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 DATA SHEET
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH
DESCRIPTION
The STAC9202 is a high fidelity, 2-channel audio CODEC compliant with the High Definition Audio (HD Audio) specification defined by Intel. The STAC9202 implements direct interface to two digital microphones supporting advanced beam forming applications resulting in increased quality of applications requiring voice input.
STAC9202
DESCRIPTION
The STAC9202 is a high fidelity, 2-channel, audio CODEC compliant with the High Definition Audio (HD Audio) specification defined by Intel. The STAC9202 provides high quality, HD Audio capability to notebook and cost sensitive desktop PC applications. The STAC9202 incorporates IDT's proprietary technology to achieve a DAC SNR of 100 dB. The higher performance and quality of IDT's audio solutions brings consumer electronics level performance to the notebook, desktop and media center PC. The STAC9202 provides stereo, 24-bit, full duplex resolution supporting sample rates up to 192 KHz by the DAC and ADC. The STAC9202 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 STAC9202 supports flexible 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.
FEATURES *
High-integration HD Audio Product
* * *
2-channel PC Audio CODEC Dual Digital Microphone interface
Two-Channel DACs and ADCs with 24-bit sample resolution * High performance technology
* * * *
Sample rates up to 192 Hz 100dB DAC SNR
Integrated Headphone Amps Stereo Analog Microphone
* * * * * * * * *
Supports Stereo Microphone Microphone Boost 0, 10, 20, 30, 40dB
Dual Digital Microphone Interface optimized for use with Akustica Digital Microphones S/PDIF In and Out Universal JacksTM Functionality for jack retasking Adjustable VREF Out Digital PC Beep to all outputs +3.3 V, +4 V and +5 V analog power supply options 48-pin LQFP Environmental Package
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
1
STAC9202
V 1.1 102606
STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
Table of Contents
1. DESCRIPTION ........................................................................................................................... 9
1.1. Overview ........................................................................................................................................... 9 1.2. Features .......................................................................................................................................... 10
2. CHARACTERISTICS .............................................................................................................. 11
2.1. Audio Fidelity .................................................................................................................................. 11 2.2. Electrical Specifications ................................................................................................................... 11 2.3. STAC9202 5V Analog Performance Characteristics ....................................................................... 13 2.4. STAC9202 4V Analog Performance Characteristics ....................................................................... 14 2.5. STAC9202 3.3V Analog Performance Characteristics .................................................................... 14 2.6. Power Consumption ........................................................................................................................ 15
3. DETAILED DESCRIPTION ......................................................................................................16
3.1. SPDIF Input ..................................................................................................................................... 16 3.2. SPDIF Output .................................................................................................................................. 16 3.3. Digital Microphone Support ............................................................................................................. 16 3.4. Mono Out ......................................................................................................................................... 16 3.5. Headphone Drivers Restrictions ...................................................................................................... 16 3.6. Universal Jacks ............................................................................................................................... 17
4. FUNCTIONAL BLOCK DIAGRAM .......................................................................................... 18
4.1. STAC9202 ....................................................................................................................................... 18
5. WIDGET DIAGRAM ................................................................................................................. 19
5.1. STAC9202 Widget Diagram ............................................................................................................ 19 5.2. STAC9202 Widget List ................................................................................................................... 20 5.3. Root Node (NID = 0x00) .................................................................................................................. 21 5.4. AFG Node (NID = 0x01) .................................................................................................................. 22 5.5. DAC0Cnvtr Node (NID = 0x02) ....................................................................................................... 37 5.6. ADC0Cnvtr Node (NID = 0x03) ....................................................................................................... 41 5.7. SPDIFinCnvtr Node (NID = 0x04) ................................................................................................... 46 5.8. SPDIFoutCnvtr Node (NID = 0x05) ................................................................................................. 52 5.9. DAC0Mux Node (NID = 0x06) ......................................................................................................... 57 5.10. DigInPin Node (NID = 0x07) .......................................................................................................... 60 5.11. DigOutPin Node (NID = 0x08) ....................................................................................................... 66 5.12. ADC0VolMux Node (NID = 0x09) .................................................................................................. 71 5.13. MasterVol Node (NID = 0x0E) ....................................................................................................... 75 5.14. InPortMux Node (NID = 0x0F) ....................................................................................................... 78 5.15. PortAPin Node (NID = 0x0A) ......................................................................................................... 82 5.16. PortDPin Node (NID = 0x0D) ........................................................................................................ 88 5.17. PortCPin Node (NID = 0x0C) ........................................................................................................ 93 5.18. PortBPin Node (NID = 0x0B) ......................................................................................................... 99 5.19. MonoOutPin Node (NID = 0x10) ................................................................................................. 105 5.20. CDPin Node (NID = 0x11) ........................................................................................................... 110 5.21. MonoOutMix Node (NID = 0x12) ................................................................................................. 113 5.22. PCBeep Node (NID = 0x13) ........................................................................................................ 115 5.23. ADC0InMux Node (NID = 0x14) .................................................................................................. 118 5.24. DigMicPin Node (NID = 0x15) ..................................................................................................... 123
6. ORDERING INFORMATION .................................................................................................. 127
6.1. STAC9202 Options and Part Numbers ......................................................................................... 127
7. PIN INFORMATION ............................................................................................................... 128
7.1. STAC9202 Pin Diagram ................................................................................................................ 128 7.2. Pin Table for STAC9202 ............................................................................................................... 128
8. PACKAGE DRAWINGS ......................................................................................................... 131
8.1. 48-Pin LQFP .................................................................................................................................. 131
9. SOLDER REFLOW PROFILE ............................................................................................... 132
9.1. Standard Reflow Profile Data ........................................................................................................ 132
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
2
STAC9202
V 1.1 102606
STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
9.2. Pb Free Process - Package Classification Reflow Temperatures ................................................. 133
10. REVISION HISTORY ........................................................................................................... 134
List of Figures
Figure 1. STAC9202 Functional Block Diagram ........................................................................................... 18 Figure 2. STAC9202 Widget Diagram .......................................................................................................... 19 Figure 3. STAC9202 Pin Diagram .............................................................................................................. 128 Figure 4. 48-Pin LQFP Package Outline and Package Dimensions ........................................................... 131 Figure 5. Solder Reflow Profile ................................................................................................................... 132
List of Tables
Table 1. Digital Power Consumption ............................................................................................................. 15 Table 2. 5 V Analog Power Consumption ...................................................................................................... 15 Table 3. High Definition Audio Widget ........................................................................................................... 20 Table 4. Root PnpID Command Verb Format ................................................................................................ 21 Table 5. Root PnpID Command Response Format ....................................................................................... 21 Table 6. Root RevID Command Verb Format ................................................................................................ 21 Table 7. Root RevID Command Response Format ....................................................................................... 21 Table 8. Root NodeInfo Command Verb Format ........................................................................................... 22 Table 9. Root NodeInfo Command Response Format .................................................................................. 22 Table 10. AFG Reset Command Verb Format .............................................................................................. 22 Table 11. AFG Reset Command Response Format ...................................................................................... 23 Table 12. AFG NodeInfo Command Verb Format ......................................................................................... 23 Table 13. AFG NodeInfo Command Response Format ................................................................................. 23 Table 14. AFG Type Command Verb Format ................................................................................................ 24 Table 15. AFG Type Command Response Format ....................................................................................... 24 Table 16. AFG GrpCap Command Verb Format ........................................................................................... 24 Table 17. AFG GrpCap Command Response Format ................................................................................... 24 Table 18. AFG FrmtCap Command Verb Format .......................................................................................... 25 Table 19. AFG FrmtCap Command Response Format ................................................................................. 25 Table 20. AFG StreamCap Command Verb Format ...................................................................................... 26 Table 21. AFG StreamCap Command Response Format ............................................................................. 26 Table 22. AFG PwrCap Command Verb Format ........................................................................................... 26 Table 23. AFG PwrCap Command Response Format .................................................................................. 27 Table 24. AFG GPIOCap Command Verb Format ........................................................................................ 27 Table 25. AFG GPIOCap Command Response Format ................................................................................ 28 Table 26. AFG OutAmpCap Command Verb Format .................................................................................... 28 Table 27. AFG OutAmpCap Command Response Format ........................................................................... 28 Table 28. AFG PwrState Command Verb Format ......................................................................................... 29 Table 29. AFG PwrState Command Response Format ................................................................................. 29 Table 30. AFG UnsolResp Command Verb Format ...................................................................................... 29 Table 31. AFG UnsolResp Command Response Format .............................................................................. 30 Table 32. AFG GPIO Command Verb Format ............................................................................................... 30 Table 33. AFG GPIO Command Response Format ...................................................................................... 30 Table 34. AFG GPIOEn Command Verb Format .......................................................................................... 31 Table 35. AFG GPIOEn Command Response Format .................................................................................. 31 Table 36. AFG GPIODir Command Verb Format .......................................................................................... 32 Table 37. AFG GPIODir Command Response Format .................................................................................. 32 Table 38. AFG GPIOWake Command Verb Format ...................................................................................... 33 Table 39. AFG GPIOWake Command Response Format ............................................................................. 33
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
3
STAC9202
V 1.1 102606
STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
Table 40. AFG GPIOUnsolEn Command Verb Format ................................................................................. 33 Table 41. AFG GPIOUnsolEn Command Response Format ......................................................................... 34 Table 42. AFG GPIOSticky Command Verb Format ..................................................................................... 34 Table 43. AFG GPIOSticky Command Response Format ............................................................................. 35 Table 44. AFG SysID Command Verb Format .............................................................................................. 35 Table 45. AFG SysID Command Response Format ...................................................................................... 36 Table 46. AFG DigMic Command Verb Format ............................................................................................. 36 Table 47. AFG DigMic Command Response Format .................................................................................... 36 Table 48. DAC0Cnvtr Frmt Command Verb Format ...................................................................................... 37 Table 49. DAC0Cnvtr Frmt Command Response Format ............................................................................. 37 Table 50. DAC0Cnvtr WCap Command Verb Format ................................................................................... 38 Table 51. DAC0Cnvtr WCap Command Response Format .......................................................................... 38 Table 52. DAC0Cnvtr PwrState Command Verb Format .............................................................................. 39 Table 53. DAC0Cnvtr PwrState Command Response Format ...................................................................... 39 Table 54. DAC0Cnvtr Stream Command Verb Format ................................................................................. 40 Table 55. DAC0Cnvtr Stream Command Response Format ......................................................................... 40 Table 56. ADC0Cnvtr Frmt Command Verb Format ...................................................................................... 41 Table 57. ADC0Cnvtr Frmt Command Response Format ............................................................................. 41 Table 58. ADC0Cnvtr WCap Command Verb Format ................................................................................... 42 Table 59. ADC0Cnvtr WCap Command Response Format .......................................................................... 42 Table 60. ADC0Cnvtr ConnLen Command Verb Format .............................................................................. 43 Table 61. ADC0Cnvtr ConnLen Command Response Format ...................................................................... 43 Table 62. ADC0Cnvtr ConnLst Command Verb Format ................................................................................ 44 Table 63. ADC0Cnvtr ConnLst Command Response Format ....................................................................... 44 Table 64. ADC0Cnvtr ProcState Command Verb Format ............................................................................. 44 Table 65. ADC0Cnvtr ProcState Command Response Format ..................................................................... 44 Table 66. ADC0Cnvtr PwrState Command Verb Format .............................................................................. 45 Table 67. ADC0Cnvtr PwrState Command Response Format ...................................................................... 45 Table 68. ADC0Cnvtr Stream Command Verb Format ................................................................................. 45 Table 69. ADC0Cnvtr Stream Command Response Format ......................................................................... 45 Table 70. SPDIFinCnvtr Frmt Command Verb Format .................................................................................. 46 Table 71. SPDIFinCnvtr Frmt Command Response Format ......................................................................... 46 Table 72. SPDIFinCnvtr WCap Command Verb Format ............................................................................... 47 Table 73. SPDIFinCnvtr WCap Command Response Format ....................................................................... 47 Table 74. SPDIFinCnvtr FrmtCap Command Verb Format ........................................................................... 48 Table 75. SPDIFinCnvtr FrmtCap Command Response Format ................................................................... 48 Table 76. SPDIFinCnvtr StreamCap Command Verb Format ....................................................................... 49 Table 77. SPDIFinCnvtr StreamCap Command Response Format .............................................................. 50 Table 78. SPDIFinCnvtr ConnLen Command Verb Format ........................................................................... 50 Table 79. SPDIFinCnvtr ConnLen Command Response Format .................................................................. 50 Table 80. SPDIFinCnvtr ConnLst Command Verb Format ............................................................................ 50 Table 81. SPDIFinCnvtr ConnLst Command Response Format ................................................................... 51 Table 82. SPDIFinCnvtr Stream Command Verb Format .............................................................................. 51 Table 83. SPDIFinCnvtr Stream Command Response Format ..................................................................... 51 Table 84. SPDIFinCnvtr DigCtl Command Verb Format ............................................................................... 51 Table 85. SPDIFinCnvtr DigCtl Command Response Format ....................................................................... 52 Table 86. SPDIFoutCnvtr Frmt Command Verb Format ................................................................................ 52 Table 87. SPDIFoutCnvtr Frmt Command Response Format ....................................................................... 53 Table 88. SPDIFoutCnvtr WCap Command Verb Format ............................................................................. 54 Table 89. SPDIFoutCnvtr WCap Command Response Format .................................................................... 54 Table 90. SPDIFoutCnvtr FrmtCap Command Verb Format ......................................................................... 55 Table 91. SPDIFoutCnvtr FrmtCap Command Response Format ................................................................ 55 Table 92. SPDIFoutCnvtr StreamCap Command Verb Format ..................................................................... 56 Table 93. SPDIFoutCnvtr StreamCap Command Response Format ............................................................ 56 Table 94. SPDIFoutCnvtr Stream Command Verb Format ........................................................................... 56
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
4
STAC9202
V 1.1 102606
STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
