LMV321
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LM2903DR TI2,500茂百兴LM2903PWR TI2,000茂百兴LM3S1601-IQC50-A2T TI1,000茂百兴LM3S1607-IQR50-A0T TI1,500茂百兴LM3S1911-IQC50-A2T TI1,000茂百兴LM3S1968-IQC50-A2T TI1,000茂百兴LM3S2793-IQC80-C3T TI1,000茂百兴LM3S2965-IQC50-A2T TI1,000茂百兴LM3S3749-IQC50-A0T TI1,000茂百兴LM3S6911-IQC50-A2T TI1,000茂百兴LM3S9B90-IQC80-C3T TI1,000茂百兴LM3S9B92-IQC80-C1TI90茂百兴LM3S9B92-IQC80-C3TI90茂百兴LM4040C50IDBZR TI3,000茂百兴LM4041C12IDCKR TI3,000茂百兴LMV321IDBVR TI3,000茂百兴LMV324IPWR TI2,000茂百兴LMV331IDCKR TI3,000茂百兴LT1013DDR TI2,500茂百兴MAX3221CDBR TI2,000茂百兴MAX3221CPWR TI2,000茂百兴MAX3221IPWR TI2,000茂百兴MAX3223ECDBR TI2,000茂百兴MAX3232CDBR TI2,000茂百兴MAX3232CPWR TI2,000茂百兴MAX3232ECDBR TI2,000茂百兴MAX3232IPWR TI2,000茂百兴MAX3238EIPWR TI2,000茂百兴MAX3243CDBR TI2,000茂百兴MAX3243CPWR TI2,000茂百兴MAX3243ECDBR TI2,000茂百兴MAX3243ECPWR TI2,000茂百兴MSC1211Y5PAGR TI1,500茂百兴MSP430F1232IPWR TI2,000茂百兴MSP430F135IPMR TI1,000茂百兴MSP430F149IPMR TI1,000茂百兴MSP430F1611IPMR TI1,000茂百兴MSP430F1612IPMR TI1,000茂百兴MSP430F169IPMR TI1,000茂百兴MSP430F2001IPWR TI2,000茂百兴MSP430F2011TPWR TI2,000茂百兴MSP430F2132IPMR TI2,000茂百兴MSP430F2232IDAR TI2,000茂百兴MSP430F2252IRHAR TI2,500茂百兴MSP430F413IPMR TI1,000茂百兴MSP430F4250IRGZR TI2,500茂百兴MSP430F5418IPNR TI1,000茂百兴ONET1101LRGER TI3,000茂百兴ONET8501PRGTR TI3,000茂百兴ONET8501VRGPR TI3,000茂百兴OPA2131UA TI2,500茂百兴OPA2132UA TI2,500茂百兴OPA2134UA TI2,500茂百兴OPA2227UA TI2,500茂百兴OPA2244EA TI2,500茂百兴OPA2277UA TI2,500茂百兴OPA2335AIDR TI2,500茂百兴OPA2343EA/2K5TI2,500茂百兴OPA2348AIDCNR TI3,000茂百兴OPA2348AIDR TI3,000茂百兴OPA2349EA/3K TI3,000茂百兴OPA2350UA TI2,500茂百兴OPA2354AIDGKR TI2,500茂百兴OPA2357AIDGSR TI2,500茂百兴OPA2364AIDGKR TI2,500茂百兴OPA2364IDGKR TI2,500茂百兴OPA277AIDRMR TI3,000茂百兴OPA277U TI2,500茂百兴OPA277UA TI2,500茂百兴OPA334AIDBVR TI3,000茂百兴OPA335AIDBVR TI3,000茂百兴OPA336N TI3,000茂百兴OPA340UA/2K5TI2,500茂百兴OPA348AIDBVR TI3,000茂百兴OPA361AIDCKR TI3,000茂百兴OPA374AIDBVR TI3,000茂百兴OPA376AIDBVR TI3,000茂百兴OPA4227UA/2K5TI2,500茂百兴OPA4340UA/2k5TI2,500茂百兴OPA846IDBVR TI3,000茂百兴PCI1510PGE TI60茂百兴PCI1520ZHK TI90茂百兴PCI2040PGE TI60茂百兴PCI2050BIPDV TI36茂百兴PCI2050BIZHK TI450茂百兴PCI2050BPDV TI360茂百兴PCI2050BZHK TI450茂百兴PCI2050IBPDV TI360茂百兴PCI2250PCM TI24茂百兴PCI8402ZHK TI90茂百兴PCI8412ZHK TI90茂百兴PCM1742KE/2K TI2,000茂百兴PCM1753DBQR TI2,000茂百兴PCM1754DBQR TI2,000茂百兴PCM1755DBQR TI2,000茂百兴PCM1808PWR TI2,000茂百兴PCM4104PFBR TI2,000茂百兴PCM4204PAPR TI1,500茂百兴PTH08T220WAZT TI250茂百兴PTH08T260WAZT TI250茂百兴REF3025AIDBZR TI3,000茂百兴REF3030AIDBZR TI3,000茂百兴REF3033AIDBZR TI3,000茂百兴SN65176BDR TI2,500茂百兴SN65220DBVR TI3,000茂百兴SN65240PWR TI2,000茂百兴SN65HVD10DR TI2,500茂百兴SN65HVD11DR TI2,500茂百兴SN65HVD230DR TI2,500茂百兴SN65HVD23DR TI2,500茂百兴SN65HVD251DR TI2,500茂百兴SN65HVD3082EDR TI2,500茂百兴SN65HVD3088EDGKR TI2,500茂百兴SN65HVD33DR TI2,500茂百兴SN65LVDS2DBVR TI3,000茂百兴SN65MLVD200ADR TI2,500茂百兴SN7406DR TI2,500茂百兴SN7407DR TI2,500茂百兴SN74ABTE16246DGGR TI2,000茂百兴SN74AC14PWR TI2,000茂百兴SN74AHC14PWR TI2,000茂百兴SN74AHC1G14DBVR TI3,000茂百兴SN74AHCT08DGVR TI2,000茂百兴SN74AHCT132DR TI2,500茂百兴SN74ALVC164245DLR TI1,000茂百兴SN74ALVCH162244GR TI2,000茂百兴SN74ALVCH162373GR TI2,000茂百兴SN74AUP1G125DCKR TI3,000茂百兴SN74AVC2T45DCUR TI3,000茂百兴SN74CB3Q3257PWR TI2,000茂百兴SN74CBTLV3125PWR TI2,000茂百兴SN74HC14DR TI2,500茂百兴SN74HC164PWR TI2,000茂百兴SN74HC165DR TI2,500茂百兴SN74HC590ADR TI2,500茂百兴SN74HCT541PWR TI2,000茂百兴SN74LV07APWR TI2,000茂百兴SN74LV08APWR TI2,000茂百兴SN74LV14APWR TI2,000茂百兴SN74LV164APWR TI2,000茂百兴SN74LV244ADWR TI2,000茂百兴SN74LV244APWR TI2,000茂百兴SN74LV32APWR TI2,000茂百兴SN74LV595APWR TI2,000茂百兴SN74LV595ARGYR TI1,000茂百兴SN74LVC04ADR TI2,500茂百兴SN74LVC04APWR TI2,000茂百兴SN74LVC08APWR TI2,000茂百兴SN74LVC125APWR TI2,000茂百兴SN74LVC138APWR TI2,000茂百兴SN74LVC14ADR TI2,500茂百兴SN74LVC14APWR TI2,000茂百兴SN74LVC16244ADLR TI1,000茂百兴SN74LVC16245ADGGR TI2,000茂百兴SN74LVC16373ADGGR TI2,000茂百兴SN74LVC1G07DCKR TI3,000茂百兴SN74LVC1G125DCKR TI3,000茂百兴SN74LVC244APWR TI2,000茂百兴SN74LVC245ADGVR TI2,000茂百兴SN74LVC245APWR TI2,000茂百兴SN74LVC2G17DBVR TI3,000茂百兴SN74LVC32APWR TI2,000茂百兴SN74LVC4245APWR TI2,000茂百兴SN74LVC8T245PWR TI2,000茂百兴SN74LVCH162244AGR TI2,000茂百兴SN74LVCH16244ADGGR TI2,000茂百兴SN74LVCH16245ADLR TI1,000茂百兴SN74LVCHR16245AGR TI2,000茂百兴SN74LVTH125PWR TI2,000茂百兴SN74LVTH162244DGGR TI2,000茂百兴SN74LVTH16244ADGGR TI2,000茂百兴SN74LVTH16244ADLR TI1,000茂百兴SN74LVTH16245ADLR TI1,000茂百兴SN74LVTH244APWR TI2,000茂百兴SN75240PWR TI2,000茂百兴SN75ALS1178NSR TI2,000茂百兴SN75LBC176ADR TI2,500茂百兴TAS1020BPFBR TI1,000茂百兴TAS5707PHPR TI1,000茂百兴TFP410PAP TI160茂百兴THS7314DR TI2,500茂百兴THS7316DR TI2,500茂百兴THS7374IPWR TI2,000茂百兴THS8134BCPHP TI250茂百兴THS8200PFP TI96茂百兴TL16C2550PFBR TI1,000茂百兴TL16C550CIPTR TI1,000茂百兴TL16C550CPTR TI1,000茂百兴TL16C550CPTR TI1,000茂百兴TL16C554AFNR TI250茂百兴TL16C554AIPNR TI1,000茂百兴TL16C554APNR TI1,000茂百兴TL16C752BPTR TI1,000茂百兴TL431AIDBVR TI3,000茂百兴TL431IDBVR TI3,000茂百兴TL7705ACDR TI2,500茂百兴TL7712ACDR TI2,500茂百兴TLC1543CDWR TI2,000茂百兴TLC2252AIDR TI2,500茂百兴TLC2252CDR TI2,500茂百兴TLC2254IDR TI2,500茂百兴TLC2262CDR TI2,500茂百兴TLC2272CDR TI2,500茂百兴TLC2274ACDR TI2,500茂百兴TLC2543CDBR TI2,000茂百兴TLC2543CDWR TI2,000茂百兴TLC25M2CDR TI2,500茂百兴TLC3548IDWR TI2,000茂百兴TLC3548IPWR TI2,000茂百兴TLC3702IDR TI2,500茂百兴TLC5510INSR TI2,000茂百兴TLC555CDR TI2,500茂百兴TLC555IDR TI2,500茂百兴TLC5602CDWR TI2,000茂百兴TLC5946RHBR TI3,000茂百兴TLC7701IDR TI2,500茂百兴TLE2062ACDR TI2,500茂百兴TLE2072CDR TI2,500茂百兴TLK1501IRCPR TI1,000茂百兴TLV1543CDWR TI2,000茂百兴TLV2211IDBVR TI3,000茂百兴TLV2231IDBVR TI3,000茂百兴TLV2371IDBVR TI3,000茂百兴TLV2372IDGKR TI2,500茂百兴TLV2432AIDR TI2,500茂百兴TLV2442CDR TI2,500茂百兴TLV2462IDGKR TI2,500茂百兴TLV2556IPWR TI2,000茂百兴TLV272CDR TI2,500茂百兴TLV274CPWR TI2,000茂百兴TLV320AIC1106PWR TI2,000茂百兴TLV320AIC12IDBTR TI2,000茂百兴TLV320AIC3104IRHBR TI3,000茂百兴TLV320AIC31IRHBR TI3,000茂百兴TLV320AIC32IRHBR TI3,000茂百兴TLV320AIC33IZQER TI2,500茂百兴TLV431ACDBVR TI3,000茂百兴TMDS442PNPR TI1,000茂百兴TMP100NA TI3,000茂百兴TMP101NA TI3,000茂百兴TMP20AIDCKR TI3,000茂百兴TMP275AIDR TI2,500茂百兴TMP411ADR TI2,500茂百兴TMP75AIDGKR TI2,500茂百兴TMP75AIDR TI2,500茂百兴TMS320C32PCM50TI24茂百兴TMS320C6205ZHK200TI90茂百兴TMS320C6211BZFN167TI40茂百兴TMS320C6713BGDP225TI40茂百兴TMS320C6713BZDP225TI40茂百兴TMS320C6713BZDP300TI40茂百兴TMS320C6727BZDH300TI90茂百兴TMS320DM355ZCE216TI160茂百兴TMS320DM355ZCE270TI160茂百兴TMS320DM365ZCE27TI160茂百兴TMS320DM365ZCE30TI160茂百兴TMS320DM642AZDK6TI60茂百兴TMS320DM642AZDK7TI60茂百兴TMS320DM642AZNZ7TI40茂百兴TMS320DM6441AZWT TI90茂百兴TMS320DM6446AZWT TI90茂百兴TMS320DM6467TZUT1TI84茂百兴TMS320DM648ZUT9TI84茂百兴TMS320F28015PZA TI90茂百兴TMS320F2802PZA TI90茂百兴TMS320F2806PZA TI90茂百兴TMS320F2808PZA TI90茂百兴TMS320F2810PBKA TI90茂百兴TMS320F2811PBKA TI90茂百兴TMS320F2812GHHA TI160茂百兴TMS320F2812PGFA TI40茂百兴TMS320F28335PGFA TI40茂百兴TMS320LC549PGE-80TI60茂百兴TMS320LF2401AVFA TI250茂百兴TMS320LF2406APZA TI90茂百兴TMS320LF2407APGEA TI60茂百兴TMS320VC33PGE120TI60茂百兴TMS320VC33PGE150TI60茂百兴TMS320VC33PGEA120TI60茂百兴TMS320VC5402PGE100TI60茂百兴TMS320VC5409APGE16TI60茂百兴TMS320VC5409PGE80TI60茂百兴TMS320VC5410APGE16TI60茂百兴TMS32C6713BGDPA200TI40茂百兴TPA2005D1DRBR