC4 OutAmpRight
Table 121. DAC4 OutAmpRight Command Verb Format Verb ID Get Set1 B80 390 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 122. DAC4 OutAmpRight Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd Mute Gain RW R RW RW Reset 0x0 0x1 0x7F Reserved 1 = mute is active Amplifier gain step number Description
6.7.3.
DAC4 OutAmpLeft
Table 123. DAC4 OutAmpLeft Command Verb Format Verb ID Get Set1 BA0 3A0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 124. DAC4 OutAmpLeft Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd Mute Gain RW R RW RW Reset 0x0 0x1 0x7F Reserved 1 = mute is active Amplifier gain step number Description
6.7.4.
DAC4 WCap
Table 125. DAC4 WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 126. DAC4 WCap Command Response Format Bit [31:24] [23:20] Bitfield Name Rsvd2 Type RW R R Reset 0x0 DAC4 Enabled = 0x0 DAC4 Disabled = 0xF 0xD 0x0 0x1 0x1 0x0 0x0 0x0 0x0 0x0 Reserved Widget type = Audio Output Number of sample delays through widget Reserved Left and right channels can be swapped Power State control is supported Widget supports an Analog stream No connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping Description
[19:16] [15:12] [11] [10] [9] [8] [7] [6] [5]
Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe
R R R R R R R R R
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Table 126. DAC4 WCap Command Response Format Bit Bitfield Name RW Reset Description No format info; use default format parameters from Audio Function node instead No amplifier info; use default amplifier parameters from Audio Function node instead Output amp No input amp Stereo widget
[4]
FormatOvrd
R
0x0
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x1 0x0 0x1
6.7.5.
DAC4 PwrState
Table 127. DAC4 PwrState Command Verb Format Verb ID Get Set1 F05 705 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 128. DAC4 PwrState Command Response Format Bit [31:8] [7:4] [3:2] Bitfield Name Rsvd2 Act Rsvd1 RW R R R Reset 0x0 0x3 0x0 Reserved PS-Act: Actual power state of referenced node. Reserved PS-Set: Current power setting of referenced node. 00 - Fully on. 01 - Fully on. 10 - Fully on. 11 - Powered down. Description
[1:0]
Set
RW
0x3
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6.7.6.
DAC4 CnvtrID
Table 129. DAC4 CnvtrID Command Verb Format Verb ID Get Set1 F06 706 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 130. DAC4 CnvtrID Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Software-programmable integer representing link stream ID used by the converter widget. By convention stream 0 is reserved as unused. Integer representing lowest channel used by converter. Description
[7:4]
Strm
RW
0x0
[3:0]
Ch
RW
0x0
6.7.7.
DAC4 LR
Table 131. DAC4 LR Command Verb Format Verb ID Get Set1 F0C 70C Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 132. DAC4 LR Command Response Format Bit [31:3] [2] [1:0] Bitfield Name Rsvd2 SwapEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved 1 = enable swapping of left and right channels. Reserved Description
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6.8.
ADC0 Node (NID = 0x07)
6.8.1. ADC0 Cnvtr
Table 133. ADC0 Cnvtr Command Verb Format Verb ID Get Set1 A 2 Payload 0000 See bits [15:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 134. ADC0 Cnvtr Command Response Format Bit [31:16] [15] Bitfield Name Rsvd2 StrmType RW R R Reset 0x0 0x0 Reserved Stream Type: only PCM streams are supported by this widget. Sample Base Rate 0 = 48 KHz 1 = 44.1 KHz Sample Base Rate Multiple 000 = 48 KHz / 44.1 KHz or less 001 = x2 010 = Reserved (x3) 011 = x4 100-111 = Reserved Sample Base Rate Divisor 000 = Divide by 1 001 = Divide by 2 010 = Divide by 3 011 = Divide by 4 100 = Divide by 5 101 = Divide by 6 110 = Divide by 7 111 = Divide by 8 Reserved Description
[14]
FrmtSmplRate
RW
0x0
[13:11]
SmplRateMultp
RW
0x0
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
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Table 134. ADC0 Cnvtr Command Response Format Bit Bitfield Name RW Reset Description Bits per Sample 000 = 8 bits 001 = 16 bits 010 = 20 bits 011 = 24 bits 100-111 = Reserved Number of Channels Number of channels in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[6:4]
BitsPerSmpl
RW
0x3
[3:0]
NmbrChan
RW
0x1
6.8.2.
ADC0 WCap
Table 135. ADC0 WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 136. ADC0 WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget RW R R R R R R R R R R Reset 0x0 0x1 0xD 0x0 0x0 0x1 0x0 0x1 0x0 0x1 Reserved Widget type = Audio Input Number of sample delays through widget Reserved No left/right swap capability Power State control is supported Widget supports an Analog stream Connection list is present No support for Unsolicited Response Software should query the Processing Controls parameter for this widget. Description
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Table 136. ADC0 WCap Command Response Format Bit [5] Bitfield Name Stripe RW R Reset 0x0 Description No support for striping No format info; use default format parameters from Audio Function node instead No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget
[4]
FormatOvrd
R
0x0
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.8.3.
ADC0 ConLst
Table 137. ADC0 ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 138. ADC0 ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x01 Reserved. Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
6.8.4.
ADC0 ConLstEntry
Table 139. ADC0 ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
IDTTM
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Table 140. ADC0 ConLstEntry Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x00 0x00 0x00 0x1B Description Unused list entry. Unused list entry. Unused list entry. ADC0Mux widget
6.8.5.
ADC0 ProcState
Table 141. ADC0 ProcState Command Verb Format Verb ID Get Set1 F03 703 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 142. ADC0 ProcState Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x0 Reserved High Pass Filter Offset Calculation Disable 0 = Calculation enabled. 1 = Calculation disabled. Reserved Processing State = 00 (OFF): bypass the ADC high pass filter; Processing State = 01, 10, 11 (ON or BENIGN): ADC high pass filter is enabled. Description
[7]
HPFOCDIS
RW
0x0
[6:2]
Rsvd1
R
0x0
[1:0]
ADCHPFByp
RW
0x1
6.8.6.
ADC0 PwrState
Table 143. ADC0 PwrState Command Verb Format Verb ID Get Set1 F05 705 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 144. ADC0 PwrState Command Response Format Bit [31:8] [7:4] [3:2] Bitfield Name Rsvd2 Act Rsvd1 RW R R R Reset 0x0 0x3 0x0 Reserved PS-Act: Actual power state of referenced node. Reserved PS-Set: Current power setting of referenced node. 00 - Fully on. 01 - Fully on. 10 - Fully on. 11 - Powered down (default) Description
[1:0]
Set
RW
0x3
6.8.7.
Table 145. ADC0 CnvtrID Command Verb Format Verb ID Get Set1 F06 706 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 146. ADC0 CnvtrID Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Software-programmable integer representing link stream ID used by the converter widget. By convention stream 0 is reserved as unused. Integer representing lowest channel used by converter Description
[7:4]
Strm
RW
0x0
[3:0]
Ch
RW
0x0
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6.9.
ADC1 Node (NID = 0x08)
6.9.1. ADC1 Cnvtr
Table 147. ADC1 Cnvtr Command Verb Format Verb ID Get Set1 A 2 Payload 0000 See bits [15:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 148. ADC1 Cnvtr Command Response Format Bit [31:16] [15] Bitfield Name Rsvd2 StrmType RW R R Reset 0x0 0x0 Reserved Stream Type: only PCM streams are supported by this widget. Sample Base Rate 0 = 48 KHz 1 = 44.1 KHz Sample Base Rate Multiple 000 = 48 KHz / 44.1 KHz or less 001 = x2 010 = Reserved (x3) 011 = x4 100-111 = Reserved Sample Base Rate Divisor 000 = Divide by 1 001 = Divide by 2 010 = Divide by 3 011 = Divide by 4 100 = Divide by 5 101 = Divide by 6 110 = Divide by 7 111 = Divide by 8 Reserved Description
[14]
FrmtSmplRate
RW
0x0
[13:11]
SmplRateMultp
RW
0x0
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
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Table 148. ADC1 Cnvtr Command Response Format Bit Bitfield Name RW Reset Description Bits per Sample 000 = 8 bits 001 = 16 bits 010 = 20 bits 011 = 24 bits 100-111 = Reserved Number of Channels Number of channels in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[6:4]
BitsPerSmpl
RW
0x3
[3:0]
NmbrChan
RW
0x1
6.9.2.
ADC1 WCap
Table 149. ADC1 WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 150. ADC1 WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget RW R R R R R R R R R R Reset 0x0 0x1 0xD 0x0 0x0 0x1 0x0 0x1 0x0 0x1 Reserved Widget type = Audio Input Number of sample delays through widget Reserved No left/right swap capability Power State control is supported Widget supports an Analog stream Connection list is present No support for Unsolicited Response Software should query the Processing Controls parameter for this widget. Description
IDTTM
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Table 150. ADC1 WCap Command Response Format Bit [5] Bitfield Name Stripe RW R Reset 0x0 Description No support for striping No format info; use default format parameters from Audio Function node instead No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget
[4]
FormatOvrd
R
0x0
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.9.3.
ADC1 ConLst
Table 151. ADC1 ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 152. ADC1 ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x01 Reserved. Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
6.9.4.
ADC1 ConLstEntry
Table 153. ADC1 ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
IDTTM
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Table 154. ADC1 ConLstEntry Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x00 0x00 0x00 0x1C Description Unused list entry. Unused list entry. Unused list entry. ADC1Mux widget
6.9.5.
ADC1 ProcState
Table 155. ADC1 ProcState Command Verb Format Verb ID Get Set1 F03 703 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 156. ADC1 ProcState Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x0 Reserved High Pass Filter Offset Calculation Disable 0 = Calculation enabled. 1 = Calculation disabled. Reserved Processing State = 00 (OFF): bypass the ADC high pass filter; Processing State = 01, 10, 11 (ON or BENIGN): ADC high pass filter is enabled. Description
[7]
HPFOCDIS
RW
0x0
[6:2]
Rsvd1
R
0x0
[1:0]
ADCHPFByp
RW
0x1
6.9.6.
ADC1 PwrState
Table 157. ADC1 PwrState Command Verb Format Verb ID Get Set1 F05 705 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 158. ADC1 PwrState Command Response Format Bit [31:8] [7:4] [3:2] Bitfield Name Rsvd2 Act Rsvd1 RW R R R Reset 0x0 0x3 0x0 Reserved PS-Act: Actual power state of referenced node. Reserved PS-Set: Current power setting of referenced node. 00 - Fully on. 01 - Fully on. 10 - Fully on. 11 - Powered down (default) Description
[1:0]
Set
RW
0x3
6.9.7.
ADC1 CnvtrID
Table 159. ADC1 CnvtrID Command Verb Format Verb ID Get Set1 F06 706 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 160. ADC1 CnvtrID Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Software-programmable integer representing link stream ID used by the converter widget. By convention stream 0 is reserved as unused. Integer representing lowest channel used by converter Description
[7:4]
Strm
RW
0x0
[3:0]
Ch
RW
0x0
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6.10. ADC2 Node (NID = 0x09)
6.10.1. ADC2 Cnvtr
Table 161. ADC2 Cnvtr Command Verb Format Verb ID Get Set1 A 2 Payload 0000 See bits [15:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 162. ADC2 Cnvtr Command Response Format Bit [31:16] [15] Bitfield Name Rsvd2 StrmType RW R R Reset 0x0 0x0 Reserved Stream Type: only PCM streams are supported by this widget. Sample Base Rate 0 = 48 KHz 1 = 44.1 KHz Sample Base Rate Multiple 000 = 48 KHz / 44.1 KHz or less 001 = x2 010 = Reserved (x3) 011 = x4 100-111 = Reserved Sample Base Rate Divisor 000 = Divide by 1 001 = Divide by 2 010 = Divide by 3 011 = Divide by 4 100 = Divide by 5 101 = Divide by 6 110 = Divide by 7 111 = Divide by 8 Reserved Description
[14]
FrmtSmplRate
RW
0x0
[13:11]
SmplRateMultp
RW
0x0
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
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PC AUDIO
Table 162. ADC2 Cnvtr Command Response Format Bit Bitfield Name RW Reset Description Bits per Sample 000 = 8 bits 001 = 16 bits 010 = 20 bits 011 = 24 bits 100-111 = Reserved Number of Channels Number of channels in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[6:4]
BitsPerSmpl
RW
0x3
[3:0]
NmbrChan
RW
0x1
6.10.2.
ADC2 WCap
Table 163. ADC2 WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 164. ADC2 WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap RW R R R R R R R R R Reset 0x0 0x1 0xD 0x0 0x0 0x1 0x0 0x1 0x0 Reserved Widget type = Audio Input Number of sample delays through widget Reserved No left/right swap capability Power State control is supported Widget supports an Analog stream Connection list is present No support for Unsolicited Response Description
IDTTM
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92 IDT CONFIDENTIAL
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PC AUDIO
Table 164. ADC2 WCap Command Response Format Bit [6] [5] Bitfield Name ProcWidget Stripe RW R R Reset 0x1 0x0 Description Software should query the Processing Controls parameter for this widget. No support for striping No format info; use default format parameters from Audio Function node instead No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget
[4]
FormatOvrd
R
0x0
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.10.3.
ADC2 ConLst
Table 165. ADC2 ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 166. ADC2 ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x01 Reserved. Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
6.10.4.
ADC2 ConLstEntry
Table 167. ADC2 ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
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Table 168. ADC2 ConLstEntry Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x00 0x00 0x00 0x1D Description Unused list entry. Unused list entry. Unused list entry. ADC2Mux widget
6.10.5.
ADC2 ProcState
Table 169. ADC2 ProcState Command Verb Format Verb ID Get Set1 F03 703 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 170. ADC2 ProcState Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x0 Reserved High Pass Filter Offset Calculation Disable 0 = Calculation enabled. 1 = Calculation disabled. Reserved Processing State = 00 (OFF): bypass the ADC high pass filter; Processing State = 01, 10, 11 (ON or BENIGN): ADC high pass filter is enabled. Description
[7]
HPFOCDIS
RW
0x0
[6:2]
Rsvd1
R
0x0
[1:0]
ADCHPFByp
RW
0x1
6.10.6.
ADC2 PwrState
Table 171. ADC2 PwrState Command Verb Format Verb ID Get Set1 F05 705 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 172. ADC2 PwrState Command Response Format Bit [31:8] [7:4] [3:2] Bitfield Name Rsvd2 Act Rsvd1 RW R R R Reset 0x0 0x3 0x0 Reserved PS-Act: Actual power state of referenced node. Reserved PS-Set: Current power setting of referenced node. 00 - Fully on. 01 - Fully on. 10 - Fully on. 11 - Powered down (default) Description
[1:0]
Set
RW
0x3
6.10.7.
ADC2 CnvtrID
Table 173. ADC2 CnvtrID Command Verb Format Verb ID Get Set1 F06 706 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 174. ADC2 CnvtrID Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Software-programmable integer representing link stream ID used by the converter widget. By convention stream 0 is reserved as unused. Integer representing lowest channel used by converter Description
[7:4]
Strm
RW
0x0
[3:0]
Ch
RW
0x0
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6.11. SPDIFOut Node (NID = 0x1E)
6.11.1. SPDIFOut Cnvtr
Table 175. SPDIFOut Cnvtr Command Verb Format Verb ID Get Set1 A 2 Payload 0000 See bits [15:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 176. SPDIFOut Cnvtr Command Response Format Bit [31:16] Bitfield Name Rsvd2 RW R Reset 0x0 Reserved Stream Type 0 = PCM 1 = Non-PCM (remaining bits in this verb have other meanings) Sample Base Rate 0 = 48 KHz 1 = 44.1 KHz Sample Base Rate Multiple 000 = 48 KHz / 44.1 KHz or less 001 = x2 010 = Reserved (x3) 011 = x4 100-111 = Reserved Sample Base Rate Divisor 000 = Divide by 1 001 = Divide by 2 010 = Divide by 3 011 = Divide by 4 100 = Divide by 5 101 = Divide by 6 110 = Divide by 7 111 = Divide by 8 Reserved Description
[15]
FrmtNonPCM
RW
0x0
[14]
FrmtSmplRate
RW
0x0
[13:11]
SmplRateMultp
RW
0x0
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
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Table 176. SPDIFOut Cnvtr Command Response Format Bit Bitfield Name RW Reset Description Bits per Sample 000 = 8 bits 001 = 16 bits 010 = 20 bits 011 = 24 bits 100-111 = Reserved Number of Channels Number of channels in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[6:4]
BitsPerSmpl
RW
0x3
[3:0]
NmbrChan
RW
0x1
6.11.2.
SPDIFOut WCap
Table 177. SPDIFOut WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 178. SPDIFOut WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget RW R R R R R R R R R R Reset 0x0 0x0 0x4 0x0 0x0 0x0 0x1 0x0 0x0 0x0 Reserved Widget type = Audio Output Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports a Digital stream No connection list is present No support for Unsolicited Response No Processing Controls parameter Description
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Table 178. SPDIFOut WCap Command Response Format Bit [5] [4] Bitfield Name Stripe FormatOvrd RW R R Reset 0x0 0x1 Description No support for striping Widget contains format info; software should query No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.11.3.