Table 95. SPDIFoutCnvtr Stream Command Response Format ................................................................... 56 Table 96. SPDIFoutCnvtr DigCtl Command Verb Format ............................................................................. 57 Table 97. SPDIFoutCnvtr DigCtl Command Response Format ..................................................................... 57 Table 98. DAC0Mux WCap Command Verb Format ..................................................................................... 57 Table 99. DAC0Mux WCap Command Response Format ............................................................................ 58 Table 100. DAC0Mux ConnLen Command Verb Format .............................................................................. 58 Table 101. DAC0Mux ConnLen Command Response Format ...................................................................... 59 Table 102. DAC0Mux ConnSel Command Verb Format ............................................................................... 59 Table 103. DAC0Mux ConnSel Command Response Format ...................................................................... 59 Table 104. DAC0Mux ConnLst Command Verb Format ............................................................................... 59 Table 105. DAC0Mux ConnLst Command Response Format ....................................................................... 59 Table 106. DAC0Mux LR Command Verb Format ........................................................................................ 60 Table 107. DAC0Mux LR Command Response Format ................................................................................ 60 Table 108. DigInPin WCap Command Verb Format ...................................................................................... 60 Table 109. DigInPin WCap Command Response Format ............................................................................. 61 Table 110. DigInPin Cap Command Verb Format ......................................................................................... 61 Table 111. DigInPin Cap Command Response Format ................................................................................ 62 Table 112. DigInPin PwrState Command Verb Format ................................................................................. 62 Table 113. DigInPin PwrState Command Response Format ........................................................................ 62 Table 114. DigInPin Ctl Command Verb Format ........................................................................................... 63 Table 115. DigInPin Ctl Command Response Format ................................................................................... 63 Table 116. DigInPin UnsolResp Command Verb Format .............................................................................. 63 Table 117. DigInPin UnsolResp Command Response Format ..................................................................... 64 Table 118. DigInPin Sense Command Verb Format ..................................................................................... 64 Table 119. DigInPin Sense Command Response Format ............................................................................. 64 Table 120. DigInPin EAPD Command Verb Format ...................................................................................... 65 Table 121. DigInPin EAPD Command Response Format ............................................................................. 65 Table 122. DigInPin Config Command Verb Format ..................................................................................... 65 Table 123. DigInPin Config Command Response Format ............................................................................. 66 Table 124. DigOutPin WCap Command Verb Format ................................................................................... 66 Table 125. DigOutPin WCap Command Response Format .......................................................................... 66 Table 126. DigOutPin Cap Command Verb Format ...................................................................................... 67 Table 127. DigOutPin Cap Command Response Format .............................................................................. 67 Table 128. DigOutPin ConnLen Command Verb Format .............................................................................. 68 Table 129. DigOutPin ConnLen Command Response Format ...................................................................... 68 Table 130. DigOutPin ConnSel Command Verb Format ............................................................................... 69 Table 131. DigOutPin ConnSel Command Response Format ...................................................................... 69 Table 132. DigOutPin ConnLst Command Verb Format ............................................................................... 69 Table 133. DigOutPin ConnLst Command Response Format ....................................................................... 69 Table 134. DigOutPin Ctl Command Verb Format ........................................................................................ 70 Table 135. DigOutPin Ctl Command Response Format ................................................................................ 70 Table 136. DigOutPin Config Command Verb Format .................................................................................. 70 Table 137. DigOutPin Config Command Response Format .......................................................................... 70 Table 138. ADC0VolMux VolRight Command Verb Format .......................................................................... 71 Table 139. ADC0VolMux VolRight Command Response Format ................................................................. 71 Table 140. ADC0VolMux VolLeft Command Verb Format ............................................................................ 72 Table 141. ADC0VolMux VolLeft Command Response Format .................................................................... 72 Table 142. ADC0VolMux WCap Command Verb Format .............................................................................. 72 Table 143. ADC0VolMux WCap Command Response Format ..................................................................... 72 Table 144. ADC0VolMux OutAmpCap Command Verb Format .................................................................... 73 Table 145. ADC0VolMux OutAmpCap Command Response Format ........................................................... 73 Table 146. ADC0VolMux ConnLen Command Verb Format ......................................................................... 74 Table 147. ADC0VolMux ConnLen Command Response Format ................................................................ 74 Table 148. ADC0VolMux ConnLst Command Verb Format .......................................................................... 74 Table 149. ADC0VolMux ConnLst Command Response Format .................................................................. 74
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
5
STAC9202
V 1.1 102606
STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
Table 150. MasterVol Right Command Verb Format ..................................................................................... 75 Table 151. MasterVol Right Command Response Format ............................................................................ 75 Table 152. MasterVol Left Command Verb Format ....................................................................................... 75 Table 153. MasterVol Left Command Response Format .............................................................................. 75 Table 154. MasterVol WCap Command Verb Format ................................................................................... 76 Table 155. MasterVol WCap Command Response Format .......................................................................... 76 Table 156. MasterVol ConnLen Command Verb Format .............................................................................. 77 Table 157. MasterVol ConnLen Command Response Format ...................................................................... 77 Table 158. MasterVol ConnLst Command Verb Format ................................................................................ 77 Table 159. MasterVol ConnLst Command Response Format ....................................................................... 77 Table 160. InPortMux VolRight Command Verb Format ............................................................................... 78 Table 161. InPortMux VolRight Command Response Format ....................................................................... 78 Table 162. InPortMux VolLeft Command Verb Format .................................................................................. 78 Table 163. InPortMux VolLeft Command Response Format ......................................................................... 78 Table 164. InPortMux WCap Command Verb Format ................................................................................... 78 Table 165. InPortMux WCap Command Response Format .......................................................................... 79 Table 166. InPortMux ConnLen Command Verb Format .............................................................................. 79 Table 167. InPortMux ConnLen Command Response Format ...................................................................... 80 Table 168. InPortMux AmpCap Command Verb Format ............................................................................... 80 Table 169. InPortMux AmpCap Command Response Format ...................................................................... 80 Table 170. InPortMux ConnSel Command Verb Format ............................................................................... 81 Table 171. InPortMux ConnSel Command Response Format ...................................................................... 81 Table 172. InPortMux ConnLst0 Command Verb Format ............................................................................. 81 Table 173. InPortMux ConnLst0 Command Response Format ..................................................................... 81 Table 174. InPortMux ConnLst4 Command Verb Format ............................................................................. 81 Table 175. InPortMux ConnLst4 Command Response Format ..................................................................... 82 Table 176. PortAPin WCap Command Verb Format ..................................................................................... 82 Table 177. PortAPin WCap Command Response Format ............................................................................ 82 Table 178. PortAPin Cap Command Verb Format ........................................................................................ 83 Table 179. PortAPin Cap Command Response Format ................................................................................ 83 Table 180. PortAPin ConnLen Command Verb Format ................................................................................ 84 Table 181. PortAPin ConnLen Command Response Format ........................................................................ 84 Table 182. PortAPin ConnLst Command Verb Format .................................................................................. 84 Table 183. PortAPin ConnLst Command Response Format ......................................................................... 84 Table 184. PortAPin Ctl Command Verb Format ........................................................................................... 85 Table 185. PortAPin Ctl Command Response Format .................................................................................. 85 Table 186. PortAPin UnsolResp Command Verb Format ............................................................................. 85 Table 187. PortAPin UnsolResp Command Response Format ..................................................................... 85 Table 188. PortAPin Sense Command Verb Format ..................................................................................... 86 Table 189. PortAPin Sense Command Response Format ............................................................................ 86 Table 190. PortAPin Config Command Verb Format ..................................................................................... 87 Table 191. PortAPin Config Command Response Format ............................................................................ 87 Table 192. PortDPin WCap Command Verb Format ..................................................................................... 88 Table 193. PortDPin WCap Command Response Format ............................................................................ 88 Table 194. PortDPin Cap Command Verb Format ........................................................................................ 89 Table 195. PortDPin Cap Command Response Format ................................................................................ 89 Table 196. PortDPin ConnLen Command Verb Format ................................................................................ 89 Table 197. PortDPin ConnLen Command Response Format ........................................................................ 90 Table 198. PortDPin ConnLst Command Verb Format ................................................................................. 90 Table 199. PortDPin ConnLst Command Response Format ......................................................................... 90 Table 200. PortDPin Ctl Command Verb Format .......................................................................................... 90 Table 201. PortDPin Ctl Command Response Format .................................................................................. 91 Table 202. PortDPin UnsolResp Command Verb Format ............................................................................. 91 Table 203. PortDPin UnsolResp Command Response Format ..................................................................... 91 Table 204. PortDPin Sense Command Verb Format ..................................................................................... 92
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
6
STAC9202
V 1.1 102606
STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
Table 205. PortDPin Sense Command Response Format ............................................................................ 92 Table 206. PortDPin Config Command Verb Format .................................................................................... 92 Table 207. PortDPin Config Command Response Format ............................................................................ 93 Table 208. PortCPin WCap Command Verb Format ..................................................................................... 93 Table 209. PortCPin WCap Command Response Format ............................................................................ 93 Table 210. PortCPin Cap Command Verb Format ........................................................................................ 94 Table 211. PortCPin Cap Command Response Format ................................................................................ 94 Table 212. PortCPin ConnLen Command Verb Format ................................................................................ 95 Table 213. PortCPin ConnLen Command Response Format ........................................................................ 95 Table 214. PortCPin ConnLst Command Verb Format ................................................................................. 96 Table 215. PortCPin ConnLst Command Response Format ......................................................................... 96 Table 216. PortCPin Ctl Command Verb Format .......................................................................................... 96 Table 217. PortCPin Ctl Command Response Format .................................................................................. 96 Table 218. PortCPin UnsolResp Command Verb Format ............................................................................. 97 Table 219. PortCPin UnsolResp Command Response Format ..................................................................... 97 Table 220. PortCPin Sense Command Verb Format ..................................................................................... 98 Table 221. PortCPin Sense Command Response Format ............................................................................ 98 Table 222. PortCPin Config Command Verb Format .................................................................................... 98 Table 223. PortCPin Config Command Response Format ............................................................................ 99 Table 224. PortBPin WCap Command Verb Format ..................................................................................... 99 Table 225. PortBPin WCap Command Response Format ............................................................................ 99 Table 226. PortBPin Cap Command Verb Format ...................................................................................... 100 Table 227. PortBPin Cap Command Response Format .............................................................................. 100 Table 228. PortBPin ConnLen Command Verb Format .............................................................................. 101 Table 229. PortBPin ConnLen Command Response Format ...................................................................... 101 Table 230. PortBPin ConnLst Command Verb Format ................................................................................ 102 Table 231. PortBPin ConnLst Command Response Format ....................................................................... 102 Table 232. PortBPin Ctl Command Verb Format ......................................................................................... 102 Table 233. PortBPin Ctl Command Response Format ................................................................................ 102 Table 234. PortBPin UnsolResp Command Verb Format ........................................................................... 103 Table 235. PortBPin UnsolResp Command Response Format ................................................................... 103 Table 236. PortBPin Sense Command Verb Format ................................................................................... 104 Table 237. PortBPin Sense Command Response Format .......................................................................... 104 Table 238. PortBPin Config Command Verb Format ................................................................................... 104 Table 239. PortBPin Config Command Response Format .......................................................................... 105 Table 240. MonoOutPin Vol Command Verb Format .................................................................................. 105 Table 241. MonoOutPin Vol Command Response Format ......................................................................... 105 Table 242. MonoOutPin WCap Command Verb Format ............................................................................. 106 Table 243. MonoOutPin WCap Command Response Format ..................................................................... 106 Table 244. MonoOutPin Cap Command Verb Format ................................................................................. 107 Table 245. MonoOutPin Cap Command Response Format ........................................................................ 107 Table 246. MonoOutPin ConnLen Command Verb Format ......................................................................... 108 Table 247. MonoOutPin ConnLen Command Response Format ................................................................ 108 Table 248. MonoOutPin ConnLst Command Verb Format .......................................................................... 108 Table 249. MonoOutPin ConnLst Command Response Format ................................................................. 108 Table 250. MonoOutPin Ctl Command Verb Format ................................................................................... 109 Table 251. MonoOutPin Ctl Command Response Format .......................................................................... 109 Table 252. MonoOutPin Config Command Verb Format ............................................................................. 109 Table 253. MonoOutPin Config Command Response Format .................................................................... 109 Table 254. CDPin WCap Command Verb Format ....................................................................................... 110 Table 255. CDPin WCap Command Response Format .............................................................................. 110 Table 256. CDPin Cap Command Verb Format .......................................................................................... 111 Table 257. CDPin Cap Command Response Format .................................................................................. 111 Table 258. CDPin Ctl Command Verb Format ............................................................................................ 112 Table 259. CDPin Ctl Command Response Format .................................................................................... 112
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
7
STAC9202
V 1.1 102606
STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
Table 260. CDPin Config Command Verb Format ...................................................................................... 112 Table 261. CDPin Config Command Response Format .............................................................................. 113 Table 262. MonoOutMix WCap Command Verb Format ............................................................................. 113 Table 263. MonoOutMix WCap Command Response Format .................................................................... 114 Table 264. MonoOutMix ConnLen Command Verb Format ........................................................................ 114 Table 265. MonoOutMix ConnLen Command Response Format ................................................................ 115 Table 266. MonoOutMix ConnLst Command Verb Format ......................................................................... 115 Table 267. MonoOutMix ConnLst Command Response Format ................................................................. 115 Table 268. PCBeep Vol Command Verb Format ......................................................................................... 115 Table 269. PCBeep Vol Command Response Format ................................................................................ 116 Table 270. PCBeep WCap Command Verb Format .................................................................................... 116 Table 271. PCBeep WCap Command Response Format ........................................................................... 116 Table 272. PCBeep OutAmpCap Command Verb Format .......................................................................... 117 Table 273. PCBeep OutAmpCap Command Response Format ................................................................. 117 Table 274. PCBeep Gen Command Verb Format ....................................................................................... 117 Table 275. PCBeep Gen Command Response Format .............................................................................. 118 Table 276. ADC0InMux WCap Command Verb Format .............................................................................. 118 Table 277. ADC0InMux WCap Command Response Format ..................................................................... 118 Table 278. ADC0InMux ConnLen Command Verb Format ......................................................................... 119 Table 279. ADC0InMux ConnLen Command Response Format ................................................................. 119 Table 280. ADC0InMux ConnSel Command Verb Format .......................................................................... 120 Table 281. ADC0InMux ConnSel Command Response Format ................................................................. 120 Table 282. ADC0InMux ConnLst Command Verb Format .......................................................................... 120 Table 283. ADC0InMux ConnLst Command Response Format .................................................................. 120 Table 284. ADC0InMux LR Command Verb Format ................................................................................... 121 Table 285. ADC0InMux LR Command Response Format ........................................................................... 121 Table 286. ADC0InMux OutAmpCap Command Verb Format .................................................................... 121 Table 287. ADC0InMux OutAmpCap Command Response Format ........................................................... 121 Table 288. ADC0InMux VolRight Command Verb Format .......................................................................... 122 Table 289. ADC0InMux VolRight Command Response Format .................................................................. 122 Table 290. ADC0InMux VolLeft Command Verb Format ............................................................................. 122 Table 291. ADC0InMux VolLeft Command Response Format .................................................................... 122 Table 292. DigMicPin WCap Command Verb Format ................................................................................. 123 Table 293. DigMicPin WCap Command Response Format ........................................................................ 123 Table 294. DigMicPin Cap Command Verb Format .................................................................................... 124 Table 295. DigMicPin Cap Command Response Format ............................................................................ 124 Table 296. DigMicPin Ctl Command Verb Format ....................................................................................... 125 Table 297. DigMicPin Ctl Command Response Format .............................................................................. 125 Table 298. DigMicPin Config Command Verb Format ................................................................................. 125 Table 299. DigMicPin Config Command Response Format ........................................................................ 125
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
8
STAC9202
V 1.1 102606
STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
1. DESCRIPTION 1.1. Overview
The STAC9202 is a high fidelity, 2-channel, audio CODEC compliant with the High Definition Audio (HD Audio) specification defined by Intel. The STAC9202 provides high quality, HD Audio capability to notebook and cost sensitive desktop PC applications. The STAC9202 incorporates IDT's proprietary technology to achieve a DAC SNR of 100 dB. The higher performance and quality of IDT's audio solutions brings consumer electronics level performance to the notebook, desktop and media center PC. The STAC9202 provides stereo, 24-bit, full duplex resolution supporting sample rates up to 192 KHz by the DAC and ADC. The STAC9202 SPDIF_IN/SPDIF_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 STAC9202 supports flexible 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 STAC9202 has four General Purpose I/O (GPIO) pins. The STAC9202 also provides a single ended CD input for compatibility with DRM solutions and to support legacy OS issues. The STAC9202 integrates a headphone amplifier which is available on Ports A and D. The headphone amplifier is switchable between these two 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 allow the CODECs to be reconfigured to support these devices, regardless of which port they are plugged into. SPDIF input sensing is also supported. The fully parametric IDT 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 IDT STAC9202 reference design for circuit implementation details. The STAC9202 operates with a 3.3 V digital supply and a 3.3 V, 4 V and 5 V analog supply. The STAC9202 is available in a 48-pin LQFP Environmental (ROHS) package. The STAC9202 implements a direct interface to two digital microphones, supporting advanced beam forming applications resulting in increased quality of applications requiring voice input.
