德州仪器,LM3S6965系列,EKC-LM3S6965,EKK-LM3S6965, 规格书,Datasheet 资料
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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。
AD芯片-----TECHWELL TW6805A仿真软件里的AD0809有问题,用0808代替定时/计数器的使用方法:CLK:计数和测频状态时,数字波的输入端。
(counter enable)CE:计数使能端;通过属性设置高还是低有效。
无效暂停计数RST:复位端(RESET),可设上升沿(Low-High)或者下降沿(High-Low)有效。
4种工作方式:通过属性Operating Mode 来选择。
Default : 缺省方式,计数器方式。
Time(secs):100S定时方式,由CE和RST控制暂停和重新开始。
Time(hms):10小时定时方式,同上。
Frequency: 测频方式,CE和RST有效时,显示CLK端数字波频率Count:计数方式。
+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++常用元件列表:POT-HG 可调电位器7SEG-MPX8-CC-BLUE 8位数码管COMPIM 串口SW- 开关7SEG-BCD 含译码驱动的数显Speaker 扬声器2N5771和2N5772,15V对管300MARES , CAP,BUTTON 按钮开关KEYPAD-PHONE 3*4电话键盘KEYPAD-SMALLCALC 4*4计算器键盘KEYPAD-CALCULATOR 4*6计算器键盘PG160128A 128*128液晶++++++++元件库详细分类ics 模拟集成器件8个子类:amplifier 放大器comparators 比较器display drivers 显示驱动器filters 滤波器miscellaneous 混杂器件regulators 三端稳压器timers 555定时器voltage references 参考电压2,capacitors CAP电容,23个分类别animated 可显示充放电电荷电容audio grade axial 音响专用电容axial lead polypropene 径向轴引线聚丙烯电容axial lead polystyrene 径向轴引线聚苯乙烯电容ceramic disc 陶瓷圆片电容decoupling disc 解耦圆片电容high temp radial 高温径向电容high temp axial electrolytic高温径向电解电容metallised polyester film 金属聚酯膜电容metallised polypropene 金属聚丙烯电容metallised polypropene film 金属聚丙烯膜电容miniture electrolytic 微型电解电容multilayer metallised polyester film 多层金属聚酯膜电容mylar film 聚酯薄膜电容nickel barrier 镍栅电容non polarised 无极性电容polyester layer 聚酯层电容radial electrolytic 径向电解电容resin dipped 树脂蚀刻电容tantalum bead 钽珠电容variable 可变电容vx a xial electrolytic VX 轴电解电容3,CMOS 4000 series 4000系列数字电路adders 加法器buffers & drivers 缓冲和驱动器comparators 比较器counters 计数器decoders 译码器encoders 编码器flip-flops & latches 触发器和锁存器frequency dividers & tiner 分频和定时器gates & inverters 门电路和反相器memory 存储器混杂逻辑电路mutiplexers 数据选择器multivibrators 多谐振荡器phase-locked loops(PLL) 锁相环registers 寄存器signal switcher 信号开关4,connectors 接头;8个分类:audio 音频接头D-type D型接头DIL 双排插座header blocks 插头miscellaneous 各种接头PCB transfer PCB 传输接头SIL 单盘插座ribbon cable 蛇皮电缆terminal blocks 接线端子台5,data converters 数据转换器:4个分类:A/D converters 模数转换器D/A converters 数模转换器sample & hold 采样保持器temperature sensors 温度传感器6,debugging tools 调试工具数据:3个类别:breakpoint triggers 断点触发器logic probes 逻辑输出探针logic timuli 逻辑状态输入7,diodes 二极管;8个分类:bridge rectifiers 整流桥generic 普通二极管rectifiers 整流二极管schottky 肖特基二极管switching 开关二极管tunnel 隧道二极管varicap 稳压二极管8,inductors 电感:3个类别:generic 普通电感SMT inductors 表面安装技术电感transformers 变压器9,laplace primitives 拉普拉斯模型:7个类别:1st order 一阶模型2nd order 二阶模型controllers 控制器non-linear 非线性模型operators 算子poles/zeros 极点/零点symbols 符号10,memory ICs 存储器芯片:7个分类:dynamic RAM 动态数据存储器EEPROM 电可擦出程序存储器EPROM 可擦出程序存储器I2C memories I2C总线存储器memory cards 存储卡SPI Memories SPI总线存储器static RAM 静态数据存储器11,microprocessor ICs 微处理器:13个分类:12,modelling primitivvves 建模源:9个分类:13,operational amplifiers 运算放大器:7个分类:dual 双运放ideal 理想运放macromodel 大量使用的运放octal 8运放quad 4运放single 单运放triple 三运放14,optoelectronics 光电器件:11个分类:7-segment displays 7段显示alphanumeric LCDs 液晶数码显示bargraph displays 条形显示dot matrix displays 点阵显示graphical LCDs 液晶图形显示lamps 灯LCD controllers 液晶控制器LCD controllers 液晶面板显示LEDs 发光二极管optocouplers 光电耦合serial LCDs 串行液晶显示15,resistors 电阻:11个分类:metal film 金属膜电阻10 watt wirewound 10w绕线电阻2w metal film 2w 金属膜电阻3 watt wirewound 3w 绕线电阻7 watt wirewound 7w 绕线电阻generix 普通电阻high voltage 高压电阻NTC 负温度系数热敏电阻resistor packs 排阻variable 滑动变阻器varisitors可变电阻参考试验中采用的可变电阻是:POT-HG16,simulator primitives 仿真源:3个类别:flip-flops 触发器gates 门电路sources 电源17,switches and relays 开关和继电器:4个类别:key pads 键盘relays 普通继电器relays(specific) 专用继电器switches 开关18,switching devices 开关器件:4个分类:DIACs 两端交流开关generic 普通开关元件SCRs 可控硅TRIACs 三端双向可控硅19,真空管:20,传感器:2个分类:pressure 压力传感器temperature 温度传感器21,晶体管:8个分类:bipolar 双极型晶体管generic 普通晶体管(错误)IGBT 绝缘栅双极晶体管JFET 结型场效应管MOSFET 金属氧化物场效应管RF power LDMOS 射频功率LDMOS管RF power VDMOS 射频功率VDMOS管unijunction 单结晶体管Electromechanical 电机MOTOR AC 交流电机MOTOR SERVO 伺服电机双相步进电机motor-bistepper(Bipolar Stepper Motor),四相步进电机motor-stepper(unipolar stepper motor)驱动电路,用ULN2003可以,proteus中推荐的L298和L6201(电子元件-步进电机中有L298资料)+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++步进电机,可以用MTD2003,UN2916等专用芯片Proteus中图形液晶模块驱动芯片一览表LM3228 LM3229 LM3267 LM3283LM3287 LM4228 LM4265 LM4267LM4283 LM4287 PG12864F PG24064FPG128128A PG160128AAGM1232G EW12A03GLY HDM32GS12-B HDM32GS12Y-BHDG12864F-1 HDS12864F-3 HDG12864L-4 HDG12864L-6NOKIA7110 TG126410GFSB TG13650FEYAMPIRE128x64 LGM12641BS1RPROTEUS原理图元器件库详细说明单双向可控硅、包括电阻、电容、二极管、三极管和PCB的连接器符号、包括虚拟仪器和有源器件、拨动开关、键盘、可调电位器和开关、包括二极管和整流桥、稳压管、变容二极管、大功率二极管、高速二极管、可控硅、包括LCD、LED、LED阵列包括三极管包括场效应管包括模拟元器件AS 稳压二极管、全桥、74系列、及其他。