SPDIFOut PCM
Table 179. SPDIFOut PCM Command Verb Format Verb ID Get F00 Payload 0A Response See bitfield table.
Table 180. SPDIFOut PCM Command Response Format Bit [31:21] [20] [19] [18] [17] [16] [15:12] [11] [10] Bitfield Name Rsvd2 B32 B24 B20 B16 B8 Rsvd1 R12 R11 RW R R R R R R R R R Reset 0x0 0x0 0x1 0x1 0x1 0x0 0x0 0x0 0x1 Reserved 32 bit audio formats are NOT supported 24 bit audio formats are supported 20 bit audio formats are supported 16 bit audio formats are supported 8 bit audio formats are NOT supported Reserved 384 KHz rate (8/1*48 KHz) NOT supported 192.0 KHz rate (4/1*48 KHz) supported Description
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Table 180. SPDIFOut PCM Command Response Format Bit [9] [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name R10 R9 R8 R7 R6 R5 R4 R3 R2 R1 RW R R R R R R R R R R Reset 0x1 0x1 0x1 0x1 0x1 0x0 0x0 0x0 0x0 0x0 Description 176.4 KHz rate (4/1*44.1 KHz) supported 96.0 KHz rate (2/1*48 KHz) supported 88.2 KHz rate (2/1*44.1 KHz) supported 48.0 KHz rate supported (REQUIRED) 44.1 KHz rate supported 32.0 KHz rate (2/3*48 KHz) NOT supported 22.05 KHz rate (1/2*44.1 KHz) NOT supported 16.0 KHz rate (1/3*48 KHz) NOT supported 11.025 KHz rate (1/4*44.0 KHz) NOT supported 8.0 KHz rate (1/6*48 KHz) NOT supported
6.11.4.
SPDIFOut Stream
Table 181. SPDIFOut Stream Command Verb Format Verb ID Get F00 Payload 0B Response See bitfield table.
Table 182. SPDIFOut Stream Command Response Format Bit [31:3] [2] [1] [0] Bitfield Name Rsvd NonPCM Float32 PCM RW R R R R Reset 0x0 0x1 0x0 0x1 Reserved Non-PCM data supported. No support for Float32 data. PCM-formatted data supported. Description
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6.11.5.
SPDIFOut CnvtrID
Table 183. SPDIFOut CnvtrID Command Verb Format Verb ID Get Set1 F06 706 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 184. SPDIFOut CnvtrID Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Software-programmable integer representing link stream ID used by the converter widget. By convention stream 0 is reserved as unused. Integer representing lowest channel used by converter Description
[7:4]
Strm
RW
0x0
[3:0]
Ch
RW
0x0
6.11.6.
SPDIFOut DigCnvtr
Table 185. SPDIFOut DigCnvtr Command Verb Format Verb ID Get Set1 Set2 F0D 70D 70E Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h
Table 186. SPDIFOut DigCnvtr Command Response Format Bit [31:16] [15] [14:8] [7] [6] Bitfield Name Rsvd2 Rsvd1 CC L PRO RW R R RW RW RW Reset 0x0 0x0 0x00 0x0 0x0 Reserved Reserved CC[6:0] - Category Code L - Generation Level PRO - Professional Description
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Table 186. SPDIFOut DigCnvtr Command Response Format Bit [5] [4] [3] [2] [1] [0] Bitfield Name AUDIO COPY PRE VCFG V DigEn RW RW RW RW RW RW RW Reset 0x0 0x0 0x0 0x0 0x0 0x0 Description /AUDIO - Non-Audio COPY - Copyright PRE - Preemphasis VCFG - Validity Config V - Validity DigEn - Digital Enable
6.12. SPDIFIn Node (NID = 0x20)
6.12.1. SPDIFIn Cnvtr
Table 187. SPDIFIn Cnvtr Command Verb Format Verb ID Get Set1 A 2 Payload 0000 See bits [15:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 188. SPDIFIn Cnvtr Command Response Format Bit [31:16] Bitfield Name Rsvd2 RW R Reset 0x0 Reserved Stream Type 0 = PCM 1 = Non-PCM (remaining bits in this verb have other meanings) Sample Base Rate 0 = 48 KHz 1 = 44.1 KHz Description
[15]
FrmtNonPCM
RW
0x0
[14]
FrmtSmplRate
RW
0x0
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Table 188. SPDIFIn Cnvtr Command Response Format Bit Bitfield Name RW Reset Description Sample Base Rate Multiple 000 = 48 KHz / 44.1 KHz or less 001 = x2 010 = Reserved (x3) 011 = x4 100-111 = Reserved Sample Base Rate Divisor 000 = Divide by 1 001 = Divide by 2 010 = Divide by 3 011 = Divide by 4 100 = Divide by 5 101 = Divide by 6 110 = Divide by 7 111 = Divide by 8 Reserved Bits per Sample 000 = 8 bits 001 = 16 bits 010 = 20 bits 011 = 24 bits 100-111 = Reserved Number of Channels Number of channels in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[13:11]
SmplRateMultp
RW
0x0
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
[6:4]
BitsPerSmpl
RW
0x3
[3:0]
NmbrChan
RW
0x1
6.12.2.
SPDIFIn WCap
Table 189. SPDIFIn WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
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PC AUDIO
Table 190. SPDIFIn WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe FormatOvrd RW R R R R R R R R R R R R Reset 0x0 0x1 = Enabled 0xF = Disabled 0x4 0x0 0x0 0x0 0x1 0x1 0x0 0x0 0x0 0x1 Reserved Widget type = Audio Input Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports a Digital stream Connection list is present Unsolicited Response is not supported No Processing Controls parameter No support for striping Widget contains format info; software should query No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget Description
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.12.3.
SPDIFIn PCMCap
Table 191. SPDIFIn PCMCap Command Verb Format Verb ID Get F00 Payload 0A Response See bitfield table.
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Table 192. SPDIFIn PCMCap Command Response Format Bit [31:21] [20] [19] [18] [17] [16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd2 B32 B24 B20 B16 B8 Rsvd1 R12 R11 R10 R9 R8 R7 R6 R5 R4 R3 R2 R1 RW R R R R R R R R R R R R R R R R R R R Reset 0x0 0x0 0x1 0x1 0x1 0x0 0x0 0x0 0x0 0x0 0x1 0x0 0x1 0x1 0x0 0x0 0x0 0x0 0x0 Reserved 32 bit audio formats are NOT supported 24 bit audio formats are supported 20 bit audio formats are supported 16 bit audio formats are supported 8 bit audio formats are NOT supported Reserved 384 KHz rate (8/1*48 KHz) NOT supported 192.0 KHz rate (4/1*48 KHz) NOT supported 176.4 KHz rate (4/1*44.1 KHz) NOT supported 96.0 KHz rate (2/1*48 KHz) supported 88.2 KHz rate (2/1*44.1 KHz) NOT supported 48.0 KHz rate supported (REQUIRED) 44.1 KHz rate supported 32.0 KHz rate (2/3*48 KHz) NOT supported 22.05 KHz rate (1/2*44.1 KHz) NOT supported 16.0 KHz rate (1/3*48 KHz) NOT supported 11.025 KHz rate (1/4*44.0 KHz) NOT supported 8.0 KHz rate (1/6*48 KHz) NOT supported Description
6.12.4.
SPDIFIn Stream
Table 193. SPDIFIn Stream Command Verb Format Verb ID Get F00 Payload 0B Response See bitfield table.
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Table 194. SPDIFIn Stream Command Response Format Bit [31:3] [2] [1] [0] Bitfield Name Rsvd NonPCM Float32 PCM RW R R R R Reset 0x0 0x1 0x0 0x1 Reserved Non-PCM data supported. No support for Float32 data. PCM-formatted data supported. Description
6.12.5.
SPDIFIn ConLst
Table 195. SPDIFIn ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 196. SPDIFIn ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x01 Reserved. Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
6.12.6.
SPDIFIn ConLstEntry
Table 197. SPDIFIn ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 198. SPDIFIn ConLstEntry Command Response Format Bit [31:24] [23:16] Bitfield Name ConL3 ConL2 RW R R Reset 0x00 0x00 Description Unused list entry. Unused list entry.
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Table 198. SPDIFIn ConLstEntry Command Response Format Bit [15:8] [7:0] Bitfield Name ConL1 ConL0 RW R R Reset 0x00 0x22 Description Unused list entry. DigIn pin widget
6.12.7.
SPDIFIn CnvtrID
Table 199. SPDIFIn CnvtrID Command Verb Format Verb ID Get Set1 F06 706 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 200. SPDIFIn CnvtrID Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Software-programmable integer representing link stream ID used by the converter widget. By convention stream 0 is reserved as unused. Integer representing lowest channel used by converter Description
[7:4]
Strm
RW
0x0
[3:0]
Ch
RW
0x0
6.12.8.
SPDIFIn DigCnvtr
Table 201. SPDIFIn DigCnvtr Command Verb Format Verb ID Get Set1 Set2 F0D 70D 70E Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h
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Table 202. SPDIFIn DigCnvtr Command Response Format Bit [31:15] [14:8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd2 CC L PRO AUDIO COPY PRE Rsvd1 V DigEn RW R R R R R R R R R RW Reset 0x0 0x00 0x0 0x0 0x0 0x0 0x0 0x0 0x0 0x0 Reserved CC[6:0] - Category Code L - Generation Level PRO - Professional /AUDIO - Non-Audio COPY - Copyright PRE - Preemphasis Reserved (VCFG bit applies only to output streams) V - Validity DigEn - Digital Enable Description
6.12.9.
SPDIFIn VCSR0
Table 203. SPDIFIn VCSR0 Command Verb Format Verb ID Get Set1 FE0 7E0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 204. SPDIFIn VCSR0 Command Response Format Bit Bitfield Name RW Reset Description Recovered sample rate base 0 = 48 KHz 1 = 44.1 KHz Recovered sample rate multiplier 000 = 1X 001 = 2X, all others reserved Reserved
[31]
RcvSmplRate
R
0x0
[30:28]
RcvRateMult
R
0x0
[27:26]
Rsvd
R
0x0
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Table 204. SPDIFIn VCSR0 Command Response Format Bit [25:22] Bitfield Name OrigFS RW R Reset 0x0 Description Original sample rate (IEC spec). Clock accuracy 00 = Level II 01 = Level I 10 = Level III 11 = Reserved Sample Rate 0000 = 44.1 KHz 0010 = 48 KHz 0011 = 32 KHz All other combinations are reserved and shall not be used until further defined (IEC spec). Channel Number (audio channel) 0000 = do not take into account 0001 = A (left channel for stereo channel format) 0010 = B (right channel for stereo channel format) 0011 = C 1111 = O Sample Word Length [2:0] If MaxWrdL = 1: 000 = unspecified 001 = 20 bits 010 = 22 bits 011 = reserved 100 = 23 bits 101 = 24 bits 110 = 21 bits 111 = reserved If MaxWrdL = 0: 000 = unspecified 001 = 16 bits 010 = 18 bits 011 = reserved 100 = 19 bits 101 = 20 bits 110 = 17 bits 111 = reserved Max Word Length 0 = maximum audio sample word length is 20 bits 1 = maximum audio sample word length is 24 bits 0 = normal behavior 1 = disable block size checking for spdif_in.
[21:20]
CA
R
0x0
[19:16]
FS
R
0x0
[15:12]
CN
R
0x0
[11:9]
SmplWrdL
R
0x0
[8]
MaxWrdL
R
0x0
[7]
NOBLKCH
RW
0x0
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Table 204. SPDIFIn VCSR0 Command Response Format Bit [6] Bitfield Name VI RW RW Reset 0x0 Description 0 = Respond to SPDIF_IN Valid tag 1 = Ignore SPDIF_IN valid tag 0 = Auto mute when SPDIF stream marked non PCM 1 = Auto Mute disabled. SPDIF_IN Parity Limit: Loss of DPLL Lock after: 00 = 4 parity errors 01 = 3 parity errors 10 = 2 parity errors 11 = 1 parity errors NEW LOCATION -- was at Register 72h, Page 0, D13:12, moved as part of SPDIF In consolidation SPDIF IN Running 0 = no signal on pin 47 1 = signal on pin 47 NEW LOCATION -- was at Register 72h, Page 0, D2, moved as part of SPDIF In consolidation SPDIF_IN PARITY ERROR. Set to clear. `Overlaps SIPERSTAT'. Overlaps SIPERSTAT. Copyright invert bit.
[5]
AMuteDis
RW
0x0
[4:3]
SPL
RW
0x0
[2]
SPRun
R
0x0
[1] [0]
SIPER COPYINV
RW RW
0x0 0x0
6.13. PortA Node (NID = 0x0A)
6.13.1. PortA WCap
Table 205. PortA WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 206. PortA WCap Command Response Format Bit [31:24] [23:20] [19:16] Bitfield Name Rsvd2 Type Delay RW R R R Reset 0x0 0x4 0x0 Reserved Widget type = Pin Complex Number of sample delays through widget Description
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Table 206. PortA WCap Command Response Format Bit [15:12] [11] [10] [9] [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe FormatOvrd AmpParOvrd OutAmpPrsnt InAmpPrsnt Stereo RW R R R R R R R R R R R R R Reset 0x0 0x0 0x0 0x0 0x1 0x1 0x0 0x0 0x0 0x0 0x0 0x0 0x1 Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present Unsolicited Response is supported No Processing Controls parameter No support for striping N/A for pin complex No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget Description
6.13.2.
PortA PinCap
Table 207. PortA PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
Table 208. PortA PinCap Command Response Format Bit [31:17] [16] Bitfield Name Rsvd2 EapdCap RW R R Reset 0x0 0x0 Reserved This widget does not control EAPD pin Description
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Table 208. PortA PinCap Command Response Format Bit Bitfield Name RW Reset Description VRef generation is supported by this pin complex, and the following voltages can be produced on the associated VRef pin: 80% Avdd; 50% Avdd; GND; Hi-Z (required since pin complex is output capable) Reserved Pin complex does not have balanced pins. Pin complex is input capable. Pin complex is output capable. Pin complex has headphone amplifier. Pin complex can perform Presence Detect. Trigger is required for impedance measurement Pin complex supports impedance sense.
[15:8]
VrefCntrl
R
0x17
[7] [6] [5] [4] [3] [2] [1] [0]
Rsvd1 BalancedIO InCap OutCap HdphDrvCap PresDtctCap TrigRqd ImpSenseCap
R R R R R R R R
0x0 0x0 0x1 0x1 0x1 0x1 0x1 0x1
6.13.3.
PortA ConLst
Table 209. PortA ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 210. PortA ConLst Command Response Format Bit [31:8] [7] Bitfield Name Rsvd LForm RW R R Reset 0x0 0x0 0x03 = Enabled 0x02 = Disabled Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
[6:0]
ConL
R
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6.13.4.
PortA ConLstEntry
Table 211. PortA ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 212. PortA ConLstEntry Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x00 0x06 = Enabled 0x00 = Disabled 0x03 0x02 Description Unused list entry. DAC4 Converter widget DAC1 Converter widget DAC0 Converter widget
6.13.5.
PortA ConSelectCtrl
Table 213. PortA ConSelectCtrl Command Verb Format Verb ID Get Set1 F01 701 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 214. PortA ConSelectCtrl Command Response Format Bit [31:2] [1:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. Description
6.13.6.
PortA PinWCntrl
Table 215. PortA PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 216. PortA PinWCntrl Command Response Format Bit [31:8] [7] [6] [5] [4:3] Bitfield Name Rsvd2 HPhnEn OutEn InEn Rsvd1 RW R RW RW RW R Reset 0x0 0x0 0x0 0x0 0x0 Reserved 1 = enable the low impedance amplifier associated with the output. 1 = (CODEC) output path of Pin Widget is enabled 1 = (CODEC) input path of Pin Widget is enabled Reserved VRefEn: Selects one of the possible states for the VRef signal associated with the Pin Widget. If the value written to this control does not correspond to a supported value defined in the VRefCntrl field of the Pin Capabilities parameter (0C), then this control will take the value of 000b (Hi-Z). Description
[2:0]
VRefEn
RW
0x0
6.13.7.
PortA UnsolResp
Table 217. PortA UnsolResp Command Verb Format Verb ID Get Set1 F08 708 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 218. PortA UnsolResp Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x00 Reserved Allow generation of Unsolicited Responses. Unsolicited response events occur upon jack-insertion OR completion of a Jack-Sense cycle. Reserved Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node. Description
[7]
En
RW
0x0
[6]
Rsvd1
R
0x0
[5:0]
Tag
RW
0x00
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6.13.8.