TI3,000茂百兴TPA2008D2PWPR TI2,000茂百兴TPA2010D1YZFR TI2,500茂百兴TPA2012D2RTJR TI3,000茂百兴TPA2013D1RGPR TI3,000茂百兴TPA3001D1PWPR TI2,000茂百兴TPA3007D1PWR TI2,000茂百兴TPA3100D2PHPR TI1,000茂百兴TPA3101D2PHPR TI1,000茂百兴TPA3110D2PWPR TI2,000茂百兴TPA3113D2PWPR TI2,000茂百兴TPA3120D2PWPR TI2,000茂百兴TPA3121D2PWPR TI2,000茂百兴TPA3123D2PWPR TI2,000茂百兴TPA3123D2PWPR TI2,000茂百兴TPA3124D2PWPR TI2,000茂百兴TPA6011A4PWPR TI2,000茂百兴TPA6110A2DGNR TI2,500茂百兴TPA6111A2DGNR TI2,500茂百兴TPA6111A2DR TI2,500茂百兴TPA6112A2DGQR TI2,500茂百兴TPA6132A2RTER TI3,000茂百兴TPA6204A1DRBR TI3,000茂百兴TPA6211A1DGNR TI2,500茂百兴TPA6211A1DRBR TI3,000茂百兴TPD12S520DBTR TI2,000茂百兴TPIC6595DWR TI2,000茂百兴TPIC6B595DWR TI2,000茂百兴TPS2034DR TI2,500茂百兴TPS2041BDBVR TI3,000茂百兴TPS2041BDR TI2,500茂百兴TPS2042BDGNR TI2,500茂百兴TPS2042BDR TI2,500茂百兴TPS2044BDR TI2,500茂百兴TPS2051BDBVR TI3,000茂百兴TPS2051BDGNR TI2,500茂百兴TPS2051BDR TI2,500茂百兴TPS2052BDR TI2,500茂百兴TPS2061DGN TI80茂百兴TPS2105DBVR TI3,000茂百兴TPS2113APWR TI2,000茂百兴TPS2115PWR TI2,000茂百兴TPS2320IPWR TI2,000茂百兴TPS2331IPWR TI2,000茂百兴TPS2350PW TI2,000茂百兴TPS23750PWPR TI2,000茂百兴TPS23753PWR TI2,000茂百兴TPS23754PWPR TI2,000茂百兴TPS2375DR TI2,500茂百兴TPS23770PWPR TI2,000茂百兴TPS2390DGKR TI2,500茂百兴TPS2391DGKR TI2,500茂百兴TPS2551DRVR TI3,000茂百兴TPS2553DBVR TI3,000茂百兴TPS2553DRVR TI3,000茂百兴TPS2812DR TI2,500茂百兴TPS2814DR TI2,500茂百兴TPS2814PWR TI2,000茂百兴TPS2829DBVR TI3,000茂百兴TPS3106E09DBVR TI3,000茂百兴TPS3106K33DBVR TI3,000茂百兴TPS3305-18DR TI2,500茂百兴TPS3307-18DR TI2,500茂百兴TPS3619-33DGKR TI2,500茂百兴TPS3620-33DGKR TI2,500茂百兴TPS3707-33DR TI2,500茂百兴TPS3801E18DCKR TI3,000茂百兴TPS3801J25DCKR TI3,000茂百兴TPS3801K33DCKR TI3,000茂百兴TPS3803-01DCKR TI3,000茂百兴TPS3808G01DBVR TI3,000茂百兴TPS3808G18DBVR TI3,000茂百兴TPS3808G33DBVR TI3,000茂百兴TPS3809K33DBVR TI3,000茂百兴TPS3820-33DBVR TI3,000茂百兴TPS3823-33DBVR TI3,000茂百兴TPS3824-33DBVR TI3,000茂百兴TPS3825-33DBVR TI3,000茂百兴TPS3828-33DBVR TI3,000茂百兴TPS3828-50DBVR TI3,000茂百兴TPS40001DGQR TI2,500茂百兴TPS40009DGQR TI2,500茂百兴TPS40021PWPR TI2,000茂百兴TPS40041DRBR TI3,000茂百兴TPS40055PWPR TI2,000茂百兴TPS40056PWPR TI2,000茂百兴TPS40057PWPR TI2,000茂百兴TPS40060PWPR TI2,000茂百兴TPS40061PWPR TI2,000茂百兴TPS40071PWPR TI2,000茂百兴TPS40077PWPR TI2,000茂百兴TPS40100RGER TI3,000茂百兴TPS40101RGER TI3,000茂百兴TPS40130DBTR TI2,000茂百兴TPS40190DRCR TI2,500茂百兴TPS40192DRCR TI3,000茂百兴TPS40200DR TI2,500茂百兴TPS40210DGQR TI2,500茂百兴TPS40222DRPR TI3,000茂百兴TPS51100DGQR TI2,500茂百兴TPS51116PWPR TI2,000茂百兴TPS51116RGER TI3,000茂百兴TPS51117RGYR TI3,000茂百兴TPS51120RHBR TI3,000茂百兴TPS51200DRCR TI3,000茂百兴TPS51218DSCR TI3,000茂百兴TPS54010PWPR TI2,000茂百兴TPS5410DR TI2,500茂百兴TPS54110PWPR TI2,000茂百兴TPS54140DGQR TI2,500茂百兴TPS54160DGQR TI2,500茂百兴TPS5420DR TI2,500茂百兴TPS54226PWPR TI2,000茂百兴TPS54231DR TI2,500茂百兴TPS54283PWPR TI2,000茂百兴TPS54286PWPR TI2,000茂百兴TPS54292PWPR TI2,000茂百兴TPS5430DDAR TI2,500茂百兴TPS54310PWPR TI2,000茂百兴TPS54314PWPR TI2,000茂百兴TPS54319RTER TI3,000茂百兴TPS54325PWPR TI2,000茂百兴TPS54331DR TI2,500茂百兴TPS54350PWPR TI2,000茂百兴TPS54357PWPR TI2,000茂百兴TPS54372PWPR TI2,000茂百兴TPS54380PWPR TI2,000茂百兴TPS54383PWPR TI2,000茂百兴TPS54386PWPR TI2,000茂百兴TPS54418RTER TI3,000茂百兴TPS5450DDAR TI2,500茂百兴TPS54550PWPR TI2,000茂百兴TPS54610PWPR TI2,000茂百兴TPS54612PWPR TI2,000茂百兴TPS54614PWPR TI2,000茂百兴TPS54616PWPR TI2,000茂百兴TPS54620RGYR TI3,000茂百兴TPS54672PWPR TI2,000茂百兴TPS54680PWPR TI2,000茂百兴TPS54910PWPR TI2,000茂百兴TPS54972PWPR TI2,000茂百兴TPS60150DRVR TI3,000茂百兴TPS60230RGTR TI3,000茂百兴TPS60231RGTR TI3,000茂百兴TPS60400DBVR TI3,000茂百兴TPS60403DBVR TI3,000茂百兴TPS60500DGSR TI2,500茂百兴TPS61020DRCR TI3,000茂百兴TPS61026DRCR TI3,000茂百兴TPS61030PWPR TI2,000茂百兴TPS61030RSAR TI2,000茂百兴TPS61032PWPR TI2,000茂百兴TPS61040DBVR TI3,000茂百兴TPS61041DBVR TI3,000茂百兴TPS61042DRBR TI3,000茂百兴TPS61045DRBR TI3,000茂百兴TPS61050YZGR TI3,000茂百兴TPS61070DDCR TI3,000茂百兴TPS61080DRCR TI3,000茂百兴TPS61081DRCR TI3,000茂百兴TPS61087DRCR TI3,000茂百兴TPS61090RSAR TI3,000茂百兴TPS61097-33DBVR TI3,000茂百兴TPS61160DRVR TI3,000茂百兴TPS61161DRVR TI3,000茂百兴TPS61165DRVR TI3,000茂百兴TPS62000DGSR TI2,500茂百兴TPS62040DGQR TI2,500茂百兴TPS62040DRCR TI3,000茂百兴TPS62046DGQR TI2,500茂百兴TPS62050DGSR TI2,500茂百兴TPS62060DSGR TI3,000茂百兴TPS62110RSAR TI3,000茂百兴TPS62111RSAR TI3,000茂百兴TPS62200DBVR TI3,000茂百兴TPS62201DBVR TI3,000茂百兴TPS62202DBVR TI3,000茂百兴TPS62203DBVR TI3,000茂百兴TPS62204DBVR TI3,000茂百兴TPS62260DDCR TI3,000茂百兴TPS62260DRVR TI3,000茂百兴TPS62290DRVR TI3,000茂百兴TPS62410DRCR TI3,000茂百兴TPS62510DRCR TI3,000茂百兴TPS62590DRVR TI3,000茂百兴TPS63000DRCR TI3,000茂百兴TPS63001DRCR TI3,000茂百兴TPS63020DSJR TI3,000茂百兴TPS63021DSJR TI3,000茂百兴TPS63030DSKR TI3,000茂百兴TPS63031DSKR TI3,000茂百兴TPS63700DRCR TI3,000茂百兴TPS64200DBVR TI3,000茂百兴TPS64202DBVR TI3,000茂百兴TPS65020RHAR TI2,500茂百兴TPS65021RHAR TI2,500茂百兴TPS65023RSBR TI3,000茂百兴TPS650243RHBR TI3,000茂百兴TPS65053RGER TI3,000茂百兴TPS65120RGTR TI3,000茂百兴TPS65150PWPR TI2,000茂百兴TPS65251RHAR TI2,500茂百兴TPS65920BZCHR TI2,000茂百兴TPS65930BZCHR TI1,000茂百兴TPS6755IDR TI2,500茂百兴TPS70102PWPR TI2,000茂百兴TPS70302PWPR TI2,000茂百兴TPS7101QDR TI2,500茂百兴TPS71501DCKR TI3,000茂百兴TPS71530DCKR TI3,000茂百兴TPS71533DCKR TI3,000茂百兴TPS71550DCKR TI3,000茂百兴TPS71701DCKR TI3,000茂百兴TPS72301DBVR TI3,000茂百兴TPS72501DCQR TI2,500茂百兴TPS72515DCQR TI2,500茂百兴TPS73018DBVR TI3,000茂百兴TPS73033DBVR TI3,000茂百兴TPS73101DBVR TI3,000茂百兴TPS73115DBVR TI3,000茂百兴TPS73130DBVR TI3,000茂百兴TPS73133DBVR TI3,000茂百兴TPS73201DBVR TI3,000茂百兴TPS73601DBVR TI3,000茂百兴TPS73601DCQR TI3,000茂百兴TPS73633DRBR TI3,000茂百兴TPS73701DCQR TI2,500茂百兴TPS73701DRBR TI3,000茂百兴TPS74401RGWR TI3,000茂百兴TPS74701DRCR TI3,000茂百兴TPS74801DRCR TI3,000茂百兴TPS75201QPWPR TI2,000茂百兴TPS76050DBVR TI3,000茂百兴TPS76301DBVR TI3,000茂百兴TPS76318DBVR TI3,000茂百兴TPS76333DBVR TI3,000茂百兴TPS76350DBVR TI3,000茂百兴TPS76633DR TI2,500茂百兴TPS76650DR TI2,500茂百兴TPS76701QPWPR TI2,000茂百兴TPS767D318PWPR TI2,000茂百兴TPS76801QDR TI2,500茂百兴TPS76933DBVR TI3,000茂百兴TPS77601PWPR TI2,000茂百兴TPS77633DR TI2,500茂百兴TPS77701PWPR TI2,000茂百兴TPS77801PWPR TI2,000茂百兴TPS78833DBVR TI3,000茂百兴TPS79101DBVR TI3,000茂百兴TPS79301DBVR TI2,500茂百兴TPS79318DBVR TI3,000茂百兴TPS793285DBVR TI3,000茂百兴TPS79328DBVR TI3,000茂百兴TPS79330DBVR TI3,000茂百兴TPS79333DBVR TI3,000茂百兴TPS79501DCQR TI2,500茂百兴TPS79533DCQR TI2,500茂百兴TPS79633DCQR TI2,500茂百兴TPS79730DCKR TI3,000茂百兴TPS79901DDCR TI3,000茂百兴TS3USB221DRCR TI3,000茂百兴TS5A3167DBVR TI3,000茂百兴TSB12LV26PZT TI90茂百兴TSB43AB22APDT TI90茂百兴TSC2003IPWR TI2,500茂百兴TSC2007IPWR TI2,000茂百兴TSC2007IYZGR TI3,000茂百兴TSC2017IYZGR TI3,000茂百兴TSC2046IPWR TI2,500茂百兴TUSB2046BIVFR TI1,000茂百兴TUSB2046BVFR TI1,000茂百兴TUSB3200ACPAHR TI1,500茂百兴TUSB3410VF TI250茂百兴TVP5150AM1PBSR TI1,000茂百兴TVP5154APNPR TI1,000茂百兴TVP5158IPNPR TI1,000茂百兴TVP5158PNPR TI1,000茂百兴UC2637DWTR TI2,000茂百兴UC2825ADWTR TI2,000茂百兴UC2842AD8TR TI2,500茂百兴UC2843AD8TR TI2,500茂百兴UC2844AD8TR TI2,500茂百兴UC3637DWTR TI2,000茂百兴UC3825ADWTR TI2,000茂百兴UC3843AD8TR TI2,500茂百兴UC3845AD8TR TI2,500茂百兴UC3845AN TI50茂百兴UC3846DWTR TI2,000茂百兴UC3846N TI25茂百兴UC3854AN TI25茂百兴UC3854BDWTR TI2,000茂百兴UC3854N TI25茂百兴UC3902DTR TI2,500茂百兴UCC27223PWPR TI2,000茂百兴UCC27324DGNR TI2,500茂百兴UCC27324DR TI2,500茂百兴UCC27423DR TI2,500茂百兴UCC27424DR TI2,500茂百兴UCC2800DTR TI2,500茂百兴UCC28060DR TI2,500茂百兴UCC28061DR TI2,500茂百兴UCC28070PWR TI2,000茂百兴UCC2808APWTR-2TI2,000茂百兴UCC2809DTR-1TI2,500茂百兴UCC2809PTR-1TI2,500茂百兴UCC2818DTR TI2,500茂百兴UCC28600DR TI2,500茂百兴UCC2891PWR TI2,000茂百兴UCC2894DR TI2,500茂百兴UCC2895DWTR TI2,000茂百兴UCC2897APWR TI2,000茂百兴UCC28C43DR TI2,500茂百兴UCC28C44DR TI2,500茂百兴UCC28C45DR TI2,500茂百兴UCC37324DGNR TI2,500茂百兴UCC3801DTR TI2,500茂百兴UCC3807DTR-3TI2,500茂百兴UCC3808DTR-2TI2,500茂百兴UCC3818PWTR TI2,000茂百兴UCC3895DWTR TI2,000茂百兴UCC3895PWTR TI2,000茂百兴UCC3919DTR TI2,500茂百兴UCC3946DTR TI2,500茂百兴ULN2003ADR TI2,500茂百兴ULN2003AIDR TI2,500茂百兴ULN2003AN TI25茂百兴XIO1100GGB TI160茂百兴XTR116UA/2K5TI2,500茂百兴。