一块高端工业控制终端好选择 —— SK-AM64评估套件测评近几年嵌入式最火的领域,各种工控网关终端绝对算得上一个。
智能家电和工控设备更新换代,对控制终端提出了越来越多的要求,各老牌大厂都不断在更新自己的方案。
目前对这个领域的方案主要需求是更高的安全性、更高的集成度、更高的稳定性、更强的性能,但是开发者如何选择一款合适的方案并非易事。
德州仪器(TI)新推出的AM64X系列方案绝对是目前此领域非常不错的的代表,这次就由我带大家了解一下基于AM64x处理器的评估套件SK-AM64。
开箱视频一、开箱SK-AM64评估套件使用纸质外盒包装,包装盒正面印着产品型号,背面是评估板板载资源的列表和简单的使用说明。
打开盒子可以看到由防静电袋装着开发板。
AM64x 入门套件是一个完整测试和开发平台,适合用于加速原型设计。
套件包括:有线和无线连接、三个扩展头、多个引导选项和灵活的调试功能。
配有TI 的AM64x 处理器和优化的功能集,允许用户使用基于以太网的接口、USB 接口、有线串行接口以及2.4GHz 和5GHz 无线通信来创建商业和工业解决方案。
两个板载1Gbps 以太网端口用于有线连接,此外还有三个扩展头用于扩展板功能。
此套件采用标准串行协议(如UART、I²C 和SPI),可用作通信网关与多个其他器件进行连接。
该入门套件可通过在A53 内核上运行Linux 进行评估,从而可作为远程工业通信网络中的中央引擎,也适合用作可编程逻辑控制器或运动控制器。
额外的嵌入式仿真逻辑允许使用标准开发工具(例如TI 的Code Composer Studio™)进行仿真和调试。
特性•软件:TI Processor SDK Linux/RT Linux/RTOS内核、Yocto文件系统、包含Wi-Fi® 的开箱即用例程•处理:AM64x,含2 个Arm Cortex-A53、4 个Arm Cortex-R5F、1个可以做安全功能使用的M4F,2 个PRU_ICSSG•通过 WiLink™8 WL1837MOD 模块实现双频带Wi-Fi®、Bluetooth®/低功耗蓝牙 5.1;2 个1000/100Mbps RJ-45 以太网接口•连接:可通过micro-USB 连接1 个Type A USB 3.1 gen1(超高速)、板载XDS110 JTAG 仿真器和 3 个UART•扩展和原型设计:40 引脚Raspberry Pi (RPI4) HAT、PRU-ICSSG 实时I/O 和TI-MCU 头•存储: 2GB LPDDR4;SK 上的可引导接口:可移除uSD、USB、16MB OSPI、以太网、UART开发需要自配的硬件•USB-C 5V 3A 电源•USB SD 卡写入器•Micro-SD 卡(16GB 或更大)•用于UART 串行通信的USB Micro-B 电缆•以太网电缆(可选)二、硬件描述此评估板集成了丰富的扩展接口,并且都是目前最流行的扩展接口,比如集成了兼容Raspberry Pi的扩展接口,这将能适配目前Raspberry Pi种类丰富的第三方外设模块,这将简化原型设计的难度而且更具可玩性,让开发者快速验证自己的创意。
常用芯片型号大全4N35/4N36/4N37 "光电耦合器"AD7520/AD7521/AD7530/AD7521 "D/A转换器"AD7541 12位D/A转换器ADC0802/ADC0803/ADC0804 "8位A/D转换器"ADC0808/ADC0809 "8位A/D转换器"ADC0831/ADC0832/ADC0834/ADC0838 "8位A/D转换器" CA3080/CA3080A OTA跨导运算放大器CA3140/CA3140A "BiMOS运算放大器"DAC0830/DAC0832 "8位D/A转换器"ICL7106,ICL7107 "3位半A/D转换器"ICL7116,ICL7117 "3位半A/D转换器"ICL7650 "载波稳零运算放大器"ICL7660/MAX1044 "CMOS电源电压变换器"ICL8038 "单片函数发生器"ICM7216 "10MHz通用计数器"ICM7226 "带BCD输出10MHz通用计数器"ICM7555/7555 CMOS单/双通用定时器ISO2-CMOS MT8880C DTMF收发器LF351 "JFET输入运算放大器"LF353 "JFET输入宽带高速双运算放大器"LM117/LM317A/LM317 "三端可调电源"LM124/LM124/LM324 "低功耗四运算放大器"LM137/LM337 "三端可调负电压调整器"LM139/LM239/LM339 "低功耗四电压比较器"LM158/LM258/LM358 "低功耗双运算放大器" LM193/LM293/LM393 "低功耗双电压比较器" LM201/LM301 通用运算放大器LM231/LM331 "精密电压—频率转换器"LM285/LM385 微功耗基准电压二极管LM308A "精密运算放大器"LM386 "低压音频小功率放大器"LM399 "带温度稳定器精密电压基准电路"LM431 "可调电压基准电路"LM567/LM567C "锁相环音频译码器"LM741 "运算放大器"LM831 "双低噪声音频功率放大器"LM833 "双低噪声音频放大器"LM8365 "双定时LED电子钟电路"MAX038 0.1Hz-20MHz单片函数发生器MAX232 "5V电源多通道RS232驱动器/接收器" MC1403 "2.5V精密电压基准电路"MC1404 5.0v/6.25v/10v基准电压MC1413/MC1416 "七路达林顿驱动器"MC145026/MC145027/MC145028 "编码器/译码器" MC145403-5/8 "RS232驱动器/接收器"MC145406 "RS232驱动器/接收器"MC145407 "RS232驱动器/接收器"MC145583 "RS232驱动器/接收器"MC145740 DTMF接收器MC1488 "二输入与非四线路驱动器"MC1489 "四施密特可控线路驱动器"MC2833 "低功率调频发射系统"MC3362 "低功率调频窄频带接收器"MC4558 "双运算放大器"MC7800系列"1.0A三端正电压稳压器"MC78L00系列0.1A三端正电压稳压器MC78M00系列"0.5A三端正电压稳压器"MC78T00系列3.0A正电压稳压器MC7900系列1.0A三端负电压稳压器MC79L00系列0.1A三端负电压稳压器MC79M00系列0.5A三端负电压稳压器Microchip "PIC系列单片机RS232通讯应用"MM5369 3.579545MHz-60Hz 17级分频振荡器MOC3009/MOC3012 "双向可控硅输出光电耦合器"MOC3020/MOC3023 "双向可控硅输出光电耦合器"MOC3081/MOC3082/MOC3083 "过零双向可控硅输出光电耦合器" MOC8050 "无基极达林顿晶体管输出光电耦合器"MOC8111 "无基极晶体管输出光电耦合器"MT8870 "DTMF双音频接收器"MT8888C DTMF 收发器NE5532/NE5532A "双低噪声运算放大器" NE5534/SE5534 "低噪声运算放大器" NE555/SA555 "单时基电路"NE556/SA556/SE556 "双时基电路"NE570/NE571/SA571 "音频压缩扩展器" OP07 "低电压飘移运算放大器"OP27 "低噪音精密运算放大器"OP37 "低噪音高速精密运算放大器"OP77 "低电压飘移运算放大器"OP90 "精密低电压微功耗运算放大器" PC817/PC827/PC847 "高效光电耦合器" PT2262 "无线遥控发射编码器芯片"PT2272 "无线遥控接收解码器芯片"SG2524/SG3524 "脉宽调制PWM "ST7537 "电力线调制解调器电路"TDA1521 2×12W Hi-Fi 音频功率放大器TDA2030 14W Hi-Fi 音频功率放大器TDA2616 2×12W Hi-Fi 音频功率放大器TDA7000T FM 单片调频接收电路TDA7010T FM 单片调频接收电路TDA7021T FM MTS单片调频接收电路TDA7040T "低电压锁相环立体声解码器"TDA7050 "低电压单/双声道功率放大器"TL062/TL064 "低功耗JFET输入运算放大器"TL071/TL072/TL074 "低噪声JFET输入运算放大器"TL082/TL084 JFET 宽带高速运算放大器TL494 "脉宽调制PWM "TL594 "精密开关模式脉宽调制控制"TLP521/1-4 "光电耦合器"TOP100-4 TOPSwitch 三端PWM开关电源电路TOP200-4 TOPSwitch 三端PWM开关电源电路TOP209/TOP210 TOPSwitch 三端PWM开关电源电路TOP221-7 TOPSwitch-Ⅱ三端PWM开关电源电路TOP232-4 TOPSwitch-FX 五端柔韧设计开关电源电路TOP412/TOP414 TOPSwitch 三端PWM DC-DC 开关电源ULN2068 1.5A/50V 4路达林顿驱动电路ULN2803 500mA/50V 8路达林顿驱动电路ULN2803/ULN2804 线性八外围驱动器阵列VFC32 "电压—频率/频率—电压转换器"常用ic资料2AD711 高精度、底价格、高速BiFET 运放CA3130 15MHz, BiMOS 运放with MOSFET Input/CMOS Output LH0032 Ultra Fast FET-输入单运放LF351 Wide B与门width JFET 输入单运放LF411 Low Offset, Low Drift JFET 输入单运放LM108 高精度、单运放LM208 高精度、单运放LM308 高精度、单运放LM833 双音频运放, 低噪音LM358 双运放LM359 双, 高速, Programmable, Current Mode (Norton) Amplifier LM324 QUADRUPLE 运放LM391 音频Power DriverLM393 双Differential ComparatorNE5532 双音频运放, 低噪音NE5534 Single 音频运放, 低噪音OP27 低噪音、高精度、高速运放OP37 低噪音、高精度、高速运放TL071 Single JFET-输入运放, 低噪音TL072 双JFET-输入运放, 低噪音TL074 Quad JFET-输入运放, 低噪音TL081 Single JFET-输入运放TL082 双JFET-输入运放TL084 Quad JFET-输入运放TLC271 LinCMOS..PROGRAMMABLE LOW-POWER 运放TLC272 LinCMOS.... PRECISION 双运放TLC274 LinCMOS.... PRECISION QUAD 运放MN3004 512 STAGE 低噪音BBDL165 3A POWER 运放(20W)LM388 1.5W 音频功率放大LM1875 20W 音频功率放大TDA1516BQ 24 W BTL or 2 x 12 w 立体声汽车用功率放大器TDA1519C 22 W BTL or 2 X 11 W 立体声功率放大TDA1563Q 2 x 25 W high efficiency car radio 功率放大TDA2002 单声道、功率放大8W [NTE1232]TDA2005 双功率放大20WTDA2004 10 + 10W STEREO 立体声汽车用功率放大器TDA2030 Single 功率放大14WSTK4036 II 模块电路, AF PO, 双电源50WSTK4036 XI 模块电路, AF PO, 双电源50WSTK4038 II AF 功率放大60 WSTK4040 II AF 功率放大70 WSTK4040 XI AF 功率放大70 WSTK4042 II AF 功率放大80 WSTK4042 XI AF 功率放大80 WSTK4044 II 模块电路, AF 功率放大、单声道100WSTK4044 II 模块电路, AF 功率放大、单声道100WSTK4046 XI 模块电路, AF 功率放大、单声道120WSTK4048 XI 模块电路, AF 功率放大、单声道150WSTK4050 V 模块电路, AF 功率放大、单声道200WLM3914 10-Step Dot/Bar显示驱动器, Linear scaleLM3915 10-Step Dot/Bar显示驱动器, Logarithmic scaleLM3916 10-Step Dot/Bar显示驱动器UAA180 LED driver Light or light spot display operation for max. 12 emitting diodes CA3161E BCD to Seven Segment Decoder/DriverCA3162E A/D Converter for 3-Digit DisplayICL7136 3 1/2 Digit LCD, Low Power Display, A/D ConverterLM1800 PLL Stereo Decoder [NTE743]CA3090P Stereo Multiplex Decoder (Comp.to NTE789 From NTE)MC1310P FM Stereo Demodulator (Comp. to NTE801 From NTE)555 时钟556 双555MN3101 时钟/ 驱动XR2206 Monolithic Function Generator4N25 6-PIN 光电晶体管OPTOCOUPLERS4N264N274N284N35 6-PIN 光电晶体管OPTOCOUPLERS4N364N3778xx 系列3端稳压器+5V 到+24V1A78Lxx 系列3端稳压器+5V 到+24V 0.1A78Mxx 系列3端稳压器+5V 到+24V 0.5A78Sxx 系列3端稳压器+5V 到+24V 2A79xx 系列3端负电压稳压器-5V 到-24V 1A 79Lxx 系列3端负电压稳压器-5V 到-24V 0.1A LM117 +1.2V...+37V 1.5A 正电压可调稳压器LM217 +1.2V...+37V 1.5A 正电压可调稳压器LM317 +1.2V...+37V 1.5A 正电压可调稳压器LM137 -1.2V...-37V 1.5A 负电压可调稳压器LM237 -1.2V...-37V 1.5A 负电压可调稳压器LM337 -1.2V...-37V 1.5A 负电压可调稳压器LM138 +1.2V --32V 5-安培可调LM338 +1.2V -- 32V 5-安培可调LM723 高精度可调L200 2 A / 2.85 to 36 V.可调74LS00 Quad 2-Input 与非门74LS04 Hex 反相器74LS08 Quad 2 input 与门74LS10 Triple 3-Input 与非门74LS13 SCHMITT TRIGGERS 双门/HEX 反相器74LS14 SCHMITT TRIGGERS 双门/HEX 反相器74LS27 TRIPLE 3-INPUT NOR 门74LS30 8-Input 与非门74LS32 Quad 2 input OR74LS42 ONE-OF-TEN DECODER74LS45 BCD to Decimal Decoders/Drivers74LS47 BCD to 7 seg decoder/driver74LS90 Decade 与门Binary 记数器74LS92 Divide by 12 记数器74LS93Binary 记数器74LS121 Monostable multivibrator74LS154 4-Line to 16-Line Decoder/Demultiplexer74LS192 BCD up / down 记数器74LS193 4 bit binary up / down 记数器74HC237 3-to-8 line decoder/demultiplexer with address latches74LS374 3-STATE Octal D-Type Transparent Latches 与门Edge-Triggered Flip-Flops 74LS390 双DECADE 记数器双4-STAGE BINARY 记数器4001 Quad 2-input NOR 门4002 双4-input NOR 门4007 双Complementary Pair 与门反相器4011 Quad 2-Input NOR Buffered4013 双D-Type Flip-Flop4016 Quad Analog Switch/Quad Multiplexer4017 Decade 记数器/Divider4022 Divide-by-8 记数器/Divider with 8 Decoded Outputs4023 Triple 3-input 与非门4025 Triple 3-input NOR 门4026 DEC. COUN./DIVIDER WITH DECODED 7-SEG. DISPLAY OUTPUTS 4028 BCD to Decimal Decoder4029 Binary/Decade Up/Down 记数器4040 12-Stage Ripple-Carry Binary4046 Phase-Locked Loop4051 Single 8-Channel Analog4052 Differential 4-Channel Analog4053 Triple 2-Channel Multipl/Demul4054 显示驱动4055 显示驱动4056 显示驱动4060 14-Stage Ripple-Carry Binary C4066 Quad Bilateral Switch4067 Cmos Analog Multiplexer / Demultiplexer [266kb] 4068 8-input 与非门4069 Hex 反相器4071 Quad 2-input OR 门4072 双4-input OR 门4075 Triple 3-input OR 门4081 Quad 2-Input 与门门4082 双4-input 与门门4093 Quad 2-Input Schm.Trigger4511 BCD-to-7-Segment Latch Decade Driver4518 双BCD 记数器4583 双Schmitt Trigger4584 Hex Schmitt trigger如有侵权请联系告知删除,感谢你们的配合!。
