v 20040111 1 C 30600 17800 1 0 0 ad986X-ACTRL.sym { T 81300 48100 5 10 1 1 0 6 1 refdes=U602 } C 38400 17800 1 0 0 ad986X-AUX.sym { T 89100 48100 5 10 1 1 0 6 1 refdes=U602 } C 32400 13600 1 0 0 ad986X-CTRL.sym { T 83200 43900 5 10 1 1 0 6 1 refdes=U602 } C 79100 36200 1 270 1 pmc64.sym { T 92300 36900 5 10 1 1 90 2 1 refdes=J669 T 79100 36200 5 10 0 1 0 0 1 footprint=pmc } C 79100 31000 1 270 1 pmc64.sym { T 92300 31700 5 10 1 1 90 2 1 refdes=J668 T 79100 31000 5 10 0 1 180 6 1 footprint=pmc } C 77900 47200 1 90 1 generic-power.sym { T 77650 47000 5 10 1 1 270 5 1 net=AGND_2:1 } C 79200 46800 1 0 1 capacitor-1.sym { T 78600 46800 5 10 1 1 0 6 1 refdes=C714 T 78200 47200 5 10 1 1 180 6 1 value=0.1uF T 79200 46800 5 10 0 1 90 2 1 footprint=0603 } N 80300 47000 79200 47000 4 N 78300 47000 77900 47000 4 C 79200 47500 1 180 1 resistor-1.sym { T 80200 47500 5 10 1 1 0 6 1 value=4K T 79200 47500 5 10 0 1 180 6 1 footprint=0603 T 79300 47500 5 10 1 1 0 6 1 refdes=R702 } N 80300 47400 80100 47400 4 N 79200 47400 78100 47400 4 N 78100 47400 78100 47000 4 C 84900 47000 1 270 0 generic-power.sym { T 85150 46800 5 10 1 1 270 3 1 net=AGND_2:1 } C 84600 46400 1 180 0 capacitor-1.sym { T 83600 46300 5 10 1 1 0 0 1 refdes=C702 T 83600 46000 5 10 1 1 0 0 1 value=0.1uF T 84600 46400 5 10 0 1 270 0 1 footprint=0603 } N 82300 46600 82500 46600 4 N 82500 46600 82500 46200 4 N 82300 46200 83700 46200 4 N 82300 47400 83700 47400 4 N 82500 47400 82500 47000 4 N 82500 47000 82300 47000 4 C 84600 47600 1 180 0 capacitor-1.sym { T 83600 47500 5 10 1 1 0 0 1 refdes=C703 T 83600 47200 5 10 1 1 0 0 1 value=0.1uF T 84600 47600 5 10 0 1 270 0 1 footprint=0603 } N 84700 46800 84900 46800 4 N 84600 47400 84700 47400 4 N 84600 46200 84700 46200 4 C 82600 47300 1 270 0 capacitor-1.sym { T 83100 47100 5 10 1 1 180 0 1 refdes=C704 T 83000 46300 5 10 1 1 90 0 1 value=0.1uF T 82600 47300 5 10 0 1 0 0 1 footprint=0603 } C 83100 47300 1 270 0 capacitor-1.sym { T 83600 47100 5 10 1 1 180 0 1 refdes=C705 T 83500 46300 5 10 1 1 90 0 1 value=10uF T 83100 47300 5 10 0 1 0 0 1 footprint=1206 } N 82800 47300 82800 47400 4 N 83300 47300 83300 47400 4 N 82800 46400 82800 46200 4 N 83300 46400 83300 46200 4 C 82500 45100 1 0 0 capacitor-1.sym { T 82400 45500 5 10 1 1 0 0 1 refdes=C706 T 83500 45500 5 10 1 1 180 0 1 value=0.1uF T 82500 45100 5 10 0 1 90 0 1 footprint=0603 } C 82500 45600 1 0 0 capacitor-1.sym { T 82400 45900 5 10 1 1 0 0 1 refdes=C707 T 83500 46000 5 10 1 1 180 0 1 value=10uF T 82500 45600 5 10 0 1 90 0 1 footprint=1206 } N 83400 45300 83600 45300 4 N 83600 45300 83600 45800 4 N 82500 45800 82300 45800 4 N 82500 45300 82400 45300 4 N 83400 45800 84700 45800 4 N 84700 45800 84700 47400 4 N 83800 32500 83800 36300 4 { T 83800 33700 5 10 1 1 90 0 1 netname=RS232_TXD_2 } N 82600 32500 82600 36300 4 { T 82600 34200 5 10 1 1 90 0 1 netname=SDA } N 82200 32500 82200 36300 4 { T 82200 34200 5 10 1 1 90 0 1 netname=SCL } C 92000 30900 1 180 0 generic-power.sym { T 91800 30650 5 10 1 1 180 3 1 net=AGND_2:1 } C 81200 35800 1 180 0 generic-power.sym { T 81000 35550 5 10 1 1 180 3 1 net=DVDD:1 } N 91800 30900 91800 31100 4 C 83300 35500 1 0 0 gnd-1.sym N 83000 35800 83000 36300 4 N 83400 35800 83400 36300 4 N 83000 32500 83000 33000 4 N 83400 32500 83400 33000 4 C 83200 33000 1 0 0 generic-power.sym { T 83400 33250 5 10 1 1 0 3 1 net=DVDD:1 } T 83300 34000 9 10 1 0 90 0 1 I2C Address C 79500 33100 1 180 0 gnd-1.sym N 79400 32500 79400 32800 4 C 79500 38300 1 180 0 gnd-1.sym N 79400 37700 79400 38000 4 C 79300 35700 1 0 0 gnd-1.sym N 79400 36300 79400 36000 4 C 79300 30500 1 0 0 gnd-1.sym N 79400 31100 79400 30800 4 C 92000 36100 