PortA ChSense
Table 219. PortA ChSense Command Verb Format Verb ID Get Set1 Set2 F09 709 709 Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h
Table 220. PortA ChSense Command Response Format Bit [31] Bitfield Name PresDtct RW R Reset 0x0 Description 1 = something is plugged into jack associated with Pin Complex. Measured impedance of the widget. A value of all 1's indicates that a valid sense reading is not available, or the sense measurement is busy if it has been recently triggered. Set 1 = perform impedance sensing on right channel or ring of the connector Set 0 = perform impedance sensing on left channel or tip of the connector
[30:0]
Impedance
R
0x7FFF_FFFF
[0]
RightCh
W
0x0
[0]
LeftCh
W
0x0
6.13.9.
PortA ConfigDefault
Table 221. PortA ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
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Table 222. PortA ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x02 Description Port Connectivity = Jack; Location = Mainboard front. Default Device = HP Out; Connection Type = 1/8 inch jack. Color = Green; Misc = No jack detect override. Association = 2h; Sequence = 0h.
[23:16]
Config3
RW
0x21
[15:8]
Config2
RW
0x40
[7:0]
Config1
RW
0x20
6.14. PortB Node (NID = 0x0B)
6.14.1. PortB WCap
Table 223. PortB WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 224. PortB WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap RW R R R R R R R R R Reset 0x0 0x4 0x0 0x0 0x0 0x0 0x0 0x1 0x1 Reserved Widget type = Pin Complex Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present Unsolicited Response is supported Description
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Table 224. PortB WCap Command Response Format Bit [6] [5] [4] [3] [2] [1] [0] Bitfield Name ProcWidget Stripe FormatOvrd AmpParOvrd OutAmpPrsnt InAmpPrsnt Stereo RW R R R R R R R Reset 0x0 0x0 0x0 0x0 0x0 0x0 0x1 Description No Processing Controls parameter No support for striping N/A for pin complex No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget
6.14.2.
PortB PinCap
Table 225. PortB PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
Table 226. PortB PinCap Command Response Format Bit [31:17] [16] Bitfield Name Rsvd2 EapdCap RW R R Reset 0x0 0x0 Reserved This widget does not control EAPD pin VRef generation is supported by this pin complex, and the following voltages can be produced on the associated VRef pin: 80% Avdd; 50% Avdd; GND; Hi-Z (required since pin complex is output capable) Reserved Pin complex does not have balanced pins. Pin complex is input capable. Pin complex is output capable. Description
[15:8]
VrefCntrl
R
0x17
[7] [6] [5] [4]
Rsvd1 BalancedIO InCap OutCap
R R R R
0x0 0x0 0x1 0x1
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Table 226. PortB PinCap Command Response Format Bit [3] [2] [1] [0] Bitfield Name HdphDrvCap PresDtctCap TrigRqd ImpSenseCap RW R R R R Reset 0x1 0x1 0x1 0x1 Description Pin has a headphone amplifier. Pin complex can perform Presence Detect. Trigger is required for impedance measurement Pin complex supports impedance sense.
6.14.3.
PortB ConLst
Table 227. PortB ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 228. PortB ConLst Command Response Format Bit [31:8] [7] Bitfield Name Rsvd LForm RW R R Reset 0x0 0x0 0x03 = Enabled DAC4 0x02 = Disabled DAC4 Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
[6:0]
ConL
R
6.14.4.
PortB ConLstEntry
Table 229. PortB ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
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Table 230. PortB ConLstEntry Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x00 0x06 = Enabled 0x00 = Disabled 0x03 0x02 Description Unused list entry. DAC4 Converter widget DAC1 Converter widget DAC0 Converter widget
6.14.5.
PortB ConSelectCtrl
Table 231. PortB ConSelectCtrl Command Verb Format Verb ID Get Set1 F01 701 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 232. PortB ConSelectCtrl Command Response Format Bit [31:2] [1:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. Description
6.14.6.
PortB PinWCntrl
Table 233. PortB PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
IDTTM
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Table 234. PortB PinWCntrl Command Response Format Bit [31:8] [7] [6] [5] [4:3] Bitfield Name Rsvd2 HPhnEn OutEn InEn Rsvd1 RW R RW RW RW R Reset 0x0 0x0 0x0 0x0 0x0 Reserved 1 = enable the low impedance amplifier associated with the output. 1 = (CODEC) output path of Pin Widget is enabled 1 = (CODEC) input path of Pin Widget is enabled Reserved VRefEn: Selects one of the possible states for the VRef signal associated with the Pin Widget. If the value written to this control does not correspond to a supported value defined in the VRefCntrl field of the Pin Capabilities parameter (0C), then this control will take the value of 000b (Hi-Z). Description
[2:0]
VRefEn
RW
0x0
6.14.7.
PortB UnsolResp
Table 235. PortB UnsolResp Command Verb Format Verb ID Get Set1 F08 708 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 236. PortB UnsolResp Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x00 Reserved Allow generation of Unsolicited Responses. Unsolicited response events occur upon jack-insertion OR completion of a Jack-Sense cycle. Reserved Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node. Description
[7]
En
RW
0x0
[6]
Rsvd1
R
0x0
[5:0]
Tag
RW
0x00
IDTTM
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6.14.8.
PortB ChSense
Table 237. PortB ChSense Command Verb Format Verb ID Get Set1 Set2 F09 709 709 Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h
Table 238. PortB ChSense Command Response Format Bit [31] Bitfield Name PresDtct RW R Reset 0x0 Description 1 = something is plugged into jack associated with Pin Complex. Measured impedance of the widget. A value of all 1's indicates that a valid sense reading is not available, or the sense measurement is busy if it has been recently triggered. Set 1 = perform impedance sensing on right channel or ring of the connector Set 0 = perform impedance sensing on left channel or tip of the connector
[30:0]
Impedance
R
0x7FFF_FFFF
[0]
RightCh
W
0x0
[0]
LeftCh
W
0x0
6.14.9.
PortB ConfigDefault
Table 239. PortB ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
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Table 240. PortB ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x02 Description Port Connectivity = Jack; Location = Mainboard front. Default Device = Mic In; Connection Type = 1/8 inch jack. Color = Pink; Misc = No jack detect override. Association = 8h; Sequence = 0h.
[23:16]
Config3
RW
0xA1
[15:8]
Config2
RW
0x90
[7:0]
Config1
RW
0x80
6.15. PortC Node (NID = 0x0C)
6.15.1. PortC WCap
Table 241. PortC WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 242. PortC WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap RW R R R R R R R R R Reset 0x0 0x4 0x0 0x0 0x0 0x0 0x0 0x1 0x1 Reserved Widget type = Pin Complex Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present Unsolicited Response is supported Description
IDTTM
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Table 242. PortC WCap Command Response Format Bit [6] [5] [4] Bitfield Name ProcWidget Stripe FormatOvrd RW R R R Reset 0x0 0x0 0x0 Description No Processing Controls parameter No support for striping N/A for pin complex No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.15.2.
PortC PinCap
Table 243. PortC PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
Table 244. PortC PinCap Command Response Format Bit [31:17] [16] Bitfield Name Rsvd2 EapdCap RW R R Reset 0x0 0x0 Reserved This widget does not control EAPD pin VRef generation is supported by this pin complex, and the following voltages can be produced on the associated VRef pin: 80% Avdd; 50% Avdd; GND; Hi-Z (required since pin complex is output capable) Reserved Pin complex does not have balanced pins. Pin complex is input capable. Pin complex is output capable. Description
[15:8]
VrefCntrl
R
0x17
[7] [6] [5] [4]
Rsvd1 BalancedIO InCap OutCap
R R R R
0x0 0x0 0x1 0x1
IDTTM
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Table 244. PortC PinCap Command Response Format Bit [3] [2] [1] [0] Bitfield Name HdphDrvCap PresDtctCap TrigRqd ImpSenseCap RW R R R R Reset 0x0 0x1 0x1 0x1 Description Pin does not have a headphone amplifier. Pin complex can perform Presence Detect. Trigger is required for impedance measurement Pin complex supports impedance sense.
6.15.3.
PortC ConLst
Table 245. PortC ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 246. PortC ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x01 Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
6.15.4.
PortC ConLstEntry
Table 247. PortC ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 248. PortC ConLstEntry Command Response Format Bit [31:24] [23:16] Bitfield Name ConL3 ConL2 RW R R Reset 0x00 0x00 Description Unused list entry. Unused list entry.
IDTTM
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Table 248. PortC ConLstEntry Command Response Format Bit [15:8] [7:0] Bitfield Name ConL1 ConL0 RW R R Reset 0x00 0x03 Description Unused list entry. DAC1 Converter widget
6.15.5.
PortC PinWCntrl
Table 249. PortC PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 250. PortC PinWCntrl Command Response Format Bit [31:7] [6] Bitfield Name Rsvd2 OutEn RW R RW Reset 0x0 0x0 Reserved 1 = (CODEC) output path of Pin Widget is enabled 1 = (CODEC) input path of Pin Widget is enabled Reserved VRefEn: Selects one of the possible states for the VRef signal associated with the Pin Widget. If the value written to this control does not correspond to a supported value defined in the VRefCntrl field of the Pin Capabilities parameter (0C), then this control will take the value of 000b (Hi-Z). Description
[5] [4:3]
InEn Rsvd1
RW R
0x0 0x0
[2:0]
VRefEn
RW
0x0
6.15.6.
PortC UnsolResp
Table 251. PortC UnsolResp Command Verb Format Verb ID Get Set1 F08 708 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
IDTTM
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Table 252. PortC UnsolResp Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x00 Reserved Allow generation of Unsolicited Responses. Unsolicited response events occur upon jack-insertion OR completion of a Jack-Sense cycle. Reserved Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node. Description
[7]
En
RW
0x0
[6]
Rsvd1
R
0x0
[5:0]
Tag
RW
0x00
6.15.7.
PortC ChSense
Table 253. PortC ChSense Command Verb Format Verb ID Get Set1 Set2 F09 709 709 Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h
Table 254. PortC ChSense Command Response Format Bit [31] Bitfield Name PresDtct RW R Reset 0x0 Description 1 = something is plugged into jack associated with Pin Complex. Measured impedance of the widget. A value of all 1's indicates that a valid sense reading is not available, or the sense measurement is busy if it has been recently triggered. Set 1 = perform impedance sensing on right channel or ring of the connector Set 0 = perform impedance sensing on left channel or tip of the connector
[30:0]
Impedance
R
0x7FFF_FFFF
[0]
RightCh
W
0x0
[0]
LeftCh
W
0x0
IDTTM
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6.15.8.
PortC ConfigDefault
Table 255. PortC ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 256. PortC ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x01 Description Port Connectivity = Jack; Location = Mainboard rear. Default Device = Line In; Connection Type = 1/8 inch jack. Color = Blue; Misc = No jack detect override. Association = 4h; Sequence = Eh.
[23:16]
Config3
RW
0x81
[15:8]
Config2
RW
0x30
[7:0]
Config1
RW
0x4E
6.16. PortD Node (NID = 0x0D)
6.16.1. PortD WCap
Table 257. PortD WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
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Table 258. PortD WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe FormatOvrd RW R R R R R R R R R R R R Reset 0x0 0x4 0x0 0x0 0x0 0x0 0x0 0x1 0x1 0x0 0x0 0x0 Reserved Widget type = Pin Complex Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present Unsolicited Response is supported No Processing Controls parameter No support for striping N/A for pin complex No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget Description
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.16.2.
PortD PinCap
Table 259. PortD PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
IDTTM
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Table 260. PortD PinCap Command Response Format Bit [31:17] [16] Bitfield Name Rsvd2 EapdCap RW R R Reset 0x0 0x0 Reserved This widget does not control EAPD pin VRef generation is supported by this pin complex, and the following voltages can be produced on the associated VRef pin: 80% Avdd; 50% Avdd; GND; Hi-Z (required since pin complex is output capable) Reserved Pin complex does not have balanced pins. Pin complex is input capable. Pin complex is output capable. Pin complex has headphone amplifier. Pin complex can perform Presence Detect. Trigger is required for impedance measurement Pin complex supports impedance sense. Description
[15:8]
VrefCntrl
R
0x17
[7] [6] [5] [4] [3] [2] [1] [0]
Rsvd1 BalancedIO InCap OutCap HdphDrvCap PresDtctCap TrigRqd ImpSenseCap
R R R R R R R R
0x0 0x0 0x1 0x1 0x1 0x1 0x1 0x1
6.16.3.
PortD ConLst
Table 261. PortD ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 262. PortD ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x01 Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
IDTTM
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6.16.4.
PortD ConLstEntry
Table 263. PortD ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 264. PortD ConLstEntry Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x00 0x00 0x00 0x02 Description Unused list entry. Unused list entry. Unused list entry. DAC0 Converter widget
6.16.5.
PortD PinWCntrl
Table 265. PortD PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 266. PortD PinWCntrl Command Response Format Bit [31:8] [7] Bitfield Name Rsvd2 HPhnEn RW R RW Reset 0x0 0x0 Reserved 1 = enable the low impedance amplifier associated with the output. 1 = (CODEC) output path of Pin Widget is enabled 1 = (CODEC) input path of Pin Widget is enabled Description
[6]
OutEn
RW
0x0
[5]
InEn
RW
0x0
IDTTM
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Table 266. PortD PinWCntrl Command Response Format Bit [4:3] Bitfield Name Rsvd1 RW R Reset 0x0 Reserved VRefEn: Selects one of the possible states for the VRef signal associated with the Pin Widget. If the value written to this control does not correspond to a supported value defined in the VRefCntrl field of the Pin Capabilities parameter (0C), then this control will take the value of 000b (Hi-Z). Description
[2:0]
VRefEn
RW
0x0
6.16.6.
PortD UnsolResp
Table 267. PortD UnsolResp Command Verb Format Verb ID Get Set1 F08 708 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 268. PortD UnsolResp Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x00 Reserved Allow generation of Unsolicited Responses. Unsolicited response events occur upon jack-insertion OR completion of a Jack-Sense cycle. Reserved Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node. Description
[7]
En
RW
0x0
[6]
Rsvd1
R
0x0
[5:0]
Tag
RW
0x00
6.16.7.
PortD ChSense
Table 269. PortD ChSense Command Verb Format Verb ID Get F09 Payload 00 Response See bitfield table.
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Table 269. PortD ChSense Command Verb Format Verb ID Set1 Set2 709 709 Payload See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response 0000_0000h 0000_0000h
Table 270. PortD ChSense Command Response Format Bit [31] Bitfield Name PresDtct RW R Reset 0x0 Description 1 = something is plugged into jack associated with Pin Complex. Measured impedance of the widget. A value of all 1's indicates that a valid sense reading is not available, or the sense measurement is busy if it has been recently triggered. Set 1 = perform impedance sensing on right channel or ring of the connector Set 0 = perform impedance sensing on left channel or tip of the connector
[30:0]
Impedance
R
0x7FFF_FFFF
[0]
RightCh
W
0x0
[0]
LeftCh
W
0x0
6.16.8.
PortD ConfigDefault
Table 271. PortD ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
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Table 272. PortD ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x01 Description Port Connectivity = Jack; Location = Mainboard rear. Default Device = Line Out; Connection Type = 1/8 inch jack. Color = Green; Misc = No jack detect override. Association = 1h; Sequence = 0h.
[23:16]
Config3
RW
0x01
[15:8]
Config2
RW
0x40
[7:0]
Config1
RW
0x10
6.17. PortE Node (NID = 0x0E)
6.17.1. PortE WCap
Table 273. PortE WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 274. PortE WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap RW R R R R R R R R R Reset 0x0 0x4 0x0 0x0 0x0 0x0 0x0 0x1 0x1 Reserved Widget type = Pin Complex Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present Unsolicited Response is supported Description
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Table 274. PortE WCap Command Response Format Bit [6] [5] [4] Bitfield Name ProcWidget Stripe FormatOvrd RW R R R Reset 0x0 0x0 0x0 Description No Processing Controls parameter No support for striping N/A for pin complex No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.17.2.
PortE PinCap
Table 275. PortE PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
Table 276. PortE PinCap Command Response Format Bit [31:17] [16] Bitfield Name Rsvd2 EapdCap RW R R Reset 0x0 0x0 Reserved This widget does not control EAPD pin VRef generation is supported by this pin complex, and the following voltages can be produced on the associated VRef pin: 80% Avdd; 50% Avdd; GND; Hi-Z (required since pin complex is output capable) Reserved Pin complex does not have balanced pins. Pin complex is input capable. Pin complex is output capable. Description
[15:8]
VrefCntrl
R
0x17
[7] [6] [5] [4]
Rsvd1 BalancedIO InCap OutCap
R R R R
0x0 0x0 0x1 0x1
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Table 276. PortE PinCap Command Response Format Bit [3] [2] [1] [0] Bitfield Name HdphDrvCap PresDtctCap TrigRqd ImpSenseCap RW R R R R Reset 0x0 0x1 0x1 0x1 Description Pin does not have a headphone amplifier. Pin complex can perform Presence Detect. Trigger is required for impedance measurement Pin complex supports impedance sense.
6.17.3.
PortE ConLst
Table 277. PortE ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 278. PortE ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x01 Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
6.17.4.