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1.2.
Features
* High-integration HD Audio Product * Two-channel PC Audio CODEC * Dual Digital Microphone interface Two-Channel DACs and ADCs with 24-bit sample resolution * High performance technology * Sample rates up to 192 KHz * 100dB DAC SNR Integrated Headphone Amps Stereo Analog Microphone * Supports Stereo Mic * Microphone Boost 0, 10, 20, 30, 40dB Dual Digital Microphone Interface optimized for use with Akustica Digital Microphones S/PDIF In and Out Universal JacksTM Functionality for jack retasking Adjustable VREF Out Digital PC Beep to all outputs +3.3 V, 4 V and +5 V analog power supply options 48-pin LQFP Environmental Package
*
* *
* * * * * * *
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2. CHARACTERISTICS 2.1. Audio Fidelity
DAC SNR: ADC SNR: 100dB 90dB
2.2.
Electrical Specifications
2.2.1. Absolute Maximum Ratings
Stresses above the ratings listed below can cause permanent damage to the STAC9202. 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 132.
2.2.2.
Recommended Operation Conditions Parameter Min.
Digital - 3.3 V Analog - 3.3 V 3.135 3.135 3.8 4.75 0 Tcase (48-LQFP)
Typ.
3.3 3.3 4 5
Max.
3.465 3.465 4.2 5.25 +70 +90
Units
V V V V C C
Power Supply Voltage
(Note: The +4 V Analog voltage is supported by the +5 V version of the STAC9202.)
Analog - 4 V Analog - 5 V
Ambient Operating Temperature Case Temperature
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ESD: The STAC9202 is an ESD (electrostatic discharge) sensitive device. The human body and test equipment can accumulate and discharge electrostatic charges up to 4000 Volts without detection. Even though the STAC9202 implements internal ESD protection circuitry, proper ESD precautions should be followed to avoid damaging the functionality or performance.
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2.3.
STAC9202 5V Analog Performance Characteristics
(Tambient = 25 C, AVdd = 5.0 V 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, 0dB settings on all gain stages) Min and Max performance targets are not included here. Specific system characteristics, such as layout, routing and external CODEC component selection influence the performance of the CODEC. To receive min/max levels for your system, please send us a unit and IDT will perform a full audio test suite and provide you with the results. Parameter Full Scale Input Voltage: All Analog Inputs with out boost All Analog Inputs with boost (Note 1) Full Scale Output: PCM (DAC) to All Analog Outputs HEADPHONE_OUT (32 load) per channel Dynamic Range: -60dB signal level (Note 2) PCM to All Analog Outputs All Analog Inputs to A/D (1 VRMS Input Referenced) Analog Frequency Response (Note 3) Total Harmonic Distortion + Noise (-3dB): (Note 4) PCM to All Analog Outputs All Analog Inputs to A/D (-3dBV input Level) HEADPHONE_OUT (32 load) HEADPHONE_OUT (10 K load) SNR (idle channel) (Note 5) DAC to All Analog Outputs All Analog Inputs to A/D with High Pass Filter enabled A/D & D/A Digital Filter Pass Band (Note 6) A/D & D/A Digital Filter Transition Band A/D & D/A Digital Filter Stop Band A/D & D/A Digital Filter Stop Band Rejcn (Note 7) DAC Out-of-Band Rejection (Note 8) Group Delay (48 KHz sample rate) Power Supply Rejection Ratio (1 KHz) Power Supply Rejection Ratio (20 KHz) Any Analog Input to ADC (10 KHz Signal Frequency) Crosstalk Any Analog Input to ADC (1 KHz Signal Frequency) Crosstalk 20 19,200 28,800 -100 -55 100 89 -70 -40 -90 -90 19,200 28,800 1 dB dB Hz Hz Hz dB dB ms dB dB dB dB -90 -87 -87 -90 dB dB dB dB 10 99 88 30,000 dB dB Hz 1.00 50 Vrms mWpk 1.00 0.03 Vrms Vrms Min Typ Max Unit
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Parameter Spurious Tone Rejection Attenuation, Gain Step Size ANALOG Attenuation, Gain Step Size DIGITAL Input Impedance Input Capacitance VREFout VREF Interchannel Gain Mismatch ADC Interchannel Gain Mismatch DAC Gain Drift DAC Offset Voltage Deviation from Linear Phase All Analog Outputs Load Resistance All Analog Outputs Load Capacitance HEADPHONE_OUT Load Resistance HEADPHONE_OUT Load Capacitance Mute Attenuation PLL lock time PLL (or HD Audio Bit CLK) 24.576 MHz clock jitter
Min -
Typ -100 1.5 0.75 50 15 0.5 X AVdd 0.45X AVdd 100 5 10 10 32 100 96 100
Max 0.5 0.5 10 1 50 200 300
Unit dB dB dB KW pF V V dB dB ppm/C mV deg. K pF
pF dB sec psec
1. With +30 dB Boost on, 1.00 Vrms with Boost off. 2. Ratio of Full Scale signal to noise output with -60dB signal, measured "A weighted" over a 20 Hz to a 20 KHz bandwidth. 3. 1dB limits for Line Output & 0 dB gain, at -20dBV 4. Amplitude of THD+N, measured with A-weighting filter, over 20 Hz to 20 KHz bandwidth. 5. 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). 6. Peak-to-Peak Ripple over Passband meets 0.25dB limits, 48 KHz Sample Frequency. 7. Stop Band rejection determines filter requirements. Out-of-Band rejection determines audible noise. 8. 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.
2.4.
STAC9202 4V Analog Performance Characteristics
If you are interested in using the STAC9202 at 4V Analog, please contact IDT for more information.
2.5.
STAC9202 3.3V Analog Performance Characteristics
If you are interested in using the STAC9202 at 3.3V Analog, please contact IDT for more information.
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2.6.
Power Consumption
2.6.1. Digital
Table 1. Digital Power Consumption Power State D0 D1 D2 D3 Typical 20 14 14 14 Max 25 17 17 17 units mA mA mA mA
2.6.2.
5V Analog
Table 2. 5 V Analog Power Consumption Power State D0 D1 D2 D3 Typical 30 12 12 11 Max 36 26 26 26 units mA mA mA mA
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3. DETAILED DESCRIPTION 3.1. SPDIF Input
SPDIF_IN can operate at 44.1 KHz, 48 KHz or 96 KHz and implements internal Jack Sensing. 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.
3.2.
SPDIF Output
SPDIF_OUT 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.
3.3.
Digital Microphone Support
The STAC9202 has a three-pin digital microphone interface that accepts high-rate, single-bit data streams from two digital microphones. Each microphone requires only one data line, and both microphones share a single clock line. This robust digital interface gives designers the flexibility to place the microphones in the optimum physical location on a system (such as along the top of the screen bezel) and use a simple, 3-wire ribbon cable to directly connect the microphones to the STAC9202 CODEC.
3.4.
Mono Out
The MONO Output is connected to pin 37 and has independent volume and mute control (see the Widget listing for details). The MONO Output derives its input from the output of the summing node that drives PORT A and PORT D. The following analog signals feed the summing amplifier that feeds the MONO Out summing amplifier: * * * DAC Output: When enabled, both DAC Outputs are summed together. Analog PC BEEP: Source from Pin 12 ADC Input: Stereo analog feed into the stereo ADC input.
The signals of the stereo channels from the DAC are combined into a single analog signal with a -6dB degradation in signal strength.
3.5.
Headphone Drivers Restrictions
It is not recommended that users operate both Port A and Port D as headphone drivers simultaneously. The operation of the two ports as headphone drivers degrades the signal quality of both outputs.1 Note: 1) Headphone capabilities are on Port A (pins 39/41) and Port D (pins 35/36). Do NOT put headphone loads on both sets of pins at the same time.
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3.6.
Universal Jacks
IDT's Universal Jacks technology allows for flexibility in board design and implementation. On the STAC9202, only one function can be selected at a time. A set of pins cannot be set as input and output at the same time. However, the selected function can be changed at any time. For the STAC9202 the Universal Jacks capabilities are as follows * All of the STAC9202 ports support: * Line Out * Line In * Mic with 0/10/20/30/402 dB Mic Boost Ports A and D also support: * Headphone Out1
*
Note: 1) Headphone capabilities are on Port A (pins 39/41) and Port D (pins 35/36). Do NOT put headphone loads on both sets of pins at the same time. Note: 2) When the 40dB mic boost feature is enabled, additional 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.
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4. FUNCTIONAL BLOCK DIAGRAM 4.1. STAC9202
Figure 1. STAC9202 Functional Block Diagram
SD0
Pin 5
Stream/ Channel Select
SPDIF Receiver
BIT_CLK SDICODEC SYNC
Pin 6
Pin 47 SPDIF IN
AZALIA LINK LOGIC
Pin 10
Stream/ Channel Select
MUX
Pin 8
PCM to SPDIF OUT
SPDIF Pin 48
Pin 12 Analog PC Beep
-6dB
Pin 11
Reset #
vol
mute
+0 dB
MONO_OUT Pin 37
Stream/ Channel Select
DAC A Analog
Stream/ Channel Select
DAC A Digital
vol
mute
HP Out HP Out
MUX
Pin Complex Pins 39/41
Port A
Pin Complex Pins 35/36
Port D
Digital PC Beep
Line Out Line Out
Pin Complex Pins 23/24
Port C
Pin Complex Pins 21/22
Port B
STEREO ADC
Pin 13: Pin 27: Pin 28: Pin 29: Pin 32: Pin 33: Pin 34: Pin 45: Pin 47: Sense A VREF In VREF Out (switchable Mic Bias) VREF Out (switchable Mic Bias) CAP 2 GPIO0 GPIO1 GPIO2 GPIO3
+22 dB
mute
vol
MIC Boost
CD In
CD Pin Complex Pins 18/20
Digital Mic Interface Clock Control
DMIC_L, DMIC_R DMI_CLK
Pins 43/44 Pin 46
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5. WIDGET DIAGRAM 5.1. STAC9202 Widget Diagram
Figure 2. STAC9202 Widget Diagram
Digital Analog
4h 7h
Stereo Input SD0 Pin 5 Bit CLK Pin 6 SDI Pin 8 SYNC Pin 10 Stereo ADC Input SPDIF IN SPDIF In Pin SPDIF In
Actual Pin 47
14h
0 to +22.5
9h
Volume
0, 10, 20, 30, 40dB Amp
3h
ADC In Mux ADC Vol Mux
Mute
Fh
3 In Port Mux 2 1 0 4
Volume
HP: 0
Ah
HP Out
Port A
Pin HP Out, LineOut, LineIn, MIC
Azalia Link
Reset # Pin 11
LR Swap
Universal Jack TM Actual Pins 39/41
2h
Stereo DAC Output Loop 3 2 0 1 DAC Mixer LR Swap
0 to -46.5
Eh 6h
Volume/Mute
HP: 0
Dh
Port D Line Out
Universal Jack TM Actual Pins 35/36
Master Volume
Pin HP Out, LineOut, LineIn, MIC
5h
Stereo SPDIF Output 1 0 SPDIF Out Pin
8h
Analog PC Beep Pin 12
Ch
Pin LineOut, LineIn, MIC Line In
Port C
Universal Jack TM Actual Pins 23/24
SPDIFOut
Actual Pin 48
Bh
Pin LineOut, LineIn, MIC MIC
Port B
13h Pin Pin Pin Pin Pin Pin Pin Pin 13: 27: 28: 32: 33: 34: 45: 47: Sense A VREF In VREF Out (switchable Mic Bias) CAP 2 GPIO0 GPIO1 GPIO2 GPIO3
Digital PC Beep
Universal Jack TM Actual Pins 21/22
12h
Mono Mix Pin MONO Out
10h
Volume/Mute
MONO Out
Actual Pin 37
11h
Pin CD In CD
Actual Pins 18/20
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5.2.