1 180 0 generic-power.sym { T 91800 35850 5 10 1 1 180 3 1 net=AGND_2:1 } N 91800 36100 91800 36300 4 C 91600 32700 1 0 0 generic-power.sym { T 91800 32950 5 10 1 1 0 3 1 net=AGND_2:1 } N 91800 32700 91800 32500 4 N 85000 32500 85000 36300 4 { T 85000 34300 5 10 1 1 90 0 1 netname=SCLK } N 84600 32500 84600 36300 4 { T 84600 33700 5 10 1 1 90 0 1 netname=RESET_CODEC } N 85400 32500 85400 36300 4 { T 85400 34300 5 10 1 1 90 0 1 netname=SDO } N 86200 35100 86200 36300 4 { T 86200 35200 5 10 1 1 90 0 1 netname=SEN_TX_B } N 86200 32500 86200 33700 4 { T 86200 32600 5 10 1 1 90 0 1 netname=SEN_RX_B } C 86500 30600 1 0 0 gnd-1.sym N 86600 31100 86600 30900 4 C 86700 38200 1 180 0 gnd-1.sym N 86600 37700 86600 37900 4 C 86500 35800 1 0 0 gnd-1.sym N 86600 36300 86600 36100 4 C 86700 33000 1 180 0 gnd-1.sym N 86600 32500 86600 32700 4 C 87600 30900 1 180 0 generic-power.sym { T 87400 30650 5 10 1 1 180 3 1 net=AGND_2:1 } N 87400 30900 87400 31100 4 C 87600 36100 1 180 0 generic-power.sym { T 87400 35850 5 10 1 1 180 3 1 net=AGND_2:1 } N 87400 36100 87400 36300 4 C 87200 37900 1 0 0 generic-power.sym { T 87400 38150 5 10 1 1 0 3 1 net=AGND_2:1 } N 87400 37900 87400 37700 4 C 87200 32700 1 0 0 generic-power.sym { T 87400 32950 5 10 1 1 0 3 1 net=AGND_2:1 } N 87400 32700 87400 32500 4 N 85800 32500 85800 36300 4 { T 85800 34300 5 10 1 1 90 0 1 netname=SDI } N 89000 32500 89000 36300 4 { T 89000 33800 5 10 1 1 90 0 1 netname=AUX_DAC_D_B } N 89400 32500 89400 36300 4 { T 89400 33800 5 10 1 1 90 0 1 netname=AUX_DAC_A_B } N 89800 32500 89800 36300 4 { T 89800 33800 5 10 1 1 90 0 1 netname=AUX_DAC_B_B } N 90200 32500 90200 36300 4 { T 90200 33800 5 10 1 1 90 0 1 netname=AUX_DAC_C_B } N 91000 34700 91000 36300 4 { T 91000 34700 5 10 1 1 90 0 1 netname=AUX_ADC_A2_B } N 90600 32500 90600 36300 4 { T 90600 33700 5 10 1 1 90 0 1 netname=AUX_ADC_REF_B } N 91000 32500 91000 34100 4 { T 91000 32500 5 10 1 1 90 0 1 netname=AUX_ADC_A1_B } N 91400 34700 91400 36300 4 { T 91400 34700 5 10 1 1 90 0 1 netname=AUX_ADC_B2_B } N 91400 32500 91400 34100 4 { T 91400 32500 5 10 1 1 90 0 1 netname=AUX_ADC_B1_B } C 90800 30900 1 180 0 generic-power.sym { T 90600 30650 5 10 1 1 180 3 1 net=AGND_2:1 } N 90600 30900 90600 31100 4 C 90000 30900 1 180 0 generic-power.sym { T 89800 30650 5 10 1 1 180 3 1 net=AGND_2:1 } N 89800 30900 89800 31100 4 C 88800 30900 1 180 0 generic-power.sym { T 88600 30650 5 10 1 1 180 3 1 net=AGND_2:1 } N 88600 30900 88600 31100 4 N 91400 29500 91400 31100 4 { T 91400 29500 5 10 1 1 90 0 1 netname=VINP_A_B } N 91000 29500 91000 31100 4 { T 91000 29500 5 10 1 1 90 0 1 netname=VINN_A_B } N 89000 29500 89000 31100 4 { T 89000 29500 5 10 1 1 90 0 1 netname=VINP_B_B } N 89400 29500 89400 31100 4 { T 89400 29500 5 10 1 1 90 0 1 netname=VINN_B_B } N 90200 31100 90200 29500 4 { T 90200 29600 5 10 1 1 90 0 1 netname=VREF_B } C 92000 37900 1 0 1 generic-power.sym { T 91800 38150 5 10 1 1 0 3 1 net=AGND_2:1 } N 91800 37900 91800 37700 4 C 90800 37900 1 0 1 generic-power.sym { T 90600 38150 5 10 1 1 0 3 1 net=AGND_2:1 } N 90600 37900 90600 37700 4 C 90000 37900 1 0 1 generic-power.sym { T 89800 38150 5 10 1 1 0 3 1 net=AGND_2:1 } N 89800 37900 89800 37700 4 C 88800 37900 1 0 1 generic-power.sym { T 88600 38150 5 10 1 1 0 3 1 net=AGND_2:1 } N 88600 37900 88600 37700 4 N 91000 39300 91000 37700 4 { T 91000 38300 5 10 1 1 90 0 1 netname=IOUTP_A_B } N 91400 39300 91400 37700 4 { T 91400 38300 5 10 1 1 90 0 1 netname=IOUTN_A_B } N 89400 39300 89400 37700 4 { T 89400 38300 5 10 1 1 90 0 1 netname=IOUTP_B_B } N 89000 39300 89000 37700 4 { T 89000 38300 5 10 1 1 90 0 1 netname=IOUTN_B_B } N 90200 37700 90200 39300 