高线性度的类比信号隔离器件 HCNR200/201高线性度的类比信号隔离器件 HCNR200/201何旭东采用光耦器件和外围电路组成的光隔离电路,是一种很常用的信号隔离形式。
在数字隔离电路或数据传输电路,常常用到这种简单的光耦电路,如UART协议的20mA电流环。
在模拟电路中,光耦输入输出的模拟信号线形较差,并随温度变化较大。
这样就限制了光耦在模拟信号隔离中的应用。
第389期内容对于高频交流模拟信号,变压器隔离是最常见的选择,但不适用支流信号。
某些厂商提供隔离放大器作为模拟信号隔离的解决方案,如ADI的AD202,能够在直流到几千频率范围内,提供0.025%的线性度。
在这种隔离器件内部,先要进行电压/频率转换,对产生的交流信号进行变压器隔离,然後进行频率/电压转换,达到隔离的效果。
但这种隔离放大器的内部电路复杂,体积大,成本高,不适合大规模应用。
因此,模拟信号隔离的一个比较好的选择就是使用线形光耦。
线性光耦的隔离原理与普通光耦没有差别,只是将普通光耦的单发单收模式稍加改变,增加一个用于反馈的光接受电路。
这样,虽然两个光接受电路都是非线性的,但两个光接受电路的非线性特性都是一样的,就可以通过反馈通路的非线性来抵消直通通路的非线性,从而达到实现线性隔离的目的。
在市场上,可选择的线性光耦有HCNR200/201,这是由Agilent公司早些时候推出的。
作为Agilent公司亚太区代理商,深圳世强电讯有限公司(以下简称∶世强电讯)也代理HCNR200/201。
世强电讯应用工程师喻袁洲介绍∶“HCNR200/201应用广泛,与其他同类产品相比,在实际电路设计中也比较简单,有利于提高工程师的开发效率。
”在此,以HCNR200/201为例,介绍线性光耦的特性。
HCNR200/201的特点“应用线性光耦合器组成的模拟信号隔离电路,线性度好,电路简单,有效地解决了模拟信号与单片机应用系统电气隔离问题。
若驱动级、缓冲级采用组合型运算放大器,可使线性度提高。
运放参数解释及常用运放选型2014-08-10 20:01 7422人阅读评论(0) 收藏举报分类:电路设计(24)版权声明:本文为博主原创文章,未经博主允许不得转载。
目录(?)[+]集成运放的参数较多,其中主要参数分为直流指标和交流指标,外加所有芯片都有极限参数。
本文以NE5532为例,分别对各指标作简单解释。
下面内容除了图片从NE5532数据手册上截取,其它内容都整理自网络。
极限参数主要用于确定运放电源供电的设计(提供多少V电压、最大电流不能超过多少),NE5532的极限参数如下:直流指标运放主要直流指标有输入失调电压、输入失调电压的温度漂移(简称输入失调电压温漂)、输入偏置电流、输入失调电流、输入偏置电流的温度漂移(简称输入失调电流温漂)、差模开环直流电压增益、共模抑制比、电源电压抑制比、输出峰-峰值电压、最大共模输入电压、最大差模输入电压。
NE5532的直流指标如下:输入失调电压Vos:输入失调电压定义为集成运放输出端电压为零时,两个输入端之间所加的补偿电压。
输入失调电压实际上反映了运放内部的电路对称性,对称性越好,输入失调电压越小。
输入失调电压是运放的一个十分重要的指标,特别是精密运放或是用于直流放大时。
输入失调电压与制造工艺有一定关系,其中双极型工艺(即上述的标准硅工艺)的输入失调电压在±1~10mV 之间;采用场效应管做输入级的,输入失调电压会更大一些。
对于精密运放,输入失调电压一般在1mV以下。
输入失调电压越小,直流放大时中间零点偏移越小,越容易处理。
所以对于精密运放是一个极为重要的指标。
∙输入失调电压的温度漂移(简称输入失调电压温漂)ΔVos/ΔT:∙输入失调电压的温度漂移定义为在给定的温度范围内,输入失调电压的变化与温度变化的比值。
这个参数实际是输入失调电压的补充,便于计算在给定的工作范围内,放大电路由于温度变化造成的漂移大小。
一般运放的输入失调电压温漂在±10~20μV/℃之间,精密运放的输入失调电压温漂小于±1μV/℃。
WP5010,Qi标准5V无线充电器控制IC特色●智能无线电源传输控制●符合Qi标准A5和A11方案,5V供电●动态输入功率调整,适合电脑和笔记本USB口驱动●金属异物检测功能(FOD),使用安全●过压、过温、过流保护●充电状态和故障状态的LED 指应用范围●与Qi兼容的无线充电器-手机和智能电话-手持式设备-工业工具-汽车和其它车辆-桌面充电接口说明WP5010是符合无线充电联盟(WPC)Qi 标准的无线充电器控制IC,实现了单机无线充电器的全部功能。
芯片按照Qi标准1.1版中的A5和A11发射器方案设计,采用5V供电电压。
芯片会自动检测符合Qi标准的接收器,与接收器建立数据通信,并智能管理无线电源传输。
为了增加应用灵活性,设计了动态输入功率调整功能,通过无缝优化首先输入电源上可用功率的使用,大大提高用户体验。
通过持续监测已建立的电源传输效率,WP5010支持金属异物检测,从而防止由于在无线电源传输路径上错误方式金属物体而导致温度急剧上升的状况。
如果在电源传输期间发生任何异常状况,WP5010会自动进行处理并指示,这保证了无线充电的安全性。
功能图和效率曲线电气特性极限参数直流特性(TA=25℃)器件描述功能框图COM1COM2VSNS ISNS TSNS BUZZERPWM1PWM2LEDT1T2ENHB引脚说明No. Name I/O Description应用说明线圈和匹配电容发射器线圈和匹配电容Qi标准已有明确规定,必须按照规定选择线圈和匹配电容,不可随意更改。
WP5010适用于A5和A11方案,请参照Qi标准文档选择所需要的线圈。
匹配电容对发射器的正常工作至关重要。
线圈的匹配电容应为400±5%nF,电容耐压值应不低于50V。
应选择C0G/NPO或相当材质的电容,不推荐使用X7R材质的电容。
由于400nF并不是标准容值,可采用4个100nF电容或者1个180nF和1个220nF电容并联。
针对HP 6535S 北桥RS780 南桥SB700 集成显卡上电时序分析,里面用的比较通俗的语言写的,写的也没什么水平,这是我第一次写上电时序,可能有很多地方不对,如有不对的地方请大家指正DC JACK接口插上适配分后到Q1031的S极之间分为+V ADPTR,经过一电感后又分为+V ADP 这几个电压在实际维修过程中的没有分的那么清楚到了隔离保护这一块了Q1031和Q1025这个二个管子分别由ADP_EN#,ADPDRV#二个信号控制,其中ADP_EN#是HP DC头适配器带的检测脚电压6V左右,通过U1024比较器的第二部分进行比较后输出的一个低电平,是这样比较的,检测脚6V为反相与正相+V ADP通过R1287 R1286对地分压后大约在5V左右比较,负相>正相输出低电平正ADP_EN#ADP_EN#为低时,经过D1006 R1275 Q1022 R1277对+V ADP进行分压导通Q1031到Q1025D极UADPDRV# 也是由U1018LMV321这样的一个比较器进行比较后导通Q1020,让ADPDRV#变成了一个低电平后由R1289 R1290分压导通Q1025 到达公共点+BA T,这个电压到了TPS51120供电,并发出2V的基准电压2VREF和V3AL V5AL二个线性电压,V3AL主要是给BIOS EC供电,SB的RTC供电,V5AL一些转换,比较器之类的供电这样可以保证部分模块处于激活状态,来实现一些功能例如读取电池电量和温度信息下面是比较重要的二个信号ADP_PRES AC_AND_CHG这二个信号是适配器电压分压后与2VREF进行比较得出的ADP_PRES :ADP-PRES输出,供给于SMSC KBC1091,提醒EC适配器供电,EC接收到这个信号之后会发出一个CHGCTRL_3信给BQ24740M 同时EC便会出KBC_PWR_ON去开启TPS51120产生3VA,5VA同时也到达南桥,他又和和SLP-S3#-3R经过U1009NC7S02M5X,让Q1008完成+V3A到+V3-LAN的转变,这里MOS作用是来放大电流,给后级的网卡负载使用。
User's GuideSLIU007–September2011TPL0501EVM User GuideContents1Features (2)2Introduction (2)3Mode Selection (2)4Jumper Connections (3)5Software Setup (4)6Operation (4)6.1Voltage Reference Mode (5)6.2Variable Gain Mode (5)7Layouts (7)8Bill of Materials (9)List of Figures1GUI for DPOT Control (4)2TPL0501Variable Gain (5)3TPL0501EVM Schematic (6)4Routing,Assembly and Silkscreen Top (7)5Layer2Ground Plane (7)6Layer3Power Plane (8)7Routing and Assembly Bottom (8)List of Tables1Description of Connectors and Jumpers (3)2430Boost-TPL0501EVM Bill of Material(DPOT Only) (9)Windows is a trademark of Microsoft Corporation.1 SLIU007–September2011TPL0501EVM User GuideSubmit Documentation FeedbackCopyright©2011,Texas Instruments Incorporated/Features 1Features•Works with low cost MSP430based LaunchPad platform•Simple GUI to control EVM•EVM can be operate two different modes–Adjustable Voltage reference mode–Variable gain mode•Board is entirely powered by USB2IntroductionThe TPL0501is a single channel,linear-taper digital potentiometer with256wiper positions.This devicecan be used as a three-terminal potentiometer or as a two-terminal rheostat.The TPL0501has an end–to-end resistance of100kΩ.The internal registers of the TPL0501can be accessed using aSPI-compatible interface.The TPL0501has a nominal temperature coefficient of35ppm/°C.The TPL0501is available in an8-pin SOT-23and8-microQFN package with a specified temperature range of–40°C to125°C.The TPL0501EVM is designed to operate with the Texas Instruments LaunchPad(MSP-EXP430G2).TheTPL0501EVM come with a preprogrammed MSP430G2553microcontroller which is to be inserted in theDIP socket on the LaunchPad.The LaunchPad can be separately purchased at /launchpad.The TPL0501EVM has two different evaluation modes:Mode1–Adjustable voltage reference mode–in this mode the TPL0501is used in conjunction with anLMV321op amp as an adjustable voltage reference circuit.Mode2–Variable gain mode–in this mode the TPL0501is configured as part of a variable gainnon-inverting amplifier.The gain of the amplifier can be controlled by a digital interface.This mode can beused to evaluate the bandwidth of the TPL0501.The EVM is operated by connecting the LaunchPad to a PC that has Windows™()via the USBPort.Other standard lab equipment such as Signal generator,multimeter,spectrum analyzer etc may berequired for