STAC9202 Widget List
Table 3. High Definition Audio Widget
ID 00h 01h 02h 03h 04h 05h 06h 07h 08h 09h 0Eh 0Fh 0Ah 0Dh 0Ch 0Bh 10h 11h 12h 13h 14h 15h
Widget Name Root Audio Function Group DAC0 ADC0 SPDIF_IN SPDIF_OUT DAC0Mux DigPin1 DigPin0 ADC0VolMux MasterVolume InPortMux Port A Port D Port C Port B MonoOut CD MonoOutMix Digital PC Beep ADC0InMux DigMicPin
Description Root Node Audio Function Group Stereo Ouput to DAC Stereo Input from ADC Stereo Input for SPDIF_IN Stereo Output for SPDIF_OUT DAC Mux and Boost for outputs for DAC Pin Widget for SPDIF_IN pin 47 Pin Widget for SPDIF_OUT pin 48 ADC0 Volume Master Volume Controls Port Mux for ADC0 Port A Pin Widget (Pins 39/41, configurable as HP, Line In, Line Out, Mic) Port D Pin Widget (Pins 35/36, configurable as HP, Line In, Line Out, Mic) Port C Pin Widget (Pins 23/24, configurable as Line Out, Mic) Port B Pin Widget (Pins 21/22, configurable as Line Out, Mic) Mono Output from DAC CD Pin Widget pins 18/19/20 Mixer for Mono Output Digital PC Beep Input Mux for ADC converter Pin Widget for Digital Microphone (Pins 43/44/46 configurable as a Mic)
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5.3.
Root Node (NID = 0x00)
5.3.1. Root PnpID
Table 4. Root PnpID Command Verb Format Verb ID Get F00 Payload 00 Response See bitfield table
Table 5. Root PnpID Command Response Format Bit [31:16] Bitfield Name Vendor RW R Reset 0x8384 Description Vendor ID = 8384h Device ID for: STAC9202 = 7632 STAC9202 Dolby = 7633
[15:0]
Device
R
0x7630
5.3.2.
Root RevID
Table 6. Root RevID Command Verb Format Verb ID Get F00 Payload 02 Response See bitfield table
Table 7. Root RevID Command Response Format Bit [31:24] [23:20] Bitfield Name Rsvd Major RW R R Reset 0x00 0x1 Reserved Major rev number of compliant HD Audio specification Minor rev number of compliant HD Audio specification Vendor rev number for this device ID Vendor stepping number within the given Vendor RevID Description
[19:16] [15:8] [7:0]
Minor Vendor Stepping
R R R
0x0 0x01 0x01
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5.3.3.
Root NodeInfo
Table 8. Root NodeInfo Command Verb Format Verb ID Get F00 Payload 04 Response See bitfield table
Table 9. 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
5.4.
AFG Node (NID = 0x01)
5.4.1. AFG Reset
Table 10. 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 11. 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
5.4.2.
AFG NodeInfo
Table 12. AFG NodeInfo Command Verb Format Verb ID Get F00 Payload 04 Response See bitfield table
Table 13. 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 0x02 0x0 0x14 Reserved Starting node number for function group subordinate nodes. Reserved Total number of nodes. 14h = STAC9202 Description
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5.4.3.
AFG Type
Table 14. AFG Type Command Verb Format Verb ID Get F00 Payload 05 Response See bitfield table
Table 15. 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
5.4.4.
AFG GrpCap
Table 16. AFG GrpCap Command Verb Format Verb ID Get F00 Payload 08 Response See bitfield table
Table 17. AFG GrpCap 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 HD Audio link. Description
[11:8]
InputDelay
R
0xD
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Table 17. AFG GrpCap Command Response Format Bit [7:4] Bitfield Name Rsvd1 RW R Reset 0x0 Reserved Typical latency = 13 frames. Number of samples between when the signal is received from the HD Audio link and when it appears as an analog signal at the pin. Description
[3:0]
OutputDelay
R
0xD
5.4.5.
AFG FrmtCap
Table 18. AFG FrmtCap Command Verb Format Verb ID Get F00 Payload 0A Response See bitfield table
Table 19. AFG FrmtCap Command Response Format Bit [31:21] [20] [19] [18] [17] [16] [15:12] [11] [10] [9] [8] [7] Bitfield Name Rsvd2 B32 B24 B20 B16 B8 Rsvd1 R12 R11 R10 R9 R8 RW 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 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 Description
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Table 19. AFG FrmtCap Command Response Format Bit [6] [5] [4] [3] [2] [1] [0] Bitfield Name R7 R6 R5 R4 R3 R2 R1 RW R R R R R R R Reset 0x1 0x1 0x0 0x0 0x0 0x0 0x0 Description 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
5.4.6.
AFG StreamCap
Table 20. AFG StreamCap Command Verb Format Verb ID Get F00 Payload 0B Response See bitfield table
Table 21. AFG StreamCap 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 (AC3) data. No support for single-precision floating-point data. PCM-formatted data supported. Description
5.4.7.
AFG PwrCap
Table 22. AFG PwrCap Command Verb Format Verb ID Get F00 Payload 0F Response See bitfield table
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Table 23. AFG PwrCap 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 10 ms. Power State D1 is supported. Allows for lowest possible power consuming state from which it can return to fully on state within 10 ms, excepting analog pass-through circuits which must remain fully on. Power State D0 is supported. Node power state is fully on. Description
[3]
D3
R
0x1
[2]
D2
R
0x1
[1]
D1
R
0x1
[0]
D0
R
0x1
5.4.8.
AFG GPIOCap
Table 24. AFG GPIOCap Command Verb Format Verb ID Get F00 Payload 11 Response See bitfield table
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Table 25. AFG GPIOCap Command Response Format Bit Bitfield Name RW Reset Description Wake capability. Assuming the Wake Enable Mask controls are enabled, GPIOs 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, GPIOs 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 Number of GPO pins supported Number of GPIO pins supported
[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 0x04
5.4.9.
AFG OutAmpCap
Table 26. AFG OutAmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table
Table 27. AFG OutAmpCap Command Response Format Bit [31] [30:23] [22:16] [15] Bitfield Name Mute Rsvd3 StepSize Rsvd2 RW R R R R Reset 0x1 0x0 0x05 0x0 Description Amplifier is capable of muting Reserved Size of each step in the gain range = 1.5dB Reserved
IDTTM
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Table 27. AFG OutAmpCap Command Response Format Bit [14:8] [7] [6:0] Bitfield Name NumSteps Rsvd1 Offset RW R R R Reset 0x1F 0x0 0x1F Description Number of steps in the gain range = 31 (32 values, -46.5dB to +0dB) Reserved 0dB-step is programmed with this offset
5.4.10.
AFG PwrState
Table 28. 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 29. 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 HD Audio Description
[1:0]
Set
RW
0x2
5.4.11.
AFG UnsolResp
Table 30. 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
IDTTM
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Table 31. 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
5.4.12.
AFG GPIO
Table 32. 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 33. AFG GPIO Command Response Format Bit [31:4] Bitfield Name Rsvd RW R Reset 0x0 Reserved Data for GPIO3 (Pin 47/EAPD). 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 (Pin 45). 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
[3]
Data3
RW
0x0
[2]
Data2
RW
0x0
IDTTM
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Table 33. AFG GPIO Command Response Format Bit Bitfield Name RW Reset Description Data for GPIO1 (Pin 34). 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 (Pin 33). 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
5.4.13.
AFG GPIOEn
Table 34. 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 35. AFG GPIOEn Command Response Format Bit [31:4] Bitfield Name Rsvd RW R Reset 0x0 Reserved 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
[3]
Mask3
RW
0x0
[2]
Mask2
RW
0x0
IDTTM
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Table 35. 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
5.4.14.
AFG GPIODir
Table 36. 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 37. AFG GPIODir Command Response Format Bit [31:4] Bitfield Name Rsvd RW R Reset 0x0 Reserved 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
[3]
Control3
RW
0x0
[2]
Control2
RW
0x0
[1]
Control1
RW
0x0
[0]
Control0
RW
0x0
IDTTM
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5.4.15.
AFG GPIOWake
Table 38. AFG GPIOWake 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 39. AFG GPIOWake Command Response Format Bit [31:4] Bitfield Name Rsvd RW R Reset 0x0 Reserved Wake enable for GPIO3: 0 = wake-up event is disabled; 1 = when HD Audio 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 HD Audio 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 HD Audio 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 HD Audio link is powered down (RST# is asserted), a wake-up event will trigger a Status Change Request event on the link. Description
[3]
En3
RW
0x0
[2]
En2
RW
0x0
[1]
En1
RW
0x0
[0]
En0
RW
0x0
5.4.16.
AFG GPIOUnsolEn
Table 40. AFG GPIOUnsolEn Command Verb Format Verb ID Get Set1 F19 719 Payload 00 See bits [7:0] of bitfield table Response See bitfield table 0000_0000h
IDTTM
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Table 41. AFG GPIOUnsolEn Command Response Format Bit [31:4] Bitfield Name Rsvd RW R Reset 0x0 Reserved 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 GPIO3 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 GPIO2 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 GPIO1 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
[3]
Mask3
RW
0x0
[2]
Mask2
RW
0x0
[1]
Mask1
RW
0x0
[0]
Mask0
RW
0x0
5.4.17.
AFG GPIOSticky
Table 42. 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
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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Table 43. AFG GPIOSticky Command Response Format Bit [31:4] Bitfield Name Rsvd RW R Reset 0x0 Reserved 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. GPIO2input 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. GPIO1input 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. GPIO0input 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
[3]
Mask3
RW
0x0
[2]
Mask2
RW
0x0
[1]
Mask1
RW
0x0
[0]
Mask0
RW
0x0
5.4.18.
AFG SysID
Table 44. AFG SysID 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 [15:8] of bitfield table See bits [23:16] of bitfield table See bits [31:24] of bitfield table Response See bitfield table 0000_0000h 0000_0000h 0000_0000h 0000_0000h
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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Table 45. AFG SysID Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Subsystem3 Subsystem2 Subsystem1 Assembly RW RW RW RW RW Reset 0x00 0x00 0x01 0x00 Description Subsystem ID. (Any non-zero value) Subsystem ID. (Any non-zero value) Subsystem ID. (Any non-zero value) Assembly ID. (Not applicable to CODEC vendors)
5.4.19.
AFG DigMic
Table 46. AFG DigMic Command Verb Format Verb ID Get Set1 FEA 7EA Payload 00 See bits [7:0] of bitfield table Response See bitfield table 0000_0000h
Table 47. AFG DigMic Command Response Format Bit [31:8] 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 MHz 1 = 3 MHz 2 = 2 MHz 3 = 1 MHz Description
[7:6]
PhAdj
RW
0x0
[5:4]
Rate
RW
0x2
IDTTM
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Table 47. AFG DigMic Command Response Format Bit [3:2] Bitfield Name Rsvd2 RW R Reset 0x0 Reserved Selects the DigMic mode: 0 = disabled 1 = dual mono 2 = single stereo 0 3 = single stereo 1 Description
[1:0]
Mode
RW
0x1
5.5.
DAC0Cnvtr Node (NID = 0x02)
5.5.1. DAC0Cnvtr Frmt
Table 48. DAC0Cnvtr Frmt 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 49. DAC0Cnvtr Frmt 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 Description
[14]
RateBase
RW
0x0
[13:11]
RateMult
RW
0x0
IDTTM
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Table 49. DAC0Cnvtr Frmt Command Response Format Bit Bitfield Name RW Reset Description 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 in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[10:8]
RateDiv
RW
0x0
[7]
Rsvd1
R
0x0
[6:4]
NumBits
RW
0x3
[3:0]
NumChan
RW
0x1
5.5.2.
DAC0Cnvtr WCap
Table 50. DAC0Cnvtr WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 51. DAC0Cnvtr WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] Bitfield Name Rsvd2 Type Delay Rsvd1 RW R R R R Reset 0x0 0x0 0xD 0x0 Reserved Widget type = Audio Output Number of sample delays through widget Reserved Description
IDTTM
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Table 51. DAC0Cnvtr WCap Command Response Format Bit [11] [10] [9] [8] [7] [6] [5] [4] Bitfield Name SwapCap PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd RW R R R R R R R R Reset 0x0 0x1 0x0 0x0 0x0 0x0 0x0 0x0 Description No left/right channel swap capability 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 No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget
[3] [2] [1] [0]
AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x0 0x0 0x0 0x1
5.5.3.