使用内藏T6963C控制器的液晶显示模块的注意事项1.部分内藏T6963C控制器的液晶模块为含EL 场致发光背光器件在点背光时需用逆变器型号为PYE-D32-49 PYE-D32-50或可替换的其客观存在型号逆变器供电为5V直流电源输出交流电压接至液晶的背光引脚逆变器为配件损坏将无法修理也请注意使用2.常用负电源产生为法1 采用79系列三端集成稳压器可产生-18V 7918 -24V 7924 等电源2 采用DC-DC模块市场上常见的5D**系列型号可选择使用3 采用DC-DC集成电路制作负电源如MAX749 MAX680等3.相关液晶模块的工作负电压参考值(仅供参考负电源提供的负压范围尽可能宽例如下面的12864T及其背光型所需的V0=-5.4V 负电源提供的负压可在-10V左右这样可提供较大的调节余地因为液晶材料的物理特性液晶的对比度会随着温度的变化而相应变化所以您加的负电压值应该随温度作相应的调整大致是温度变化10 电压变化1伏为满足这一要求您可做一个温度补偿电路或者安排一个电位器测度环境温度T6963C液晶显示模块上以内藏控制器型然后详细叙述内藏T6963C控制器一T6963C的特点(1)T6963C是点阵(2)T6963C的字符(3)T6963C的占空(4)T6963C可以图特征显示还可以实现图形拷贝操(5)T6963C具有内字符发生器CGRAM并允许MPU随时二T6963C的引脚T6963C的QFP(1)D0-D7:T6963C与MPU接口的数据总线,三态(2)/RD /WR 读写选通信号低电平有效输入信号(3)/CE T6963C的片选信号低电平有效(4)C/D 通道选择信号1为指令通道0为数据通道(5)/RESET /HALT /RESET 为低电平有效的复位信号它将行列计数器和显示寄存器清零关显示/HALT具有/RESET的基本功能还将中止内部时钟振荡器的工作(6)DUAL SDSELDUAL=1为单屏结构DUAL=0为双屏结构SDDEL=0为一位串行数据传输方式(7)MD2,MD3:设置显示窗口长度,从而确定了列数据传输个数的最大值,其组合逻辑关系如下:MD3 1 1 0 0MD2 1 0 1 0每行字符数32 40 64 80(8)MDS,MD1,MD0:设置显示窗口宽度(行),从而确定T6963C的帧扫描信号的时序和显示驱动的占空比系数,当DUAL=1时,其组合功能如下:MDS 0 0 0 0 1 1 1 1MD1 1 1 0 0 1 1 0 0MD2 1 0 1 0 1 0 1 0 字符行 2 4 6 8 10 12 14 16 总行数16 32 48 64 80 96 112 128 占空比1/16 1/32 1/48 1/64 1/80 1/96 1/112 1/128 当DUAL=0时,以上设置中的字符行和总行数增至原来的2倍,其它都不变,这种情况下的液晶屏结构为双屏结构出端三T6963C指令集T6963C的初始化设置一般都由管脚设置完成因此其指令系统将集中于显示功能的设置上T6963C的指令可带一个或两个参数每条指令的执行都是先送入参数如果有的话再送入指令代码每次操作之前最好先进行状态字检测T6963C的状态字如下所示STA7 STA6 STA5 STA4 STA3 STA2 STA1 STA0STA0 指令读写状态 1 准备好 0 忙STA1 数据读写状态 1 准备好 0 忙STA2 数据自动读状态 1 准备好 0 忙STA3 数据自动写状态 1 准备好 0 忙STA4 未用STA5 控制器运行检测可能性 1 可能 0 不能STA6 屏读/拷贝出错状态 1 出错 0 正确STA7 闪烁状态检测 1 正常显示 0 关显示由于状态位作用不一亲友因此执行不同指令必须检测不同状态位在MPU一次读写指令和数据时STA0和STA1要同时有效—处于准备好状态当MPU读写数组时判断STA2和STA3状态屏读写拷贝指令使用STA6STA5和STA7反映T6963C内部运行状态字符代码: D7 D6 D5 D4 D3 D2 D1 D0行地址指针: +) R2 R1 R0实际地址: V15 V14 V13 V12 V11 V10 V9 V8 V7 V6 V5 V4 V3 V2 V1 V0(3)地址指针设置:设置将要进行操作的显示缓冲区(RAM)的一个单元地址,D1 D2为该单元地址的低位和高位地址2 显示区域位置指令格式为D1 D2 0 1 0 0 0 0 N1 N2根据N1 N0的不同取值该指令有四种指令功能形式N1 N0 D1 D2 指令代码功能0 0 低字节高字节40H 文本区首址0 1 字节数00H 41H 文本区宽度字节数/行1 0 低字节高字节42H 图形区首址1 1 字节数00H 43H 图形区宽度字节数/行文本区和图形区地址对应显示屏上左上角字符位或字节位修改该地址可以产生卷动效呆D1 D2分别为该地址的低位和高位字节文本区宽度字节数/行设置和图形区宽度字节数/行设置用于调整一行显示所占显示RAM的字节数从而确定显示屏与显示RAM单元的对应关系T6963C硬件设置的显示窗口宽度是指T6963C扫描驱动的有效列数需说明的是当硬件设置 6 8字位时图形显示区单元的低6位有效对应显示屏上 6 1显示位3N3字符代码时将自N2—当设区改为文示与不显征区内D3 字符闪烁控制位D3=1为闪烁D3=0为不闪烁D2—D0的组合如下D2 D1 D0 显示效果0 0 0 正常效果1 0 1 负向效果0 1 1 禁止显示空白启用文本特征方式时可在原有图形区和文本区外用图形区域设置指令另开一区作为文本特征区以保持原图形区的数据 显示缓冲区可划分如下单屏结构SAD1 SAD1ˊ SAD14 显示开关 指令格式如下无参数 1 0 0 1 N3 N2 N1 N0N0 1/0 光标N1 1/0 光标N2 1/0 文本N3 1/0 图形5 光标形状选光标开头为86 数据自动读该指令执行后动增 1 自动读 写结束时 必7 数据一次读 写方式 指令格式如下D1 1 1 0 0 0 N 2 N1 N0D1为需要写的数据 读时无此数据N2 N1 N0 指 令 代 码 功 能 0 0 0 C0H 数据写 地址加 1 0 0 1 C1H 数据读 地址加 1 0 1 0 C2H 数据写 地址减 1 0 1 1 C3H 数据读 地址减 1图形显示区文本特性区 文本显示区 CGRAM 2K显示缓冲区R A M1 0 0 C4H 数据写地址不变1 0 1 C5H 数据读地址不变8 屏读指令格式为无参数 1 1 1 0 0 0 0 0该指令将屏上地址指针处文本与图形合成后显示的一字节内容数据送到T6963C的数据栈内等待MPU读出地址指针应在图形区内设置9 屏拷贝指令格式为无参数 1 1 1 0 1 0 0 0该指令将屏上当前地址指针图形区内处开始的一行合成显示内容拷贝到相对应的图形显示区的一组单元内该指令不能用于文本特征方式下或双屏结构液晶显示器的应用上10 位操作该指令可将显示缓N3=1置 1 N3=0清N2—N0 操作位至此T6963C的指内藏T6963C的液晶同时也已用硬件设置了液晶的结液晶显示模块一般都是单屏结构阵图形液晶显示模块的方框图如下第法一接访问方式MPU可利用数据总线口电路以公司提供的演示板为例8031数据口P0口直接与液晶显示模块的数据连拉接由于T6963C接口适于8080系列和Z80系列MPU 所以可以直接用8031的RD /WR作为液晶显示模块的读写控制信号液晶显示模块/RESET /HALT挂在+5V 上/CE信号可由地址线译码产生C/D信号由8031地址线A8提供A8=1为指令口地址A8=0为数据口地址各驱动子程序如下DAT1 EQU 30H 第一参数单元DAT2 EQU 31H 第三参数/数据单元COM EQU 32H 指令代码单元C-ADD EQU 8100H 指令通道地址D-ADD EQU 8000H 数据通道地址1.