detailed analysis of the TPL0501performance using this EVM.3Mode SelectionTo setup any of these two modes,begin by connecting the EVM to the LaunchPad.Note the location ofthe VCC and GND pins on headers J1and J2on both the LaunchPad and the EVM to ensure correctinstallation.1.Voltage reference modeConnect pins1and2of Jumper J7.Connect pins1and2of Jumper J5.Connect the LaunchPad and TPL0501EVM to a computer through the USB connector.2.Variable Gain modeConnect pins2and3of jumper J6.Connect pins1and2of jumper J7.Attach a signal generator to the EXT_IN connector.Connect the LaunchPad and TPL0501EVM to a computer through the USB connector 2TPL0501EVM User Guide SLIU007–September2011Submit Documentation FeedbackCopyright©2011,Texas Instruments Incorporated/ Jumper Connections4Jumper Connections1.J1&J2–LaunchPad HeadersThese connectors mate with the male headers on the LaunchPad.2.J5–Feedback loopFor the TPL0501to function as a voltage reference circuit the negative feedback loop must be shorted,placing a jumper across this header will short the inverting input to the output.3.J6–Inverting Op-amp selectWhen shorted across pins2and3,the wiper of TPL0501-100(U1)is connected to the inverting inputof the op-amp for evaluation of a non-inverting variable gain amplifier.This header can also be used asa pin out of the TPL0501-100(U1).Pin1is the H terminal,pin2is the W terminal but the L terminal isalways connected to ground.4.J7–Op-amp inputThis header controls the input to the non-inverting pin of the LMV321.When shorted across position1and2,the TPL0501-100(U2)in a voltage divider mode is attached to the non-inverting input of theLVM321.This setup is used to test the voltage reference setup.When shorted across pins2and3,theSMA connector is attached to the non-inverting input.Table1.Description of Connectors and JumpersLabel DescriptionJ1,J2Connectors to interface with LaunchPadJ3SMA/B Footprint for external inputJ5Control jumper to short feedback loopJ6Jumper to control inverting inputJ7Jumper to control input to Op-Amp3 SLIU007–September2011TPL0501EVM User GuideSubmit Documentation FeedbackCopyright©2011,Texas Instruments Incorporated/Software Setup 5Software SetupThe GUI software is available in a zip file located on the TPL0501product page on .Downloadthe zip file and extract its contents to a desired location on your PC.You will see an executable file calledTPL0501_GUI.exe in the extracted folder.Double click the file to open it and the GUI program shouldlaunch.IMPORTANT:Before launching the GUI please make sure the TPL0501EVM is setup in thedesired mode and connected to the PC through a USB port.6OperationFigure1.GUI for DPOT ControlThere are three methods to adjust the value of the TPL0501A/B.Start by clicking one of the buttonscircled in GREEN to select the corresponding TPL0501device.To adjust the tap value directly simply click the box that says tap and you will be prompted to input a tapvalue between0and127.After typing in the desired value press enter and the tap value will be sent tothe TPL0501A and the GUI will reflect the value you just entered.To adjust the TPL0501by inputting a wiper to low terminal resistance,click the box that says W-LResistance.You will then be prompted to input a value between0and10,000ohms;press enter after youhave input a value.The GUI will use the theoretical resistance values to find a tap that is closest to thevalue that was input.NOTE:All W-L resistance values are theoretical;the actual value will be within20%of the displayedvalue.4TPL0501EVM User Guide SLIU007–September2011Submit Documentation FeedbackCopyright©2011,Texas Instruments Incorporated/out Operation6.1Voltage Reference ModeMake sure the EVM is set up in Mode 1as described in Section 3.The TPL0501-100U2is used in the adjustable voltage reference mode.Select the corresponding device from the GUI.Change the value the DPOT using any of the methods described above.Measure the voltage on TP1using a multimeter.You will see the voltage change with the value of the TPL0501resistance.6.2Variable Gain ModeThe variable gain mode is primarily intended to test the bandwidth of the TPL0501.After setting up the EVM as described in Section 3,the circuit will look as follows:Figure 2.TPL0501Variable GainThe capacitor C6and the resistor R12are unpopulated and should be set by the user.R12will set the possible gain values and C6will keep the loop stable.Changing the value of the TPL0501works the same as described in the beginning of this section by selecting device TPL0501-100U1.5SLIU007–September 2011TPL0501EVM User GuideSubmit Documentation FeedbackCopyright ©2011,Texas Instruments Incorporated/OperationFigure3.TPL0501EVM Schematic6TPL0501EVM User GuideCopyright©2011,Texas Instruments Incorporated / Layouts 7LayoutsFigure4.Routing,Assembly and Silkscreen Topyer2Ground Plane7 SLIU007–September2011TPL0501EVM User GuideSubmit Documentation FeedbackCopyright©2011,Texas Instruments Incorporated/Layouts yer3Power PlaneFigure7.Routing and Assembly Bottom8TPL0501EVM User Guide SLIU007–September2011Submit Documentation FeedbackCopyright©2011,Texas Instruments Incorporated/ Bill of Materials 8Bill of MaterialsTable2.430Boost-TPL0501EVM Bill of Material(DPOT Only)Count RefDes Value Description Size Part Number MFR Notes 1TP15013Test Point,Orange,Thru Hole0.125x0.125inch5013Keystone DNI1TP25001Test Point,Black,Thru Hole0.100x0.100Inch5001Keystone DNI1TP35000Test Point,Red,Thru Hole0.100x0.100Inch5000Keystone DNI1TP45002Test Point,White,Thru Hole0.100x0.100Inch5002Keystone DNI1C1{VALUE}Capacitor,Ceramic,0805DNI1J3901-144-8RFX Connector,SMA,Straight,PC mount0.210sq inch901-144-8RFX,Amphenol DNI1408332-12R1-2{VALUE}Resistor,Chip,1/16W,5%0603DNI1U3LMV321IDBVR IC,Low Power,Single Op-Amp SOT23-5LMV321IDBVR TI1J5961102-6404-AR Header,Male2-pin,100mil spacing,0.100inch x2961102-6404-AR2J6-7961103-6404-AR Header,Male3-pin,100mil spacing,0.100inch x3961103-6404-AR2J1-2PPTC101LFBN-RC Header,Female10-pin100mil spacing0.100inch x10PPTC101LFBN-RC2U1-2TPL0501-10RSE IC,10KOhm,256Taps Single Chan QFN TPL0501-10RSE TIDigital W/SPI Interface9 SLIU007–September2011TPL0501EVM User GuideSubmit Documentation FeedbackCopyright©2011,Texas Instruments Incorporated/Evaluation Board/Kit Important NoticeTexas Instruments(TI)provides the enclosed product(s)under the following conditions:This evaluation board/kit is intended for use for ENGINEERING DEVELOPMENT,DEMONSTRATION,OR EVALUATIONPURPOSES ONLY and is not considered by TI to be a finished end-product fit for general consumer use.Persons handling theproduct(s)must have electronics training and observe good engineering practice