DAC0Cnvtr PwrState
Table 52. DAC0Cnvtr 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 53. DAC0Cnvtr PwrState Command Response Format Bit [31:8] [7:4] Bitfield Name Rsvd2 Act RW R R Reset 0x0 0x3 Reserved PS-Act: Actual power state of referenced node. Description
IDTTM
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Table 53. DAC0Cnvtr PwrState Command Response Format Bit [3:2] Bitfield Name Rsvd1 RW R Reset 0x0 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
5.5.4.
DAC0Cnvtr Stream
Table 54. DAC0Cnvtr Stream 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 55. DAC0Cnvtr Stream 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]
ID
RW
0x0
[3:0]
Ch
RW
0x0
IDTTM
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5.6.
ADC0Cnvtr Node (NID = 0x03)
5.6.1. ADC0Cnvtr Frmt
Table 56. ADC0Cnvtr Frmt 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 57. ADC0Cnvtr Frmt 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]
StrmType
RW
0x0
[14]
RateBase
RW
0x0
[13:11]
RateMult
RW
0x0
[10:8]
RateDiv
RW
0x0
[7]
Rsvd1
R
0x0
IDTTM
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Table 57. ADC0Cnvtr Frmt 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 in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[6:4]
NumBits
RW
0x3
[3:0]
NumChan
RW
0x1
5.6.2.
ADC0Cnvtr WCap
Table 58. ADC0Cnvtr WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 59. ADC0Cnvtr 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 DigitalStrm 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 channel 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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Table 59. ADC0Cnvtr 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]
AmpParamOvrd
R
0x0
[2] [1] [0]
OutAmpPrsnt InAmpPrsnt Stereo
R R R
0x0 0x0 0x1
5.6.3.
ADC0Cnvtr ConnLen
Table 60. ADC0Cnvtr ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
Table 61. ADC0Cnvtr ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N 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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5.6.4.
ADC0Cnvtr ConnLst
Table 62. ADC0Cnvtr ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 63. ADC0Cnvtr ConnLst Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x00 0x14 Description Unused list entry. Unused list entry. Unused list entry. ADC0InMux
5.6.5.
ADC0Cnvtr ProcState
Table 64. ADC0Cnvtr 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 65. ADC0Cnvtr 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]
HPFOffsetDis
RW
0x0
[6:2]
Rsvd1
R
0x0
[1:0]
HPFByp
RW
0x1
IDTTM
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5.6.6.
ADC0Cnvtr PwrState
Table 66. ADC0Cnvtr 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 67. ADC0Cnvtr 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 powered down) Description
[1:0]
Set
RW
0x3
5.6.7.
ADC0Cnvtr Stream
Table 68. ADC0Cnvtr Stream 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 69. ADC0Cnvtr Stream Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Description
IDTTM
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STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
Table 69. ADC0Cnvtr Stream Command Response Format Bit Bitfield Name RW Reset Description 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
[7:4]
ID
RW
0x0
[3:0]
Ch
RW
0x0
5.7.
SPDIFinCnvtr Node (NID = 0x04)
5.7.1. SPDIFinCnvtr Frmt
Table 70. SPDIFinCnvtr Frmt 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 71. SPDIFinCnvtr Frmt Command Response Format Bit [31:16] Bitfield Name Rsvd2 RW R Reset 0x0 Reserved N/A. (Stream Type 0 = PCM 1 = Non-PCM) 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 Description
[15]
StrmType
RW
0x0
[14]
RateBase
RW
0x0
[13:11]
RateMult
RW
0x0
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
Table 71. SPDIFinCnvtr Frmt Command Response Format Bit Bitfield Name RW Reset Description 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 in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels
[10:8]
RateDiv
RW
0x0
[7]
Rsvd1
R
0x0
[6:4]
NumBits
RW
0x3
[3:0]
NumChan
RW
0x1
5.7.2.
SPDIFinCnvtr WCap
Table 72. SPDIFinCnvtr WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 73. SPDIFinCnvtr WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] Bitfield Name Rsvd2 Type Delay Rsvd1 RW R R R R Reset 0x0 0x1 0x4 0x0 Reserved Widget type = Audio Input Number of sample delays through widget Reserved Description
IDTTM
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PC AUDIO
Table 73. SPDIFinCnvtr WCap Command Response Format Bit [11] [10] [9] [8] [7] [6] [5] [4] Bitfield Name SwapCap PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd RW R R R R R R R R Reset 0x0 0x0 0x1 0x1 0x0 0x0 0x0 0x1 Description No left/right channel swap capability No support for Power State control Widget supports a Digital stream Connection list is present No support for Unsolicited Response 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
[3] [2] [1] [0]
AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x0 0x0 0x0 0x1
5.7.3.
SPDIFinCnvtr FrmtCap
Table 74. SPDIFinCnvtr FrmtCap Command Verb Format Verb ID Get F00 Payload 0A Response See bitfield table
Table 75. SPDIFinCnvtr FrmtCap Command Response Format Bit [31:21] [20] [19] Bitfield Name Rsvd2 B32 B24 RW R R R Reset 0x0 0x0 0x1 Reserved 32 bit audio formats are NOT supported 24 bit audio formats are supported Description
IDTTM
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STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
Table 75. SPDIFinCnvtr FrmtCap Command Response Format Bit [18] [17] [16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name 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 Reset 0x1 0x1 0x0 0x0 0x0 0x0 0x0 0x1 0x0 0x1 0x1 0x0 0x0 0x0 0x0 0x0 Description 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
5.7.4.
SPDIFinCnvtr StreamCap
Table 76. SPDIFinCnvtr StreamCap Command Verb Format Verb ID Get F00 Payload 0B Response See bitfield table
IDTTM
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Table 77. SPDIFinCnvtr StreamCap 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
5.7.5.
SPDIFinCnvtr ConnLen
Table 78. SPDIFinCnvtr ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
Table 79. SPDIFinCnvtr ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N 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
5.7.6.
SPDIFinCnvtr ConnLst
Table 80. SPDIFinCnvtr ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
IDTTM
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PC AUDIO
Table 81. SPDIFinCnvtr ConnLst Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x00 0x07 Description Unused list entry. Unused list entry. Unused list entry. DigIn Pin widget
5.7.7.
SPDIFinCnvtr Stream
Table 82. SPDIFinCnvtr Stream 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 83. SPDIFinCnvtr Stream 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]
ID
RW
0x0
[3:0]
Ch
RW
0x0
5.7.8.
SPDIFinCnvtr DigCtl
Table 84. SPDIFinCnvtr DigCtl Command Verb Format Verb ID Get F0D Payload 00 Response See bitfield table
IDTTM
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PC AUDIO
Table 84. SPDIFinCnvtr DigCtl Command Verb Format Verb ID Set1 Set2 70D 70E Payload See bits [7:0] of bitfield table See bits [15:8] of bitfield table Response 0000_0000h 0000_0000h
Table 85. SPDIFinCnvtr DigCtl 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
5.8.
SPDIFoutCnvtr Node (NID = 0x05)
5.8.1. SPDIFoutCnvtr Frmt
Table 86. SPDIFoutCnvtr Frmt Command Verb Format Verb ID Get Set1 A 2 Payload 0000 See bits [15:0] of bitfield table Response See bitfield table 0000_0000h
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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PC AUDIO
Table 87. SPDIFoutCnvtr Frmt 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 in each frame of the stream. 0000 = 1 channel 0001 = 2 channels ... 1111 = 16 channels Description
[15]
StrmType
RW
0x0
[14]
RateBase
RW
0x0
[13:11]
RateMult
RW
0x0
[10:8]
RateDiv
RW
0x0
[7]
Rsvd1
R
0x0
[6:4]
NumBits
RW
0x3
[3:0]
NumChan
RW
0x1
IDTTM
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PC AUDIO
5.8.2.
SPDIFoutCnvtr WCap
Table 88. SPDIFoutCnvtr WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 89. SPDIFoutCnvtr 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 DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd RW R R R R R R R R R R R R Reset 0x0 0x0 0x4 0x0 0x0 0x0 0x1 0x0 0x0 0x0 0x0 0x1 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 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] [2] [1] [0]
AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x0 0x0 0x0 0x1
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
5.8.3.
SPDIFoutCnvtr FrmtCap
Table 90. SPDIFoutCnvtr FrmtCap Command Verb Format Verb ID Get F00 Payload 0A Response See bitfield table
Table 91. SPDIFoutCnvtr FrmtCap 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 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) 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) 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
IDTTM
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STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
5.8.4.
SPDIFoutCnvtr StreamCap
Table 92. SPDIFoutCnvtr StreamCap Command Verb Format Verb ID Get F00 Payload 0B Response See bitfield table
Table 93. SPDIFoutCnvtr StreamCap 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
5.8.5.
SPDIFoutCnvtr Stream
Table 94. SPDIFoutCnvtr Stream 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 95. SPDIFoutCnvtr Stream 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]
ID
RW
0x0
[3:0]
Ch
RW
0x0
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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PC AUDIO
5.8.6.
SPDIFoutCnvtr DigCtl
Table 96. SPDIFoutCnvtr DigCtl Command Verb Format Verb ID Get Set1 Set2 F0D 70D 70E Payload 00 See bits [7:0] of bitfield table See bits [15:8] of bitfield table Response See bitfield table 0000_0000h 0000_0000h
Table 97. SPDIFoutCnvtr DigCtl Command Response Format Bit [31:16] [15] [14:8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd2 Rsvd1 CC L PRO AUDIO COPY PRE VCFG V DigEn RW R R RW RW RW RW RW RW RW RW RW Reset 0x0 0x0 0x00 0x0 0x0 0x0 0x0 0x0 0x0 0x0 0x0 Reserved Rsvd CC[6:0] - Category Code L - Generation Level PRO - Professional /AUDIO - Non-Audio COPY - Copyright PRE - Preemphasis VCFG - Validity Config V - Validity DigEn - Digital Enable Description
5.9.
DAC0Mux Node (NID = 0x06)
5.9.1. DAC0Mux WCap
Table 98. DAC0Mux WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
IDTTM
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PC AUDIO
Table 99. DAC0Mux 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 DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd RW R R R R R R R R R R R R Reset 0x0 0x3 0x0 0x0 0x1 0x0 0x0 0x1 0x0 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 No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget Description
[3] [2] [1] [0]
AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x0 0x0 0x0 0x1
5.9.2.
DAC0Mux ConnLen
Table 100. DAC0Mux ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
IDTTM
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PC AUDIO
Table 101. DAC0Mux ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N RW R R R Reset 0x0 0x0 0x03 Reserved. Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
5.9.3.
DAC0Mux ConnSel
Table 102. DAC0Mux ConnSel 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 103. DAC0Mux ConnSel Command Response Format Bit [31:2] [1:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. Description
5.9.4.
DAC0Mux ConnLst
Table 104. DAC0Mux ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 105. DAC0Mux ConnLst Command Response Format Bit [31:24] [23:16] Bitfield Name Entry3 Entry2 RW R R Reset 0x00 0x14 Description Unused list entry. ADC0InMux widget.
IDTTM
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STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
Table 105. DAC0Mux ConnLst Command Response Format Bit [15:8] [7:0] Bitfield Name Entry1 Entry0 RW R R Reset 0x07 0x02 Description DigIn Pin widget. DAC Analog converter widget.
5.9.5.
DAC0Mux LR
Table 106. DAC0Mux 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 107. DAC0Mux 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
5.10. DigInPin Node (NID = 0x07)
5.10.1. DigInPin WCap
Table 108. DigInPin WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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PC AUDIO
Table 109. DigInPin WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo RW R R R R R R R R R R R R R R R R Reset 0x0 0x4 0x3 0x0 0x0 0x1 0x1 0x0 0x1 0x0 0x0 0x0 0x0 0x0 0x0 0x1 Reserved Widget type = Pin Complex Number of sample delays through widget Reserved No left/right channel swap capability Power State control is supported 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 No amplifier info; use default amplifier parameters from Audio Function node instead No output amp No input amp Stereo widget Description
5.10.2.
DigInPin Cap
Table 110. DigInPin Cap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table
IDTTM
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PC AUDIO
Table 111. DigInPin Cap 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 0x1 0x00 0x0 0x0 0x1 0x0 0x0 0x1 0x0 0x0 Reserved This widget controls 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. (EAPD does not equal the 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
5.10.3.
DigInPin PwrState
Table 112. DigInPin 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 113. DigInPin PwrState Command Response Format Bit [31:8] [7:4] Bitfield Name Rsvd2 Act RW R R Reset 0x0 0x3 Reserved PS-Act: Actual power state of referenced node. Description
IDTTM
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PC AUDIO
Table 113. DigInPin PwrState Command Response Format Bit [3:2] Bitfield Name Rsvd1 RW R Reset 0x0 Reserved PS-Set: Current power setting of referenced node. 00 - Fully on. 01 - Fully on. 10 - Fully on. 11 - Powered down (default powered down) Description
[1:0]
Set
RW
0x3
5.10.4.
DigInPin Ctl
Table 114. DigInPin Ctl 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 115. DigInPin Ctl 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
5.10.5.
DigInPin UnsolResp
Table 116. DigInPin 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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PC AUDIO
Table 117. DigInPin 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 by 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
5.10.6.
DigInPin Sense
Table 118. DigInPin Sense 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 119. DigInPin Sense 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]
Present
R
0x0
[30:0]
Rsvd
R
0x0
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PC AUDIO
5.10.7.
DigInPin EAPD
Table 120. DigInPin 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 121. DigInPin 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
5.10.8.
DigInPin Config
Table 122. DigInPin Config 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 [15:8] of bitfield table See bits [23:16] of bitfield table See bits [31:24] of bitfield table Response See bitfield table 0000_0000h 0000_0000h 0000_0000h 0000_0000h
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PC AUDIO
Table 123. DigInPin Config Command Response Format Bit Bitfield Name RW Reset Description External Port Connectivity of the Pin Complex. 0 = Port Complex is connected to a jack Physical location of the jack. Optical jack at mainboard rear. Default Device, indicating intended use of jack. C = SPDIF In Connection Type. 5 = optical E = White
[31:30]
Port
RW
0x0
[29:24]
Location
RW
0x01
[23:20] [19:16] [15:12] [11:8]
Device Connection Color Misc
RW RW RW RW
0xC 0x5 0xE 0x1
Color of physical jack.