PortE ConLstEntry
Table 279. PortE ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 280. PortE ConLstEntry Command Response Format Bit [31:24] [23:16] Bitfield Name ConL3 ConL2 RW R R Reset 0x00 0x00 Description Unused list entry. Unused list entry.
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Table 280. PortE ConLstEntry Command Response Format Bit [15:8] [7:0] Bitfield Name ConL1 ConL0 RW R R Reset 0x00 0x04 Description Unused list entry. DAC2 Converter widget
6.17.5.
PortE PinWCntrl
Table 281. PortE PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 282. PortE PinWCntrl Command Response Format Bit [31:7] [6] Bitfield Name Rsvd2 OutEn RW R RW Reset 0x0 0x0 Reserved 1 = (CODEC) output path of Pin Widget is enabled 1 = (CODEC) input path of Pin Widget is enabled Reserved VRefEn: Selects one of the possible states for the VRef signal associated with the Pin Widget. If the value written to this control does not correspond to a supported value defined in the VRefCntrl field of the Pin Capabilities parameter (0C), then this control will take the value of 000b (Hi-Z). Description
[5] [4:3]
InEn Rsvd1
RW R
0x0 0x0
[2:0]
VRefEn
RW
0x0
6.17.6.
PortE UnsolResp
Table 283. PortE UnsolResp Command Verb Format Verb ID Get Set1 F08 708 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 284. PortE UnsolResp Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x00 Reserved Allow generation of Unsolicited Responses. Unsolicited response events occur upon jack-insertion OR completion of a Jack-Sense cycle. Reserved Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node. Description
[7]
En
RW
0x0
[6]
Rsvd1
R
0x0
[5:0]
Tag
RW
0x00
6.17.7.
PortE ChSense
Table 285. PortE ChSense Command Verb Format Verb ID Get Set1 Set2 F09 709 709 Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h
Table 286. PortE ChSense Command Response Format Bit [31] Bitfield Name PresDtct RW R Reset 0x0 Description 1 = something is plugged into jack associated with Pin Complex. Measured impedance of the widget. A value of all 1's indicates that a valid sense reading is not available, or the sense measurement is busy if it has been recently triggered. Set 1 = perform impedance sensing on right channel or ring of the connector Set 0 = perform impedance sensing on left channel or tip of the connector
[30:0]
Impedance
R
0x7FFF_FFFF
[0]
RightCh
W
0x0
[0]
LeftCh
W
0x0
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6.17.8.
PortE ConfigDefault
Table 287. PortE ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 288. PortE ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x01 Description Port Connectivity = Jack; Location = Mainboard rear. Default Device = Mic In; Connection Type = 1/8 inch jack. Color = Pink; Misc = No jack detect override. Association = 4h; Sequence = 0h.
[23:16]
Config3
RW
0xA1
[15:8]
Config2
RW
0x90
[7:0]
Config1
RW
0x40
6.18. PortF Node (NID = 0x0F)
6.18.1. PortF WCap
Table 289. PortF WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
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Table 290. PortF WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe FormatOvrd RW R R R R R R R R R R R R Reset 0x0 0x4 0x0 0x0 0x0 0x0 0x0 0x1 0x1 0x0 0x0 0x0 Reserved Widget type = Pin Complex Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present Unsolicited Response is supported No Processing Controls parameter No support for striping N/A for pin complex No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget Description
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.18.2.
PortF PinCap
Table 291. PortF PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
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Table 292. PortF PinCap Command Response Format Bit [31:17] [16] Bitfield Name Rsvd2 EapdCap RW R R Reset 0x0 0x0 Reserved This widget does not control EAPD pin VRef generation is supported by this pin complex, and the following voltages can be produced on the associated VRef pin: 80% Avdd; 50% Avdd; GND; Hi-Z (required since pin complex is output capable) Reserved Pin complex does not have balanced pins. Pin complex is input capable. Pin complex is output capable. Pin does not have a headphone amplifier. Pin complex can perform Presence Detect. Trigger is required for impedance measurement Pin complex supports impedance sense. Description
[15:8]
VrefCntrl
R
0x17
[7] [6] [5] [4] [3] [2] [1] [0]
Rsvd1 BalancedIO InCap OutCap HdphDrvCap PresDtctCap TrigRqd ImpSenseCap
R R R R R R R R
0x0 0x0 0x1 0x1 0x0 0x1 0x1 0x1
6.18.3.
PortF ConLst
Table 293. PortF ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 294. PortF ConLst Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Description
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Table 294. PortF ConLst Command Response Format Bit [7] [6:0] Bitfield Name LForm ConL RW R R Reset 0x0 0x01 Description Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list.
6.18.4.
PortF ConLstEntry
Table 295. PortF ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 296. PortF ConLstEntry Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x00 0x00 0x00 0x05 Description Unused list entry. Unused list entry. Unused list entry. DAC3 Converter widget
6.18.5.
PortF PinWCntrl
Table 297. PortF PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 298. PortF PinWCntrl Command Response Format Bit [31:7] [6] Bitfield Name Rsvd2 OutEn RW R RW Reset 0x0 0x0 Reserved 1 = (CODEC) output path of Pin Widget is enabled Description
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Table 298. PortF PinWCntrl Command Response Format Bit [5] [4:3] Bitfield Name InEn Rsvd1 RW RW R Reset 0x0 0x0 Description 1 = (CODEC) input path of Pin Widget is enabled Reserved VRefEn: Selects one of the possible states for the VRef signal associated with the Pin Widget. If the value written to this control does not correspond to a supported value defined in the VRefCntrl field of the Pin Capabilities parameter (0C), then this control will take the value of 000b (Hi-Z).
[2:0]
VRefEn
RW
0x0
6.18.6.
PortF UnsolResp
Table 299. PortF UnsolResp Command Verb Format Verb ID Get Set1 F08 708 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 300. PortF UnsolResp Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x00 Reserved Allow generation of Unsolicited Responses. Unsolicited response events occur upon jack-insertion OR completion of a Jack-Sense cycle. Reserved Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node. Description
[7]
En
RW
0x0
[6]
Rsvd1
R
0x0
[5:0]
Tag
RW
0x00
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6.18.7.
PortF ChSense
Table 301. PortF ChSense Command Verb Format Verb ID Get Set1 Set2 F09 709 709 Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h
Table 302. PortF ChSense Command Response Format Bit [31] Bitfield Name PresDtct RW R Reset 0x0 Description 1 = something is plugged into jack associated with Pin Complex. Measured impedance of the widget. A value of all 1's indicates that a valid sense reading is not available, or the sense measurement is busy if it has been recently triggered. Set 1 = perform impedance sensing on right channel or ring of the connector Set 0 = perform impedance sensing on left channel or tip of the connector
[30:0]
Impedance
R
0x7FFF_FFFF
[0]
RightCh
W
0x0
[0]
LeftCh
W
0x0
6.18.8.
PortF ConfigDefault
Table 303. PortF ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
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Table 304. PortF ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x01 Description Port Connectivity = Jack; Location = Mainboard rear. Default Device = Line Out; Connection Type = 1/8 inch jack. Color = Black; Misc = No jack detect override. Association = 1h; Sequence = 2h.
[23:16]
Config3
RW
0x01
[15:8]
Config2
RW
0x10
[7:0]
Config1
RW
0x12
6.19. PortG Node (NID = 0x10)
6.19.1. PortG WCap
Table 305. PortG WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 306. PortG WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap RW R R R R R R R R R Reset 0x0 0x4 0x0 0x0 0x0 0x0 0x0 0x1 0x1 Reserved Widget type = Pin Complex Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present Unsolicited Response is supported Description
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Table 306. PortG WCap Command Response Format Bit [6] [5] [4] Bitfield Name ProcWidget Stripe FormatOvrd RW R R R Reset 0x0 0x0 0x0 Description No Processing Controls parameter No support for striping N/A for pin complex No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.19.2.
PortG PinCap
Table 307. PortG PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
Table 308. PortG PinCap Command Response Format Bit [31:17] [16] [15:8] [7] [6] [5] [4] [3] Bitfield Name Rsvd2 EapdCap VrefCntrl Rsvd1 BalancedIO InCap OutCap HdphDrvCap RW R R R R R R R R Reset 0x0 0x0 0x00 0x0 0x0 0x1 0x1 0x0 Reserved This widget does not control EAPD pin VRef generation not supported by this pin complex. Reserved Pin complex does not have balanced pins. Pin complex is input capable. Pin complex is output capable. Pin does not have a headphone amplifier. Description
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Table 308. PortG PinCap Command Response Format Bit [2] [1] [0] Bitfield Name PresDtctCap TrigRqd ImpSenseCap RW R R R Reset 0x1 0x1 0x1 Description Pin complex can perform Presence Detect. Trigger is required for impedance measurement Pin complex supports impedance sense.
6.19.3.
PortG ConLst
Table 309. PortG ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 310. PortG ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x01 Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
6.19.4.
PortG ConLstEntry
Table 311. PortG ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 312. PortG ConLstEntry Command Response Format Bit [31:24] [23:16] Bitfield Name ConL3 ConL2 RW R R Reset 0x00 0x00 Description Unused list entry. Unused list entry.
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Table 312. PortG ConLstEntry Command Response Format Bit [15:8] [7:0] Bitfield Name ConL1 ConL0 RW R R Reset 0x00 0x04 Description Unused list entry. DAC2 Converter widget
6.19.5.
PortG PinWCntrl
Table 313. PortG PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 314. PortG PinWCntrl Command Response Format Bit [31:7] [6] Bitfield Name Rsvd2 OutEn RW R RW Reset 0x0 0x0 Reserved 1 = (CODEC) output path of Pin Widget is enabled 1 = (CODEC) input path of Pin Widget is enabled Reserved Vref Out not supported on this Port Description
[5] [4:3] [2:0]
InEn Rsvd1 VRefEn
RW R R
0x0 0x0 0x0
6.19.6.
PortG UnsolResp
Table 315. PortG UnsolResp Command Verb Format Verb ID Get Set1 F08 708 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 316. PortG UnsolResp Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x00 Reserved Allow generation of Unsolicited Responses. Unsolicited response events occur upon jack-insertion OR completion of a Jack-Sense cycle. Reserved Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node. Description
[7]
En
RW
0x0
[6]
Rsvd1
R
0x0
[5:0]
Tag
RW
0x00
6.19.7.
PortG ChSense
Table 317. PortG ChSense Command Verb Format Verb ID Get Set1 Set2 F09 709 709 Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h
Table 318. PortG ChSense Command Response Format Bit [31] Bitfield Name PresDtct RW R Reset 0x0 Description 1 = something is plugged into jack associated with Pin Complex. Measured impedance of the widget. A value of all 1's indicates that a valid sense reading is not available, or the sense measurement is busy if it has been recently triggered. Set 1 = perform impedance sensing on right channel or ring of the connector Set 0 = perform impedance sensing on left channel or tip of the connector
[30:0]
Impedance
R
0x7FFF_FFFF
[0]
RightCh
W
0x0
[0]
LeftCh
W
0x0
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6.19.8.
PortG ConfigDefault
Table 319. PortG ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 320. PortG ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x01 Description Port Connectivity = Jack; Location = Mainboard rear. Default Device = Line Out; Connection Type = 1/8 inch jack. Color = Orange; Misc = No jack detect override. Association = 1h; Sequence = 1h.
[23:16]
Config3
RW
0x01
[15:8]
Config2
RW
0x60
[7:0]
Config1
RW
0x11
6.20. PortH Node (NID = 0x11)
6.20.1. PortH WCap
Table 321. PortH WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
IDTTM
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PC AUDIO
Table 322. PortH WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe FormatOvrd RW R R R R R R R R R R R R Reset 0x0 0x4 0x0 0x0 0x0 0x0 0x0 0x1 0x1 0x0 0x0 0x0 Reserved Widget type = Pin Complex Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present Unsolicited Response is supported No Processing Controls parameter No support for striping N/A for pin complex No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget Description
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.20.2.
PortH PinCap
Table 323. PortH PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
IDTTM
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Table 324. PortH PinCap Command Response Format Bit [31:17] [16] [15:8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd2 EapdCap VrefCntrl Rsvd1 BalancedIO InCap OutCap HdphDrvCap PresDtctCap TrigRqd ImpSenseCap RW R R R R R R R R R R R Reset 0x0 0x0 0x00 0x0 0x0 0x1 0x1 0x0 0x1 0x1 0x1 Reserved This widget does not control EAPD pin VRef generation not supported by this pin complex. Reserved Pin complex does not have balanced pins. Pin complex is input capable. Pin complex is output capable. Pin does not have a headphone amplifier. Pin complex can perform Presence Detect. Trigger is required for impedance measurement Pin complex supports impedance sense. Description
6.20.3.
PortH ConLst
Table 325. PortH ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 326. PortH ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x01 Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
IDTTM
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PC AUDIO
6.20.4.
PortH ConLstEntry
Table 327. PortH ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 328. PortH ConLstEntry Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x00 0x00 0x00 0x03 Description Unused list entry. Unused list entry. Unused list entry. DAC1 Converter widget
6.20.5.
PortH PinWCntrl
Table 329. PortH PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 330. PortH PinWCntrl Command Response Format Bit [31:7] [6] Bitfield Name Rsvd2 OutEn RW R RW Reset 0x0 0x0 Reserved 1 = (CODEC) output path of Pin Widget is enabled 1 = (CODEC) input path of Pin Widget is enabled Reserved Vref Out not supported on this Port Description
[5] [4:3] [2:0]
InEn Rsvd1 VRefEn
RW R R
0x0 0x0 0x0
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6.20.6.
PortH UnsolResp
Table 331. PortH UnsolResp Command Verb Format Verb ID Get Set1 F08 708 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 332. PortH UnsolResp Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x00 Reserved Allow generation of Unsolicited Responses. Unsolicited response events occur upon jack-insertion OR completion of a Jack-Sense cycle. Reserved Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node. Description
[7]
En
RW
0x0
[6]
Rsvd1
R
0x0
[5:0]
Tag
RW
0x00
6.20.7.
PortH ChSense
Table 333. PortH ChSense Command Verb Format Verb ID Get Set1 Set2 F09 709 709 Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h
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PC AUDIO
Table 334. PortH ChSense Command Response Format Bit [31] Bitfield Name PresDtct RW R Reset 0x0 Description 1 = something is plugged into jack associated with Pin Complex. Measured impedance of the widget. A value of all 1's indicates that a valid sense reading is not available, or the sense measurement is busy if it has been recently triggered. Set 1 = perform impedance sensing on right channel or ring of the connector Set 0 = perform impedance sensing on left channel or tip of the connector
[30:0]
Impedance
R
0x7FFF_FFFF
[0]
RightCh
W
0x0
[0]
LeftCh
W
0x0
6.20.8.
PortH ConfigDefault
Table 335. PortH ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 336. PortH ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x01 Description Port Connectivity = Jack; Location = Mainboard rear. Default Device = Line Out; Connection Type = 1/8 inch jack. Color = Grey; Misc = No jack detect override. Association = 1h; Sequence = 4h.
[23:16]
Config3
RW
0x01
[15:8]
Config2
RW
0x20
[7:0]
Config1
RW
0x14
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PC AUDIO
6.21. DMic0 Node (NID = 0x13)
6.21.1. DMic0 WCap
Table 337. DMic0 WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 338. DMic0 WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl RW R R R R R R Reset 0x0 0x4 = Enabled 0xF = Disabled 0x0 0x0 0x0 0x0 Reserved Widget type = Pin Complex Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream (since the digital microphone input is a SDM signal that needs to be processed by the digital filters, it is not a true bit for bit digital stream like I2S or SPDIF where samples are passed through unchanged) No connection list is present No support for Unsolicited Response No Processing Controls parameter No support for striping N/A for pin complex No amplifier info; use default amplifier parameters from Audio Function node instead. No output amp Description
[9]
DigitalStrm
R
0x0
[8] [7] [6] [5] [4]
ConnList UnsolCap ProcWidget Stripe FormatOvrd
R R R R R
0x0 0x0 0x0 0x0 0x0
[3]
AmpParamOvrd
R
0x0
[2]
OutAmpPrsnt
R
0x0
IDTTM
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PC AUDIO
Table 338. DMic0 WCap Command Response Format Bit [1] [0] Bitfield Name InAmpPrsnt Stereo RW R R Reset 0x0 0x1 No input amp Stereo widget Description
6.21.2.
DMic0 PinCap
Table 339. DMic0 PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
Table 340. DMic0 PinCap Command Response Format Bit [31:17] [16] [15:8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd2 EapdCap VRefCntrl Rsvd1 BalancedIO InCap OutCap HPhnDrvCap PresDtctCap TrigRqd ImpSenseCap RW R R R R R R R R R R R Reset 0x0 0x0 0x00 0x0 0x0 0x1 0x0 0x0 0x0 0x0 0x0 Reserved This widget does not control EAPD pin VRef generation not supported by this pin complex. Reserved Pin complex does not have balanced pins. Pin complex is input capable. Pin complex is not output capable. Pin does not have a headphone amplifier. Pin complex cannot perform Presence Detect. N/A Pin complex does not support impedance sense. Description
IDTTM
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PC AUDIO
6.21.3.