standards.As such,the goods being provided arenot intended to be complete in terms of required design-,marketing-,and/or manufacturing-related protective considerations,including product safety and environmental measures typically found in end products that incorporate such semiconductorcomponents or circuit boards.This evaluation board/kit does not fall within the scope of the European Union directives regardingelectromagnetic compatibility,restricted substances(RoHS),recycling(WEEE),FCC,CE or UL,and therefore may not meet thetechnical requirements of these directives or other related directives.Should this evaluation board/kit not meet the specifications indicated in the User’s Guide,the board/kit may be returned within30days from the date of delivery for a full refund.THE FOREGOING WARRANTY IS THE EXCLUSIVE WARRANTY MADE BYSELLER TO BUYER AND IS IN LIEU OF ALL OTHER WARRANTIES,EXPRESSED,IMPLIED,OR STATUTORY,INCLUDINGANY WARRANTY OF MERCHANTABILITY OR FITNESS FOR ANY PARTICULAR PURPOSE.The user assumes all responsibility and liability for proper and safe handling of the goods.Further,the user indemnifies TI from allclaims arising from the handling or use of the goods.Due to the open construction of the product,it is the user’s responsibility totake any and all appropriate precautions with regard to electrostatic discharge.EXCEPT TO THE EXTENT OF THE INDEMNITY SET FORTH ABOVE,NEITHER PARTY SHALL BE LIABLE TO THE OTHERFOR ANY INDIRECT,SPECIAL,INCIDENTAL,OR CONSEQUENTIAL DAMAGES.TI currently deals with a variety of customers for products,and therefore our arrangement with the user is not exclusive.TI assumes no liability for applications assistance,customer product design,software performance,or infringement ofpatents or services described herein.Please read the User’s Guide and,specifically,the Warnings and Restrictions notice in the User’s Guide prior to handling theproduct.This notice contains important safety information about temperatures and voltages.For additional information on TI’senvironmental and/or safety programs,please contact the TI application engineer or visit /esh.No license is granted under any patent right or other intellectual property right of TI covering or relating to any machine,process,orcombination in which such TI products or services might be or are used.FCC WarningThis evaluation board/kit is intended for use for ENGINEERING DEVELOPMENT,DEMONSTRATION,OR EVALUATIONPURPOSES ONLY and is not considered by TI to be a finished end-product fit for general consumer use.It generates,uses,andcan radiate radio frequency energy and has not been tested for compliance with the limits of computing devices pursuant to part15of FCC rules,which are designed to provide reasonable protection against radio frequency interference.Operation of thisequipment in other environments may cause interference with radio communications,in which case the user at his own expensewill be required to take whatever measures may be required to correct this interference.EVM Warnings and RestrictionsIt is important to operate this EVM within the input voltage range of0V to5.5V and the output voltage range of0V to5.5V.Exceeding the specified input range may cause unexpected operation and/or irreversible damage to the EVM.If there arequestions concerning the input range,please contact a TI field representative prior to connecting the input power.Applying loads outside of the specified output range may result in unintended operation and/or possible permanent damage to theEVM.Please consult the EVM User's Guide prior to connecting any load to the EVM output.If there is uncertainty as to the loadspecification,please contact a TI field representative.During normal operation,some circuit components may have case temperatures greater than50°C.The EVM is designed tooperate properly with certain components above50°C as long as the input and output ranges are maintained.These componentsinclude but are not limited to linear regulators,switching transistors,pass transistors,and current sense resistors.These types ofdevices can be identified using the EVM schematic located in the EVM User's Guide.When placing measurement probes nearthese devices during operation,please be aware that these devices may be very warm to the touch.Mailing Address:Texas Instruments,Post Office Box655303,Dallas,Texas75265Copyright©2011,Texas Instruments Incorporated/分销商库存信息: TITPL0501EVM。
LM2903DR TI2,500茂百兴LM2903PWR TI2,000茂百兴LM3S1601-IQC50-A2T TI1,000茂百兴LM3S1607-IQR50-A0T TI1,500茂百兴LM3S1911-IQC50-A2T TI1,000茂百兴LM3S1968-IQC50-A2T TI1,000茂百兴LM3S2793-IQC80-C3T TI1,000茂百兴LM3S2965-IQC50-A2T TI1,000茂百兴LM3S3749-IQC50-A0T TI1,000茂百兴LM3S6911-IQC50-A2T TI1,000茂百兴LM3S9B90-IQC80-C3T TI1,000茂百兴LM3S9B92-IQC80-C1TI90茂百兴LM3S9B92-IQC80-C3TI90茂百兴LM4040C50IDBZR TI3,000茂百兴LM4041C12IDCKR TI3,000茂百兴LMV321IDBVR TI3,000茂百兴LMV324IPWR TI2,000茂百兴LMV331IDCKR TI3,000茂百兴LT1013DDR TI2,500茂百兴MAX3221CDBR TI2,000茂百兴MAX3221CPWR TI2,000茂百兴MAX3221IPWR TI2,000茂百兴MAX3223ECDBR TI2,000茂百兴MAX3232CDBR TI2,000茂百兴MAX3232CPWR TI2,000茂百兴MAX3232ECDBR TI2,000茂百兴MAX3232IPWR TI2,000茂百兴MAX3238EIPWR TI2,000茂百兴MAX3243CDBR TI2,000茂百兴MAX3243CPWR TI2,000茂百兴MAX3243ECDBR TI2,000茂百兴MAX3243ECPWR TI2,000茂百兴MSC1211Y5PAGR TI1,500茂百兴MSP430F1232IPWR TI2,000茂百兴MSP430F135IPMR TI1,000茂百兴MSP430F149IPMR TI1,000茂百兴MSP430F1611IPMR TI1,000茂百兴MSP430F1612IPMR TI1,000茂百兴MSP430F169IPMR TI1,000茂百兴MSP430F2001IPWR TI2,000茂百兴MSP430F2011TPWR TI2,000茂百兴MSP430F2132IPMR TI2,000茂百兴MSP430F2232IDAR TI2,000茂百兴MSP430F2252IRHAR TI2,500茂百兴MSP430F413IPMR TI1,000茂百兴MSP430F4250IRGZR TI2,500茂百兴MSP430F5418IPNR TI1,000茂百兴ONET1101LRGER TI3,000茂百兴ONET8501PRGTR TI3,000茂百兴ONET8501VRGPR TI3,000茂百兴OPA2131UA TI2,500茂百兴OPA2132UA TI2,500茂百兴OPA2134UA TI2,500茂百兴OPA2227UA TI2,500茂百兴OPA2244EA TI2,500茂百兴OPA2277UA TI2,500茂百兴OPA2335AIDR TI2,500茂百兴OPA2343EA/2K5TI2,500茂百兴OPA2348AIDCNR TI3,000茂百兴OPA2348AIDR TI3,000茂百兴OPA2349EA/3K TI3,000茂百兴OPA2350UA TI2,500茂百兴OPA2354AIDGKR TI2,500茂百兴OPA2357AIDGSR TI2,500茂百兴OPA2364AIDGKR TI2,500茂百兴OPA2364IDGKR TI2,500茂百兴OPA277AIDRMR TI3,000茂百兴OPA277U TI2,500茂百兴OPA277UA TI2,500茂百兴OPA334AIDBVR TI3,000茂百兴OPA335AIDBVR TI3,000茂百兴OPA336N TI3,000茂百兴OPA340UA/2K5TI2,500茂百兴OPA348AIDBVR TI3,000茂百兴OPA361AIDCKR TI3,000茂百兴OPA374AIDBVR TI3,000茂百兴OPA376AIDBVR TI3,000茂百兴OPA4227UA/2K5TI2,500茂百兴OPA4340UA/2k5TI2,500茂百兴OPA846IDBVR TI3,000茂百兴PCI1510PGE TI60茂百兴PCI1520ZHK TI90茂百兴PCI2040PGE TI60茂百兴PCI2050BIPDV TI36茂百兴PCI2050BIZHK TI450茂百兴PCI2050BPDV TI360茂百兴PCI2050BZHK TI450茂百兴PCI2050IBPDV TI360茂百兴PCI2250PCM TI24茂百兴PCI8402ZHK TI90茂百兴PCI8412ZHK TI90茂百兴PCM1742KE/2K TI2,000茂百兴PCM1753DBQR TI2,000茂百兴PCM1754DBQR TI2,000茂百兴PCM1755DBQR TI2,000茂百兴PCM1808PWR TI2,000茂百兴PCM4104PFBR