读状态字子程序占用寄存器: DPTR,A 输出寄存器 A 存储标志字R-ST MOV DPTR #C-ADD 设置指令通道地址MOVX A @DPTRRET由此程序派生出判断有关标志位的子程序(1)判状态位STA1,STA0子程序(读写指令和读写数据状态),在写指令的读写数据之前这两个标志位必须同时为 1ST01 LCALL R-STJNB ACC.0,STO1JNB ACC.1,ST01RET(2)判状态位STA2子程序(数据自动读状态),该位在数据自动读操作过程中取代STA0和STA1有效在连续读过程中每读一次之前都要确认STA2=1ST2 LCALL R-STJNB ACC.2,ST2RET(3)判状态位STA3子程序(数据自动写状态)ST3: LCALL R-STJNB ACC.3,ST3RET(4)判状态位STA6子程序(屏读/屏拷贝状态)ST6: LCALL R-STJNB ACC.6,ST6RETERR: LJMP ST6 出错处理程序1.写指令和写数据子程序PR1: LCALL ST01 双字节参数指令写入入口MOV A DAT1 取第一参数单元数据LCALL PR13 写入参数PR11 LCALL ST01 单字节参数指令写入入口MOV A DAT2 取第二参数单元数据LCALL PR13 写入参数PR12 LCALL ST01 无参数指令写入入口MOV A COM 取指令代码单元数据LJMP PR14 写入指令代码PR13 MOV DPTR #D-ADD 设置数据通道地址/数据写入入口PR14 MOVX @DPTR A 写入操作RET此程序是通用程序当写入单参数指令时应把参数或数据送入DAT2内其子程序入口为PR11 无参数指令写入子程序入口为PR122.读数据子程序PR2 LCALL ST01 判状态位MOV DPTR #D-ADD 设置数据通道地址MOVX A @DPTR 读数据操作MOV DAT2 A 数据存入第二参数/数据单元RET一间接控制方式间接控制方式是MPU通过并行接口间接实现对液晶显示模块控制根据液晶显示模块的需要并行接口需要一个8位的并行接口和一个3位并行口由下图所示8031的P1口作为数据总线P3口中3位作为读写及寄存器选择信号由于并行接口只用于液晶显示模块所以/CE信号接地就行了MPU通过并行接口操纵液晶显示模块要对其时序关系有一个清楚的了解并在程序中应明确地反映出来间接控制方式的基本程序如下CD EQU P3.2 通道选择信号WR EQU P3.3 写操作信号RD EQU P3.4 读操作信号1 读状态字子程序R-ST MOV P1 #0FFH P1口置 1SETB CD CD=1CLR RD /RD=0MOV A P1 读操作SETB RD RD=1RET此程序可以直接调节器用直接访问方式中的ST01 ST2 ST3和ST6等子程序2 写指令和写数据子程序PR1 LCALL ST01 双字节参数指令写入入口MOV A DAT1 取第一参数单元数据LCALL PR13 写入参数PR11 LCALL ST01 单字节参数指令写入入口MOV A DAT2 取第二参数单元数据LCALL PR13 写入参数PR12 LCALL ST01 无参数指令写入入口MOV A COM 取指令代码单元数据LJMP PR14 写入指令代码PR13 CLR CD CD=0/数据写入入口PR14 MOV P1 A 设置数据CLR WR /WR=0SETB WR /WR=1RET3 读数据子程序PR2 LCALL ST01 判状态位CLR CD C/D=0MOV P1 1#0FFH P1口置 1CLR RD /RD=0MOV A P1 读取数据SETB RD /RD=0MOV DAT2 A 数据存入第二参数/数据单元RET第五章应用举例示例一初始化程序该程序为通用设置程序在240 128规模以内的液晶显示模块都适应1 始化设置子程序INT MOV DAT1 #00H 设置文本显示区域首地址MOV DAT2 #00HMOV COM #40HLCALL PR1MOV DAT1 #20H 设置文本显示区域宽度MOV DAT2 #00H 即一行显示年占字节数MOV COM #41HLCALL PR1MOV DAT1 #20H 设置图形显示区域首地址MOV DAT2 #08H 或为文本属性区域首地址MOV COM #42HLCALL PR1MOV DAT1 #20H 设置图形显示区域宽度MOV DAT2 #00H 或为文本属性区域宽度MOV COM #43H 即一行显示所占字节数LCALL PR1MOV COM #0A7H 光标形状设置LCALL PR12MOV COM #80H 显示方式设置逻辑或合成LCALL PR12MOV COM #9CH 显示开关设置LCALL PR12RET2 演示程序段MOV SP #60HORL P3 #1CH 间接控制方式控制线初始化LCALL INTLCALL CLEAR示例二清显示RAM区1 清显示RAM子程序CLEAR MOV DAT1 #00H 设置显示RAM首地址MOV DAT2 #00H 设置CGRAM偏置地址MOV COM #24HLCALL PR1MOV R3 #00H 设置循环量MOV R4 #20HMOV COM #0B0H 设置自动写方式LCALL PR12CLEAR1 LCALL ST3 判状态位S2MOV A #00H 置数据0LCALL PR13 写入数据DJNZ R3 CLEAR1 循环DJNZ R4 CLEAR1MOV COM #0B2H 设置自动写结束指令LCALL PR12RET示例三建立CGRAM程序1 建立CGRAM子程序地址设定在代码为80H起处COUNT EQU 34H 西文字符8 8点阵个数CGRAM MOV DAT1 #03H 设置CGRAM偏置地址MOV DAT2 #00HMOV COM #22HLCALL PR1MOV DAT1 #00H 设置RAM地址指针MOV DAT2 #1CHMOV COM #24HLCALL PR1MOV COM #0B0H 设置自动写方式LCALL R12MOV A COUNT 计算写入的字节数MOV B #08HMUL ABMOV COUNT A 计算器低8位数据INC B 计算器高8位数据MOV DPTR #CGTAB 取字符库首地址PUSH DPH 存字符库指针PUSH DPLCGRAM1 LCALL ST3 判自动写状态位POP DPL 取字符库指针POP DPHCLR AMOVC A @A+DPTR 取数据INC DPTR 字符库指针加一PUSH DPH 存字符库指针PUSH DPLLCALL PR13 写入数据DJNZ CONUT CGRAM1 计数循环DJNZ B CGRAM1MOV COM #0B2H 定入结束自动写指令LCALL PR12POP ACC 修正栈指针POP ACCRET2 汉字库(本字库由PICKHZB.EXE软件提取生成)CGTAB:DB 000H,040H,037H,010H,081H,061H,022H,00AH液DB 016H,02BH,0E2H,022H,022H,022H,023H,022HDB 080H,044H,0FEH,020H,020H,03CH,044H,064HDB 098H,048H,050H,020H,050H,08EH,004H,000HDB 00FH,008H,008H,00FH,008H,008H,00FH,008H晶DB 07EH,042H,042H,07EH,042H,042H,07EH,042HDB 0E0H,020H,020H,0E0H,020H,020H,0E0H,024HDB 0FEH,084H,084H,0FCH,0084,084H,0FCH,084H3 建立CGRAM步骤以汉字液晶为例(1)建立偏置寄存器内容(2)建立字符字模数据及定义该字符的字符代码;“液晶”的字模数据建立在CGTAB内其字符代码分别定义为80H和84H 因为一个汉字字模需要占用四个西文字模的空间所以汉字代码的定义方法如下以80H为例80H 汉字代码表示汉字左上半部字模代码81H 隐含代码表示汉字左下半部字模代码82H 隐含代码表示汉字右上半部字模代码83H 隐含代码表示汉字右下半部字模代码(3)定入CGRAM例如:将汉字“液晶”二字作为自定义字符建立程序如下MOV COUNT #08HLCALL CGRAMSJMP $示例四西文显示1 西文字符写入子程序文本属性显示方式的应用CODE EQU 33H 字符代码ATTR EQU 34H 字符属性码低4位有效O-Y EQU 35H Y坐标0-15O-X EQU 36H X坐标0-29WRI-C MOV A O-Y 计算文本显示RAM地址MOV B #20H 文本显示区宽度为20HMUL ABADD A O-XMOV DAT1 AMOV A BADDC A #00HMOV DAT2 APUSH ACC 存地址的高8位MOV COM #24H 设置地址指针LCALL PR1MOV DAT2 CODE 写入字符代码MOV COM #0C4HLCALL PR11POP ACC 取地址的高8位ADD A #08H 计算相应的属性区RAM地址MOV DAT2 AMOV COM #24H 设置地址指针LCALL PR1MOV DAT2 ATTR 写入属性参数MOV COM #0C4HLCALL PR11RET2 文本属性方式设置程序段MOV COM #84H 设置文本属性显示方式LCALL PR12MOV COM #9FH 开文本和图形显示LCALL PR123 文本属性方式显示演示程序段MOV DAT1 #0EHMOV DAT2 #01HMOV COM #21HLCALL PR1MOV