DMic0 PinWCntrl
Table 341. DMic0 PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 342. DMic0 PinWCntrl Command Response Format Bit [31:6] [5] [4:0] Bitfield Name Rsvd2 InEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved 1 = (CODEC) input path of Pin Widget is enabled Reserved Description
6.21.4.
DMic0 ConfigDefault
Table 343. DMic0 ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 344. DMic0 ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x50 Description Port Connectivity = No connection; Location = Internal. Default Device = Mic In; Connection Type = Unknown.
[23:16]
Config3
RW
0xA0
IDTTM
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PC AUDIO
Table 344. DMic0 ConfigDefault Command Response Format Bit [15:8] Bitfield Name Config2 RW RW Reset 0x01 Description Color = Unknown; Misc = Jack detect override. Association = Fh; Sequence = 0h.
[7:0]
Config1
RW
0xF0
6.22. DMic1 Node (NID = 0x14)
6.22.1. DMic1 WCap
Table 345. DMic1 WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 346. DMic1 WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl RW R R R R R R Reset 0x0 0x4 = Enabled 0xF = Disabled 0x0 0x0 0x0 0x0 Reserved Widget type = Pin Complex Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream (since the digital microphone input is a SDM signal that needs to be processed by the digital filters, it is not a true bit for bit digital stream like I2S or SPDIF where samples are passed through unchanged) No connection list is present No support for Unsolicited Response No Processing Controls parameter Description
[9]
DigitalStrm
R
0x0
[8] [7] [6]
ConnList UnsolCap ProcWidget
R R R
0x0 0x0 0x0
IDTTM
8-CHANNEL HIGH DEFINITION AUDIO CODEC
157 IDT CONFIDENTIAL
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PC AUDIO
Table 346. DMic1 WCap Command Response Format Bit [5] [4] Bitfield Name Stripe FormatOvrd RW R R Reset 0x0 0x0 Description No support for striping N/A for pin complex No amplifier info; use default amplifier parameters from Audio Function node instead. No output amp No input amp Stereo widget
[3]
AmpParamOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.22.2.
DMic1 PinCap
Table 347. DMic1 PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
Table 348. DMic1 PinCap Command Response Format Bit [31:17] [16] [15:8] [7] [6] [5] [4] [3] [2] Bitfield Name Rsvd2 EapdCap VRefCntrl Rsvd1 BalancedIO InCap OutCap HPhnDrvCap PresDtctCap RW R R R R R R R R R Reset 0x0 0x0 0x00 0x0 0x0 0x1 0x0 0x0 0x0 Reserved This widget does not control EAPD pin VRef generation not supported by this pin complex. Reserved Pin complex does not have balanced pins. Pin complex is input capable. Pin complex is not output capable. Pin does not have a headphone amplifier. Pin complex cannot perform Presence Detect. Description
IDTTM
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PC AUDIO
Table 348. DMic1 PinCap Command Response Format Bit [1] [0] Bitfield Name TrigRqd ImpSenseCap RW R R Reset 0x0 0x0 N/A Pin complex does not support impedance sense. Description
6.22.3.
DMic1 PinWCntrl
Table 349. DMic1 PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 350. DMic1 PinWCntrl Command Response Format Bit [31:6] [5] [4:0] Bitfield Name Rsvd2 InEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved 1 = (CODEC) input path of Pin Widget is enabled Reserved Description
6.22.4.
DMic1 ConfigDefault
Table 351. DMic1 ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
IDTTM
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PC AUDIO
Table 352. DMic1 ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x50 Description Port Connectivity = No connection; Location = Internal. Default Device = Mic In; Connection Type = Unknown. Color = Unknown; Misc = Jack detect override. Association = Fh; Sequence = 0h.
[23:16]
Config3
RW
0xA0
[15:8]
Config2
RW
0x01
[7:0]
Config1
RW
0xF0
6.23. DigOut0 Node (NID = 0x21)
6.23.1. DigOut0 WCap
Table 353. DigOut0 WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 354. DigOut0 WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap RW R R R R R R R R R Reset 0x0 0x4 0x0 0x0 0x0 0x0 0x1 0x1 0x0 Reserved Widget type = Pin Complex Number of sample delays through widget Reserved No support for swapping left and right channels No support for Power State control Widget supports a Digital stream Connection list is present No support for Unsolicited Response Description
IDTTM
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PC AUDIO
Table 354. DigOut0 WCap Command Response Format Bit [6] [5] [4] Bitfield Name ProcWidget Stripe FormatOvrd RW R R R Reset 0x0 0x0 0x0 Description No Processing Controls parameter No support for striping N/A for pin complex No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.23.2.
DigOut0 PinCap
Table 355. DigOut0 PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
Table 356. DigOut0 PinCap Command Response Format Bit [31:17] [16] [15:8] [7] [6] [5] [4] [3] Bitfield Name Rsvd2 EapdCap VrefCntrl Rsvd1 BalancedIO InCap OutCap HdphDrvCap RW R R R R R R R R Reset 0x0 0x0 0x00 0x0 0x0 0x0 0x1 0x0 Reserved This widget does not control EAPD pin Vref generation not supported on this pin Reserved Pin complex does not have balanced pins. Pin complex is not input capable. Pin complex is output capable. Pin does not have a headphone amplifier. Description
IDTTM
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PC AUDIO
Table 356. DigOut0 PinCap Command Response Format Bit [2] [1] [0] Bitfield Name PresDtctCap TrigRqd ImpSenseCap RW R R R Reset 0x0 0x0 0x0 Description Pin complex cannot perform Presence Detect. N/A Pin complex does not support impedance sense.
6.23.3.
DigOut0 ConLst
Table 357. DigOut0 ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 358. DigOut0 ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x05 Reserved. Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
6.23.4.
DigOut0 ConLstEntry0
Table 359. DigOut0 ConLstEntry0 Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 360. DigOut0 ConLstEntry0 Command Response Format Bit [31:24] [23:16] Bitfield Name ConL3 ConL2 RW R R Reset 0x1C 0x1B Description ADC1Mux widget ADC0Mux widget
IDTTM
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PC AUDIO
Table 360. DigOut0 ConLstEntry0 Command Response Format Bit [15:8] [7:0] Bitfield Name ConL1 ConL0 RW R R Reset 0x1F 0x1E Description ADAT Out Converter widget SPDIF Out Converter widget
6.23.5.
DigOut0 ConLstEntry4
Table 361. DigOut0 ConLstEntry4 Command Verb Format Verb ID Get F02 Payload 04 Response See bitfield table.
Table 362. DigOut0 ConLstEntry4 Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL7 ConL6 ConL5 ConL4 RW R R R R Reset 0x00 0x00 0x00 0x1D No connection No connection No connection ADC2Mux widget Description
6.23.6.
DigOut0 ConSelectCtrl
Table 363. DigOut0 ConSelectCtrl Command Verb Format Verb ID Get Set1 F01 701 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 364. DigOut0 ConSelectCtrl Command Response Format Bit [31:1] [2:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. Description
IDTTM
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6.23.7.
DigOut0 PinWCntrl
Table 365. DigOut0 PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 366. DigOut0 PinWCntrl Command Response Format Bit [31:7] [6] [5:0] Bitfield Name Rsvd2 OutEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved 1 = (CODEC) output path of Pin Widget is enabled Reserved Description
6.23.8.
DigOut0 ConfigDefault
Table 367. DigOut0 ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 368. DigOut0 ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x01 Description Port Connectivity = Jack; Location = Mainboard rear. Default Device = SPDIF Out; Connection Type = RCA.
[23:16]
Config3
RW
0x44
IDTTM
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PC AUDIO
Table 368. DigOut0 ConfigDefault Command Response Format Bit [15:8] Bitfield Name Config2 RW RW Reset 0x21 Description Color = Grey; Misc = Jack detect override. Association = 7h; Sequence = 0h.
[7:0]
Config1
RW
0x70
6.24. DigIn Node (NID = 0x22)
6.24.1. DigIn WCap
Table 369. DigIn WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 370. DigIn WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe FormatOvrd RW R R R R R R R R R R R R Reset 0x0 0x4 = Enabled 0x8 = Disabled 0x3 0x0 0x0 0x1 0x1 0x0 0x1 0x0 0x0 0x0 Reserved Widget type = Pin Complex Number of sample delays through widget Reserved No left/right channel swap capability Power State control capability for support of EAPD Widget supports a Digital stream No connection list is present Unsolicited Response is supported No Processing Controls parameter No support for striping N/A for pin complex Description
IDTTM
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PC AUDIO
Table 370. DigIn WCap Command Response Format Bit Bitfield Name RW Reset Description No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
6.24.2.
DigIn PinCap
Table 371. DigIn PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
Table 372. DigIn PinCap Command Response Format Bit [31:17] [16] [15:8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd2 EapdCap VrefCntrl Rsvd1 BalancedIO InCap OutCap HdphDrvCap PresDtctCap TrigRqd ImpSenseCap RW R R R R R R R R R R R Reset 0x0 0x1 0x00 0x0 0x0 0x1 0x0 0x0 0x1 0x0 0x0 Reserved This widget controls EAPD pin Vref generation not supported on input pins. Reserved Pin complex does not have balanced pins. Pin complex is input capable. Pin complex is not output capable. (EAPD! = output stream) Pin does not have a headphone amplifier. Pin complex can perform Presence Detect. N/A Pin complex does not support impedance sense. Description
IDTTM
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PC AUDIO
6.24.3.
DigIn PwrState
Table 373. DigIn PwrState Command Verb Format Verb ID Get Set1 F05 705 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 374. DigIn PwrState Command Response Format Bit [31:8] [7:4] [3:2] Bitfield Name Rsvd2 Act Rsvd1 RW R R R Reset 0x0 0x3 0x0 Reserved PS-Act: Actual power state of referenced node. Reserved PS-Set: Current power setting of referenced node. 00 - Fully on. 01 - Fully on. 10 - EAPD powered down (Hi-Z). 11 - Powered down (default) Description
[1:0]
Set
RW
0x3
6.24.4.
DigIn PinWCntrl
Table 375. DigIn PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 376. DigIn PinWCntrl Command Response Format Bit [31:6] [5] [4:0] Bitfield Name Rsvd2 InEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved 1 = (CODEC) input path of Pin Widget is enabled Reserved Description
IDTTM
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6.24.5.
DigIn UnsolResp
Table 377. DigIn UnsolResp Command Verb Format Verb ID Get Set1 F08 708 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 378. DigIn UnsolResp Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x00 Reserved Allow generation of Unsolicited Responses. Unsolicited response events occur upon lock or loss-of-lock of SPDIF-in clock recovery circuit. Reserved. Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node. Description
[7]
En
RW
0x0
[6]
Rsvd1
R
0x0
[5:0]
Tag
RW
0x00
6.24.6.
DigIn ChSense
Table 379. DigIn ChSense Command Verb Format Verb ID Get Set1 F09 709 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
IDTTM
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Table 380. DigIn ChSense Command Response Format Bit Bitfield Name RW Reset Description 1 = something is plugged into jack associated with Pin Complex. For this widget, Presence Detect indicates that the SPDIF-in clock recovery circuit has locked onto a valid SPDIF-in sampling frequency. Any change in status will generate an Unsolicited Response, if enabled with verb 708. Reserved. Impedance sense not supported for this Pin Complex.
[31]
PresDtct
R
0x0
[30:0]
Rsvd
R
0x0
6.24.7.
DigIn EAPD
Table 381. DigIn EAPD Command Verb Format Verb ID Get Set1 F0C 70C Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 382. DigIn EAPD Command Response Format Bit [31:2] Bitfield Name Rsvd2 RW R Reset 0x0 Reserved EAPD value reflected on the EAPD pin. 0 = power down external amp; 1 = power up external amp If PwrState < 0x2. If PwrState > = 0x2, Pin47 is Hi-Z. An external pull-down is required if EAPD must be low when Pin Widget is powered down. Reserved Description
[1]
Data
RW
0x0
[0]
Rsvd1
R
0x0
IDTTM
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6.24.8.
DigIn ConfigDefault
Table 383. DigIn ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 384. DigIn ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x81 Description Port Connectivity = No connect; Location = Mainboard rear. Default Device = SPDIF In; Connection Type = RCA. Color = Grey; Misc = No jack detect override. Association = 9h; Sequence = 0h.
[23:16]
Config3
RW
0xC4
[15:8]
Config2
RW
0x20
[7:0]
Config1
RW
0x90
6.25. InPort0Mux Node (NID = 0x15)
6.25.1. InPort0Mux WCap
Table 385. InPort0Mux WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
IDTTM
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Table 386. InPort0Mux WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe RW R R R R R R R R R R R Reset 0x0 0x3 0x0 0x0 0x0 0x0 0x0 0x1 0x0 0x0 0x0 Reserved Widget type = Audio Selector Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping No format info; use default format parameters from Audio Function node instead This widget contains its own amplifier parameters. Output amp is present No input amp Stereo widget Description
[4]
FormatOvrd
R
0x0
[3] [2] [1] [0]
AmpParOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x1 0x1 0x0 0x1
6.25.2.
InPort0Mux ConLst
Table 387. InPort0Mux ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
IDTTM
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Table 388. InPort0Mux ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x09 Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
6.25.3.
InPort0Mux OutAmpCap
Table 389. InPort0Mux OutAmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table.
Table 390. InPort0Mux OutAmpCap Command Response Format Bit [31] [30:23] [22:16] [15] [14:8] [7] [6:0] Bitfield Name Mute Rsvd3 StepSize Rsvd2 NumSteps Rsvd1 Offset RW R R R R R R R Reset 0x0 0x0 0x27 0x0 0x04 0x0 0x00 Description No mute capability Reserved Size of each step in the gain range = 10dB Reserved Number of steps in the gain range = 5 (0dB to +40dB) Reserved 0dB-step is programmed with this offset
6.25.4.
InPort0Mux OutAmpRight
Table 391. InPort0Mux OutAmpRight Command Verb Format Verb ID Get Set1 B80 390 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
IDTTM
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PC AUDIO
Table 392. InPort0Mux OutAmpRight Command Response Format Bit [31:3] Bitfield Name Rsvd1 RW R Reset 0x0 Reserved Amplifier gain step number: 000 = 0dB; 001 = 10dB; 010 = 20dB; 011 = 30dB; 100 = 40dB Description
[2:0]
Gain
RW
0x0
6.25.5.
InPort0Mux OutAmpLeft
Table 393. InPort0Mux OutAmpLeft Command Verb Format Verb ID Get Set1 BA0 3A0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 394. InPort0Mux OutAmpLeft Command Response Format Bit [31:3] Bitfield Name Rsvd1 RW R Reset 0x0 Reserved Amplifier gain step number: 000 = 0dB; 001 = 10dB; 010 = 20dB; 011 = 30dB; 100 = 40dB Description
[2:0]
Gain
RW
0x0
6.25.6.
InPort0Mux ConSelectCtrl
Table 395. InPort0Mux ConSelectCtrl Command Verb Format Verb ID Get Set1 F01 701 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
IDTTM
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Table 396. InPort0Mux ConSelectCtrl Command Response Format Bit [31:4] [3:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. (Default = Port E) Description
6.25.7.
InPort0Mux ConLstEntry0
Table 397. InPort0Mux ConLstEntry0 Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 398. InPort0Mux ConLstEntry0 Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x0B 0x0F 0x12 0x0E Port B Port F CD In Port E (default) Description
6.25.8.
InPort0Mux ConLstEntry4
Table 399. InPort0Mux ConLstEntry4 Command Verb Format Verb ID Get F02 Payload 04 Response See bitfield table.
Table 400. InPort0Mux ConLstEntry4 Command Response Format Bit [31:24] [23:16] Bitfield Name ConL7 ConL6 RW R R Reset 0x10 0x0A Port G Port A Description
IDTTM
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Table 400. InPort0Mux ConLstEntry4 Command Response Format Bit [15:8] [7:0] Bitfield Name ConL5 ConL4 RW R R Reset 0x0D 0x0C Port D Port C Description
6.25.9.
InPort0Mux ConLstEntry8
Table 401. InPort0Mux ConLstEntry8 Command Verb Format Verb ID Get F02 Payload 08 Response See bitfield table.
Table 402. InPort0Mux ConLstEntry8 Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL11 ConL10 ConL9 ConL8 RW R R R R Reset 0x0 0x0 0x0 0x11 No connection. No connection. No connection. Port H Description
6.26. InPort1Mux Node (NID = 0x16)
6.26.1. InPort1Mux WCap
Table 403. InPort1Mux WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 404. InPort1Mux WCap Command Response Format Bit [31:24] [23:20] [19:16] Bitfield Name Rsvd2 Type Delay RW R R R Reset 0x0 0x3 0x0 Reserved Widget type = Audio Selector Number of sample delays through widget Description
IDTTM
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Table 404. InPort1Mux WCap Command Response Format Bit [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe RW R R R R R R R R Reset 0x0 0x0 0x0 0x0 0x1 0x0 0x0 0x0 Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping No format info; use default format parameters from Audio Function node instead This widget contains its own amplifier parameters. Output amp is present No input amp Stereo widget Description
[4]
FormatOvrd
R
0x0
[3] [2] [1] [0]
AmpParOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x1 0x1 0x0 0x1
6.26.2.