TI2,000茂百兴PCM4204PAPR TI1,500茂百兴PTH08T220WAZT TI250茂百兴PTH08T260WAZT TI250茂百兴REF3025AIDBZR TI3,000茂百兴REF3030AIDBZR TI3,000茂百兴REF3033AIDBZR TI3,000茂百兴SN65176BDR TI2,500茂百兴SN65220DBVR TI3,000茂百兴SN65240PWR TI2,000茂百兴SN65HVD10DR TI2,500茂百兴SN65HVD11DR TI2,500茂百兴SN65HVD230DR TI2,500茂百兴SN65HVD23DR TI2,500茂百兴SN65HVD251DR TI2,500茂百兴SN65HVD3082EDR TI2,500茂百兴SN65HVD3088EDGKR TI2,500茂百兴SN65HVD33DR TI2,500茂百兴SN65LVDS2DBVR TI3,000茂百兴SN65MLVD200ADR TI2,500茂百兴SN7406DR TI2,500茂百兴SN7407DR TI2,500茂百兴SN74ABTE16246DGGR TI2,000茂百兴SN74AC14PWR TI2,000茂百兴SN74AHC14PWR TI2,000茂百兴SN74AHC1G14DBVR TI3,000茂百兴SN74AHCT08DGVR TI2,000茂百兴SN74AHCT132DR TI2,500茂百兴SN74ALVC164245DLR TI1,000茂百兴SN74ALVCH162244GR TI2,000茂百兴SN74ALVCH162373GR TI2,000茂百兴SN74AUP1G125DCKR TI3,000茂百兴SN74AVC2T45DCUR TI3,000茂百兴SN74CB3Q3257PWR TI2,000茂百兴SN74CBTLV3125PWR TI2,000茂百兴SN74HC14DR TI2,500茂百兴SN74HC164PWR TI2,000茂百兴SN74HC165DR TI2,500茂百兴SN74HC590ADR TI2,500茂百兴SN74HCT541PWR TI2,000茂百兴SN74LV07APWR TI2,000茂百兴SN74LV08APWR TI2,000茂百兴SN74LV14APWR TI2,000茂百兴SN74LV164APWR TI2,000茂百兴SN74LV244ADWR TI2,000茂百兴SN74LV244APWR TI2,000茂百兴SN74LV32APWR TI2,000茂百兴SN74LV595APWR TI2,000茂百兴SN74LV595ARGYR TI1,000茂百兴SN74LVC04ADR TI2,500茂百兴SN74LVC04APWR TI2,000茂百兴SN74LVC08APWR TI2,000茂百兴SN74LVC125APWR TI2,000茂百兴SN74LVC138APWR TI2,000茂百兴SN74LVC14ADR TI2,500茂百兴SN74LVC14APWR TI2,000茂百兴SN74LVC16244ADLR TI1,000茂百兴SN74LVC16245ADGGR TI2,000茂百兴SN74LVC16373ADGGR TI2,000茂百兴SN74LVC1G07DCKR TI3,000茂百兴SN74LVC1G125DCKR TI3,000茂百兴SN74LVC244APWR TI2,000茂百兴SN74LVC245ADGVR TI2,000茂百兴SN74LVC245APWR TI2,000茂百兴SN74LVC2G17DBVR TI3,000茂百兴SN74LVC32APWR TI2,000茂百兴SN74LVC4245APWR TI2,000茂百兴SN74LVC8T245PWR TI2,000茂百兴SN74LVCH162244AGR TI2,000茂百兴SN74LVCH16244ADGGR TI2,000茂百兴SN74LVCH16245ADLR TI1,000茂百兴SN74LVCHR16245AGR TI2,000茂百兴SN74LVTH125PWR TI2,000茂百兴SN74LVTH162244DGGR TI2,000茂百兴SN74LVTH16244ADGGR TI2,000茂百兴SN74LVTH16244ADLR TI1,000茂百兴SN74LVTH16245ADLR TI1,000茂百兴SN74LVTH244APWR TI2,000茂百兴SN75240PWR TI2,000茂百兴SN75ALS1178NSR TI2,000茂百兴SN75LBC176ADR TI2,500茂百兴TAS1020BPFBR TI1,000茂百兴TAS5707PHPR TI1,000茂百兴TFP410PAP TI160茂百兴THS7314DR TI2,500茂百兴THS7316DR TI2,500茂百兴THS7374IPWR TI2,000茂百兴THS8134BCPHP TI250茂百兴THS8200PFP TI96茂百兴TL16C2550PFBR TI1,000茂百兴TL16C550CIPTR TI1,000茂百兴TL16C550CPTR TI1,000茂百兴TL16C550CPTR TI1,000茂百兴TL16C554AFNR TI250茂百兴TL16C554AIPNR TI1,000茂百兴TL16C554APNR TI1,000茂百兴TL16C752BPTR TI1,000茂百兴TL431AIDBVR TI3,000茂百兴TL431IDBVR TI3,000茂百兴TL7705ACDR TI2,500茂百兴TL7712ACDR TI2,500茂百兴TLC1543CDWR TI2,000茂百兴TLC2252AIDR TI2,500茂百兴TLC2252CDR TI2,500茂百兴TLC2254IDR TI2,500茂百兴TLC2262CDR TI2,500茂百兴TLC2272CDR TI2,500茂百兴TLC2274ACDR TI2,500茂百兴TLC2543CDBR TI2,000茂百兴TLC2543CDWR TI2,000茂百兴TLC25M2CDR TI2,500茂百兴TLC3548IDWR TI2,000茂百兴TLC3548IPWR TI2,000茂百兴TLC3702IDR TI2,500茂百兴TLC5510INSR TI2,000茂百兴TLC555CDR TI2,500茂百兴TLC555IDR 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TI3,000茂百兴TPS73101DBVR TI3,000茂百兴TPS73115DBVR TI3,000茂百兴TPS73130DBVR TI3,000茂百兴TPS73133DBVR TI3,000茂百兴TPS73201DBVR TI3,000茂百兴TPS73601DBVR TI3,000茂百兴TPS73601DCQR TI3,000茂百兴TPS73633DRBR TI3,000茂百兴TPS73701DCQR TI2,500茂百兴TPS73701DRBR TI3,000茂百兴TPS74401RGWR TI3,000茂百兴TPS74701DRCR TI3,000茂百兴TPS74801DRCR TI3,000茂百兴TPS75201QPWPR TI2,000茂百兴TPS76050DBVR TI3,000茂百兴TPS76301DBVR TI3,000茂百兴TPS76318DBVR TI3,000茂百兴TPS76333DBVR TI3,000茂百兴TPS76350DBVR TI3,000茂百兴TPS76633DR TI2,500茂百兴TPS76650DR TI2,500茂百兴TPS76701QPWPR TI2,000茂百兴TPS767D318PWPR TI2,000茂百兴TPS76801QDR TI2,500茂百兴TPS76933DBVR TI3,000茂百兴TPS77601PWPR TI2,000茂百兴TPS77633DR TI2,500茂百兴TPS77701PWPR TI2,000茂百兴TPS77801PWPR TI2,000茂百兴TPS78833DBVR TI3,000茂百兴TPS79101DBVR TI3,000茂百兴TPS79301DBVR TI2,500茂百兴TPS79318DBVR TI3,000茂百兴TPS793285DBVR TI3,000茂百兴TPS79328DBVR TI3,000茂百兴TPS79330DBVR TI3,000茂百兴TPS79333DBVR TI3,000茂百兴TPS79501DCQR TI2,500茂百兴TPS79533DCQR TI2,500茂百兴TPS79633DCQR TI2,500茂百兴TPS79730DCKR TI3,000茂百兴TPS79901DDCR TI3,000茂百兴TS3USB221DRCR TI3,000茂百兴TS5A3167DBVR TI3,000茂百兴TSB12LV26PZT TI90茂百兴TSB43AB22APDT TI90茂百兴TSC2003IPWR TI2,500茂百兴TSC2007IPWR TI2,000茂百兴TSC2007IYZGR TI3,000茂百兴TSC2017IYZGR TI3,000茂百兴TSC2046IPWR TI2,500茂百兴TUSB2046BIVFR TI1,000茂百兴TUSB2046BVFR TI1,000茂百兴TUSB3200ACPAHR TI1,500茂百兴TUSB3410VF TI250茂百兴TVP5150AM1PBSR TI1,000茂百兴TVP5154APNPR TI1,000茂百兴TVP5158IPNPR TI1,000茂百兴TVP5158PNPR TI1,000茂百兴UC2637DWTR TI2,000茂百兴UC2825ADWTR TI2,000茂百兴UC2842AD8TR TI2,500茂百兴UC2843AD8TR TI2,500茂百兴UC2844AD8TR TI2,500茂百兴UC3637DWTR TI2,000茂百兴UC3825ADWTR TI2,000茂百兴UC3843AD8TR TI2,500茂百兴UC3845AD8TR TI2,500茂百兴UC3845AN TI50茂百兴UC3846DWTR TI2,000茂百兴UC3846N TI25茂百兴UC3854AN TI25茂百兴UC3854BDWTR TI2,000茂百兴UC3854N TI25茂百兴UC3902DTR TI2,500茂百兴UCC27223PWPR TI2,000茂百兴UCC27324DGNR TI2,500茂百兴UCC27324DR TI2,500茂百兴UCC27423DR TI2,500茂百兴UCC27424DR TI2,500茂百兴UCC2800DTR TI2,500茂百兴UCC28060DR TI2,500茂百兴UCC28061DR TI2,500茂百兴UCC28070PWR TI2,000茂百兴UCC2808APWTR-2TI2,000茂百兴UCC2809DTR-1TI2,500茂百兴UCC2809PTR-1TI2,500茂百兴UCC2818DTR TI2,500茂百兴UCC28600DR TI2,500茂百兴UCC2891PWR TI2,000茂百兴UCC2894DR TI2,500茂百兴UCC2895DWTR TI2,000茂百兴UCC2897APWR TI2,000茂百兴UCC28C43DR TI2,500茂百兴UCC28C44DR TI2,500茂百兴UCC28C45DR TI2,500茂百兴UCC37324DGNR TI2,500茂百兴UCC3801DTR TI2,500茂百兴UCC3807DTR-3TI2,500茂百兴UCC3808DTR-2TI2,500茂百兴UCC3818PWTR TI2,000茂百兴UCC3895DWTR TI2,000茂百兴UCC3895PWTR TI2,000茂百兴UCC3919DTR TI2,500茂百兴UCC3946DTR TI2,500茂百兴ULN2003ADR TI2,500茂百兴ULN2003AIDR TI2,500茂百兴ULN2003AN TI25茂百兴XIO1100GGB TI160茂百兴XTR116UA/2K5TI2,500茂百兴。
常用运放选型表器件名称制造商简介卩A741 TI单路通用运放卩A747 TI双路通用运放AD515A ADI 低功耗FET 输入运放AD605 ADI 低噪声,单电源, 可变增益双运放AD644 ADI 高速, 注入BiFET 双运放AD648 ADI 精密的, 低功耗BiFET 双运放AD704 ADI 输入微微安培电流双极性四运放AD705 ADI 输入微微安培电流双极性运放AD706 ADI 输入微微安培电流双极性双运放AD707 ADI 超低漂移运放AD708 ADI 超低偏移电压双运放AD711 ADI 精密,低成本,高速BiFET 运放AD712 ADI 精密,低成本,高速BiFET 双运放AD713 ADI 精密,低成本,高速BiFET 四运放AD741 ADI 低成本, 高精度IC 运放AD743 ADI 超低噪音BiFET 运放AD744 ADI 高精度, 高速BiFET 运放AD745 ADI 超低噪音,高速BiFET 运放AD746 ADI 超低噪音,高速BiFET 双运放AD795 ADI 低功耗,低噪音,精密的FET 运放AD797 ADI 超低失真, 超低噪音运放AD8022 ADI 高速低噪, 电压反馈双运放AD8047 ADI 通用电压反馈运放AD8048 ADI 通用电压反馈运放AD810 ADI 带禁用的低功耗视频运放AD811 ADI 高性能视频运放AD812 ADI 低功耗电流反馈双运放AD813 ADI 单电源,低功耗视频三运放AD818 ADI 低成本,低功耗视频运放AD820 ADI 单电源,FET 输入,满幅度低功耗运放AD822 ADI 单电源,FET 输入,满幅度低功耗运放AD823 ADI 16MHz, 满幅度,FET 输入双运放AD824 ADI 单电源,满幅度低功耗,FET 输入运放AD826 ADI 高速, 低功耗双运放AD827 ADI 高速, 低功耗双运放AD828 ADI 低功耗,视频双运放AD829 ADI 高速, 低噪声视频运放AD830 ADI 高速, 视频差分运放AD840 ADI 宽带快速运放AD841 ADI 宽带, 固定单位增益,快速运放AD842 ADI 宽带, 高输出电流,快速运放AD843 ADI 34MHz,CBFET 快速运放AD844 ADI 60MHz,2000V/ 卩s 单片运放AD845 ADI 精密的16MHzCBFE■运放AD846 ADI精密的450V/卩s电流反馈运放AD847 ADI 高速, 低功耗单片运放AD8519 ADI 满幅度运放AD8529 ADI 满幅度运放AD8551 ADI 低漂移,单电源,满幅度输入输出运放AD8552 ADI 低漂移,单电源,满幅度输入输出双运放AD8554 ADI 低漂移,单电源,满幅度输入输出四运放AD8571 ADI 零漂移,单电源,满幅度输入/输出单运放AD8572 ADI 零漂移,单电源,满幅度输入/输出双运放AD8574 ADI 零漂移,单电源,满幅度输入/输出四运放AD8591 ADI 带关断的单电源满幅度输入输出运放AD8592 ADI 带关断的单电源满幅度输入输出运放AD8594 ADI 带关断的单电源满幅度输入输出运放AD8601 ADI 低偏移,单电源,满幅度输入/输出单运放AD8602 ADI 