4 { T 90200 38400 5 10 1 1 90 0 1 netname=REFIO_B } C 88800 36100 1 180 0 generic-power.sym { T 88600 35850 5 10 1 1 180 3 1 net=AGND_2:1 } N 88600 36100 88600 36300 4 C 88400 32700 1 0 0 generic-power.sym { T 88600 32950 5 10 1 1 0 3 1 net=AGND_2:1 } N 88600 32700 88600 32500 4 C 88000 33300 1 0 0 generic-power.sym { T 88200 33550 5 10 1 1 0 3 1 net=AVDD_2:1 } N 87800 32500 87800 33000 4 N 88200 32500 88200 33300 4 C 87600 33000 1 0 0 generic-power.sym { T 87800 33250 5 10 1 1 0 3 1 net=AVDD_2:1 } C 88000 35500 1 180 1 generic-power.sym { T 88200 35250 5 10 1 1 180 3 1 net=AVDD_2:1 } N 87800 36300 87800 35800 4 N 88200 36300 88200 35500 4 C 87600 35800 1 180 1 generic-power.sym { T 87800 35550 5 10 1 1 180 3 1 net=AVDD_2:1 } C 79600 33200 1 0 0 generic-power.sym { T 79800 33450 5 10 1 1 0 3 1 net=5V:1 } C 88000 30300 1 180 1 generic-power.sym { T 88200 30050 5 10 1 1 180 3 1 net=AVDD_2:1 } N 88200 31100 88200 30300 4 N 87800 31100 87800 30600 4 C 87600 30600 1 180 1 generic-power.sym { T 87800 30350 5 10 1 1 180 3 1 net=AVDD_2:1 } N 88200 37700 88200 38500 4 N 87800 37700 87800 38200 4 C 87600 38200 1 0 0 generic-power.sym { T 87800 38450 5 10 1 1 0 3 1 net=AVDD_2:1 } C 88000 38500 1 0 0 generic-power.sym { T 88200 38750 5 10 1 1 0 3 1 net=AVDD_2:1 } N 79800 32500 79800 33200 4 N 80200 32500 80200 33000 4 N 80200 36300 80200 36000 4 N 79800 36300 79800 35600 4 C 80000 35600 1 180 0 generic-power.sym { T 79800 35350 5 10 1 1 180 3 1 net=5V:1 } C 80800 33000 1 0 0 generic-power.sym { T 81000 33250 5 10 1 1 0 3 1 net=DVDD:1 } N 81000 32500 81000 33000 4 N 81000 35800 81000 36300 4 N 90900 47400 92500 47400 4 { T 91200 47400 5 10 1 1 0 0 1 netname=SIGDEL_B } N 90900 47000 92500 47000 4 { T 91000 47000 5 10 1 1 0 0 1 netname=AUX_DAC_A_B } N 90900 46600 92500 46600 4 { T 91000 46600 5 10 1 1 0 0 1 netname=AUX_DAC_B_B } N 90900 46200 92500 46200 4 { T 91000 46200 5 10 1 1 0 0 1 netname=AUX_DAC_C_B } N 86200 45800 88100 45800 4 { T 86300 45800 5 10 1 1 0 0 1 netname=AUX_ADC_REF_B } N 86500 47000 88100 47000 4 { T 86500 47000 5 10 1 1 0 0 1 netname=AUX_ADC_A2_B } N 86500 46200 88100 46200 4 { T 86500 46200 5 10 1 1 0 0 1 netname=AUX_ADC_B2_B } N 86500 46600 88100 46600 4 { T 86500 46600 5 10 1 1 0 0 1 netname=AUX_ADC_B1_B } N 86500 47400 88100 47400 4 { T 86500 47400 5 10 1 1 0 0 1 netname=AUX_ADC_A1_B } N 78200 46300 79800 46300 4 { T 78600 46300 5 10 1 1 0 0 1 netname=REFIO_B } N 84000 44800 82400 44800 4 { T 82800 44800 5 10 1 1 0 0 1 netname=VREF_B } N 79800 46300 79800 47000 4 N 82400 44800 82400 45800 4 N 80400 41600 82100 41600 4 { T 80500 41600 5 10 1 1 0 0 1 netname=RESET_CODEC } N 80600 32500 80600 32800 4 N 80200 33000 79800 33000 4 N 80600 32800 81000 32800 4 N 80600 36300 80600 36000 4 N 80600 36000 81000 36000 4 N 80200 36000 79800 36000 4 N 80400 42000 82100 42000 4 { T 80500 42000 5 10 1 1 0 0 1 netname=SEN_CODEC_B } N 81100 43200 82100 43200 4 { T 81400 43200 5 10 1 1 0 0 1 netname=SCLK } N 81100 42800 82100 42800 4 { T 81400 42800 5 10 1 1 0 0 1 netname=SDO } N 81100 42400 82100 42400 4 { T 81500 42400 5 10 1 1 0 0 1 netname=SDI } C 14500 17800 1 0 0 ad986X-ACTRL.sym { T 65200 48100 5 10 1 1 0 6 1 refdes=U601 } C 22300 17800 1 0 0 ad986X-AUX.sym { T 73000 48100 5 10 1 1 0 6 1 refdes=U601 } C 16300 13600 1 0 0 ad986X-CTRL.sym { T 67100 43900 5 10 1 1 0 6 1 refdes=U601 } C 63000 36200 1 270 1 pmc64.sym { T 76200 36900 5 10 1 1 90 2 1 refdes=J667 T 63000 36200 5 10 0 1 0 0 1 footprint=pmc } C 63000 31000 1 270 1 pmc64.sym { T 76200 31700 5 10 1 1 90 2 1 refdes=J666 T 63000 31000 5 10 0 1 180 6 1 footprint=pmc } C 61800 47200 1 90 1 generic-power.sym { T 61550 47000 5 10 1 1 