InPort1Mux ConLst
Table 405. InPort1Mux ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 406. InPort1Mux ConLst Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Description
IDTTM
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Table 406. InPort1Mux ConLst Command Response Format Bit [7] [6:0] Bitfield Name LForm ConL RW R R Reset 0x0 0x09 Description Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list.
6.26.3.
InPort1Mux OutAmpCap
Table 407. InPort1Mux OutAmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table.
Table 408. InPort1Mux OutAmpCap Command Response Format Bit [31] [30:23] [22:16] [15] [14:8] [7] [6:0] Bitfield Name Mute Rsvd3 StepSize Rsvd2 NumSteps Rsvd1 Offset RW R R R R R R R Reset 0x0 0x0 0x27 0x0 0x04 0x0 0x00 Description No mute capability Reserved Size of each step in the gain range = 10dB Reserved Number of steps in the gain range = 5 (0dB to +40dB) Reserved 0dB-step is programmed with this offset
6.26.4.
InPort1Mux OutAmpRight
Table 409. InPort1Mux OutAmpRight Command Verb Format Verb ID Get Set1 B80 390 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
IDTTM
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STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 410. InPort1Mux OutAmpRight Command Response Format Bit [31:3] Bitfield Name Rsvd1 RW R Reset 0x0 Reserved Amplifier gain step number: 000 = 0dB; 001 = 10dB; 010 = 20dB; 011 = 30dB; 100 = 40dB Description
[2:0]
Gain
RW
0x0
6.26.5.
InPort1Mux OutAmpLeft
Table 411. InPort1Mux OutAmpLeft Command Verb Format Verb ID Get Set1 BA0 3A0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 412. InPort1Mux OutAmpLeft Command Response Format Bit [31:3] Bitfield Name Rsvd1 RW R Reset 0x0 Reserved Amplifier gain step number: 000 = 0dB; 001 = 10dB; 010 = 20dB; 011 = 30dB; 100 = 40dB Description
[2:0]
Gain
RW
0x0
6.26.6.
InPort1Mux ConSelectCtrl
Table 413. InPort1Mux ConSelectCtrl Command Verb Format Verb ID Get Set1 F01 701 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
IDTTM
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PC AUDIO
Table 414. InPort1Mux ConSelectCtrl Command Response Format Bit [31:4] [3:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. (Default = Port E) Description
6.26.7.
InPort1Mux ConLstEntry0
Table 415. InPort1Mux ConLstEntry0 Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 416. InPort1Mux ConLstEntry0 Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x0B 0x0F 0x12 0x0E Port B Port F CD In Port E (default) Description
6.26.8.
InPort1Mux ConLstEntry4
Table 417. InPort1Mux ConLstEntry4 Command Verb Format Verb ID Get F02 Payload 04 Response See bitfield table.
Table 418. InPort1Mux ConLstEntry4 Command Response Format Bit [31:24] [23:16] Bitfield Name ConL7 ConL6 RW R R Reset 0x10 0x0A Port G Port A Description
IDTTM
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Table 418. InPort1Mux ConLstEntry4 Command Response Format Bit [15:8] [7:0] Bitfield Name ConL5 ConL4 RW R R Reset 0x0D 0x0C Port D Port C Description
6.26.9.
InPort1Mux ConLstEntry8
Table 419. InPort1Mux ConLstEntry8 Command Verb Format Verb ID Get F02 Payload 08 Response See bitfield table.
Table 420. InPort1Mux ConLstEntry8 Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL11 ConL10 ConL9 ConL8 RW R R R R Reset 0x0 0x0 0x0 0x11 No connection. No connection. No connection. Port H Description
6.27. InPort2Mux Node (NID = 0x17)
6.27.1. InPort2Mux WCap
Table 421. InPort2Mux WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 422. InPort2Mux WCap Command Response Format Bit [31:24] [23:20] [19:16] Bitfield Name Rsvd2 Type Delay RW R R R Reset 0x0 0x3 0x0 Reserved Widget type = Audio Selector Number of sample delays through widget Description
IDTTM
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STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 422. InPort2Mux WCap Command Response Format Bit [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe RW R R R R R R R R Reset 0x0 0x0 0x0 0x0 0x1 0x0 0x0 0x0 Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping No format info; use default format parameters from Audio Function node instead This widget contains its own amplifier parameters. Output amp is present No input amp Stereo widget Description
[4]
FormatOvrd
R
0x0
[3] [2] [1] [0]
AmpParOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x1 0x1 0x0 0x1
6.27.2.
InPort2Mux ConLst
Table 423. InPort2Mux ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 424. InPort2Mux ConLst Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Description
IDTTM
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PC AUDIO
Table 424. InPort2Mux ConLst Command Response Format Bit [7] [6:0] Bitfield Name LForm ConL RW R R Reset 0x0 0x9 Description Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list.
6.27.3.
InPort2Mux OutAmpCap
Table 425. InPort2Mux OutAmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table.
Table 426. InPort2Mux OutAmpCap Command Response Format Bit [31] [30:23] [22:16] [15] [14:8] [7] [6:0] Bitfield Name Mute Rsvd3 StepSize Rsvd2 NumSteps Rsvd1 Offset RW R R R R R R R Reset 0x0 0x0 0x27 0x0 0x04 0x0 0x00 Description No mute capability Reserved Size of each step in the gain range = 10dB Reserved Number of steps in the gain range = 5 (0dB to +40dB) Reserved 0dB-step is programmed with this offset
6.27.4.
InPort2Mux OutAmpRight
Table 427. InPort2Mux OutAmpRight Command Verb Format Verb ID Get Set1 B80 390 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
IDTTM
8-CHANNEL HIGH DEFINITION AUDIO CODEC
182 IDT CONFIDENTIAL
STAC9227/9228/9229/9230V 1.0 MARCH 2007
STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 428. InPort2Mux OutAmpRight Command Response Format Bit [31:3] Bitfield Name Rsvd1 RW R Reset 0x0 Reserved Amplifier gain step number: 000 = 0dB; 001 = 10dB; 010 = 20dB; 011 = 30dB; 100 = 40dB Description
[2:0]
Gain
RW
0x0
6.27.5.
InPort2Mux OutAmpLeft
Table 429. InPort2Mux OutAmpLeft Command Verb Format Verb ID Get Set1 BA0 3A0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 430. InPort2Mux OutAmpLeft Command Response Format Bit [31:3] Bitfield Name Rsvd1 RW R Reset 0x0 Reserved Amplifier gain step number: 000 = 0dB; 001 = 10dB; 010 = 20dB; 011 = 30dB; 100 = 40dB Description
[2:0]
Gain
RW
0x0
6.27.6.
InPort2Mux ConSelectCtrl
Table 431. InPort2Mux ConSelectCtrl Command Verb Format Verb ID Get Set1 F01 701 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
IDTTM
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183 IDT CONFIDENTIAL
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STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 432. InPort2Mux ConSelectCtrl Command Response Format Bit [31:4] [3:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. (Default = Port E) Description
6.27.7.
InPort2Mux ConLstEntry0
Table 433. InPort2Mux ConLstEntry0 Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 434. InPort2Mux ConLstEntry0 Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x0B 0x0F 0x12 0x0E Port B Port F CD In Port E (default) Description
6.27.8.
InPort2Mux ConLstEntry4
Table 435. InPort2Mux ConLstEntry4 Command Verb Format Verb ID Get F02 Payload 04 Response See bitfield table.
Table 436. InPort2Mux ConLstEntry4 Command Response Format Bit [31:24] [23:16] Bitfield Name ConL7 ConL6 RW R R Reset 0x10 0x0A Port G Port A Description
IDTTM
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STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 436. InPort2Mux ConLstEntry4 Command Response Format Bit [15:8] [7:0] Bitfield Name ConL5 ConL4 RW R R Reset 0x0D 0x0C Port D Port C Description
6.27.9.
InPort2Mux ConLstEntry8
Table 437. InPort2Mux ConLstEntry8 Command Verb Format Verb ID Get F02 Payload 08 Response See bitfield table.
Table 438. InPort2Mux ConLstEntry8 Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL11 ConL10 ConL9 ConL8 RW R R R R Reset 0x0 0x0 0x0 0x11 No connection. No connection. No connection. Port H Description
6.28. PCBEEP Node (NID = 0x23)
6.28.1. PCBEEP OutAmpLeft
Table 439. PCBEEP OutAmpLeft Command Verb Format Verb ID Get Set1 BA0 3A0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 440. PCBEEP OutAmpLeft Command Response Format Bit [31:8] [7] Bitfield Name Rsvd2 Mute RW R RW Reset 0x0 0x0 Reserved 1 = disable Digital PC Beep Description
IDTTM
8-CHANNEL HIGH DEFINITION AUDIO CODEC
185 IDT CONFIDENTIAL
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STAC9227/9228/9229/9230 8-CHANNEL HIGH DEFINITION AUDIO CODEC
PC AUDIO
Table 440. PCBEEP OutAmpLeft Command Response Format Bit [6:2] [1:0] Bitfield Name Rsvd1 Gain RW R RW Reset 0x0 0x0 Reserved Mono (left) amplifier gain step number Description
6.28.2.
PCBEEP WCap
Table 441. PCBEEP WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 442. PCBEEP WCap Command Response Format Bit [31:24] [23:20] [19:4] [3] [2] [1] [0] Bitfield Name Rsvd2 Type Rsvd1 AmpParOvrd OutAmpPrsnt InAmpPrsnt Stereo RW R R R R R R R Reset 0x0 0x7 0x0 0x1 0x1 0x0 0x0 Reserved Widget type = Beep Generator Reserved This widget contains its own amplifier parameters. Output amp is present N/A Mono widget Description
6.28.3.
PCBEEP OutAmpCap
Table 443. PCBEEP OutAmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table.
IDTTM
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186 IDT CONFIDENTIAL
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PC AUDIO
Table 444. PCBEEP OutAmpCap Command Response Format Bit [31] [30:23] [22:16] [15] [14:8] [7] [6:0] Bitfield Name Mute Rsvd3 StepSize Rsvd2 NumSteps Rsvd1 Offset RW R R R R R R R Reset 0x0 0x0 0x17 0x0 0x03 0x0 0x03 Description Amplifier is capable of muting Reserved Size of each step in the gain range = 6 dB Reserved Number of steps in the gain range = 4 (-18dB to 0dB) Reserved 0dB-step is programmed with this offset
6.28.4.
PCBEEP Gen
Table 445. PCBEEP Gen Command Verb Format Verb ID Get Set1 F0A 70A Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 446. PCBEEP Gen Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Enable internal PC-Beep generation. Divider is 00h - disables internal PC Beep generation and enables normal operation of the CODEC. Divider is not 00h - generates the beep tone on all Pin Complexes that are currently configured as outputs. The Azalia spec states that the beep tone frequency = (48 KHz Azalia SYNC rate) / (4*Divider), producing tones from 47 Hz to 12 KHz (logarithmic scale). Instead, this part generates tones with frequency = 48000 * (257 - Divider) / 1024, yielding a linear range from 12 KHz to 93.75 Hz in steps of 46.875 Hz. If JackSenseVSR[Rate2x], then the beep tones generated have frequency = 48000 * (513 - Divider) / 1024, yielding a range of 24 KHz to 12093.75 Hz in steps of 46.875 Hz. Description
[7:0]
Divider
RW
0x0
6.29. CD Node (NID = 0x12)
6.29.1. CD WCap
Table 447. CD WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 448. CD WCap Command Response Format Bit [31:24] [23:20] [19:16] Bitfield Name Rsvd2 Type Delay RW R R R Reset 0x0 0x4 0x0 Reserved Widget type = Pin Complex Number of sample delays through widget Description
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Table 448. CD WCap Command Response Format Bit [15:12] [11] [10] [9] [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe FormatOvrd AmpParOvrd OutAmpPrsnt InAmpPrsnt Stereo RW R R R R R R R R R R R R R Reset 0x0 0x0 0x0 0x0 0x0 0x0 0x0 0x0 0x0 0x0 0x0 0x0 0x1 Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream No connection list is present No support for Unsolicited Response No Processing Controls parameter No support for striping N/A for pin complex No amp No output amp No input amp Stereo widget Description
6.29.2.
CD PinCap
Table 449. CD PinCap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table.
Table 450. CD PinCap Command Response Format Bit [31:17] [16] [15:8] [7] Bitfield Name Rsvd2 EapdCap VrefCntrl Rsvd1 RW R R R R Reset 0x0 0x0 0x00 0x0 Reserved This widget does not control EAPD pin Vref generation not supported on this pin Reserved Description
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Table 450. CD PinCap Command Response Format Bit [6] [5] [4] [3] [2] [1] [0] Bitfield Name BalancedIO InCap OutCap HdphDrvCap PresDtctCap TrigRqd ImpSenseCap RW R R R R R R R Reset 0x0 0x1 0x0 0x0 0x0 0x0 0x0 Description Pin complex does not have balanced pins. Pin complex is input capable. Pin complex is not output capable. Pin does not have a headphone amplifier. Pin complex cannot perform Presence Detect. N/A Pin complex does not support impedance sense.
6.29.3.
CD PinWCntrl
Table 451. CD PinWCntrl Command Verb Format Verb ID Get Set1 F07 707 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 452. CD PinWCntrl Command Response Format Bit [31:6] [5] [4:0] Bitfield Name Rsvd2 InEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved 1 = (CODEC) input path of Pin Widget is enabled Reserved Description
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6.29.4.
CD ConfigDefault
Table 453. CD ConfigDefault Command Verb Format Verb ID Get Set1 Set2 Set3 Set4 F1C 71C 71D 71E 71F Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 454. CD ConfigDefault Command Response Format Bit [31:24] Bitfield Name Config4 RW RW Reset 0x50 Description Port Connectivity = No connect; Location = Internal. Default Device = CD; Connection Type = ATAPI internal. Color = Unknown; Misc = Jack detect override. Association = Fh; Sequence = 0h.
[23:16]
Config3
RW
0x33
[15:8]
Config2
RW
0x01
[7:0]
Config1
RW
0xF0
6.30. ADATOut Node (NID = 0x1F)
6.30.1. ADATOut Cnvtr
Table 455. ADATOut Cnvtr Command Verb Format Verb ID Get Set1 A 2 Payload 0000 See bits [15:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 456. ADATOut Cnvtr Command Response Format Bit [31:16] Bitfield Name Rsvd2 RW R Reset 0x0 Reserved Stream Type 0 = PCM 1 = Non-PCM (remaining bits in this verb have other meanings) Sample Base Rate 0 = 48 KHz 1 = 44.1 KHz Sample Base Rate Multiple 000 = 48 KHz / 44.1 KHz or less 001 = x2 010 = Reserved (x3) 011 = x4 100-111 = Reserved Sample Base Rate Divisor 000 = Divide by 1 001 = Divide by 2 010 = Divide by 3 011 = Divide by 4 100 = Divide by 5 101 = Divide by 6 110 = Divide by 7 111 = Divide by 8 Reserved Bits per Sample 000 = 8 bits 001 = 16 bits 010 = 20 bits 011 = 24 bits 100-111 = Reserved Number of Channels Number of channels in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels Description
[15]
FrmtNonPCM
RW
0x0
[14]
FrmtSmplRate
RW
0x0
[13:11]
SmplRateMultp
RW
0x0
[10:8]
SmplRateDiv
RW
0x0
[7]
Rsvd1
R
0x0
[6:4]
BitsPerSmpl
RW
0x3
[3:0]
NmbrChan
RW
0x1
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6.30.2.
ADATOut WCap
Table 457. ADATOut WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 458. ADATOut WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe RW R R R R R R R R R R R Reset 0x0 0xF 0x3 0x0 0x0 0x0 0x1 0x0 0x0 0x0 0x0 Reserved Widget type = Vendor Defined Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports a Digital stream No connection list is present No support for Unsolicited Response No Processing Controls parameter No support for striping No format info; use default format parameters from Audio Function node instead No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget Description
[4]
FormatOvrd
R
0x0
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
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6.30.3.
ADATOut CnvtrID
Table 459. ADATOut CnvtrID Command Verb Format Verb ID Get Set1 F06 706 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 460. ADATOut CnvtrID Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Software-programmable integer representing link stream ID used by the converter widget. By convention stream 0 is reserved as unused. N/A in ADAT mode. Description
[7:4]
Strm
RW
0x0
[3:0]
Ch
R
0x0
6.30.4.
ADATOut DigCnvtr
Table 461. ADATOut DigCnvtr Command Verb Format Verb ID Get Set1 Set2 F0D 70D 70E Payload 00 See bits [7:0] of bitfield table. See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h 0000_0000h
Table 462. ADATOut DigCnvtr Command Response Format Bit [31:1] [0] Bitfield Name Rsvd2 DigEn RW R RW Reset 0x0 0x0 Reserved DigEn - Digital Enable Description
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6.30.5.