低偏移,单电源,满幅度输入/输出双运放AD8604 ADI 低偏移,单电源,满幅度输入/输出四运放AD9610 ADI 宽带运放AD9617 ADI 低失真,精密宽带运放AD9618 ADI 低失真,精密宽带运放AD9631 ADI 超低失真, 宽带电压反馈运放AD9632 ADI 超低失真, 宽带电压反馈运放C54DSKplus TI 低噪高速去补偿双路运放L165 ST 3A 功率运放L272 ST 双通道功率运放L2720 ST 低压差双通道功率运放L2726 ST 低压差双通道功率运放L2750 ST 低压差双通道功率运放LF147 ST 宽带四J-FET 运放LF151 ST 宽带单J-FET 运放LF153 ST 宽带双J-FET 运放LF155 ST 宽带J-FET 单运放LF156 ST 宽带J-FET 单运放LF157 ST 宽带J-FET 单运放LF247 ST 宽带四J-FET 运放LF251 ST 宽带单J-FET 运放LF253 ST 宽带双J-FET 运放LF255 ST 宽带J-FET 单运放LF256 ST 宽带J-FET 单运放LF257 ST 宽带J-FET 单运放LF355 ST 宽带J-FET 单运放LF356 ST 宽带J-FET 单运放LF357 ST 宽带J-FET 单运放LM101A TI 高性能运放LM124A(ST) ST 低功耗四运放LM146 ST 可编程四双极型运放LM158/A ST 低功耗双运放LM224A(st) ST 低功耗四运放LM246 ST 可编程四双极型运放LM258/A ST 低功耗双运放LM324A ST 低功耗四运放LM346 ST 可编程四双极型运放LM358/A ST 低功耗双运放LMV321 TI 低电压单运放LMV324 TI 低电压四运放LMV358 TI 低电压双运放LS204 ST 高性能双运放LS404 ST 高性能四运放LT1013 TI 双通道精密型运放LT1014 TI 四通道精密型运放MC1558 TI 双路通用运放MC33001 ST 通用单JFET 运放MC33002 ST 通用双JFET 运放MC33004 ST 通用四JFET 运放MC3303 TI 四路低功率运放MC33078 ST 低噪双运放MC33079 ST 低噪声四运放MC33171 ST 低功耗双极型单运放MC33172 ST 低功耗双极型双运放MC33174 ST 低功耗双极型四运放MC34001 ST 通用单JFET 运放MC34002 ST 通用双JFET 运放MC34004 ST 通用四JFET 运放MC3403 TI 四路低功率通用运放MC35001 ST 通用单JFET 运放。
TP5531、TP5532、TP5534描述:3PEAK TP5531 / 2/4低功率斩波稳定的运算放大器可提供输入失调电压校正,以实现极低的失调和失调随时间和温度的漂移。
这些器件采用低至1.8V的单电源电压工作,而每个放大器的静态电流为42μA,增益带宽积为350kHz。
它们具有稳定的单位增益,无1 / f噪声,具有良好的电源抑制比(PSRR)和共模抑制比(CMRR),并具有轨到轨输入和输出摆幅。
器件采用先进的CMOS工艺设计。
TP5531(单个版本)以SC70-5,SOT23-5和SO-8封装提供。
TP5532(双版本)以MSOP-8和SO-8封装提供。
TP5534(四版)以TSSOP-14和SOIC-14封装提供。
所有版本均规定可在-40°C至125°C的温度范围内工作。
特点:●低失调电压:10μV(最大值)●零漂:0.008 µV /°C●0.1Hz至10Hz噪声:1.1 µVPP●低电源电流:每个放大器42µA●带宽:350 kHz●压摆率0.16 V /μs高增益130 dB高CMRR和PSRR●轨到轨输入和输出摆幅●-40°C至125°C的工作范围●小型封装:SC70和SOT23(TP5531)应用:●换能放大器●双向电流感应●直流偏移校正●温度测量●远程传感器●电池供电的仪器●电子秤Description FeaturesLOW OFFSET VOLTAGE: 10 μV (Max)ZERO DRIFT: 0.008 µV/°C0.1Hz to 10Hz Noise: 1.1 µV PPLow Supply Current: 42µA per Amplifier Bandwidth: 350 kHzSlew Rate: 0.16 V/μsHigh Gain, 130 dB High CMRR and PSRR 3PEAK TP5531 / 2/4低功率斩波器已稳定运算放大器提供输入失调电压校正,以实现极低的失调和随时间的失调漂移温度。
February 2008 Rev 31/14LMV321-LMV358-LMV324Low cost low power input/output rail-to-railoperational amplifiersFeatures■Operating range from V CC = 2.7V to 6V ■Rail-to-rail input and output■Extended V icm (V DD - 0.2V to V CC + 0.2V)■Low supply current (145µA)■Gain bandwidth product (1MHz)■ESD tolerance (2kV)■Latch-up immunity■Available in SOT23-5 micropackageApplications■Two-cell battery-powered systems ■Battery-powered electronic equipment ■Cordless phones■Personal medical care (glucose meter)■Laptops ■PDAsDescriptionThe LMV321/358/324 family (single, dual and quad) answers the need for low cost, general purpose operational amplifiers. They operate with voltages as low as 2.7V and feature both input and output rail-to-rail, 145µA consumption current and 1MHz gain bandwidth product (GBP).With a such low consumption and a sufficient GBP for many applications, these op-amps are very well-suited for any kind of battery-supplied and portable equipment application.The LMV321 is housed in the space-saving 5-pin SOT23-5 package which simplifies the board design (overall dimensions are 2.8mm x 2.9mm). The SOT23-5 has two pinning configurations to answer all application requirements.Absolute maximum ratings and operating conditions LMV321-LMV358-LMV3242/141 Absolute maximum ratings and operating conditionsTable 1.Absolute maximum ratingsSymbol ParameterValue Unit V CC Supply voltage (1)1.All voltage values, except differential voltage are with respect to network terminal.7V V id Differential input voltage (2)2.Differential voltages are the non-inverting input terminal with respect to the inverting input terminal. IfV id >±1V , the maximum input current must not exceed ±1mA. In this case (V id > ±1V), an input series resistor must be added to limit input current.±1V V in Input voltageV DD -0.3 to V CC +0.3V T oper Operating free air temperature range -40 to + 125°C T stg Storage temperature-65 to +150°C T jMaximum junction temperature150°CR thjaThermal resistance junction to ambient (3)SOT23-5SO-8SO-14TSSOP8TSSOP143.Short-circuits can cause excessive heating. Destructive dissipation can result from simultaneous short-circuits on all amplifiers. All values are typical.250125103120100°C/WR thjcThermal resistance junction to case (3)SOT23-5SO-8SO-14TSSOP8TSSOP148140313732°C/WESDHBM: human body model (4)4.Human body model: A 100pF capacitor is charged to the specified voltage, then discharged through a1.5k Ω resistor between two pins of the device. This is done for all couples of connected pin combinations while the other pins are floating.2kV MM: machine model (5)5.Machine model: A 200pF capacitor is charged to the specified voltage, then discharged directly betweentwo pins of the device with no external series resistor (internal resistor < 5Ω). This is done for all couples of connected pin combinations while the other pins are floating.200V CDM: charged device model (6)6.Charged device model: all pins and the package are charged together to the specified voltage and thendischarged directly to the ground through only one pin. This is done for all pins.No value specified for CDM on SOT23-5L package. The value is given for SO and TSSOP packages.1.5kV Lead temperature (soldering, 10sec)250°COutput short-circuit durationsee note (7)7.Short-circuits from the output to V CC can cause excessive heating. The maximum output current isapproximately 48mA, independent of the magnitude of V CC . Destructive dissipation can result from simultaneous short-circuits on all amplifiers.LMV321-LMV358-LMV324Absolute maximum ratings and operating conditions3/14Table 2.Operating conditionsSymbol ParameterValue Unit V CC Supply voltage2.7 to 6V V icm Common mode input voltage range (1)1.At 25°C, for 2.7 ≤ V CC ≤ 6V, V icm is extended to V DD - 0.2V, V CC + 0.2V.V DD -0.2 to V CC + 0.2V V icm Common mode input voltage range (2)2.In full temperature range, both rails can be reached when V CC does not exceed 5.5V.V DD to V CC V T operOperating free air temperature range-40 to + 125°CElectrical characteristics LMV321-LMV358-LMV3244/142 Electrical characteristicsTable 3.V CC = +2.7V, V DD = 0V, C L & R L connected to V CC /2, T amb = 25°C (unless otherwise specified)Symbol ParameterConditionsMin.Typ.Max.Unit V io Input offset voltage V icm = V out = V CC /2T min ≤ T amb ≤ T max0.136mV ΔV io Input offset voltage drift 2µV/°C I io Input offset current V icm = V out = V CC /2 (1)T min ≤ T amb ≤ T max 1925nA I ib Input bias currentV icm = V out = V CC /2(1)T min ≤ T amb ≤ T max 105085nA CMR Common mode rejection ratio 0 ≤ V icm ≤ V CC 5585dB SVR Supply voltage rejection ratio V icm = V CC /27080dB A