Misc[0] = Jack Detect override. Default Association for Pin Complex groups. Reserved value 0000b should not be used. Value 1111b indicates lowest priority. All Widgets in an association must have unique sequence number.
[7:4]
Assoc
RW
0x5
[3:0]
Sequence
RW
0x0
5.11. DigOutPin Node (NID = 0x08)
5.11.1. DigOutPin WCap
Table 124. DigOutPin WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 125. DigOutPin WCap Command Response Format Bit [31:24] [23:20] Bitfield Name Rsvd2 Type RW R R Reset 0x0 0x4 Reserved Widget type = Pin Complex Description
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PC AUDIO
Table 125. DigOutPin WCap Command Response Format Bit [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Delay Rsvd1 SwapCap PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo RW R 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 0x0 0x1 Description 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 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 No input amp Stereo widget
5.11.2.
DigOutPin Cap
Table 126. DigOutPin Cap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table
Table 127. DigOutPin Cap 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 127. DigOutPin Cap Command Response Format Bit [15:8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name VRefCntrl Rsvd1 BalancedIO InCap OutCap HPhnDrvCap PresDtctCap TrigRqd ImpSenseCap RW R R R R R R R R R Reset 0x00 0x0 0x0 0x0 0x1 0x0 0x0 0x0 0x0 Description VRef generation N/A since pin complex is not input capable. 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. Pin complex cannot perform Presence Detect. N/A Pin complex does not support impedance sense.
5.11.3.
DigOutPin ConnLen
Table 128. DigOutPin ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
Table 129. DigOutPin ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N RW R R R Reset 0x0 0x0 0x02 Reserved. Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. Description
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5.11.4.
DigOutPin ConnSel
Table 130. DigOutPin ConnSel 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 131. DigOutPin ConnSel Command Response Format Bit [31:2] [1:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. Description
5.11.5.
DigOutPin ConnLst
Table 132. DigOutPin ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 133. DigOutPin ConnLst Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x14 0x05 Description Unused list entry. Unused list entry. ADC0InMux widget. SPDIF Out converter widget.
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PC AUDIO
5.11.6.
DigOutPin Ctl
Table 134. DigOutPin Ctl 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 135. DigOutPin Ctl 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
5.11.7.
DigOutPin Config
Table 136. DigOutPin Config 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 [15:8] of bitfield table See bits [23:16] of bitfield table See bits [31:24] of bitfield table Response See bitfield table 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 137. DigOutPin Config Command Response Format Bit Bitfield Name RW Reset Description External Port Connectivity of the Pin Complex. 0 = Port Complex is connected to a jack Physical location of the jack. Optical jack at mainboard rear.
[31:30]
Port
RW
0x0
[29:24]
Location
RW
0x01
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Table 137. DigOutPin Config Command Response Format Bit [23:20] [19:16] [15:12] [11:8] Bitfield Name Device Connection Color Misc RW RW RW RW RW Reset 0x4 0x5 0x1 0x1 Description Default Device, indicating intended use of jack. 4 = SPDIF Out Connection Type. 5 = optical Color of physical jack. 1 = Black Misc[0] = Jack Detect override. Default Association for Pin Complex groups. Reserved value 0000b should not be used. Value 1111b indicates lowest priority. All Widgets in an association must have unique sequence number.
[7:4]
Assoc
RW
0x3
[3:0]
Sequence
RW
0x0
5.12. ADC0VolMux Node (NID = 0x09)
5.12.1. ADC0VolMux VolRight
Table 138. ADC0VolMux VolRight 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 139. ADC0VolMux VolRight Command Response Format Bit [31:4] [3:0] Bitfield Name Rsvd1 Gain RW R RW Reset 0x0 0x0 Reserved Amplifier gain step number Description
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5.12.2.
ADC0VolMux VolLeft
Table 140. ADC0VolMux VolLeft 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 141. ADC0VolMux VolLeft Command Response Format Bit [31:4] [3:0] Bitfield Name Rsvd1 Gain RW R RW Reset 0x0 0x0 Reserved Amplifier gain step number Description
5.12.3.
ADC0VolMux WCap
Table 142. ADC0VolMux WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 143. ADC0VolMux WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl DigitalStrm ConnList RW R R R R R R R R Reset 0x0 0x3 0x0 0x0 0x0 0x0 0x0 0x1 Reserved Widget type = Audio Selector Number of sample delays through widget Reserved No left/right swap capability No support for Power State control Widget supports an Analog stream Connection list is present Description
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Table 143. ADC0VolMux WCap Command Response Format Bit [7] [6] [5] [4] Bitfield Name UnsolCap ProcWidget Stripe FormatOvrd RW R R R R Reset 0x0 0x0 0x0 0x0 Description 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
[3] [2] [1] [0]
AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x1 0x1 0x0 0x1
5.12.4.
ADC0VolMux OutAmpCap
Table 144. ADC0VolMux OutAmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table
Table 145. ADC0VolMux 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 0x05 0x0 0x0F 0x0 0x00 Description Amplifier is not capable of muting Reserved Size of each step in the gain range = 1.5dB Reserved Number of steps in the gain range = 15 (16 values, 0dB to +22.5dB) Reserved 0dB-step is programmed with this offset
IDTTM
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5.12.5.
ADC0VolMux ConnLen
Table 146. ADC0VolMux ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
Table 147. ADC0VolMux ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N 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
5.12.6.
ADC0VolMux ConnLst
Table 148. ADC0VolMux ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 149. ADC0VolMux ConnLst Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x00 0x0F Description Unused list entry. Unused list entry. Unused list entry. Input Port (UnivJack) Mux widget.
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5.13. MasterVol Node (NID = 0x0E)
5.13.1. MasterVol Right
Table 150. MasterVol Right 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 151. MasterVol Right Command Response Format Bit [31:8] [7] [6:5] [4:0] Bitfield Name Rsvd2 Mute Rsvd1 Gain RW R RW R RW Reset 0x0 0x1 0x0 0x1F Reserved 1 = mute is active Reserved Amplifier gain step number Description
5.13.2.
MasterVol Left
Table 152. MasterVol Left 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 153. MasterVol Left Command Response Format Bit [31:8] [7] [6:5] [4:0] Bitfield Name Rsvd2 Mute Rsvd1 Gain RW R RW R RW Reset 0x0 0x1 0x0 0x1F Reserved 1 = mute is active Reserved Amplifier gain step number Description
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5.13.3.
MasterVol WCap
Table 154. MasterVol WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 155. MasterVol 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 DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd RW R R R R R R R R R R R R Reset 0x0 0x3 0x0 0x0 0x0 0x0 0x0 0x1 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 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 Output amp is present No input amp Stereo widget Description
[3] [2] [1] [0]
AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x0 0x1 0x0 0x1
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5.13.4.
MasterVol ConnLen
Table 156. MasterVol ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
Table 157. MasterVol ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N 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
5.13.5.
MasterVol ConnLst
Table 158. MasterVol ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 159. MasterVol ConnLst Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x00 0x06 Description Unused list entry. Unused list entry. Unused list entry. DAC Mux widget.
IDTTM
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5.14. InPortMux Node (NID = 0x0F)
5.14.1. InPortMux VolRight
Table 160. InPortMux VolRight 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 161. InPortMux VolRight Command Response Format Bit [31:3] [2:0] Bitfield Name Rsvd Gain RW R RW Reset 0x0 0x0 Reserved Amplifier gain step number Description
5.14.2.
InPortMux VolLeft
Table 162. InPortMux VolLeft 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 163. InPortMux VolLeft Command Response Format Bit [31:3] [2:0] Bitfield Name Rsvd Gain RW R RW Reset 0x0 0x0 Reserved Amplifier gain step number Description
5.14.3.
InPortMux WCap
Table 164. InPortMux WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
IDTTM
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PC AUDIO
Table 165. InPortMux WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo RW R R R R R R R R R R R R R R R R Reset 0x0 0x3 0x0 0x0 0x0 0x0 0x0 0x1 0x0 0x0 0x0 0x0 0x1 0x1 0x0 0x1 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
5.14.4.
InPortMux ConnLen
Table 166. InPortMux ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
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PC AUDIO
Table 167. InPortMux ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N 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
5.14.5.
InPortMux AmpCap
Table 168. InPortMux AmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table
Table 169. InPortMux AmpCap 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 = 4 (5 values, 0dB to +40dB) Reserved 0dB-step is programmed with this offset
IDTTM
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PC AUDIO
5.14.6.
InPortMux ConnSel
Table 170. InPortMux ConnSel 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 171. InPortMux ConnSel Command Response Format Bit [31:3] [2:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. Description
5.14.7.
InPortMux ConnLst0
Table 172. InPortMux ConnLst0 Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 173. InPortMux ConnLst0 Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x0A 0x0D 0x0C 0x0B Description Port A pin widget. Port D pin widget. Port C pin widget. Port B pin widget.
5.14.8.
InPortMux ConnLst4
Table 174. InPortMux ConnLst4 Command Verb Format Verb ID Get F02 Payload 04 Response See bitfield table
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PC AUDIO
Table 175. InPortMux ConnLst4 Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x00 0x11 Description Unused list entry. Unused list entry. Unused list entry. CDin pin widget.
5.15. PortAPin Node (NID = 0x0A)
5.15.1. PortAPin WCap
Table 176. PortAPin WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 177. PortAPin 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 DigitalStrm ConnList UnsolCap ProcWidget RW R R R R R R R R R R Reset 0x0 0x4 0x0 0x0 0x0 0x0 0x0 0x1 0x1 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 Description
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PC AUDIO
Table 177. PortAPin WCap Command Response Format Bit [5] [4] [3] [2] [1] [0] Bitfield Name Stripe FormatOvrd AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo RW R R R R R R Reset 0x0 0x0 0x0 0x0 0x0 0x1 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
5.15.2.
PortAPin Cap
Table 178. PortAPin Cap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table
Table 179. PortAPin Cap 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 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 complex has headphone amplifier. Pin complex can perform Presence Detect. Description
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PC AUDIO
Table 179. PortAPin Cap Command Response Format Bit [1] [0] Bitfield Name TrigRqd ImpSenseCap RW R R Reset 0x1 0x1 Description Trigger is required for impedance measurement Pin complex supports impedance sense.
5.15.3.
PortAPin ConnLen
Table 180. PortAPin ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
Table 181. PortAPin ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N 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
5.15.4.
PortAPin ConnLst
Table 182. PortAPin ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 183. PortAPin ConnLst Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x00 0x0E Description Unused list entry. Unused list entry. Unused list entry. Master Volume widget.
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PC AUDIO
5.15.5.
PortAPin Ctl
Table 184. PortAPin Ctl 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 185. PortAPin Ctl Command Response Format Bit [31:8] [7] [6] [5] [4:0] 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 Description
5.15.6.
PortAPin UnsolResp
Table 186. PortAPin 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 187. PortAPin 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. Description
[7]
En
RW
0x0
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PC AUDIO
Table 187. PortAPin UnsolResp Command Response Format Bit [6] Bitfield Name Rsvd1 RW R Reset 0x0 Reserved Software programmable field returned in top six bits (31:26) of every Unsolicited Response generated by this node. Description
[5:0]
Tag
RW
0x00
5.15.7.
PortAPin Sense
Table 188. PortAPin Sense 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 189. PortAPin Sense Command Response Format Bit [31] Bitfield Name Present 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. Overlaps RightCh. 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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2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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5.15.8.
PortAPin Config
Table 190. PortAPin Config 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 [15:8] of bitfield table See bits [23:16] of bitfield table See bits [31:24] of bitfield table Response See bitfield table 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 191. PortAPin Config Command Response Format Bit Bitfield Name RW Reset Description External Port Connectivity of the Pin Complex. 0 = Port Complex is connected to a jack Physical location of the jack. 02h = Mainboard, Front Default Device, indicating intended use of jack. 2 = HP Out Connection Type. 1 = 1/8 inch jack Color of physical jack. 4 = Green Misc[0] = Jack Detect override. Default Association for Pin Complex groups. Reserved value 0000b should not be used. Value 1111b indicates lowest priority. All Widgets in an association must have unique sequence number.
[31:30]
Port
RW
0x0
[29:24]
Location
RW
0x02
[23:20] [19:16] [15:12] [11:8]
Device Connection Color Misc
RW RW RW RW
0x2 0x1 0x4 0x0
[7:4]
Assoc
RW
0x1
[3:0]
Sequence
RW
0xF
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2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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5.16. PortDPin Node (NID = 0x0D)
5.16.1. PortDPin WCap
Table 192. PortDPin WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 193. PortDPin WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo RW R R R R 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 0x0 0x0 0x0 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 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
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PC AUDIO
5.16.2.
PortDPin Cap
Table 194. PortDPin Cap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table
Table 195. PortDPin Cap 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 0x1 0x1 0x1 0x1 0x1 Reserved2 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 complex has headphone amplifier. Pin complex can perform Presence Detect. Trigger is required for impedance measurement Pin complex supports impedance sense. Description
5.16.3.
PortDPin ConnLen
Table 196. PortDPin ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
IDTTM
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Table 197. PortDPin ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N 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
5.16.4.
PortDPin ConnLst
Table 198. PortDPin ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 199. PortDPin ConnLst Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x00 0x0E Description Unused list entry. Unused list entry. Unused list entry. Master Volume widget.
5.16.5.
PortDPin Ctl
Table 200. PortDPin Ctl 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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PC AUDIO
Table 201. PortDPin Ctl 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 Reserved Description
[6] [5] [4:0]
OutEn InEn Rsvd1
RW RW R
0x0 0x0 0x0
5.16.6.
PortDPin UnsolResp
Table 202. PortDPin 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 203. PortDPin 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 jackinsertion 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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2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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5.16.7.