ADATOut VCSR0
Table 463. ADATOut VCSR0 Command Verb Format Verb ID Get Set1 FE0 7E0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 464. ADATOut VCSR0 Command Response Format Bit [31:5] Bitfield Name Rsvd2 RW R Reset 0x0 Description Reserved for 9778
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Table 464. ADATOut VCSR0 Command Response Format Bit Bitfield Name RW Reset Description ADAT Sample Split Format Select 1: U user bits U3 and U2 in the transmitted ADAT stream are supplied by bits 3:2 of this verb (field ADAT), under software control. 0: U user bits U3 and U2 in the transmitted ADAT stream are controlled automatically by hardware, derived according to the sample-rate of the outgoing audio stream. Hardware support is provided for the transfer of double- and quad-rate data streams over the 48 KHz (nominal) 8-channel ADAT interface. Two 2-channel (stereo) streams or one 4-channel audio stream at double-rate or one 2-channel stream at quad-rate will be sample-split over the appropriate ADAT channels. For each mode, the ADAT channels are listed in the order of arrival of the corresponding audio sample: ADAT_2CH_SGL C0,C1 (C2-C7 zero padded) ADAT_2CH_DBL C0,C2,C1,C3 (C4-C7 zero padded) ADAT_2CH_QUAD C0,C4,C1,C5,C2,C6,C3,C7 ADAT_4CH_SGL C0,C1,C2,C3 (C4-C7 zero padded) ADAT_4CH_DBL C0,C2,C4,C6,C1,C3,C5,C7 ADAT_8CH_SGL C0,C1,C2,C3,C4,C5,C6,C7
[4]
ADATFRMT
RW
0x0
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Table 464. ADATOut VCSR0 Command Response Format Bit Bitfield Name RW Reset Description ADAT Lightpipe Control Used in conjunction with the ADAT Sample Rate in the stream converter to generate the 4 bit ADAT control signals. ADAT0 (U0): Time Code FLAG ADAT1 (U1): MIDI FLAG ADAT2 (U2): 0 = 44.1 / 48 KHz audio (1X operation) 1 = 88.2 / 96 KHz audio (2X operation) ADAT3 (U3): 1 = 176.4 / 192 KHz audio (4x operation). User bits U0 and U1 are always under software control. User bits U2 and U3 are also under software control if ADATFRMT is set. If ADATFRMT = 0, then bits 3:2 here are ignored and the bits transmitted as U3:U2 are controlled by hardware according to the sample-rate of the data stream.
[3:0]
ADAT
RW
0x0
6.31. VolumeKnob Node (NID = 0x24)
6.31.1. VolumeKnob WCap
Table 465. VolumeKnob WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 466. VolumeKnob WCap Command Response Format Bit [31:24] [23:20] Bitfield Name Rsvd2 Type RW R R Reset 0x0 0x6 = Enabled 0xF = Disabled Reserved Widget type = Volume Knob Widget Reserved. Software assumes capability of unsolicited responses and a connection list for this widget type. Description
[19:0]
Rsvd1
R
0x0
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6.31.2.
VolumeKnob VolKnobCap
Table 467. VolumeKnob VolKnobCap Command Verb Format Verb ID Get F00 Payload 13 Response See bitfield table.
Table 468. VolumeKnob VolKnobCap Command Response Format Bit [31:8] [7] Bitfield Name Rsvd Delta RW R R Reset 0x0 0x1 Reserved Indicates if software can write a base volume to the Volume Control Knob. Total number of steps in the range of the volume knob = 128 Description
[6:0]
NumSteps
R
0x7F
6.31.3.
VolumeKnob ConLst
Table 469. VolumeKnob ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 470. VolumeKnob ConLst Command Response Format Bit [31:8] [7] Bitfield Name Rsvd LForm RW R R Reset 0x0 0x0 DAC4 enable = 0x05 DAC4 disable = 0x04 Reserved. Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
[6:0]
ConL
R
6.31.4.
VolumeKnob ConLstEntry0
Table 471. VolumeKnob ConLstEntry0 Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
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Table 472. VolumeKnob ConLstEntry0 Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x05 0x04 0x03 0x02 DAC3 DAC2 DAC1 DAC0 Description
6.31.5.
VolumeKnob ConLstEntry4
Table 473. VolumeKnob ConLstEntry4 Command Verb Format Verb ID Get F02 Payload 04 Response See bitfield table.
Table 474. VolumeKnob ConLstEntry4 Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL7 ConL6 ConL5 ConL4 RW R R R R Reset 0x0 0x0 0x0 0x06 = Enabled 0x00 = Disabled No connection. No connection. No connection. DAC4 Description
6.31.6.
VolumeKnob UnsolResp
Table 475. VolumeKnob UnsolResp Command Verb Format Verb ID Get Set1 F08 708 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 476. VolumeKnob UnsolResp Command Response Format Bit [31:8] Bitfield Name Rsvd2 RW R Reset 0x00 Reserved Allow generation of Unsolicited Responses. Unsolicited response events occur upon jack-insertion OR completion of a Jack-Sense cycle. Reserved Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node. Description
[7]
En
RW
0x0
[6]
Rsvd1
R
0x0
[5:0]
Tag
RW
0x00
6.31.7.
VolumeKnob Cntrl
Table 477. VolumeKnob Cntrl Command Verb Format Verb ID Get Set1 F0F 70F Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 478. VolumeKnob Cntrl Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Direct = 1 causes the volume control to directly control the hardware volume of the slave amps. Direct = 0 causes unsolicited responses to be generated. Volume, specified in steps of amplifier gain Description
[7]
Direct
RW
0x0
[6:0]
Volume
RW
0x7F
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6.31.8.
VolumeKnob VCSR0
Table 479. VolumeKnob VCSR0 Command Verb Format Verb ID Get Set1 FE0 7E0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 480. VolumeKnob VCSR0 Command Response Format Bit [31:4] [3] Bitfield Name Rsvd Continuous RW R RW Reset 0x0 0x1 Reserved Allow continuous incrementing/ decrementing of the volume knob value. Volume knob update rate, for continuous mode and de-bouncing (2.5 Hz to 20 Hz, in increments of 2.5 Hz) Description
[2:0]
Rate
RW
0x0
6.32. InPort0Vol Node (NID = 0x18)
6.32.1. InPort0Vol WCap
Table 481. InPort0Vol WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 482. InPort0Vol WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl RW R R R R R R Reset 0x0 0x3 0x0 0x0 0x0 0x0 Reserved Widget type = Audio Selector Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Description
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Table 482. InPort0Vol WCap Command Response Format Bit [9] [8] [7] [6] [5] Bitfield Name Dig ConnList UnSolCap ProcWidget Stripe RW R R R R R Reset 0x0 0x1 0x0 0x0 0x0 Description Widget supports an Analog stream Connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping No format info; use default format parameters from Audio Function node instead No amplifier info; use default amplifier parameters from Audio Function node instead No output amp Input amp is present Stereo widget
[4]
FormatOvrd
R
0x0
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x1 0x1
6.32.2.
InPort0Vol ConLst
Table 483. InPort0Vol ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 484. InPort0Vol ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x01 Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
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6.32.3.
InPort0Vol InAmpRight
Table 485. InPort0Vol InAmpRight Command Verb Format Verb ID Get Set1 B00 350 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 486. InPort0Vol InAmpRight Command Response Format Bit [31:4] [3:0] Bitfield Name Rsvd1 Gain RW R RW Reset 0x0 0x0 Reserved Amplifier gain step number Description
6.32.4.
InPort0Vol InAmpLeft
Table 487. InPort0Vol InAmpLeft Command Verb Format Verb ID Get Set1 B20 360 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 488. InPort0Vol InAmpLeft Command Response Format Bit [31:4] [3:0] Bitfield Name Rsvd1 Gain RW R RW Reset 0x0 0x0 Reserved Amplifier gain step number Description
6.32.5.
InPort0Vol ConLstEntry
Table 489. InPort0Vol ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
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Table 490. InPort0Vol ConLstEntry Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x00 0x00 0x00 0x15 No Connection No Connection No Connection InPort0 Mux widget Description
6.33. InPort1Vol Node (NID = 0x19)
6.33.1. InPort1Vol WCap
Table 491. InPort1Vol WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 492. InPort1Vol WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe RW R R R R R R R R R R R Reset 0x0 0x3 0x0 0x0 0x0 0x0 0x0 0x1 0x0 0x0 0x0 Reserved Widget type = Audio Selector Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping Description
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Table 492. InPort1Vol WCap Command Response Format Bit Bitfield Name RW Reset Description No format info; use default format parameters from Audio Function node instead No amplifier info; use default amplifier parameters from Audio Function node instead No output amp Input amp is present Stereo widget
[4]
FormatOvrd
R
0x0
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x1 0x1
6.33.2.
InPort1Vol ConLst
Table 493. InPort1Vol ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 494. InPort1Vol ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x01 Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
6.33.3.
InPort1Vol InAmpRight
Table 495. InPort1Vol InAmpRight Command Verb Format Verb ID Get Set1 B00 350 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 496. InPort1Vol InAmpRight Command Response Format Bit [31:4] [3:0] Bitfield Name Rsvd1 Gain RW R RW Reset 0x0 0x0 Reserved Amplifier gain step number Description
6.33.4.
InPort1Vol InAmpLeft
Table 497. InPort1Vol InAmpLeft Command Verb Format Verb ID Get Set1 B20 360 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 498. InPort1Vol InAmpLeft Command Response Format Bit [31:4] [3:0] Bitfield Name Rsvd1 Gain RW R RW Reset 0x0 0x0 Reserved Amplifier gain step number Description
6.33.5.
InPort1Vol ConLstEntry
Table 499. InPort1Vol ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 500. InPort1Vol ConLstEntry Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x00 0x00 0x00 0x16 No Connection No Connection No Connection InPort1Mux widget Description
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6.34. InPort2Vol Node (NID = 0x1A)
6.34.1. InPort2Vol WCap
Table 501. InPort2Vol WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 502. InPort2Vol WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl Dig ConnList UnSolCap ProcWidget Stripe RW R R R R R R R R R R R Reset 0x0 0x3 0x0 0x0 0x0 0x0 0x0 0x1 0x0 0x0 0x0 Reserved Widget type = Audio Selector Number of sample delays through widget Reserved No left/right channel swap capability No support for Power State control Widget supports an Analog stream Connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping No format info; use default format parameters from Audio Function node instead No amplifier info; use default amplifier parameters from Audio Function node instead No output amp Input amp is present Stereo widget Description
[4]
FormatOvrd
R
0x0
[3]
AmpParOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x1 0x1
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6.34.2.
InPort2Vol ConLst
Table 503. InPort2Vol ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 504. InPort2Vol ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x01 Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
6.34.3.
InPort2Vol InAmpRight
Table 505. InPort2Vol InAmpRight Command Verb Format Verb ID Get Set1 B00 350 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 506. InPort2Vol InAmpRight Command Response Format Bit [31:4] [3:0] Bitfield Name Rsvd1 Gain RW R RW Reset 0x0 0x0 Reserved Amplifier gain step number Description
6.34.4.
InPort2Vol InAmpLeft
Table 507. InPort2Vol InAmpLeft Command Verb Format Verb ID Get Set1 B20 360 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 508. InPort2Vol InAmpLeft Command Response Format Bit [31:4] [3:0] Bitfield Name Rsvd1 Gain RW R RW Reset 0x0 0x0 Reserved Amplifier gain step number Description
6.34.5.
InPort2Vol ConLstEntry
Table 509. InPort2Vol ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 510. InPort2Vol ConLstEntry Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name ConL3 ConL2 ConL1 ConL0 RW R R R R Reset 0x00 0x00 0x00 0x17 No Connection No Connection No Connection InPort2Mux widget Description
6.35. ADC0Mux Node (NID = 0x1B)
6.35.1. ADC0Mux WCap
Table 511. ADC0Mux WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 512. ADC0Mux WCap Command Response Format Bit [31:24] [23:20] Bitfield Name Rsvd2 Type RW R R Reset 0x0 0x3 Reserved Widget type = Audio Selector Description
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Table 512. ADC0Mux WCap Command Response Format Bit [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Delay Rsvd1 SwapCap PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe RW R R R R R R R R R Reset 0x0 0x0 0x1 0x0 0x0 0x1 0x0 0x0 0x0 Description Number of sample delays through widget Reserved Left and right channels can be swapped No support for Power State control Widget supports an Analog stream Connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping No format info; use default format parameters from Audio Function node instead This widget contains its own amplifier parameters. Output amp is present No input amp Stereo widget
[4]
FormatOvrd
R
0x0
[3] [2] [1] [0]
AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x1 0x1 0x0 0x1
6.35.2.
ADC0Mux ConLst
Table 513. ADC0Mux ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
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Table 514. ADC0Mux ConLst Command Response Format Bit [31:8] [7] Bitfield Name Rsvd LForm RW R R Reset 0x0 0x0 0x03 = Enabled 0x01 = Disabled Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
[6:0]
ConL
R
6.35.3.
ADC0Mux ConSelectCtrl
Table 515. ADC0Mux ConSelectCtrl Command Verb Format Verb ID Get Set1 F01 701 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 516. ADC0Mux ConSelectCtrl Command Response Format Bit [31:2] [1:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. Description
6.35.4.
ADC0Mux ConLstEntry
Table 517. ADC0Mux ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 518. ADC0Mux ConLstEntry Command Response Format Bit [31:24] [23:16] Bitfield Name ConL3 ConL2 RW R R Reset 0x00 0x14 = Enabled 0x00 = Disabled No connection DMic1 pin widget Description
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Table 518. ADC0Mux ConLstEntry Command Response Format Bit [15:8] [7:0] Bitfield Name ConL1 ConL0 RW R R Reset 0x13 = Enabled 0x00 = Disabled 0x18 Description DMic0 pin widget InPort0Vol widget
6.35.5.
ADC0Mux LR
Table 519. ADC0Mux LR Command Verb Format Verb ID Get Set1 F0C 70C Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 520. ADC0Mux LR Command Response Format Bit [31:3] [2] [1:0] Bitfield Name Rsvd2 SwapEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Description Reserved 1 = swap left and right channels of this Widget. Reserved
6.35.6.
ADC0Mux OutAmpCap
Table 521. ADC0Mux OutAmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table.
Table 522. ADC0Mux OutAmpCap Command Response Format Bit [31] [30:23] [22:16] Bitfield Name Mute Rsvd3 StepSize RW R R R Reset 0x1 0x0 0x00 Description Amplifier is capable of muting Reserved Size of each step in the gain range, N/A since there are no steps
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Table 522. ADC0Mux OutAmpCap Command Response Format Bit [15] [14:8] [7] [6:0] Bitfield Name Rsvd2 NumSteps Rsvd1 Offset RW R R R R Reset 0x0 0x00 0x0 0x00 Reserved No steps, gain is fixed at 0dB Reserved 0dB-step is programmed with this offset Description
6.35.7.
ADC0Mux OutAmpRight
Table 523. ADC0Mux OutAmpRight Command Verb Format Verb ID Get Set1 B80 390 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 524. ADC0Mux OutAmpRight Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd2 Mute Rsvd1 RW R RW R Reset 0x0 0x1 0x0 Reserved 1 = mute is active Reserved Description
6.35.8.
ADC0Mux OutAmpLeft
Table 525. ADC0Mux OutAmpLeft Command Verb Format Verb ID Get Set1 BA0 3A0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 526. ADC0Mux OutAmpLeft Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd2 Mute Rsvd1 RW R RW R Reset 0x0 0x1 0x0 Reserved 1 = mute is active Reserved Description
6.36. ADC1Mux Node (NID = 0x1C)
6.36.1. ADC1Mux WCap
Table 527. ADC1Mux WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
Table 528. ADC1Mux WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe RW R R R R R R R R R R R Reset 0x0 0x3 0x0 0x0 0x1 0x0 0x0 0x1 0x0 0x0 0x0 Reserved Widget type = Audio Selector Number of sample delays through widget Reserved Left and right channels can be swapped No support for Power State control Widget supports an Analog stream Connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping Description
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Table 528. ADC1Mux WCap Command Response Format Bit Bitfield Name RW Reset Description No format info; use default format parameters from Audio Function node instead This widget contains its own amplifier parameters. Output amp is present No input amp Stereo widget
[4]
FormatOvrd
R
0x0
[3] [2] [1] [0]
AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x1 0x1 0x0 0x1
6.36.2.
ADC1Mux ConLst
Table 529. ADC1Mux ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
Table 530. ADC1Mux ConLst Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LForm ConL RW R R R Reset 0x0 0x0 0x03 = Enabled 0x1 = Disabled Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
6.36.3.
ADC1Mux ConSelectCtrl
Table 531. ADC1Mux ConSelectCtrl Command Verb Format Verb ID Get Set1 F01 701 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 532. ADC1Mux ConSelectCtrl Command Response Format Bit [31:2] [1:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. Description
6.36.4.
