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  unisonic technologies co., ltd pa7493 cmos ic www.unisonic.com.tw 1 of 7 copyright ? 2008 unisonic technologies co., ltd qw-r502-113.c 2w x 2 class ab audio power amplifier (with dc_volume control) ? description utc pa7493 provides precise dc volume control, and a stereo bridged audio power amplifiers capable of producing 2w into 4 ? as a monolithic integrated circuit. in stand-by the power consumption is very low. utc pa7493 combines a stereo single-end (se) mode for headphone drive into a single chip and a stereo bridge-tied loads (btl) mode for speaker drive(both modes are easily switched by the se/btl input control signal) to simplify the audio system design. package size is not occupies pcb space cause the built-in over-temperature protecti on. it is suitable for small or portable products. ? features * stereo switch able bridged/single-ended power amplifiers * output power 2w 2 (v cc =6v, thd=1%, r l =4 ? ) * low harmonics distortion * include 32 steps volume controller by dc voltage with ysteresis * ?click and pop? suppression circuitry * low current consumption in shutdown mode(0.7 a) * thermal shutdown dip-16 sop-16 lead-free: pa7493l halogen-free: pa7493g ? ordering information ordering number normal lead free halogen free package packing pa7493-d16-t pa7493l-d16-t pa7493g-d16-t dip-16 tube PA7493-S16-R pa7493l-s16-r pa7493g-s16-r sop-16 tube pa7493-s16-t pa7493l-s16- t pa7493g-s16-t sop-16 tape reel
pa7493 cmos ic unisonic technologies co., ltd 2 of 7 www.unisonic.com.tw qw-r502-113.c ? pin configuration 1 2 3 4 5 6 7 8 gnd v out 2 v in 2 v in 1 v out 1 dc vol v cc shutdown utc pa7493 16 15 14 13 12 11 10 9 +out2 v cc -out2 se/btl bypass -out1 v cc +out1 ? pin description pin no pin name i/o description 1 shutdown i when this pin connected to the v cc entire ic into the shutdown mode 2 v cc supply voltage input pin 3 dc vol i dc volume control input 4 v out 1 i output of channel 1 for external feedback circuit 5 v in 1 i input of channel 1 audio 6 v in 2 i input of channel 2 audio 7 v out 2 i output of channel 2 for external feedback circuit 8 gnd ground 9 +out2 o output (+) of channel 2 10 v cc supply voltage input 11 -out2 o output (-) of channel 2 12 se/ btl i output mode select, which is connected to the v cc for se mode or gnd for btl mode 13 bypass o internal bias reference bypassing 14 -out1 o output (-) of channel 1 15 v cc supply voltage input 16 +out1 o output (+) of channel 1
pa7493 cmos ic unisonic technologies co., ltd 3 of 7 www.unisonic.com.tw qw-r502-113.c ? block diagram voltage bypass and de-pop noise 32 steps dc control volume logic control -out1 +out1 se/btl dc vol gnd v cc v out 2 v in 2 bypass v in 1 v out 1 r i 20k r f 20k amp1n amp1p power management shutdown -out2 +out2 r i 20k r f 20k amp2n amp2p
pa7493 cmos ic unisonic technologies co., ltd 4 of 7 www.unisonic.com.tw qw-r502-113.c ? absolute maximum ratings parameter symbol ratings unit supply voltage v cc 0~7 v input voltage v in -0.3~v cc +0.3 v input current i in -10~+10 ma operating temperature t opr -40~+85 storage temperature t stg -65~+150 note: 1. absolute maximum ratings are those values beyond which the device could be permanently damaged. absolute maximum ratings are stress ratings only and functional device oper ation is not implied. 2. input pins surge current can be reach ed 100ma will not induce the cmos latched up. ? electrical characteristics parameter symbol test conditions min typ max unit for entire ic (v cc =5v, t a =25 , unless otherwise specified.) supply voltage v cc 3 5 6 v se mode 6 8 12 quiescent power supply current i cc btl mode 8 10 14 ma shutdown current i sd shutdown=on 0.2 0.7 1 a shutdown 0.5 0.6 vcc high level v ih se/btl 0.8 0.9 vcc shutdown 0.2 0.3 vcc threshold voltage low level v il se/btl 0.1 0.2 vcc for volume attenuators (v cc =5v, t a =25 , unless otherwise specified.) two channels gain error gerr r in =r f =20k ? -1 0 +1 db dc vol=5v,f=1khz -1 0 +1 volume control range v ctrl dc vol =16.875% v cc -46 -47 -48 db btl -78 db mute attenuation a m v mute =5v se -78 db for single-ended mode operation (v cc =5v, bandwidth = 22~22 khz, un less otherwise specified.) thd=1.0% 80 85 90 maximum output power p out r l =32 ? thd=10% 100 110 120 mw total harmonic distortion plus noise thd+n p out 50mw, r l =32 ? 