270 5 1 net=AGND_1:1 } C 63100 46800 1 0 1 capacitor-1.sym { T 62500 46800 5 10 1 1 0 6 1 refdes=C701 T 62100 47200 5 10 1 1 180 6 1 value=0.1uF T 63100 46800 5 10 0 1 90 2 1 footprint=0603 } N 64200 47000 63100 47000 4 N 62200 47000 61800 47000 4 C 63100 47500 1 180 1 resistor-1.sym { T 64100 47500 5 10 1 1 0 6 1 value=4K T 63100 47500 5 10 0 1 180 6 1 footprint=0603 T 63300 47500 5 10 1 1 0 6 1 refdes=R701 } N 64200 47400 64000 47400 4 N 63100 47400 62000 47400 4 N 62000 47400 62000 47000 4 C 68800 47000 1 270 0 generic-power.sym { T 69050 46800 5 10 1 1 270 3 1 net=AGND_1:1 } C 68500 46400 1 180 0 capacitor-1.sym { T 67500 46300 5 10 1 1 0 0 1 refdes=C708 T 67500 46000 5 10 1 1 0 0 1 value=0.1uF T 68500 46400 5 10 0 1 270 0 1 footprint=0603 } N 66200 46600 66400 46600 4 N 66400 46600 66400 46200 4 N 66200 46200 67600 46200 4 N 66200 47400 67600 47400 4 N 66400 47400 66400 47000 4 N 66400 47000 66200 47000 4 C 68500 47600 1 180 0 capacitor-1.sym { T 67500 47500 5 10 1 1 0 0 1 refdes=C709 T 67500 47200 5 10 1 1 0 0 1 value=0.1uF T 68500 47600 5 10 0 1 270 0 1 footprint=0603 } N 68600 46800 68800 46800 4 N 68500 47400 68600 47400 4 N 68500 46200 68600 46200 4 C 66500 47300 1 270 0 capacitor-1.sym { T 67000 47100 5 10 1 1 180 0 1 refdes=C710 T 66900 46300 5 10 1 1 90 0 1 value=0.1uF T 66500 47300 5 10 0 1 0 0 1 footprint=0603 } C 67000 47300 1 270 0 capacitor-1.sym { T 67500 47100 5 10 1 1 180 0 1 refdes=C711 T 67400 46300 5 10 1 1 90 0 1 value=10uF T 67000 47300 5 10 0 1 0 0 1 footprint=1206 } N 66700 47300 66700 47400 4 N 67200 47300 67200 47400 4 N 66700 46400 66700 46200 4 N 67200 46400 67200 46200 4 C 66400 45100 1 0 0 capacitor-1.sym { T 66300 45400 5 10 1 1 0 0 1 refdes=C712 T 67400 45500 5 10 1 1 180 0 1 value=0.1uF T 66400 45100 5 10 0 1 90 0 1 footprint=0603 } C 66400 45600 1 0 0 capacitor-1.sym { T 66300 45900 5 10 1 1 0 0 1 refdes=C713 T 67400 46000 5 10 1 1 180 0 1 value=10uF T 66400 45600 5 10 0 1 90 0 1 footprint=1206 } N 67300 45300 67500 45300 4 N 67500 45300 67500 45800 4 N 66400 45800 66200 45800 4 N 66400 45300 66300 45300 4 N 67300 45800 68600 45800 4 N 68600 45800 68600 47400 4 N 84200 32500 84200 36300 4 { T 84200 33700 5 10 1 1 90 0 1 netname=RS232_RXD_2 } N 68100 32500 68100 36300 4 { T 68100 33800 5 10 1 1 90 0 1 netname=RS232_RXD_1 } N 67700 32500 67700 36300 4 { T 67700 33800 5 10 1 1 90 0 1 netname=RS232_TXD_1 } N 66500 32500 66500 36300 4 { T 66500 34200 5 10 1 1 90 0 1 netname=SDA } N 66100 32500 66100 36300 4 { T 66100 34200 5 10 1 1 90 0 1 netname=SCL } C 75900 30900 1 180 0 generic-power.sym { T 75700 30650 5 10 1 1 180 3 1 net=AGND_1:1 } C 65100 35800 1 180 0 generic-power.sym { T 64900 35550 5 10 1 1 180 3 1 net=DVDD:1 } N 75700 30900 75700 31100 4 C 66800 35500 1 0 0 gnd-1.sym C 67200 35500 1 0 0 gnd-1.sym N 66900 35800 66900 36300 4 N 67300 35800 67300 36300 4 C 67000 33300 1 180 0 gnd-1.sym N 66900 32500 66900 33000 4 N 67300 32500 67300 33000 4 C 67100 33000 1 0 0 generic-power.sym { T 67300 33250 5 10 1 1 0 3 1 net=DVDD:1 } C 63400 33100 1 180 0 gnd-1.sym N 63300 32500 63300 32800 4 C 63400 38300 1 180 0 gnd-1.sym N 63300 37700 63300 38000 4 C 63200 35700 1 0 0 gnd-1.sym N 63300 36300 63300 36000 4 C 63200 30500 1 0 0 gnd-1.sym N 63300 31100 63300 30800 4 C 75900 36100 1 180 0 generic-power.sym { T 75700 35850 5 10 1 1 180 3 1 net=AGND_1:1 } N 75700 36100 75700 36300 4 C 75500 32700 1 0 0 generic-power.sym { T 75700 32950 5 10 1 1 0 3 1 net=AGND_1:1 } N 75700 32700 75700 32500 4 N 68900 32500 68900 36300 4 { T 68900 34300 5 10 1 1 90 0 1 netname=SCLK } N 68500 32500 68500 36300 4 { T 68500 33700 5 10 1 1 90 0 1 netname=RESET_CODEC } N 69300 