R1 #00HLOOPA MOV R2 #00HMOV R3 #00HMOV R4 #01HLOOPB MOV A R2MOV DPTR #DTABMOVC A @A+DPTRMOV CODE AMOV O-X R3MOV O-Y R4LCALL WRI-CINC R2INC R3MOV A R2CJNE A #14 LOOPBLCALL DELAYINC R1LJMP LOOPADELAY MOV R5 #00HMOV R6 #00HDELAY1 NOPDJNZ R5 DELAY1DJNZ R6 DELAY1RETDTAB DB 37H 45H 4CH 43H 4FH 4DH 45H 00H 39H 4FH 55H WELCONE YOU 示例五汉字显示方式一文本方式下的汉字显示1 汉字写入子程序文本方式CODE EQU 33H 汉字字符代码O-Y EQU 35H Y坐标0-15O-X EQU 36H X坐标0-29WRI-CT MOV A O-Y 计算显示RAM地址MOV B #20HMUL ABADD A O-XMOV DAT1 AMOV A BADDC A #00H 文本显示区首地址为0000HMOV O-Y AMOV DAT2 A 设置显示RAM地址MOV COM #24HLCALL PR1MOV A CODE 取汉字代码MOV DAT2 A 写入左上半部汉字代码MOV COM #0C0HLCALL PR11MOV A CODEADD A #02HMOV DAT2 A 写入右上半部汉字代码LCALL PR11MOV A #20H 显示RAM地址修正ADD A O-XMOV DAT1 ACLR AADDC A O-YMOV COM #24H 设置显示RAM地址LCALL PR1MOV PR1MOV A CODEINC AMOV DAT2 A 写入左下半部汉字代码MOV COM #0C0HLCALL PR11MOV A CODEADD A #03HMOV DAT2 A 写入右下半部汉字代码LCALL PR11RET在示例三上我们已经提供CGRAM的方法并且作为示例建立了汉字液晶二字的字库在此以文本方式显示汉字液晶二字演示程序如下MOV CODE #80H 液MOV O-X #00HMOV O-Y #00HLCALL WRI-CTMOV CODE #84H 晶MOV O-X #07HMOV O-Y 02HLCALL WRI-CTSJMP $示例六汉字显示方式二形方式下的汉字显示软件PICKHZB.EXE建立的汉字库而编制的1 汉字写入子程序图形方式CODE EQU 33H 汉字字符代码O-Y EQU 35H Y坐标0-127O-X EQU 36H X坐标0-29COUNT EQU 34H 计数器WRI-CC MOV A O-Y 计算图形显示RAM地址MOV B #20H 图形显示A区宽度为20HMUL ABADD A O-XMOV O-X AMOV A BADDC A #80H 图形显示区首地址为0800HMOV O-Y AMOV DPTR #CCTAB 计算汉字库字符首地址MOV A CODEMOV B #20HMUL ABADD A DPLMOV DPL AMOV A BADDC A DPHMOV DPH APUSH DPH 存字库地址指针PUSH DPLMOV COUNT #10H 计数器设置为16次WRI-CC1 MOV DAT1 O-X 设置显示RAM地址MOV DAT2 O-YMOV COM #24HLCALL PR1POP DPL 取字库地址指针POP DPHCLR AMOVC A @A+DPTR 取左部字模数据MOV DAT2 A 设置数据MOV A #10H 偏置地址为16MOVC A @A+DPTR 取右部字模数据MOV DAT1 A 暂存数据INC DPTR 字库地址指加一PUSH DPH 存字库地址指针PUSH DPLMOV SOM #0C0H 设置一次写数据指令代码LCALL PR11 写入数据MOV DAT2 DAT1 设置右部数据LCALL PR11 写入数据MOV A #20H 显示RAM地址修正ADD A O-XMOV O-X ACLR AADDC A O-YMOV O-Y ADJNZ CONUT WRI-CC1 计数器循环POP ACC 修正栈指针POP ACCRET2 汉字库(PICKHZB.EXE软件提取生成)CCTAB: DB 004H,00EH,0F8H,008H,008H,0FEH,008H,01CH;科DB 01AH,029H,028H,048H,088H,008H,008H,008HDB 010H,010H,090H,050H,010H,090H,050H,014HDB 01EH,0F0H,010H,010H,010H,010H,010H,010HDB 001H,007H,07CH,004H,004H,005H,0FFH,00CH;利DB 00EH,015H,014H,024H,044H,004H,004H,004HDB 004H,084H,004H,024H,024H,024H,0A4H,024HDB 024H,0A4H,0A4H,024H,004H,004H,014H,008HDB 000H,040H,020H,020H,000H,00FH,0E0H,021H;达DB 021H,022H,022H,024H,028H,050H,08FH,000HDB 080H,080H,080H,080H,088H,0FCH,080H,000HDB 040H,020H,010H,018H,008H,006H,0FCH,000HDB 00/H,00/H,00/H,00/H,00/H,00/H,00/H,00/H;DB 00/H,00/H,00/H,00/H,00/H,00/H,00/H,00/HDB 00/H,00/H,00/H,00/H,00/H,00/H,00/H,00/HDB 00/H,00/H,00/H,00/H,00/H,00/H,00/H,00/H3 图形方式下汉字显示演示程序MOV CODE #00HMOV O-X #00HMOV O-Y #00HLCALL WRI-CCMOV CODE #01HMOV O-X #03HMOV O-Y #00HLCALL WRI-CCMOV O-X #06HMOV O-Y #00HLCALL WRI-CCMOV CODE #03HMOV O-X #09HMOV O-Y #00HLCALL WRI-CCRET附录一T6963C的内部字符集。
不知道发过没?各大LED驱动芯片大全Fairchild (美国飞兆) FSEZ 1016主要应用于3W灯杯3WFSEZ 1216主要应用于5W灯杯5WFSQ 110主要应用于8W左右LED电源8WFSDH 321主要应用于8W左右LED电源8WKA5M02659RN主要应用于12W左右LED电源12WKA5M0365R/KA5M0380RYDTU主要应用于30W左右LED电源30WFSDL0165/FSDM0265/FSDM0365 主要应用于12-18WLED电源12-18WKA5L0365RN/KA5M0365RN主要应用于24WLED电源25WSG6859 + 2N60/4N60主要应用于日光灯等外置式LED电源30W 以下SG6741 + 7N60C/7N60C主要应用于日光灯等外置式LED电源60W 以下FSFR2100主要应用于LED路灯和大功率LED电源200W待补充Power Integrations (PI) LNK603/613PG/DG主要应用于2.5W的LED灯杯2.5WLNK604/614PG/DG主要应用于3.5W的LED灯杯3.5WLNK605/615PG/DG主要应用于4.5W的LED灯杯4.5WLNK606/616PG/GG主要应用于5.5W的LED灯杯5.5WTNY274/275/276/277P/G主要应用于5-8W LED电源5-8WTNY278/279/280P/G主要应用于10-14W LED电源10-14W待补充Supertex (美国超科) AT9933专为汽车设计用高达70V功率驱动ICHV9921/22/2385 to 264V AC or DC input voltage of 20 to400V. 20/30/50mAHV9925Output Current to 50mA;Universal 85-264V AC Operation;Fixed OFF-Time BuckConverter;Internal 500V Power MOSFETHV9903Power efficiency of up to 85%;Drives up to 6 White LEDs;2.6V to 4.6VSupply;power stage can operate at 1.8V;Built-in Soft Start;DC and PWM DimmingControlHV9910高压大功率直驱LED恒流器件HV9911高压双向检测大功率直驱LED恒流ICHV9931高压双向检测大功率直驱LED恒流IC,可PWM灰度调节待补充National (美国国半) 针对带有双电流槽和与IC兼容亮度控制的白色LED和QLED显示器的高效升压器LM3402针对高功率LED驱动器、6V至42V输入电压范围的0.5A持续电流降压电路LM3402HV 