0.03 0.05 0.07 % power ripple rejection ratio psrr v ripple =200mvrms, c b =1 f, fin=120hz 58 db signal to noise ratio snr p out =75mw, r l =32 ? , a-weight 102 db channel separation xtalk c b =1 f, fin=1khz 77 80 83 db for bridged mode operation (v cc = 5v, bandwidth = 22~22 khz, unless otherwise specified.) output offset voltage v o(off) v in =0v, no load -50 5 50 mv thd+n=1%, r l =4 ? 1.4 1.6 1.8 thd+n=10%, r l =4 ? 1.8 2.0 2.1 thd+n=1%, r l =4 ? , v cc =6v 1.9 2.0 2.2 thd=1%, r l =8 ? 1.0 1.1 1.2 maximum output power p out thd+n=10%, r l =8 ? 1.2 1.4 1.6 w p out 0.2w, r l =4 ? 0.03 0.05 0.07 total harmonic distortion plus noise thd+n p out =1w, r l =4 ? 0.06 0.08 0.15 % power ripple rejection ratio psrr v ripple =200mvrms , r l =8 ? , c b =1 f, fin=120hz 74 db signal to noise ratio snr p out =1.1w, r l =8 ? , a-weight 93 db channel separation xtalk c b =1 f, fin=1khz 85 88 91 db
pa7493 cmos ic unisonic technologies co., ltd 5 of 7 www.unisonic.com.tw qw-r502-113.c ? function description power supply the utc pa7493 operating voltage range is from 3v to 6v. in general, the 5v operating voltage is recommended. when the supply voltage less than 3v, the ic can work pr operly but the distortion will rise. the higher stand-by current consumption will rise the chip surface temperature after the operating voltage over 6.5v. shutdown after powering on the utc pa7493, connects the shutdown pin to v cc will force the chip into shutdown mode. at the shutdown mode, the total cu rrent consumption is less than 0.7 a, and all of the input/ output pins no voltage output. the chip is back to the normal operat ion when the shutdown pin sets to gnd. shutdown pin output state v cc shutdown on gnd normal input gain adjust the output gain of the utc pa7493 can be adjusted by the external resistor. 0db gain setting is recommended in normal operation, please refer the application circuit. if the source output level is not so high (ex :< 2v pp ), input gain can be increased to get the proper volume. the minimum value of the input series resistance is 10k ? for the modest input impedance. to make sure the input stage not distorted by overload, please confirm the input signal level. for the gain set please refer the following table: operating voltage input gani=-6db input gain =0db input gani=+6db v cc =3v v in <5v pp v in <2.5v pp v in <1.25v pp v cc =5v v in <8v pp v in <4v pp v in <2v pp se/btl mode switching the utc pa7493 has two output modes, se(single-ended) or bt l(bridge-tied load). to drive a speaker load, set to the btl mode is recommended for getting the more power output. driving a headphone load, we suggest setting to se mode and turn-off the un-work amplifier to decrease the stand-by power consumption. switching between the se and btl modes is controlled by th e se/btl pin, please refer the following table: se/btl mode v cc se gnd btl click and pop surppress a power amplifier uses single supply voltage may cause noises on the output port duri ng the power-on period. it is because of the output dc potential level needs time to stable on 1/2vcc, the period is relative with the capacitor on the bypass pin. the higher capacitor value will extend t he stable time and also suppress the noise during the power-on period. at the supply voltag e is 5v and the c apacitor is 2.2 f, the stable time is around 300ms. the value of the bypass capacitor also relatives with the dc blocking capacitor connected at the input terminal. in general condition the time constant of dc blocking capacitor s hould be less than the cb stable time. recommend parts values please refer the application circuit.