32500 69300 36300 4 { T 69300 34300 5 10 1 1 90 0 1 netname=SDO } N 70100 35100 70100 36300 4 { T 70100 35200 5 10 1 1 90 0 1 netname=SEN_TX_A } N 70100 32500 70100 33700 4 { T 70100 32600 5 10 1 1 90 0 1 netname=SEN_RX_A } C 70400 30600 1 0 0 gnd-1.sym N 70500 31100 70500 30900 4 C 70600 38200 1 180 0 gnd-1.sym N 70500 37700 70500 37900 4 C 70400 35800 1 0 0 gnd-1.sym N 70500 36300 70500 36100 4 C 70600 33000 1 180 0 gnd-1.sym N 70500 32500 70500 32700 4 C 71500 30900 1 180 0 generic-power.sym { T 71300 30650 5 10 1 1 180 3 1 net=AGND_1:1 } N 71300 30900 71300 31100 4 C 71500 36100 1 180 0 generic-power.sym { T 71300 35850 5 10 1 1 180 3 1 net=AGND_1:1 } N 71300 36100 71300 36300 4 C 71100 37900 1 0 0 generic-power.sym { T 71300 38150 5 10 1 1 0 3 1 net=AGND_1:1 } N 71300 37900 71300 37700 4 C 71100 32700 1 0 0 generic-power.sym { T 71300 32950 5 10 1 1 0 3 1 net=AGND_1:1 } N 71300 32700 71300 32500 4 N 69700 32500 69700 36300 4 { T 69700 34300 5 10 1 1 90 0 1 netname=SDI } N 72900 32500 72900 36300 4 { T 72900 33800 5 10 1 1 90 0 1 netname=AUX_DAC_D_A } N 73300 32500 73300 36300 4 { T 73300 33800 5 10 1 1 90 0 1 netname=AUX_DAC_A_A } N 73700 32500 73700 36300 4 { T 73700 33800 5 10 1 1 90 0 1 netname=AUX_DAC_B_A } N 74100 32500 74100 36300 4 { T 74100 33800 5 10 1 1 90 0 1 netname=AUX_DAC_C_A } N 74900 34700 74900 36300 4 { T 74900 34700 5 10 1 1 90 0 1 netname=AUX_ADC_A2_A } N 74500 32500 74500 36300 4 { T 74500 33700 5 10 1 1 90 0 1 netname=AUX_ADC_REF_A } N 74900 32500 74900 34100 4 { T 74900 32500 5 10 1 1 90 0 1 netname=AUX_ADC_A1_A } N 75300 34700 75300 36300 4 { T 75300 34700 5 10 1 1 90 0 1 netname=AUX_ADC_B2_A } N 75300 32500 75300 34100 4 { T 75300 32500 5 10 1 1 90 0 1 netname=AUX_ADC_B1_A } C 74700 30900 1 180 0 generic-power.sym { T 74500 30650 5 10 1 1 180 3 1 net=AGND_1:1 } N 74500 30900 74500 31100 4 C 73900 30900 1 180 0 generic-power.sym { T 73700 30650 5 10 1 1 180 3 1 net=AGND_1:1 } N 73700 30900 73700 31100 4 C 72700 30900 1 180 0 generic-power.sym { T 72500 30650 5 10 1 1 180 3 1 net=AGND_1:1 } N 72500 30900 72500 31100 4 N 75300 29500 75300 31100 4 { T 75300 29500 5 10 1 1 90 0 1 netname=VINP_A_A } N 74900 29500 74900 31100 4 { T 74900 29500 5 10 1 1 90 0 1 netname=VINN_A_A } N 72900 29500 72900 31100 4 { T 72900 29500 5 10 1 1 90 0 1 netname=VINP_B_A } N 73300 29500 73300 31100 4 { T 73300 29500 5 10 1 1 90 0 1 netname=VINN_B_A } N 74100 31100 74100 29500 4 { T 74100 29600 5 10 1 1 90 0 1 netname=VREF_A } C 75900 37900 1 0 1 generic-power.sym { T 75700 38150 5 10 1 1 0 3 1 net=AGND_1:1 } N 75700 37900 75700 37700 4 C 74700 37900 1 0 1 generic-power.sym { T 74500 38150 5 10 1 1 0 3 1 net=AGND_1:1 } N 74500 37900 74500 37700 4 C 73900 37900 1 0 1 generic-power.sym { T 73700 38150 5 10 1 1 0 3 1 net=AGND_1:1 } N 73700 37900 73700 37700 4 C 72700 37900 1 0 1 generic-power.sym { T 72500 38150 5 10 1 1 0 3 1 net=AGND_1:1 } N 72500 37900 72500 37700 4 N 74900 39300 74900 37700 4 { T 74900 38300 5 10 1 1 90 0 1 netname=IOUTP_A_A } N 75300 39300 75300 37700 4 { T 75300 38300 5 10 1 1 90 0 1 netname=IOUTN_A_A } N 73300 39300 73300 37700 4 { T 73300 38300 5 10 1 1 90 0 1 netname=IOUTP_B_A } N 72900 39300 72900 37700 4 { T 72900 38300 5 10 1 1 90 0 1 netname=IOUTN_B_A } N 74100 37700 74100 39300 4 { T 74100 38400 5 10 1 1 90 0 1 netname=REFIO_A } C 72700 36100 1 180 0 generic-power.sym { T 72500 35850 5 10 1 1 180 3 1 net=AGND_1:1 } N 72500 36100 72500 36300 4 C 72300 32700 1 0 0 generic-power.sym { T 72500 32950 5 10 1 1 0 3 1 net=AGND_1:1 } N 72500 32700 72500 32500 4 C 71900 33300 1 0 0 generic-power.sym { T 72100 33550 5 10 1 1 0 3 1 net=AVDD_1:1 } N 71700 32500 