vdLarge signal voltage gainV out = 0.5V to 2.2V R L = 10k ΩR L = 2k Ω807010088dBV OHHigh level output voltageV id = 100mVT min ≤ T amb ≤ T max R L = 10k ΩR L = 2k Ω 2.62.55 2.652.6VV OLLow level output voltageV id = -100mVT min ≤ T amb ≤ T max R L = 10k ΩR L = 2k Ω155090100mVI oOutput current Output source current V id = 100mV , V O = V DD Output sink currentV id = -100mV , V O = V CC 554646mAI CC Supply current (per amplifier)V out = V CC /2A VCL = 1, no load T min ≤ T amb ≤ T max 145200230µAGBP Gain bandwidth product R L = 10k Ω, C L = 100pF ,f = 100kHz1MHz SR Slew rate R L = 600Ω, C L = 100pF ,A V = 10.35V/µs φm Phase margin R L = 600Ω, C L = 100pF 44Degrees en Input voltage noise 40nV/√Hz THDT otal harmonic distortion0.01%1.Maximum values include unavoidable inaccuracies of the industrial tests.LMV321-LMV358-LMV324Electrical characteristics5/14Table 4.V CC = +5V, V DD = 0V, C L & R L connected to V CC /2, T amb = 25°C (unless otherwise specified)Symbol ParameterConditionsMin.Typ.Max.Unit V io Input offset voltage V icm = V out = V CC /2T min ≤ T amb ≤ T max0.136mV ΔV io Input offset voltage drift 2µV/°C I io Input offset current V icm = V out = V CC /2 (1)T min ≤ T amb ≤ T max 1925nA I ib Input bias currentV icm = V out = V CC /2(1)T min ≤ T amb ≤ T max 166395nA CMR Common mode rejection ratio 0 ≤ V icm ≤ V CC 6595dB SVR Supply voltage rejection ratio V icm = V CC /27090dB A vdLarge signal voltage gainV out = 0.5V to 4.5V R L = 10k ΩR L = 2k Ω85779793dBV OHHigh level output voltageV id = 100mVT min ≤ T amb ≤ T max R L = 10k ΩR L = 2k Ω 4.854.8 4.954.91VV OLLow level output voltageV id = -100mVT min ≤ T amb ≤ T max R L = 10k ΩR L = 2k Ω4080180200mVI oOutput current Output source current V id = 100mV , V O = V DD Output sink currentV id = -100mV , V O = V CC 774848mAI CC Supply current (per amplifier)V out = V CC /2A VCL = 1, no load T min ≤ T amb ≤ T max 162220250µAGBP Gain bandwidth product R L = 10k Ω, C L = 100pF ,f = 100kHz1.3MHz SR Slew rate R L = 600Ω, C L = 100pF ,A V = 10.45V/µs φm Phase margin R L = 600Ω, C L = 100pF 48Degrees en Input voltage noise 40nV/√Hz THDT otal harmonic distortion0.01%1.Maximum values include unavoidable inaccuracies of the industrial tests.Electrical characteristicsLMV321-LMV358-LMV3246/14Figure 1.Supply current/amplifier vs. supplyFigure 2.Input bias current vs. temperatureFigure 3.Input bias current vs. temperature Figure 4.Common mode rejection vs.Figure 5.Common mode rejection vs. Figure 6.Supply voltage rejection vs.LMV321-LMV358-LMV324Electrical characteristics7/14Figure 9.Supply voltage rejection vs.Figure 10.Output current vs. output voltagePackage information LMV321-LMV358-LMV3248/143 Package informationIn order to meet environmental requirements, STMicroelectronics offers these devices inECOPACK ® packages. These packages have a lead-free second level interconnect. The category of second level interconnect is marked on the package and on the inner box label, in compliance with JEDEC Standard JESD97. The maximum ratings related to soldering conditions are also marked on the inner box label. ECOPACK is an STMicroelectronics trademark. ECOPACK specifications are available at: .3.1 SOT23-5 package informationTable 5.SOT23-5 package mechanical dataRef.DimensionsMillimetersMils Min.Typ.Max.Min.Typ.Max.A 0.90 1.4535.457.1A10.000.150.00 5.9A20.90 1.3035.451.2b 0.350.5013.719.7C 0.090.20 3.57.8D 2.80 3.00110.2118.1E 2.60 3.00102.3118.1E1 1.501.7559.068.8e 0.9537.4e1 1.974.8L0.350.5513.721.6LMV321-LMV358-LMV324Package information9/143.2 SO-8 package informationTable 6.SO-8 package mechanical dataRef.DimensionsMillimetersInches Min.Typ.Max.Min.Typ.Max.A 1.750.069A10.100.250.0040.010A2 1.250.049b 0.280.480.0110.019c 0.170.230.0070.010D 4.80 4.90 5.000.1890.1930.197E 5.80 6.00 6.200.2280.2360.244E1 3.803.904.000.1500.1540.157e 1.270.050h 0.250.500.0100.020L 0.40 1.270.0160.050k 1°8°1°8°ccc0.100.004Package information LMV321-LMV358-LMV32410/143.3 TSSOP8 package informationTable 7.TSSOP8 package mechanical dataRef.DimensionsMillimetersInches Min.Typ.Max.Min.Typ.Max.A 1.20.047A10.050.150.0020.006A20.80 1.001.050.0310.0390.041b 0.190.300.0070.012c 0.090.200.0040.008D 2.90 3.00 3.100.1140.1180.122E 6.20 6.40 6.600.2440.2520.260E1 4.304.40 4.500.1690.1730.177e 0.650.0256k 0°8°0°8°L 0.450.600.750.0180.0240.030L110.039aaa0.10.004LMV321-LMV358-LMV324Package information11/143.4 SO-14 package informationTable 8.SO-14 package mechanical dataRef.DimensionsMillimetersInches Min.Typ.Max.Min.Typ.Max.A 1.750.068a10.10.20.0030.007a2 1.650.064b 0.350.460.0130.018b10.190.250.0070.010C 0.50.019c145° (typ.)D 8.558.750.3360.344E 5.8 6.20.2280.244e 1.270.050e37.620.300F 3.8 4.00.1490.157G 4.6 5.30.1810.208L 0.5 1.270.0190.050M 0.680.026S8° (max.)Package information LMV321-LMV358-LMV32412/143.5 TSSOP14 package informationFigure 18.TSSOP14 package mechanical dataRef.DimensionsMillimetersInches Min.Typ.Max.Min.Typ.Max.A 1.20.047A10.050.150.0020.0040.006A20.81 1.050.0310.0390.041b 0.190.300.0070.012c 0.090.200.0040.0089D 4.95 5.10.1930.1970.201E 6.2 6.4 6.60.2440.2520.260E1 4.34.4 4.480.1690.1730.176e 0.65 BSC0.0256 BSCK 0°8°0°8°L10.450.600.750.0180.0240.030LMV321-LMV358-LMV324Ordering information13/144 Ordering information5 Revision historyTable 9.Order codesOrder codeTemperature rangePackage Packaging Marking LMV321ILT -40°C, +125 °CSOT23-5T ape & reel K177LMV321RILT K176LMV321IYLT (1)SOT23-5(Automotive grade)T ape & reel K180LMV321RIYLT (1)K185LMV358ID LMV358IDT SO-8T ube or tape & reel LMV358LMV358IYD (1)LMV358IYDT (1)SO-8(Automotive grade)T ube or tape & reel LMV358IY LMV358IPT TSSOP8T ape & reel MV358LMV358IYPT (1)TSSOP8(Automotive grade)T ape & reel K181Y LMV324ID LMV324IDT SO-14T ube or tape & reel LMV324LMV324IYD (1)LMV324IYDT (1)SO-14(Automotive grade)T ube or tape & reel V324Y LMV324IPT TSSOP14T ape & reel MV324LMV324IYPT (1)TSSOP14(Automotive grade)T ape & reelV324IY1.Qualification and characterization according to AEC Q100 and Q003 or equivalent, advanced screening according to AECQ001 & Q 002 or equivalent are on-going.Table 10.Document revision historyDate RevisionChanges1-Dec-20051First release - Products in full production.25-May-20072Added automotive grade part numbers to order codes table. Moved ordercodes table to Section 4 on page 13.20-Feb-20083Added Figure 12: Noise versus frequency on page 7.Updated presentation of package information.Corrected footnote for automotive grade part numbers in order codes table.LMV321-LMV358-LMV32414/14Please Read Carefully:Information in this document is provided solely in connection with ST products. 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