pa7493 cmos ic unisonic technologies co., ltd 6 of 7 www.unisonic.com.tw qw-r502-113.c ? volume control table gain (db) voltage range (% of v cc ) voltage range (v cc = 5) voltage range (v cc = 3) low high recommended low high recommended low high recommended 0 77.5% 100.00% 100.000% 3. 875 5.000 5.000 2. 325 3.000 3.000 -1 75.0% 78.5% 76.875% 3.750 3.938 3.844 2.250 2.363 2.306 -2 72.5% 76.25% 74.375% 3.625 3.813 3.719 2.175 2.288 2.231 -3 70.0% 73.75% 71.875% 3.500 3.688 3.594 2.100 2.213 2.156 -4 67.5% 71.25% 69.375% 3.375 3.563 3.469 2.025 2.138 2.081 -5 65.0% 68.75% 66.875% 3.250 3.438 3.344 1.950 2.063 2.006 -6 62.5% 66.25% 64.375% 3.125 3.313 3.219 1.875 1.988 1.931 -8 60.0% 63.75% 61.875% 3.000 3.188 3.094 1.800 1.913 1.856 -10 57.5% 61.25% 59.375% 2.875 3.063 2.939 1.725 1.838 1.781 -12 55.0% 58.75% 56.875% 2.750 2.938 2.844 1.650 1.763 1.706 -14 52.5% 56.25% 54.375% 2.625 2.813 2.719 1.575 1.688 1.631 -16 50.0% 53.75% 51.875% 2.500 2.688 2.594 1.500 1.613 1.556 -18 47.5% 51.25% 49.375% 2.375 2.563 2.469 1.425 1.538 1.481 -20 45.0% 48.75% 46.875% 2.250 2.438 2.344 1.350 1.463 1.406 -22 42.5% 46.25% 44.375% 2.125 2.313 2.219 1.275 1.388 1.331 -24 40.0% 43.75% 41..875% 2.000 2.188 2.094 1.200 1.313 1.256 -26 37.5% 41.25% 39.375% 1.875 2.063 1.939 1.125 1.238 1.181 -28 35.0% 38.75% 36.875% 1.750 1.938 1.844 1.050 1.163 1.106 -30 32.5% 36.25% 34.375% 1.625 1.813 1.719 0.975 1.088 1.031 -32 30.0% 33.75% 31.875% 1.500 1.688 1.594 0.900 1.013 0.956 -34 27.5% 31.25% 29.375% 1.375 1.563 1.469 0.825 0.937 0.881 -36 25.0% 28.75% 26.875% 1.250 1.438 1.344 0.750 0.862 0.806 -39 22.5% 26.25% 24.375% 1.125 1.313 1.219 0.675 0.787 0.731 -42 20.0% 23.75% 21.875% 1.000 1.188 1.094 0.600 0.712 0.656 -45 17.5% 21.25% 19.375% 0.875 1.063 0.939 0.525 0.637 0.581 -47 15.0% 18.75% 16.875% 0.750 0.937 0.844 0.450 0.562 0.506 -51 12.5% 16.25% 14.375% 0.625 0.812 0.719 0.375 0.487 0.431 -56 10.0% 13.75% 11.875% 0.500 0.687 0.594 0.300 0.412 0.356 -61 7.5% 11.25% 9.375% 0. 375 0.562 0.469 0. 225 0.337 0.281 -66 5.0% 8.75% 6.875% 0. 250 0.437 0.344 0. 150 0.262 0.206 -78 0.0% 6.25% 0.000% 0. 000 0.312 0.000 0. 000 0.187 0.000
pa7493 cmos ic unisonic technologies co., ltd 7 of 7 www.unisonic.com.tw qw-r502-113.c ? typical application circuit utc assumes no responsibility for equipment failures that result from using products at values that exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or other parameters) listed in products specifications of any and all utc products described or contained herein. utc products are not designed for use in life support appliances, devices or systems where malfunction of these products can be reasonably expected to result in personal injury. reproduction in whole or in part is prohibited without the prior written consent of the copyright owner. the information presented in this document does not form part of any quotation or contract, is believed to be accurate and reliable and may be changed without notice.


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