PortDPin Sense
Table 204. PortDPin Sense 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 205. PortDPin Sense Command Response Format Bit [31] Bitfield Name Present 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. Overlaps RightCh. 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
5.16.8.
PortDPin Config
Table 206. PortDPin Config 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 [15:8] of bitfield table See bits [23:16] of bitfield table See bits [31:24] of bitfield table Response See bitfield table 0000_0000h 0000_0000h 0000_0000h 0000_0000h
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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Table 207. PortDPin Config Command Response Format Bit Bitfield Name RW Reset Description External Port Connectivity of the Pin Complex. 0 = Port Complex is connected to a jack Physical location of the jack. 01h = Mainboard, Rear Default Device, indicating intended use of jack. 0 = Line Out Connection Type. 1 = 1/8 inch jack Color of physical jack. 4 = Green
[31:30]
Port
RW
0x0
[29:24]
Location
RW
0x01
[23:20] [19:16] [15:12] [11:8]
Device Connection Color Misc
RW RW RW RW
0x0 0x1 0x4 0x0
Misc[0] = Jack Detect override. Default Association for Pin Complex groups. Reserved value 0000b should not be used. Value 1111b indicates lowest priority. All Widgets in an association must have unique sequence number.
[7:4]
Assoc
RW
0x1
[3:0]
Sequence
RW
0x0
5.17. PortCPin Node (NID = 0x0C)
5.17.1. PortCPin WCap
Table 208. PortCPin WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 209. PortCPin WCap Command Response Format Bit [31:24] [23:20] Bitfield Name Rsvd2 Type RW R R Reset 0x0 0x4 Reserved Widget type = Pin Complex Description
IDTTM
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Table 209. PortCPin WCap Command Response Format Bit [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Delay Rsvd1 SwapCap PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo RW R R R R R R R R R R R R R R Reset 0x0 0x0 0x0 0x0 0x0 0x1 0x1 0x0 0x0 0x0 0x0 0x0 0x0 0x1 Description 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
5.17.2.
PortCPin Cap
Table 210. PortCPin Cap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table
Table 211. PortCPin Cap Command Response Format Bit [31:17] [16] Bitfield Name Rsvd2 EapdCap RW R R Reset 0x0 0x0 Reserved2 This widget does not control EAPD pin Description
IDTTM
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PC AUDIO
Table 211. PortCPin Cap 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 does not have a 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 HPhnDrvCap PresDtctCap TrigRqd ImpSenseCap
R R R R R R R R
0x0 0x0 0x1 0x1 0x0 0x1 0x1 0x1
5.17.3.
PortCPin ConnLen
Table 212. PortCPin ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
Table 213. PortCPin ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N 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
5.17.4.
PortCPin ConnLst
Table 214. PortCPin ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 215. PortCPin ConnLst Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x00 0x0E Description Unused list entry. Unused list entry. Unused list entry. Master Volume widget.
5.17.5.
PortCPin Ctl
Table 216. PortCPin Ctl 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 217. PortCPin Ctl Command Response Format Bit [31:7] [6] [5] Bitfield Name Rsvd2 OutEn InEn RW R RW RW Reset 0x0 0x0 0x1 Reserved 1 = (CODEC) output path of Pin Widget is enabled 1 = (CODEC) input path of Pin Widget is enabled Description
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Table 217. PortCPin Ctl 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]
VRefSelect
RW
0x0
5.17.6.
PortCPin UnsolResp
Table 218. PortCPin 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 219. PortCPin 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 jackinsertion 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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5.17.7.
PortCPin Sense
Table 220. PortCPin Sense 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 221. PortCPin Sense Command Response Format Bit [31] Bitfield Name Present 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. Overlaps RightCh. 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
5.17.8.
PortCPin Config
Table 222. PortCPin Config 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 [15:8] of bitfield table See bits [23:16] of bitfield table See bits [31:24] of bitfield table Response See bitfield table 0000_0000h 0000_0000h 0000_0000h 0000_0000h
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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PC AUDIO
Table 223. PortCPin Config Command Response Format Bit [31:30] Bitfield Name Port RW RW Reset 0x0 Description External Port Connectivity of the Pin Complex. 0 = Port Complex is connected to a jack Physical location of the jack. 03h = Mainboard, Rear Default Device, indicating intended use of jack. 8 = Line In Connection Type. 1 = 1/8 inch jack Color of physical jack. 3 = Blue Misc[0] = Jack Detect override. Default Association for Pin Complex groups. Reserved value 0000b should not be used. Value 1111b indicates lowest priority. All Widgets in an association must have unique sequence number.
[29:24]
Location
RW
0x01
[23:20] [19:16] [15:12] [11:8]
Device Connection Color Misc
RW RW RW RW
0x8 0x1 0x3 0x0
[7:4]
Assoc
RW
0x2
[3:0]
Sequence
RW
0x1
5.18. PortBPin Node (NID = 0x0B)
5.18.1. PortBPin WCap
Table 224. PortBPin WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 225. PortBPin 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
IDTTM
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PC AUDIO
Table 225. PortBPin WCap Command Response Format Bit [15:12] [11] [10] [9] [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name Rsvd1 SwapCap PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd AmpParamOvrd 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
5.18.2.
PortBPin Cap
Table 226. PortBPin Cap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table
Table 227. PortBPin Cap 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
IDTTM
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PC AUDIO
Table 227. PortBPin Cap 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 does not have a 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 HPhnDrvCap PresDtctCap TrigRqd ImpSenseCap
R R R R R R R R
0x0 0x0 0x1 0x1 0x0 0x1 0x1 0x1
5.18.3.
PortBPin ConnLen
Table 228. PortBPin ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
Table 229. PortBPin ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N 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
5.18.4.
PortBPin ConnLst
Table 230. PortBPin ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 231. PortBPin ConnLst Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x00 0x0E Description Unused list entry. Unused list entry. Unused list entry. Master Volume widget.
5.18.5.
PortBPin Ctl
Table 232. PortBPin Ctl 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 233. PortBPin Ctl Command Response Format Bit [31:7] [6] [5] Bitfield Name Rsvd2 OutEn InEn RW R RW RW Reset 0x0 0x0 0x1 Reserved 1 = (CODEC) output path of Pin Widget is enabled 1 = (CODEC) input path of Pin Widget is enabled Description
IDTTM
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STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
Table 233. PortBPin Ctl 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]
VRefSelect
RW
0x0
5.18.6.
PortBPin UnsolResp
Table 234. PortBPin 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 235. PortBPin 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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5.18.7.
PortBPin Sense
Table 236. PortBPin Sense 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 237. PortBPin Sense Command Response Format Bit [31] Bitfield Name Present 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. Overlaps RightCh. 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
5.18.8.
PortBPin Config
Table 238. PortBPin Config 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 [15:8] of bitfield table See bits [23:16] of bitfield table See bits [31:24] of bitfield table Response See bitfield table 0000_0000h 0000_0000h 0000_0000h 0000_0000h
IDTTM
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PC AUDIO
Table 239. PortBPin Config Command Response Format Bit [31:30] Bitfield Name Port RW RW Reset 0x0 Description External Port Connectivity of the Pin Complex. 0 = Port Complex is connected to a jack Physical location of the jack. 02h = Mainboard, Front Default Device, indicating intended use of jack. A = Mic In Connection Type. 1 = 1/8 inch jack Color of physical jack. 9 = Pink Misc[0] = Jack Detect override. Default Association for Pin Complex groups. Reserved value 0000b should not be used. Value 1111b indicates lowest priority. All Widgets in an association must have unique sequence number.
[29:24]
Location
RW
0x02
[23:20] [19:16] [15:12] [11:8]
Device Connection Color Misc
RW RW RW RW
0xA 0x1 0x9 0x0
[7:4]
Assoc
RW
0x2
[3:0]
Sequence
RW
0x0
5.19. MonoOutPin Node (NID = 0x10)
5.19.1. MonoOutPin Vol
Table 240. MonoOutPin Vol 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 241. MonoOutPin Vol Command Response Format Bit [31:8] [7] Bitfield Name Rsvd2 Mute RW R RW Reset 0x0 0x1 Reserved 1 = mute is active Description
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PC AUDIO
Table 241. MonoOutPin Vol Command Response Format Bit [6:5] [4:0] Bitfield Name Rsvd1 Gain RW R RW Reset 0x0 0x1F Reserved Mono (left) amplifier gain step number Description
5.19.2.
MonoOutPin WCap
Table 242. MonoOutPin WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 243. MonoOutPin WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] [8] [7] [6] [5] [4] [3] [2] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd AmpParamOvrd OutAmpPrsnt RW R R R R R R R R R R R R R R Reset 0x0 0x4 0x0 0x0 0x0 0x0 0x0 0x1 0x0 0x0 0x0 0x0 0x0 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 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. Output amp is present Description
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PC AUDIO
Table 243. MonoOutPin WCap Command Response Format Bit [1] [0] Bitfield Name InAmpPrsnt Stereo RW R R Reset 0x0 0x0 No input amp Mono widget Description
5.19.3.
MonoOutPin Cap
Table 244. MonoOutPin Cap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table
Table 245. MonoOutPin Cap 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 0x0 0x1 0x0 0x0 0x0 0x0 Reserved This widget does not control EAPD pin VRef generation N/A since pin complex is not input capable. 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. Pin complex cannot perform Presence Detect. N/A Pin complex does not support impedance sense. Description
IDTTM
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5.19.4.
MonoOutPin ConnLen
Table 246. MonoOutPin ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
Table 247. MonoOutPin ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N 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
5.19.5.
MonoOutPin ConnLst
Table 248. MonoOutPin ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 249. MonoOutPin ConnLst Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x00 0x12 Description Unused list entry. Unused list entry. Unused list entry. MonoOut Mix widget.
IDTTM
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5.19.6.
MonoOutPin Ctl
Table 250. MonoOutPin Ctl 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 251. MonoOutPin Ctl 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
5.19.7.
MonoOutPin Config
Table 252. MonoOutPin Config 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 [15:8] of bitfield table See bits [23:16] of bitfield table See bits [31:24] of bitfield table Response See bitfield table 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 253. MonoOutPin Config Command Response Format Bit [31:30] [29:24] Bitfield Name Port Location RW RW RW Reset 0x1 0x10 Description External Port Connectivity of the Pin Complex. 1 = no physical connection Physical location of the jack. 10h = Internal, N/A
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Table 253. MonoOutPin Config Command Response Format Bit [23:20] [19:16] [15:12] [11:8] Bitfield Name Device Connection Color Misc RW RW RW RW RW Reset 0x0 0x7 0x0 0x1 Description Default Device, indicating intended use of jack. 0 = Line Out Connection Type. 7 = Other Analog Color of physical jack. 0 = Unknown Misc[0] = Jack Detect override. Default Association for Pin Complex groups. Reserved value 0000b should not be used. Value 1111b indicates lowest priority. All Widgets in an association must have unique sequence number.
[7:4]
Assoc
RW
0xF
[3:0]
Sequence
RW
0x0
5.20. CDPin Node (NID = 0x11)
5.20.1. CDPin WCap
Table 254. CDPin WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 255. CDPin WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] [10] [9] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap PwrCntrl DigitalStrm RW R R R R R R R Reset 0x0 0x4 0x0 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 Description
IDTTM
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PC AUDIO
Table 255. CDPin WCap Command Response Format Bit [8] [7] [6] [5] [4] [3] [2] [1] [0] Bitfield Name ConnList UnsolCap ProcWidget Stripe FormatOvrd AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo RW R R R R R R R R R Reset 0x0 0x0 0x0 0x0 0x0 0x0 0x0 0x0 0x1 Description 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 No input amp Stereo widget
5.20.2.
CDPin Cap
Table 256. CDPin Cap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table
Table 257. CDPin Cap Command Response Format Bit [31:17] [16] [15:8] [7] [6] [5] Bitfield Name Rsvd2 EapdCap VRefCntrl Rsvd1 BalancedIO InCap RW R R R R R R Reset 0x0 0x0 0x00 0x0 0x0 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. Description
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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PC AUDIO
Table 257. CDPin Cap Command Response Format Bit [4] [3] [2] [1] [0] Bitfield Name OutCap HPhnDrvCap PresDtctCap TrigRqd ImpSenseCap RW R R R R R Reset 0x0 0x0 0x0 0x0 0x0 Description 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.
5.20.3.
CDPin Ctl
Table 258. CDPin Ctl 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 259. CDPin Ctl Command Response Format Bit [31:6] [5] [4:0] Bitfield Name Rsvd2 InEn Rsvd1 RW R RW R Reset 0x0 0x1 0x0 Reserved 1 = (CODEC) input path of Pin Widget is enabled (un-muted) Reserved Description
5.20.4.
CDPin Config
Table 260. CDPin Config Command Verb Format Verb ID Get Set1 F1C 71C Payload 00 See bits [7:0] of bitfield table Response See bitfield table 0000_0000h
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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PC AUDIO
Table 260. CDPin Config Command Verb Format Verb ID Set2 Set3 Set4 71D 71E 71F Payload See bits [15:8] of bitfield table See bits [23:16] of bitfield table See bits [31:24] of bitfield table Response 0000_0000h 0000_0000h 0000_0000h
Table 261. CDPin Config Command Response Format Bit [31:30] [29:24] [23:20] [19:16] [15:12] [11:8] Bitfield Name Port Location Device Connection Color Misc RW RW RW RW RW RW RW Reset 0x2 0x10 0x3 0x3 0x0 0x1 Description External Port Connectivity of the Pin Complex. 2 = fixed function device Physical location of the jack. 10h = Internal, N/A Default Device, indicating intended use of jack. 3 = CD Connection Type. 3 = ATAPI internal Color of physical jack. 0 = Unknown Misc[0] = Jack Detect override. Default Association for Pin Complex groups. Reserved value 0000b should not be used. Value 1111b indicates lowest priority. All Widgets in an association must have unique sequence number.