针对高功率LED驱动器,6V至75V输入电压范围的0.5A持续电流降压电路LM3404针对高功率LED驱动器,6V至42V输入电压范围的1A持续电流降压电路LM3404HV 针对高功率LED驱动器、6V至75V输入电压范围的1.0A持续电流降压电路LM5022针对升压和SEPIC稳压器的60V低压侧控制器,允许控制外部MOSFET来为LED提供LM2735 520kHz/1.6MHz - 有效使用空间的升压和SEPIC DC-DC稳压器LM3405用于LED驱动器500kHz/1.6MHz 1A恒流降压稳压器LM2754具有超时保护功能的800mA开关电容Flash LED驱动器LM27965具有I2C兼容亮度控制功能的双显示器白光LED驱动器LM27966带有I2C兼容接口的白光LED驱动器LM2727/ LM2737 频道的FET 同步的为低输出电压顽强反抗调整者控制器待补充美国国家半导体公司白色LED低功率驱动部分LM3519高的频率推进白色LED用高速的PWM 光亮控制驱动ICLM2731SOT23 小封装小功率LED驱动应用SOT23 小封装5V升压到12-30V,120-300mALM26238-14V 转换成输出电压在1.24-14V之间,达到90% 的效率LM3557为白色LED2.7V-7.5V的递升转换器,多大5颗LED小体积背光指示LM35022.5-5.5V升压到16-44V,多达4-10颗LED小体积背光指示LM27512 X,1.5 X 电容器式倍压白色LED的引导驱动ICLM3590系列小功率白色LED简单驱动,降压型LM2707系列小功率白色LED简单驱动,升压型LM35082.7Vto5.5V 升压17.5V 驱动4个白色LED达到30mA 应用ICLM2793白色的低噪音引2.5-5.5V,1.5倍压双重的功能光亮控制ICLM2792接受输入电压从3.0V到5.8V的范围和维持持续的电容器类光亮控制LM2791受输入电压从3V到5.8V的范围和维持持续的36mA由外部的固定电阻决定. LM2705直流的升压式150mA的直流转换器LM2703直流的升压式350mA的直流转换器LM3501同时的递升直流/ 直流转换器为白色LED的驱动LM2794/LM2795 多路驱动补给的电容器类比和PWM 灰度控制LM27953 白色LED四路的和3/2 x转变了电容器推进式驱动LM3570低的噪音白色LED,应用与手持式设备多路控制多颗LED背光指示LM3595 平行的白色LED驱动应用LM2704 2.2-7V升压20V,550mA,SOT小封装LED驱动LM2750 低的噪音转变了电容器小功率升压驱动LM2796 双重的3/2 x 的白色LED驱动电容器式应用ICLM27964 有I2C 的独立控制的,多按键区域背光指示应用ICLM2756有I2C 的独立控制的,多按键区域背光指示应用ICLM2754带有超时保护功能的800mA开关电容器Flash LED驱动器LM3551/LM35521A白色用闪光灯驱动应用LM3224直流的递升PWM 的615 KHz/1.25 MHz/直流转换器待补充美国国家半导体公司照明管理单元(LMU)LM4970声音同步化LED驱动器IC适合任何颜色LP3943RGB/白色/ 蓝色16通道引导的LED驱动器LP3944RGB/白色/ 蓝色8 通道引导的LEDLP5520RGB背光LED驱动器LP5521可编程的三通道LED 驱动器LP5522可编程的LED驱动器LP3958高电压推进的照明管理转换器LED应用ICLP5526高的电压推进的照明管理可达到150mA序列闪光的驱动ICLP3936为六白色的照明管理系统引导和一RGB 或闪光引导LP3931双路的RGB 用高亮度驱动DC-DC转换器LP3933为六白色的照明管理系统应用和二RGB 或闪光应用ICLP3954电话LED指示包括展览背光、RGB、按键区和照相机闪光等应用LP3950颜色用声音的同步装置引导LED驱动LP39526个通道的颜色用声音的同步引导驱动应用ICLP39542多路LED背光管理ICLP55281四路RGB驱动器LP5527为照相机闪光的极小驱动和4以I2C应用Programmability,连接性测试和声音LP55271为照相机闪光的极小驱动和4以I2C应用Programmability,连接性测试和声音待补充International Rectifier (IR) IRS2540S/2540PBF一款高压,高频降压调节控制集成电路,该产品用于要求多个LED的交流-直流离线,非隔离应用电路或要求直流-直流混合色能力的应用.应用包括室内外标牌,以及建筑,娱乐,设计和装饰照明.IRS2541S/2541PBF一款高压,高频降压调节控制集成电路,该产品用于要求多个LED的交流-直流离线,非隔离应用电路或要求直流-直流混合色能力的应用.应用包括室内外标牌,以及建筑,娱乐,设计和装饰照明.待补充Nxp (恩智浦) LED屏幕配套部分逻辑IC,飞利浦系列:74HC595D逻辑8位移位寄存器74HC245D3态8总线收发器74HC138D3-8线译码器、多路转换74HC164D8位移位寄存器(串进并出)74HC04D逻辑6非门74HC08D逻辑6非门驱动器74HC244D8缓冲/线驱动/线接收(3态)待补充Maxim-Dallas (美国美信) 美国美信高亮度LED驱动器部分MAX16800高电压6.5-40V驱动35-350mA多颗LED应用驱动ICMAX16801A/BPWM 控制器265V AC-85V AC1A LED驱动器MAX16802A/BPWM 控制器10.8VDC-24VDC 1A LED驱动器MAX16803 高压、350mA、高亮度LED驱动器, 提供PWM亮度调节和5V稳压器MAX16804 高电压5.5V-40V,350mA驱动和PWM 控制暗淡MAX16805/MAX16806 EEPROM可设计的,高电压,350mA台灯等现场调光驱动应用MAX16807/MAX16808 集成8通道LED驱动器,具有开关模式boost及SEPIC控制器MAX16809/MAX16810 集成16通道LED驱动器,具有开关模式boost及SEPIC控制器MAX168181.5 MHz,30A高效率LED恒流驱动MAX16819/MAX168202MHz高光亮LED驱动和5000:1灰度等级调节MAX16823高电压4.5-40V,3通道独立,5mA到70mA和外接BJT时可达到2AMAX16824/MAX16825 3通道、高亮度LED (HB LED)驱动器,6.5V至28V输入电压MAX7302低电压LED驱动器,提供闪烁控制、PWM调节、瞬变检测及电平转换待补充美国美信白光LED驱动器部分MAX8678白光LED在喇叭上整合应用ICMAX1698,MAX1698A便携式LCD屏背光源白光LED驱动应用ICMAX1848手机等小屏锂电池单色LED背光源恒流驱动ICMAX1916小体低压差式恒流驱动ICMAX1910/MAX1912锂电池1.5x/2x倍压式LED驱动器,最大120mAMAX1570锂电池1x/1.5x 倍压式LED驱动器,多路可PWM调光MAX1984/MAX1985/MAX1986白色LED超高效率恒流驱动MAX1582/MAX1582Y可编程升压型2段恒流驱动ICMAX1553/MAX1554高效率, 升压到40V为2 到10 白色LED的转换器驱动MAX1573白色泵式1 x/1.5 x驱动器,小体积QFN型封装MAX1561/MAX1599高效率,升压型转换器26V驱动2到6颗白色LED驱动MAX1574180mA,1x/2x倍压白色泵式驱动IC 3毫米x3毫米TDFN小封装MAX1583白色的引导照相机-闪光推进转换器MAX1575白色LED驱动1x/1.5x电荷泵式光源指示MAX1576480mA白色LED1x/1.5x/2x电荷泵式从背光照亮到照相机闪光灯应用MAX1578/MAX1579TFT屏与LED背光整合驱动应用ICMAX8595Z/MAX8596Z高效率,2.6-5.5V升压型32V,25mA,2-8颗LED驱动应用MAX1577Y/MAX1577Z1.2 A 白色LED闪光灯应用ICMAX8630W/MAX8630X125mA 1x/1.5x电荷泵式为5颗白色LED小型TDFN封装MAX8631X/YLED电荷泵式1x/1.5x/2x4毫米x 4毫米的二LDOs使QFN超薄封装MAX8790六线白色LED恒流驱动,适合笔记本等中尺寸LCD背光MAX8607为1.5A的1MHz PWM 推进转换器白色LED应用照相机闪光MAX8647/MAX8648 超高效率电荷泵式6LED的/ RGB驱动应用,瘦小的QFN封装待补充ONSEMI (美**森美) NCP56122通道泵式可PWM的白色LED驱动产品是LCD屏背光照明,操作模态1 x 和1.5 x 泵式驱动,87% 效率连同0.2% 相配误差.NCP5623带I2C控制的三路输出RGB LED驱动器,完全支持RGB照明或白光LED背光,内置”渐进调光”功能,能效高达94%的电荷泵,具备1x和2x两种工作模式,采用节省空间的极小型LLGA-12 2.0×2.0×0.5 mm封装NCP3065, NCV3065输出1.5 A ,输入电压 3.0 V to 40 V, PWM灰度调节,为汽车应用设计NCP5007小型小体2.7 to5.5 V 升压驱动多颗LED,小屏背光及背光指示等应用NCP5008,NCP50092.7 到6.0 V 输入电压范围,从Vbat 到15 V 的输出电压,外设光敏电阻NCP5010: Integrated Backlight LED BoostDriverNCP5030: Buck-Boost Converter to Drive aSingle LED from 1 Li-Ion or 3 Alkaline BatteriesNCP5604A, NCP5604BHigh Efficiency White LEDDriverNCP5603: High Efficiency Charge PumpConverter / White LED DriverNCP5602: 2-Channel Charge Pump White LEDDriver with I²C ControlNUD4001AC−DC 输入5.0 V, 12 V or 24 V.