71700 33000 4 N 72100 32500 72100 33300 4 C 71500 33000 1 0 0 generic-power.sym { T 71700 33250 5 10 1 1 0 3 1 net=AVDD_1:1 } C 71900 35500 1 180 1 generic-power.sym { T 72100 35250 5 10 1 1 180 3 1 net=AVDD_1:1 } N 71700 36300 71700 35800 4 N 72100 36300 72100 35500 4 C 71500 35800 1 180 1 generic-power.sym { T 71700 35550 5 10 1 1 180 3 1 net=AVDD_1:1 } C 63500 33200 1 0 0 generic-power.sym { T 63700 33450 5 10 1 1 0 3 1 net=5V:1 } C 71900 30300 1 180 1 generic-power.sym { T 72100 30050 5 10 1 1 180 3 1 net=AVDD_1:1 } N 72100 31100 72100 30300 4 N 71700 31100 71700 30600 4 C 71500 30600 1 180 1 generic-power.sym { T 71700 30350 5 10 1 1 180 3 1 net=AVDD_1:1 } N 72100 37700 72100 38500 4 N 71700 37700 71700 38200 4 C 71500 38200 1 0 0 generic-power.sym { T 71700 38450 5 10 1 1 0 3 1 net=AVDD_1:1 } C 71900 38500 1 0 0 generic-power.sym { T 72100 38750 5 10 1 1 0 3 1 net=AVDD_1:1 } N 63700 32500 63700 33200 4 N 64100 32500 64100 33000 4 N 64100 36300 64100 36000 4 N 63700 36300 63700 35600 4 C 63900 35600 1 180 0 generic-power.sym { T 63700 35350 5 10 1 1 180 3 1 net=5V:1 } C 64700 33000 1 0 0 generic-power.sym { T 64900 33250 5 10 1 1 0 3 1 net=DVDD:1 } N 64900 32500 64900 33000 4 N 64900 35800 64900 36300 4 N 74800 47400 76400 47400 4 { T 75100 47400 5 10 1 1 0 0 1 netname=SIGDEL_A } N 74800 47000 76400 47000 4 { T 74900 47000 5 10 1 1 0 0 1 netname=AUX_DAC_A_A } N 74800 46600 76400 46600 4 { T 74900 46600 5 10 1 1 0 0 1 netname=AUX_DAC_B_A } N 74800 46200 76400 46200 4 { T 74900 46200 5 10 1 1 0 0 1 netname=AUX_DAC_C_A } N 70100 45800 72000 45800 4 { T 70200 45800 5 10 1 1 0 0 1 netname=AUX_ADC_REF_A } N 70400 47000 72000 47000 4 { T 70400 47000 5 10 1 1 0 0 1 netname=AUX_ADC_A2_A } N 70400 46200 72000 46200 4 { T 70400 46200 5 10 1 1 0 0 1 netname=AUX_ADC_B2_A } N 70400 46600 72000 46600 4 { T 70400 46600 5 10 1 1 0 0 1 netname=AUX_ADC_B1_A } N 70400 47400 72000 47400 4 { T 70400 47400 5 10 1 1 0 0 1 netname=AUX_ADC_A1_A } N 62100 46300 63700 46300 4 { T 62500 46300 5 10 1 1 0 0 1 netname=REFIO_A } N 67900 44800 66300 44800 4 { T 66700 44800 5 10 1 1 0 0 1 netname=VREF_A } N 63700 46300 63700 47000 4 N 66300 44800 66300 45800 4 N 64300 41600 66000 41600 4 { T 64400 41600 5 10 1 1 0 0 1 netname=RESET_CODEC } N 64500 32500 64500 32800 4 N 64100 33000 63700 33000 4 N 64500 32800 64900 32800 4 N 64500 36300 64500 36000 4 N 64500 36000 64900 36000 4 N 64100 36000 63700 36000 4 N 64300 42000 66000 42000 4 { T 64400 42000 5 10 1 1 0 0 1 netname=SEN_CODEC_A } N 65000 43200 66000 43200 4 { T 65300 43200 5 10 1 1 0 0 1 netname=SCLK } N 65000 42800 66000 42800 4 { T 65300 42800 5 10 1 1 0 0 1 netname=SDO } N 65000 42400 66000 42400 4 { T 65400 42400 5 10 1 1 0 0 1 netname=SDI } T 67200 33800 9 10 1 0 90 0 1 I2C Address N 64100 37700 64100 39700 4 { T 64100 38500 5 10 1 1 90 0 1 netname=io_tx_a_15 } N 64500 37700 64500 39700 4 { T 64500 38500 5 10 1 1 90 0 1 netname=io_tx_a_14 } N 65700 37700 65700 39700 4 { T 65700 38500 5 10 1 1 90 0 1 netname=io_tx_a_11 } N 64900 37700 64900 39700 4 { T 64900 38500 5 10 1 1 90 0 1 netname=io_tx_a_13 } N 65300 37700 65300 39700 4 { T 65300 38500 5 10 1 1 90 0 1 netname=io_tx_a_12 } N 66900 37700 66900 39700 4 { T 66900 38500 5 10 1 1 90 0 1 netname=io_tx_a_08 } N 66100 37700 66100 39700 4 { T 66100 38500 5 10 1 1 90 0 1 netname=io_tx_a_10 } N 66500 37700 66500 39700 4 { T 66500 38500 5 10 1 1 90 0 1 netname=io_tx_a_09 } N 68100 37700 68100 39700 4 { T 68100 38500 5 10 1 1 90 0 1 netname=io_tx_a_05 } N 67300 37700 67300 39700 4 { T 67300 38500 5 10 1 1 90 0 1 netname=io_tx_a_07 } N 67700 37700 67700 39700 4 { T 67700 38500 5 10 1 1 90 0 1 netname=io_tx_a_06 } N 69300 37700 69300 39700 4 { T 69300 38500 5 10 1 1 90 0 1 netname=io_tx_a_02 } N 68500 37700 68500 39700 4 { T 68500 38500 5 10 1 1 90 0 1 netname=io_tx_a_04 } N 68900 37700 68900 39700 4 { T 68900 38500 5 10 1 1 90 0 1 netname=io_tx_a_03 } N 70100 37700 70100 39700 4 { T 70100 38500 5 10 1 1 90 0 1 netname=io_tx_a_00 } N 69700 37700 69700 39700 4 { T 69700 38500 5 10 1 1 90 0 1 netname=io_tx_a_01 } N 64100 29100 64100 31100 4 { T 64100 29400 5 10 1 1 90 0 1 netname=io_rx_a_15 } N 64500 29100 64500 31100 4 { T 64500 29400 5 10 1 1 90 0 1 netname=io_rx_a_14 } N 65700 29100 65700 31100 4 { T 65700 29400 5 10 1 1 90 0 1 netname=io_rx_a_11 } N 64900 29100 64900 31100 4 { T 64900 29400 5 10 1 1 90 0 1 netname=io_rx_a_13 } N 65300 29100 65300 31100 4 { T 65300 29400 5 10 1 1 90 0 1 netname=io_rx_a_12 } N 66900 29100 66900 31100 4 { T 66900 29400 5 10 1 1 90 0 1 netname=io_rx_a_08 } N 66100 29100 66100 31100 4 { T 66100 29400 5 10 1 1 90 0 1 netname=io_rx_a_10 } N 66500 29100 66500 31100 4 { T 66500 29400 5 10 1 1 90 0 1 netname=io_rx_a_09 } N 68100 29100 68100 31100 4 { T 68100 29400 5 10 1 1 90 0 1 netname=io_rx_a_05 } N 67300 29100 67300 31100 4 { T 67300 29400 5 10 1 1 90 0 1 netname=io_rx_a_07 } N 67700 29100 67700 31100 4 { T 67700 29400 5 10 1 1 90 0 1 netname=io_rx_a_06 } N 69300 29100 69300 31100 4 { T 69300 29400 5 10 1 1 90 0 1 netname=io_rx_a_02 } N 68500 29100 68500 31100 4 { T 68500 29400 5 10 1 1 90 0 1 netname=io_rx_a_04 } N 68900 29100 68900 31100 4 { T 68900 29400 5 10 1 1 90 0 1 netname=io_rx_a_03 } N 70100 29100 70100 31100 4 { T 70100 29400 5 10 1 1 90 0 1 netname=io_rx_a_00 } N 69700 29100 69700 31100 4 { T 69700 29400 5 10 1 1 90 0 1 netname=io_rx_a_01 } N 80200 29100 80200 31100 4 { T 80200 29400 5 10 1 1 90 0 1 netname=io_rx_b_15 } N 80600 29100 80600 31100 4 { T 80600 29400 5 10 1 1 90 0 1 netname=io_rx_b_14 } N 81800 29100 81800 31100 4 { T 81800 29400 5 10 1 1 90 0 1 netname=io_rx_b_11 } N 81000 29100 81000 31100 4 { T 81000 29400 5 10 1 1 90 0 1 netname=io_rx_b_13 } N 81400 29100 81400 31100 4 { T 81400 29400 5 10 1 1 90 0 1 netname=io_rx_b_12 } N 83000 29100 83000 31100 4 { T 83000 29400 5 10 1 1 90 0 1 netname=io_rx_b_08 } N 82200 29100 82200 31100 4 { T 82200 29400 5 10 1 1 90 0 1 netname=io_rx_b_10 } N 82600 29100 82600 31100 4 { T 82600 29400 5 10 1 1 90 0 1 netname=io_rx_b_09 } N 84200 29100 84200 31100 4 { T 84200 29400 5 10 1 1 90 0 1 netname=io_rx_b_05 } N 83400 29100 83400 31100 4 { T 83400 29400 5 10 1 1 90 0 1 netname=io_rx_b_07 } N 83800 29100 83800 31100 4 { T 83800 29400 5 10 1 1 90 0 1 netname=io_rx_b_06 } N 85400 29100 85400 31100 4 { T 85400 29400 5 10 1 1 90 0 1 netname=io_rx_b_02 } N 84600 29100 84600 31100 4 { T 84600 29400 5 10 1 1 90 0 1 netname=io_rx_b_04 } N 85000 29100 85000 31100 4 { T 85000 29400 5 10 1 1 90 0 1 netname=io_rx_b_03 } N 86200 29100 86200 31100 4 { T 86200 29400 5 10 1 1 90 0 1 netname=io_rx_b_00 } N 85800 29100 85800 31100 4 { T 85800 29400 5 10 1 1 90 0 1 netname=io_rx_b_01 } N 80200 37700 80200 39700 4 { T 80200 38500 5 10 1 1 90 0 1 netname=io_tx_b_15 } N 80600 37700 80600 39700 4 { T 80600 38500 5 10 1 1 90 0 1 netname=io_tx_b_14 } N 81800 37700 81800 39700 4 { T 81800 38500 5 10 1 1 90 0 1 netname=io_tx_b_11 } N 81000 37700 81000 39700 4 { T 81000 38500 5 10 1 1 90 0 1 netname=io_tx_b_13 } N 81400 37700 81400 39700 4 { T 81400 38500 5 10 1 1 90 0 1 netname=io_tx_b_12 } N 83000 37700 83000 39700 4 { T 83000 38500 5 10 1 1 90 0 1 netname=io_tx_b_08 } N 82200 37700 82200 39700 4 { T 82200 38500 5 10 1 1 90 0 1 netname=io_tx_b_10 } N 82600 37700 82600 39700 4 { T 82600 38500 5 10 1 1 90 0 1 netname=io_tx_b_09 } N 