[7:4]
Assoc
RW
0x2
[3:0]
Sequence
RW
0x2
5.21. MonoOutMix Node (NID = 0x12)
5.21.1. MonoOutMix WCap
Table 262. MonoOutMix WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
IDTTM
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Table 263. MonoOutMix 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 DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd RW R R R R R R R R R R R R Reset 0x0 0x2 0x0 0x0 0x0 0x0 0x0 0x1 0x0 0x0 0x0 0x0 Reserved Widget type = Audio Mixer Number of sample delays through widget Reserved Swapping of left and right channels not supported 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 No input amp Mono widget Description
[3] [2] [1] [0]
AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x0 0x0 0x0 0x0
5.21.2.
MonoOutMix ConnLen
Table 264. MonoOutMix ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
IDTTM
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PC AUDIO
Table 265. MonoOutMix ConnLen Command Response Format Bit [31:8] [7] [6:0] Bitfield Name Rsvd LongForm N 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
5.21.3.
MonoOutMix ConnLst
Table 266. MonoOutMix ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 267. MonoOutMix ConnLst Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x00 0x06 Description Unused list entry. Unused list entry. Unused list entry. DAC Mux widget.
5.22. PCBeep Node (NID = 0x13)
5.22.1. PCBeep Vol
Table 268. PCBeep Vol 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
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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PC AUDIO
Table 269. PCBeep Vol Command Response Format Bit [31:8] [7] [6:2] [1:0] Bitfield Name Rsvd2 Mute Rsvd1 Gain RW R RW R RW Reset 0x0 0x1 0x0 0x3 Reserved 1 = mute is active Reserved Mono (left) amplifier gain step number Description
5.22.2.
PCBeep WCap
Table 270. PCBeep WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 271. PCBeep WCap Command Response Format Bit [31:24] [23:20] [19:4] [3] [2] [1] [0] Bitfield Name Rsvd3 Type Rsvd2 AmpParamOvrd 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
IDTTM
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PC AUDIO
5.22.3.
PCBeep OutAmpCap
Table 272. PCBeep OutAmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table
Table 273. 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 0x1 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 = 3 (4 values, -18dB to 0dB) Reserved 0dB-step is programmed with this offset
5.22.4.
PCBeep Gen
Table 274. 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
IDTTM
2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES IDT CONFIDENTIAL
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STAC9202 2-CHANNEL HIGH DEFINITION AUDIO CODEC WITH DUAL DIGITAL MICROPHONE INTERFACES
PC AUDIO
Table 275. PCBeep Gen Command Response Format Bit [31:8] Bitfield Name Rsvd RW R Reset 0x0 Reserved Enable internal PC-Beep generation. Divider = 00h - disables internal PC Beep generation and enables normal operation of the CODEC. Divider not 00h - generates the beep tone on all Pin Complexes that are currently configured as outputs. The HD Audio spec states that the beep tone: frequency = (48 KHz HD Audio 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
0x00
5.23. ADC0InMux Node (NID = 0x14)
5.23.1. ADC0InMux WCap
Table 276. ADC0InMux WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 277. ADC0InMux WCap Command Response Format Bit [31:24] [23:20] [19:16] [15:12] [11] Bitfield Name Rsvd2 Type Delay Rsvd1 SwapCap RW R R R R R Reset 0x0 0x3 0x0 0x0 0x1 Reserved Widget type = Audio Selector Number of sample delays through widget Reserved Left and right channels can be swapped Description
IDTTM
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PC AUDIO
Table 277. ADC0InMux WCap Command Response Format Bit [10] [9] [8] [7] [6] [5] [4] Bitfield Name PwrCntrl DigitalStrm ConnList UnsolCap ProcWidget Stripe FormatOvrd RW R R R R R R R Reset 0x0 0x0 0x1 0x0 0x0 0x0 0x0 Description 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
[3] [2] [1] [0]
AmpParamOvrd OutAmpPrsnt InAmpPrsnt Stereo
R R R R
0x1 0x1 0x0 0x1
5.23.2.
ADC0InMux ConnLen
Table 278. ADC0InMux ConnLen Command Verb Format Verb ID Get F00 Payload 0E Response See bitfield table
Table 279. ADC0InMux ConnLen Command Response Format Bit [31:8] [7] Bitfield Name Rsvd LongForm RW R R Reset 0x0 0x0 Reserved Connection list uses short-form (7-bit) NID entries. Number of NID entries in connection list. 2h if Dig Mic is available, 1h if it is disabled by bond option. Description
[6:0]
N
R
0x02
IDTTM
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5.23.3.
ADC0InMux ConnSel
Table 280. ADC0InMux ConnSel 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 281. ADC0InMux ConnSel Command Response Format Bit [31:2] [1:0] Bitfield Name Rsvd Index RW R RW Reset 0x0 0x0 Reserved Connection select control index. Description
5.23.4.
ADC0InMux ConnLst
Table 282. ADC0InMux ConnLst Command Verb Format Verb ID Get F02 Payload 00 Response See bitfield table
Table 283. ADC0InMux ConnLst Command Response Format Bit [31:24] [23:16] [15:8] [7:0] Bitfield Name Entry3 Entry2 Entry1 Entry0 RW R R R R Reset 0x00 0x00 0x15 0x09 Description Unused list entry Unused list entry Dig Mic pin widget (15h) if Dig Mic is available, 0h if it is disabled by bond option. ADC0VolMux
IDTTM
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PC AUDIO
5.23.5.
ADC0InMux LR
Table 284. ADC0InMux 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 285. ADC0InMux 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
5.23.6.
ADC0InMux OutAmpCap
Table 286. ADC0InMux OutAmpCap Command Verb Format Verb ID Get F00 Payload 12 Response See bitfield table
Table 287. ADC0InMux 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
IDTTM
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5.23.7.
ADC0InMux VolRight
Table 288. ADC0InMux VolRight 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 289. ADC0InMux VolRight 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
5.23.8.
ADC0InMux VolLeft
Table 290. ADC0InMux VolLeft 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 291. ADC0InMux VolLeft 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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5.24. DigMicPin Node (NID = 0x15)
5.24.1. DigMicPin WCap
Table 292. DigMicPin WCap Command Verb Format Verb ID Get F00 Payload 09 Response See bitfield table
Table 293. DigMicPin 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 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] [3] [2]
ConnList UnsolCap ProcWidget Stripe FormatOvrd AmpParamOvrd OutAmpPrsnt
R R R R R R R
0x0 0x0 0x0 0x0 0x0 0x0 0x0
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Table 293. DigMicPin WCap Command Response Format Bit [1] [0] Bitfield Name InAmpPrsnt Stereo RW R R Reset 0x0 0x1 No input amp Stereo widget Description
5.24.2.
DigMicPin Cap
Table 294. DigMicPin Cap Command Verb Format Verb ID Get F00 Payload 0C Response See bitfield table
Table 295. DigMicPin Cap 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
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5.24.3.
DigMicPin Ctl
Table 296. DigMicPin Ctl 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 297. DigMicPin Ctl 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
5.24.4.
DigMicPin Config
Table 298. DigMicPin Config 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 [15:8] of bitfield table See bits [23:16] of bitfield table See bits [31:24] of bitfield table Response See bitfield table 0000_0000h 0000_0000h 0000_0000h 0000_0000h
Table 299. DigMicPin Config Command Response Format Bit [31:30] [29:24] [23:20] Bitfield Name Port Location Device RW RW RW RW Reset 0x1 0x10 0xA Description External Port Connectivity of the Pin Complex. 1 = no physical connection Physical location of the jack. 10h = Internal, N/A Default Device, indicating intended use of jack. A = Mic In
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Table 299. DigMicPin Config Command Response Format Bit [19:16] [15:12] [11:8] Bitfield Name Connection Color Misc RW RW RW RW Reset 0x0 0x0 0x1 Description Connection Type. 0 = Unknown Color of physical jack. 0 = Unknown Misc[0] = Jack Detect override. Default Association for Pin Complex groups. Reserved value 0000b should not be used. Value 1111b indicates lowest priority. All Widgets in an association must have unique sequence number.
[7:4]
Assoc
RW
0xF
[3:0]
Sequence
RW
0x1
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6. ORDERING INFORMATION 6.1. STAC9202 Options and Part Numbers
The +4 V Analog voltage is supported by the +5 V version of the STAC9202 or STAC9202D. *Dolby requires the 5 V version of this part except for Dolby Digital Live (DDL).
Part Order Number STAC9202D5TAEyy STAC9202X5TAEyy STAC9202D3TAEyy STAC9202X3TAEyy
Voltage 5V/4V 5V/4V 3.3 V 3.3 V
DAC SNR 100dB 100dB 100dB 100dB
Dolby* Yes No Yes (DDL) No
Pkg Pins 48 LQFP 48 LQFP 48 LQFP 48 LQFP
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 both package options.
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7. PIN INFORMATION 7.1. STAC9202 Pin Diagram
Figure 3. STAC9202 Pin Diagram
SPDIF IN/ EAPD/GPIO3
SPDIF OUT
DMIC_CLK
PORTA_R
PORTA_L
DMIC_R
DMIC_L
AVDD2 38
AVSS2
48
47
46
45
44
43
42
41
40
39
37
MONO
GPIO2
NC
NC NC NC DVSS SDO B IT C L K DVSS S D I-C O D E C DVDD2 SYNC RESET# PCBEEP
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16
48 LQ FP
36 35 34 33 32 31 30 29 28 27 26 25 21 22 23 24
PORTD_R PO R TD _L G P IO 1 G P IO 0 CAP2 NC NC V R E F O U T -C V R E F O U T -B V R E F F IL T AVSS1 AVDD1
17
18
19
NC
NC
CD_R
20
PORTB_R
7.2.
Pin Table for STAC9202
Pin Function No Connect No Connect No Connect Digital Ground HD Audio Serial Data output (inbound stream) HD Audio Bit Clock I/O None None None I(Digital) I/O(Digital) I(Digital) Internal Pull-up Pin /Pull-down Location None None None None None None 1 2 3 4 5 6
Pin Name NC NC NC DVSS SDATA_OUT BIT_CLK
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PORTC_R
PORTB_L
NC
NC
CD_L
SENSE_A
PORTC_L
CD_GND
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Pin Name DVSS SDATA_IN/ CODEC DVDD_CORE2 SYNC RESET# PCBEEP SENSE_A NC NC NC NC CD-L CD-GND CD-R PORT-B_L PORT-B_R PORT-C_L PORT-C_R AVDD1 AVSS1 VREF FILT VREFOUT-B VREFOUT-C NC NC CAP2 GPIO0 GPIO1 PORT-D_L PORT-D_R MONO AVDD2 PORT-A_L
Pin Function Digital Ground HD Audio Serial Data input for the CODEC (outbound stream) Digital Vdd = 3.3 V HD Audio Frame Sync HD Audio Reset PC Beep Jack insertion detection Ports A, B, C, D No Connect No Connect No Connect No Connect CD Audio Left Channel CD Audio Analog Ground CD Audio Right Channel Input/Output of Left DAC0 Input/Output of Right DAC0 Input/Output of Left DAC0 Input/Output of Right DAC0 Analog Vdd = 5.0 V or 3.3 V Analog Ground Analog Virtual Ground Reference Voltage out drive (intended for microphone bias) for Port B Reference Voltage out drive (intended for microphone bias) for Port C No Connect No Connect ADC reference Cap General Purpose I/O tied to AVDD50K internal pull-up to AVddgnda General Purpose I/O tied to AVDD50K internal pull-up to AVddgnda Input/Output of Left DAC0 Input/Output of Right DAC0 Mono Out from DAC Analog Vdd = 5.0 V or 3.3 V Input/Output of Left DAC0
I/O I(Digital) O(Digital) I(Digital) I(Digital) I(Digital) I(Analog) I(Analog) None None None None 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) O(Analog) None None O(Analog) I/O(Digital) I/O(Digital) I/O(Analog) I/O(Analog) O(Analog) I(Analog) I/O(Analog)
Internal Pull-up Pin /Pull-down Location 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 None Pull-up 50 K or more Pull-up 50 K or more None None None None None 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39
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Pin Name NC PORT-A_R AVSS3 DMIC_L DMIC_R GPIO2 DMIC_CLK
Pin Function No Connect Input/Output of Right DAC0 Analog Ground Digital Mic Input Left Channel Digital Mic Input Right Channel General Purpose I/O tied to AVDD50K internal pull-up to AVddgnda Digital Mic Ouput Clock
I/O None I/O(Analog) I(Analog) I(Digital) I(Digital) I/O(Digital) O(Digital) I/O(Digital) O(Digital)
Internal Pull-up Pin /Pull-down Location None None None None None Pull-up 50 K or more None None 50 K internal pull-down 40 41 42 43 44 45 46 47 48
SPDIFIN/EAPD/GPIO3 SPDIF Input, External Amplifier Power Down, General Purpose I/O S/PDIF_OUT SPDIF digital output (50K internal pull-down)
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8. PACKAGE DRAWINGS 8.1. 48-Pin LQFP
Figure 4. 48-Pin LQFP Package Outline and Package Dimensions
A2
D D1
b
A A1
Key
A A1 A2 D D1 E E1 L e C b
c
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
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9. SOLDER REFLOW PROFILE 9.1. 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 133. 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 5. Solder Reflow Profile
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9.2.
Pb Free Process - Package Classification Reflow Temperatures
Package Type MSL Reflow Temperature
LQFP 48-pin
3
260 oC*
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10. REVISION HISTORY
Revision Date Description of Change
0.1 0.5 0.8 1.0 1.1
May 2005 August 2005 September 2005 November 2006 26 October 2006
Initial Release Updated 5 V Analog Performance Characteristics numbers. Updated 48 Pin Reflow Profile Table. This is a visual change only. No content was changed. Updated Power Consumption numbers. Added in Contact IDT note for 4 V and 3.3 V Analog AC numbers. Added updated note 4 on AC table. Added note 2 for 40dB mic boost. Updated logo Released in IDT format.
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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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