ADC1Mux ConLstEntry
Table 533. ADC1Mux ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 534. ADC1Mux ConLstEntry Command Response Format Bit [31:24] [23:16] Bitfield Name ConL3 ConL2 RW R R Reset 0x00 0x14 = Enabled 0x0 = Disabled 0x13 = Enabled 0x0 = Disabled 0x19 Description No connection DMic1 pin widget
[15:8] [7:0]
ConL1 ConL0
R R
DMic0 pin widget InPort1Vol widget
6.36.5.
ADC1Mux LR
Table 535. ADC1Mux LR Command Verb Format Verb ID Get Set1 F0C 70C Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 536. ADC1Mux LR Command Response Format Bit [31:3] [2] [1:0] Bitfield Name Rsvd2 SwapEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved 1 = swap left and right channels of this Widget. Reserved Description
6.36.6.
ADC1Mux OutAmpCap
Table 537. ADC1Mux OutAmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table.
Table 538. ADC1Mux OutAmpCap Command Response Format Bit [31] [30:23] [22:16] [15] [14:8] [7] [6:0] Bitfield Name Mute Rsvd3 StepSize Rsvd2 NumSteps Rsvd1 Offset RW R R R R R R R Reset 0x1 0x0 0x00 0x0 0x00 0x0 0x00 Description Amplifier is capable of muting Reserved Size of each step in the gain range, N/A since there are no steps Reserved No steps, gain is fixed at 0dB Reserved 0dB-step is programmed with this offset
6.36.7.
ADC1Mux OutAmpRight
Table 539. ADC1Mux OutAmpRight Command Verb Format Verb ID Get Set1 B80 390 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
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Table 540. ADC1Mux OutAmpRight Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd2 Mute Rsvd1 RW R RW R Reset 0x0 0x1 0x0 Reserved 1 = mute is active Reserved Description
6.36.8.
ADC1Mux OutAmpLeft
Table 541. ADC1Mux OutAmpLeft Command Verb Format Verb ID Get Set1 BA0 3A0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 542. ADC1Mux OutAmpLeft Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd2 Mute Rsvd1 RW R RW R Reset 0x0 0x1 0x0 Reserved 1 = mute is active Reserved Description
6.37. ADC2Mux Node (NID = 0x1D)
6.37.1. ADC2Mux WCap
Table 543. ADC2Mux WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table.
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Table 544. ADC2Mux WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe RW R R R R R R R R R R R Reset 0x0 0x3 0x0 0x0 0x1 0x0 0x0 0x1 0x0 0x0 0x0 Reserved Widget type = Audio Selector Number of sample delays through widget Reserved Left and right channels can be swapped No support for Power State control Widget supports an Analog stream Connection list is present No support for Unsolicited Response No Processing Controls parameter. No support for striping No format info; use default format parameters from Audio Function node instead This widget contains its own amplifier parameters. Output amp is present No input amp Stereo widget Description
[4]
FormatOvrd
R
0x0
[3] [2] [1] [0]
AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x1 0x1 0x0 0x1
6.37.2.
ADC2Mux ConLst
Table 545. ADC2Mux ConLst Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table.
IDTTM
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Table 546. ADC2Mux ConLst Command Response Format Bit [31:8] [7] Bitfield Name Rsvd LForm RW R R Reset 0x0 0x0 0x03 = Enabled 0x1 = Disabled Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
[6:0]
ConL
R
6.37.3.
ADC2Mux ConSelectCtrl
Table 547. ADC2Mux ConSelectCtrl Command Verb Format Verb ID Get Set1 F01 701 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 548. ADC2Mux ConSelectCtrl Command Response Format Bit [31:2] [1:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. Description
6.37.4.
ADC2Mux ConLstEntry
Table 549. ADC2Mux ConLstEntry Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table.
Table 550. ADC2Mux ConLstEntry Command Response Format Bit [31:24] [23:16] Bitfield Name ConL3 ConL2 RW R R Reset 0x00 0x14 = Enabled 0x0 = Disabled No connection DMic1 pin widget Description
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Table 550. ADC2Mux ConLstEntry Command Response Format Bit [15:8] [7:0] Bitfield Name ConL1 ConL0 RW R R Reset 0x13 = Enabled 0x0 = Disabled 0x1A Description DMic0 pin widget InPort2Vol widget
6.37.5.
ADC2Mux LR
Table 551. ADC2Mux LR Command Verb Format Verb ID Get Set1 F0C 70C Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 552. ADC2Mux LR Command Response Format Bit [31:3] [2] [1:0] Bitfield Name Rsvd2 SwapEn Rsvd1 RW R RW R Reset 0x0 0x0 0x0 Reserved 1 = swap left and right channels of this Widget. Reserved Description
6.37.6.
ADC2Mux OutAmpCap
Table 553. ADC2Mux OutAmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table.
Table 554. ADC2Mux OutAmpCap Command Response Format Bit [31] [30:23] [22:16] Bitfield Name Mute Rsvd3 StepSize RW R R R Reset 0x1 0x0 0x00 Description Amplifier is capable of muting Reserved Size of each step in the gain range, N/A since there are no steps
IDTTM
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Table 554. ADC2Mux OutAmpCap Command Response Format Bit [15] [14:8] [7] [6:0] Bitfield Name Rsvd2 NumSteps Rsvd1 Offset RW R R R R Reset 0x0 0x00 0x0 0x00 Reserved No steps, gain is fixed at 0dB Reserved 0dB-step is programmed with this offset Description
6.37.7.
ADC2Mux OutAmpRight
Table 555. ADC2Mux OutAmpRight Command Verb Format Verb ID Get Set1 B80 390 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
Table 556. ADC2Mux OutAmpRight Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd2 Mute Rsvd1 RW R RW R Reset 0x0 0x1 0x0 Reserved 1 = mute is active Reserved Description
6.37.8.
ADC2Mux OutAmpLeft
Table 557. ADC2Mux OutAmpLeft Command Verb Format Verb ID Get Set1 BA0 3A0 Payload 00 See bits [7:0] of bitfield table. Response See bitfield table. 0000_0000h
IDTTM
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Table 558. ADC2Mux OutAmpLeft Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd2 Mute Rsvd1 RW R RW R Reset 0x0 0x1 0x0 Reserved 1 = mute is active Reserved Description
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7. ORDERING INFORMATION 7.1. STAC9227/9228/9229/9230 Options and Part Order Numbers
Part Order Number STAC9230X5TAEyyX STAC9230D5TAEyyX STAC9229X5TAEyyX STAC9229D5TAEyyX STAC9229X3TAEyyX STAC9229D3TAEyyX STAC9228X5TAEyyX STAC9228D5TAEyyX STAC9228X3TAEyyX STAC9228D3TAEyyX STAC9227X5TAEyyX STAC9227D5TAEyyX STAC9227X3TAEyyX STAC9227D3TAEyyX Voltage 5 5 5 5 3.3 3.3 5 5 3.3 3.3 5 5 3.3 3.3 SNR 105dB 105dB 95dB 95dB 95dB 95dB 95dB 95dB 95dB 95dB 95dB 95dB 95dB 95dB DigMic Yes (Muxed) Yes (Muxed) Yes Yes Yes Yes Yes (Muxed) Yes (Muxed) Yes (Muxed) Yes (Muxed) No No No No ADAT Yes Yes Yes Yes Yes Yes No No No No No No No No Dolby No Master Studio No Home Theater/Sound Room No Home Theater/Sound Room No Home Theater/Sound Room No Home Theater/Sound Room No Home Theater/Sound Room No Home Theater/Sound Room
Table 559. STAC9227/9228/9229/9230 Options and Part Order Numbers
Note: When ordering these parts the "yy" will be replaced with the CODEC revision. Add an "R" to the end of any of these part numbers for delivery on Tape and Reel. The minimum order quantity for Tape and Reel is 2,000 units for 48-pin.
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8. PIN INFORMATION 8.1. STAC9227/28/29/30 48-Pin LQFP Diagram
Figure 4. 48-Pin LQFP Pinout
SPDIF OUT/ADAT_OUT SPDIF IN//GPIO0/EAPD/DMIC_CLK PORTH_R PORTH_L PORTG_R PORTG_L AVSS2 PORTA_R DVDD_CORE/VPP PORTA_L AVDD2 VREFOUT-A DVDD_CORE VOLUME UP/DMIC_0/GPIO1 VOLUME DOWN/DMIC_1/GPIO2 DVSS SDO BITCLK DVSS SDI DVDD_CORE SYNC RESET# PCBEEP 1 2 3 4 5 6 7 8 9 10 11 12 48 47 46 45 44 43 42 41 40 39 38 37 36 35 34 33 32 31 30 29 28 27 26 25
48 LQFP
PORTD_R PORTD_L SENSE_B CAP2 VREFOUT-D VREFOUT-E VREFOUT-F VREFOUT-C VREFOUT-B VREFFILT AVSS1 AVDD1
Note: ADAT, DMIC_CLK, DMIC_0, and DMIC_1 are not available on all versions of the STAC927x family. When DMIC_CLK, DMIC_0, and DMIC_1 are unavailable, the pins are N/C
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SENSE_A PORTE_L PORTE_R PORTF_L PORTF_R CD_L CD_GND CD_R PORTB_L PORTB_R PORTC_L PORTC_R
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8.2.
Pin Table
Table 560. Pin Table Pin Name DVDD_CORE Pin Function Digital Vdd = 3.3 V Volume Control OR Digital Mic 0 Input/General Purpose I/O Volume Control OR Digital Mic 1 Input/General Purpose I/O Digital Ground HD Audio Bit Clock Digital Ground HD Audio Serial Data (outbound stream) Digital Vdd = 3.3 V HD Audio Frame Sync HD Audio Reset PC Beep Jack insertion detection Ports A,B,C,D Input/Output of Left DAC2 Input/Output of Right DAC2 Input/Output of Left DAC3 Input/Output of Right DAC3 CD Audio Left Channel CD Audio Analog Ground CD Audio Right Channel Input/Output of Left DAC0,3 & 4 Input/Output of Right DAC0, 3 & 4 Input/Output of Left DAC1 Input/Output of Right DAC1 Analog Vdd = 3.3 V to 5 V Analog Ground Analog Virtual Ground Reference Voltage out drive (intended for mic bias) for Port B I/O I(Digital) I/O(Digital) Internal Pull-up/ Pull-down None Pull-Up 50 K with Volume, GPIO or Pull-down 50 K with Digital Mic Pull-Up 50 K with Volume, GPIO or Pull-down 50 K with Digital Mic None None None None None None None None None None None None None None None None None None None None None None None None None Pin Location 1 2
Volume Up/DMIC0/GPIO1
Volume Down/DMIC1/GPIO2 DVSS SDATA_OUT BIT_CLK DVSS3 SDATA_IN DVDD_CORE SYNC RESET# PCBEEP SENSE_A PORT-E_L PORT-E_R PORT-F_L PORT-F_R CD-L CD-GND CD-R PORT-B_L (HP) PORT-B_R (HP) PORT-C_L PORT-C_R AVDD1 AVSS1 VREF FILT VREFOUT-B
I/O(Digital) I(Digital) I(Digital) I(Digital) O(Digital) I(Digital) I(Digital) I(Digital) I(Analog) I(Analog) I/O(Analog) I/O(Analog) I/O(Analog) I/O(Analog) I(Analog) I(Analog) I(Analog) I/O(Analog) I/O(Analog) I/O(Analog) I/O(Analog) I(Analog) I(Analog) O(Analog) O(Analog)
3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28
HD Audio Serial Data output (inbound stream) I/O(Digital)
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Table 560. Pin Table Pin Name VREFOUT-C VREFOUT-F VREFOUT-E VREFOUT-D CAP2 SENSE_B PORT-D_L (HP) PORT-D_R (HP) VREFOUT-A AVDD2 PORT-A_L (HP) DVDD_CORE PORT-A_R (HP) AVSS3 PORT-G_L PORT-G_R PORT-H_L PORT-H_R SPDIFIN/GPIO0/EAPD/DMIC_CLK S/PDIF-OUT/ADAT_OUT Pin Function Reference Voltage out drive (intended for mic bias) for Port C Reference Voltage out drive (intended for mic bias) for Port F Reference Voltage out drive (intended for mic bias) for Port E Reference Voltage out drive (intended for mic bias) for Port D ADC reference Cap Jack insertion detection Ports E,F,G,H Input/Output of Left DAC0 Input/Output of Right DAC0 Reference Voltage out drive (ntended for mic bias) for Port A Analog Vdd = 3.3 V to 5 V Input/Output of Left DAC0,3 & 4 Digital Vdd = 3.3 V Input/Output of Right DAC0, 3 & 4 Analog Ground Input/Output of Left DAC2 Input/Output of Right DAC2 Input/Output of Left DAC1 Input/Output of Right DAC1 SPDIF Input, General Purpose I/O, EAPD, Digital Mic Ouput Clock SPDIF digital output (50 K internal pull-down), ADAT Output I/O O(Analog) O(Analog) O(Analog) O(Analog) O(Analog) I(Analog) I/O(Analog) I/O(Analog) O(Analog) I(Analog) I/O(Analog) I(Analog) I/O(Analog) I(Analog) I/O(Analog) I/O(Analog) I/O(Analog) I/O(Analog) I/O(Digital) O(Digital) Internal Pull-up/ Pull-down None None None None None None None None None None None None None None None None None None Pull-up 50 K or more 50 K internal pull-down Pin Location 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48
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9. PACKAGE OUTLINE AND PACKAGE DIMENSIONS
Package dimensions are kept current with JEDEC Publication No. 95.
9.1.
48-Pin LQFP
Figure 5. 48-Pin LQFP Package Outline and Package Dimensions
A2
D D1
b
A A1
Key
A A1 A2 D D1 E E1
LQFP Dimensions in mm Min Nom Max
1.40 0.05 1.35 8.80 6.90 8.80 6.90 0.45 0.09 0.17 1.50 0.10 1.40 9.00 7.00 9.00 7.00 0.60 0.50 0.22 0.20 0.27 1.60 0.15 1.45 9.20 7.10 9.20 7.10 0.75
E1
48 pin LQFP
e
Pin 1
E
L e C
c
b
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10. SOLDER REFLOW PROFILE 10.1. Standard Reflow Profile Data
Note: These devices can be hand soldered at 360 oC for 3 to 5 seconds. FROM: IPC / JEDEC J-STD-020C "Moisture/Reflow Sensitivity Classification for Nonhermetic Solid State Surface Mount Devices" (www.jedec.org/download).
Profile Feature
Average Ramp-Up Rate (Tsmax - Tp) Preheat Temperature Min (Tsmin) Temperature Max (Tsmax) Time (tsmin - tsmax) Temperature (TL) Time (tL) 3 oC / second max 150 oC 200 oC 60 - 180 seconds 217 oC 60 - 150 seconds
Pb Free Assembly
Time maintained above
Peak / Classification Temperature (Tp) Time within 5 oC of actual Peak Temperature (tp) Ramp-Down rate Time 25 oC to Peak Temperature
See "Package Classification Reflow Temperatures" on page 230. 20 - 40 seconds 6 oC / second max 8 minutes max
Note: All temperatures refer to topside of the package, measured on the package body surface.
Figure 6. Solder Reflow Profile
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10.2. Pb Free Process - Package Classification Reflow Temperatures
Package Type LQFP 48-pin MSL 3 Reflow Temperature 260 oC*
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11. REVISION HISTORY
Revision 0.3 Date July 2005 Initial release. Updated Pin Outs and Pin Tables, Added Updated performance tables to show all voltage options, Updated Diagrams, Added Widget Diagram, Added Pin Configuration Default Register Settings Table, Added Part Numbers. Added 56-QFN Reflow Profile Information. Added Widget Information. Updated ESD Information. Added 40dB Boost Information. Updated logo. Added ADAT logo. Added Audio Jack Presence Detect section. Updated Power Consumption numbers. Initial release in IDT format. Removed 56 QFN package option for STAC9230. Corrected the missing "X" in the orderable part number. Description of Change
0.5
August 2005
0.7 0.82 1.0
May 2006 8 October 2006 March 2007
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Innovate with IDT audio for high fidelity. Contact:
www.IDT.com
For Sales
800-345-7015 408-284-8200 Fax: 408-284-2775
For Tech Support
HA.CM@idt.com
Corporate Headquarters
Integrated Device Technology, Inc. 6024 Silver Creek Valley Road San Jose, CA 95138 United States 800 345 7015 +408 284 8200 (outside U.S.)
Europe
IDT Europe, Limited Prime House Barnett Wood Lane Leatherhead, Surrey United Kingdom KT22 7DE +44 1372 363 339
(c) 2006 Integrated Device Technology, Inc. All rights reserved. Product specifications subject to change without notice. IDT and the IDT logo are trademarks of Integrated Device Technology, Inc. Accelerated Thinking is a service mark of Integrated Device Technology, Inc. All other brands, product names and marks are or may be trademarks or registered trademarks used to identify products or services of their respective owners.


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