84200 37700 84200 39700 4 { T 84200 38500 5 10 1 1 90 0 1 netname=io_tx_b_05 } N 83400 37700 83400 39700 4 { T 83400 38500 5 10 1 1 90 0 1 netname=io_tx_b_07 } N 83800 37700 83800 39700 4 { T 83800 38500 5 10 1 1 90 0 1 netname=io_tx_b_06 } N 85400 37700 85400 39700 4 { T 85400 38500 5 10 1 1 90 0 1 netname=io_tx_b_02 } N 84600 37700 84600 39700 4 { T 84600 38500 5 10 1 1 90 0 1 netname=io_tx_b_04 } N 85000 37700 85000 39700 4 { T 85000 38500 5 10 1 1 90 0 1 netname=io_tx_b_03 } N 86200 37700 86200 39700 4 { T 86200 38500 5 10 1 1 90 0 1 netname=io_tx_b_00 } N 85800 37700 85800 39700 4 { T 85800 38500 5 10 1 1 90 0 1 netname=io_tx_b_01 } C 61000 27100 0 0 0 title-bordered-D.sym T 89900 28000 5 10 1 1 0 0 1 date=$Date: 2004/11/09 00:17:00 $ T 91800 27700 5 10 1 1 0 0 1 rev=$Revision: 1.7 $ T 91900 27400 5 10 1 1 0 0 1 auth=$Author: matt $ T 87700 27700 5 10 1 1 0 0 1 fname=$RCSfile: dboard.sch,v $ T 91100 28400 8 14 1 1 0 4 1 title=USRP Daughterboad Interface T 88700 27400 9 10 1 0 0 0 1 4 T 89500 27400 9 10 1 0 0 0 1 4 C 82800 33000 1 0 0 generic-power.sym { T 83000 33250 5 10 1 1 0 3 1 net=DVDD:1 } C 83200 35800 1 180 0 generic-power.sym { T 83000 35550 5 10 1 1 180 3 1 net=DVDD:1 } C 87900 43400 1 0 0 resistor-1.sym { T 88100 43700 5 10 1 1 0 0 1 refdes=R1001 T 88100 43200 5 10 1 1 0 0 1 value=100 T 87900 43400 5 10 0 1 0 0 1 footprint=0603 } C 88900 43300 1 270 0 capacitor-1.sym { T 88600 42500 5 10 1 1 0 0 1 refdes=C1001 T 88600 42300 5 10 1 1 0 0 1 value=1uF T 88900 43300 5 10 0 1 0 0 1 footprint=1206 } C 89300 43400 1 0 0 resistor-1.sym { T 89500 43700 5 10 1 1 0 0 1 refdes=R1002 T 89500 43200 5 10 1 1 0 0 1 value=100 T 89300 43400 5 10 0 1 0 0 1 footprint=0603 } C 90300 43300 1 270 0 capacitor-1.sym { T 90000 42500 5 10 1 1 0 0 1 refdes=C1002 T 90000 42300 5 10 1 1 0 0 1 value=1uF T 90300 43300 5 10 0 1 0 0 1 footprint=1206 } N 88800 43500 89300 43500 4 N 89100 43300 89100 43500 4 N 90500 43500 90500 43300 4 C 89900 42000 1 180 0 generic-power.sym { T 89700 41750 5 10 1 1 180 3 1 net=AGND_2:1 } N 89100 42400 89100 42200 4 N 89100 42200 90500 42200 4 N 90500 42200 90500 42400 4 N 89700 42000 89700 42200 4 N 90200 43500 91600 43500 4 { T 90500 43500 5 10 1 1 0 0 1 netname=AUX_DAC_D_B } N 86300 43500 87900 43500 4 { T 86600 43500 5 10 1 1 0 0 1 netname=SIGDEL_B } C 71700 42700 1 0 0 resistor-1.sym { T 71900 43000 5 10 1 1 0 0 1 refdes=R1003 T 71900 42500 5 10 1 1 0 0 1 value=100 T 71700 42700 5 10 0 1 0 0 1 footprint=0603 } C 72700 42600 1 270 0 capacitor-1.sym { T 72200 41800 5 10 1 1 0 0 1 refdes=C1003 T 72400 41600 5 10 1 1 0 0 1 value=1uF T 72700 42600 5 10 0 1 0 0 1 footprint=1206 } C 73100 42700 1 0 0 resistor-1.sym { T 73300 43000 5 10 1 1 0 0 1 refdes=R1004 T 73300 42500 5 10 1 1 0 0 1 value=100 T 73100 42700 5 10 0 1 0 0 1 footprint=0603 } C 74100 42600 1 270 0 capacitor-1.sym { T 73600 41800 5 10 1 1 0 0 1 refdes=C1004 T 73800 41600 5 10 1 1 0 0 1 value=1uF T 74100 42600 5 10 0 1 0 0 1 footprint=1206 } N 72600 42800 73100 42800 4 N 72900 42600 72900 42800 4 N 74300 42800 74300 42600 4 C 73700 41300 1 180 0 generic-power.sym { T 73500 41050 5 10 1 1 180 3 1 net=AGND_1:1 } N 72900 41700 72900 41500 4 N 72900 41500 74300 41500 4 N 74300 41500 74300 41700 4 N 73500 41300 73500 41500 4 N 74000 42800 75400 42800 4 { T 74300 42800 5 10 1 1 0 0 1 netname=AUX_DAC_D_A } N 70100 42800 71700 42800 4 { T 70400 42800 5 10 1 1 0 0 1 netname=SIGDEL_A } C 63800 38300 1 180 0 gnd-1.sym N 63700 37700 63700 38000 4 C 63600 30500 1 0 0 gnd-1.sym N 63700 31100 63700 30800 4 C 79900 38300 1 180 0 gnd-1.sym N 79800 37700 79800 38000 4 C 79700 30500 1 0 0 gnd-1.sym N 79800 31100 79800 30800 4