输出最大500mA,最简易型LED驱动ICNUD4011AC−DC 输入最大120 V.输出最大70mA,最简易型多颗LED驱动ICZetex (英国ZETEX ) ZXLB1600 LED/OLED 升压偏置1.6 - 5.5 28 75 350 MSOP10ZXLD1100 LED 升压驱动器2.5 - 5.5 28V(最大) 60 350 SC70-6ZXLD1101 LED 升压驱动器2.5 - 5.5 28V(最大) 60 350 TSOT23-5ZXLD1320 内置开关式1.5A LED 驱动器4 至18 18 122000 TDFN1433 ZXLD1321 内置开关式1A LED 驱动器1.2 至12 18 122000 TDFN1433 ZXLD1322 内置开关式0.7A LED 驱动器2.5 至15 18 122000 DFN1433 ZXLD1350 内置开关式350mA LED 驱动器7 至30 30 15 370TSOT23-5 ZXLD1360 内置开关式1A LED 驱动器7 至30 30 201000 TSOT23-5 ZXLD1362 内置开关式1A LED 驱动器6 至60 60 651000 TSOT23-5 ZXLD1575 x1/x1.5 充电泵6 通道驱动器2.7 至5.5 5.5 1000120 QFN1644 ZXLD1601 LCD/OLED 升压偏置2.5 - 5.5 VIN 至28 60 320 SC70-6ZXLD1615 LCD/OLED 升压偏置2.5 - 5.5 VIN 至28 60 320 TSOT23-5 ZXLD1937 LED 升压驱动器2.5 - 5.5 28V(最大) 60 350 TSOT23-5ZXSC300 LED 升压/降压驱动器0.8 -8.0 Vin 至Vm 200 外置开关SOT23-5 ZXSC310 LED 升压/降压驱动器0.8 -8.0 Vin 至Vm 200 外置开关SOT23-5 ZXSC380 内置开关式单室简易升压0.8 - 6.0 Vin 至20V 80 - SOT23ZXSC400 LED 升压驱动器1.8 - 8.0 Vin 至Vm 150 外置开关SOT23-6 ZXSC440 相机闪光灯驱动器1.8 - 8.0 Vin 至Vm 150 外置开关MSOP8待补充Texas Instruments (TI) TI 美国德州仪器公司屏幕驱动部分TLC59048/16 通道LED 驱动器TLC59058/16 通道LED 驱动器TLC591116 通道LED 驱动器TLC5916/TLC59178通道LED驱动器TLC592016 通道LED 驱动器TLC592116 通道LED 驱动器TLC5922带有点校正的16 通道LED 驱动器TLC5923带有点校正的16 通道LED 驱动器TLC5924具有点校正功能和预充电FET 的16 通道LED 驱动器TLC593012 通道LED 驱动器TLC5940带有EEprom 点校正与灰度PWM 控制的16 通道LED 驱动器TLC5941带有点校正与灰度PWM 控制的16 通道LED 驱动器TLC5945带有点校正、灰度PWM 控制和无延迟的16 通道LED 驱动器TI 美国德州仪器公司白光LED驱动器TPS60250具有I2C 接口的用于7 个WLED 的1.2A 高功率高效充电泵TPS60251具有I2C 接口的用于7 个WLED 的1.2A 高功率高效充电泵TPS60252同步推进转换器I2C/可并立的接口白色驱动器TPS6102*可调节、1.5A 开关、96% 高效升压转换器,具有降压模式TPS61040/41用于LCD 和白光LED 的,输入1.8-6V出28V 400mA 开关升压转换器TPS61042输入1.8-6V出30V 500mA 开关升压转换器,用于白光LED 应用领域TPS61043升压PWM灰度可调恒流LED驱动TPS6104528V 85% 效率的升压转换器,用于LCD 应用领域TPS61055具有I2C 兼容接口的 1.2A 高功率白光LED 驱动器TPS61058具有1.1A 开关的高功率单个白光LED 驱动器TPS61059具有1.5A 开关的高功率单个白光LED 驱动器TPS61060/TPS61061/TPS61062具有白光LED 亮度控制电源的15V、400mA 开关,1MHz 升压转换器TPS61080具有集成功率二极管的27V、500mA 开关、1.2MHz 升压转换器TPS61081具有集成功率二极管的27V、500mA 开关、1.2MHz 升压转换器TPS61140具有OLED和LCD背光屏双重驱动的应用ICTPS61141具有OLED和LCD背光屏双重驱动的应用ICTPS61150使用单一控制双输出LED驱动背光源驱动ICTPS61151使用单一控制双输出LED驱动背光源驱动ICTPS61150A使用单一控制双输出背光源驱动多大14颗LED能力的ICTPS61160PWM白光LED 2.7-18V升压500mA,最多6pcs LEDTPS61161PWM白光LED 2.7-18V升压500mA,最多10pcs LEDTPS61165PWM白光LED 3-18V升压1.2A,最多3pcs LEDTPS75103LDO低压差背光源LED驱动ICTPS75105LDO低压差背光源LED驱动ICTPS61180/1/25-24V输入多路25mA,最大10WLED背光驱动ICToshiba (日本东芝) TB627258位移位恒流驱动ICTB62726AN/AF16位全彩LED大屏幕TB62726ANG/AFG16位全彩LED大屏幕TCA62746AFG/AFNG16位全彩LED大屏幕带断、短路侦测及温度保护Siti (台湾点晶科技股份) DD311单信道大功率恒流驱动IC最大1A最高耐压36V线性恒流ICDD312单信道大功率恒流驱动IC最大1A最高耐压18V线性恒流ICDD313三信道大功率恒流驱动IC500mA R/G/B恒流驱动ICDM412三通道装饰照明专用可直接数据级联恒流IC 200mA R/G/B恒流驱动ICDM413三通道装饰照明专用PWM输出驱动IC 100mA R/G/B恒流驱动ICDM114,DM115新版8位驱动IC 主要是用于屏幕及灯饰DM115B通用8位恒流驱动IC 恒流一致性及稳定性高DM11A8位恒流动,用于护栏管,屏幕灯饰使用DM11C8位驱动IC 具有短断点侦测及温度保护功能,屏幕灯饰使用DM13C16位驱动IC 具有短断点侦测及温度保护功能,屏幕灯饰使用DM13A16位恒流驱动,面对低端屏幕客户DM134,DM135, DM13616位驱动IC 主要用于LED屏幕及护栏管DM13216位1024级PWM输出驱动ICDM13716位开,短路,过温智能侦测驱动ICDM13316位开路检测&64级电流调整&过温警示驱动ICDM1638x3信道4096级PWM驱动ICDM6214×3装饰照明专用PWM输出驱动恒流ICDM63112比特内置PWM+实时检测恒流驱动ICDM63216比特内置PWM+实时检测恒流驱动ICDM1638×3通道4096级PWM输出恒流驱动ICDM1648×3通道4096级PWM输出恒流驱动ICDD211二倍升压驱动IC 2-3.3V 最大升压100mA固定式恒流ICDD2313信道驱动IC 5-30mA 可设置小体上电即亮型ICDD2334信道驱动IC 5-30mA 可设置小体、可开关型ICDD2121.5-5.5V二倍升压最大400mA电流输出驱动单颗LED恒流ICPC112,PC1132.8-5V四倍升压驱动20mA小功率多颗LED恒流ICST2225A35输出信道之数字/字母LED驱动芯片Addtek (广鹏科技)A701、A702固定式5-30mA灯饰恒流A703120mA可开式6-50V降压型恒流ICA705220mA、2.7-12V固定降压型单路恒流ICA7065-40mA、5-50V/PWM多路可开关型恒流ICAMC711x固定式小电流灯饰应用AMC711x_E固定式小电流灯饰应用AMC71352-6V低压差固定式恒流驱动IC1颗LEDAMC71405-50V DC&DC 最大500mA电流可调,1颗或多颗LED驱动ICAMC71505-24V DC&DC 最大1.5A固定式,1-3颗LED驱动ICAMC7169LED保护ICMBI (台湾聚积科技) MBI18011路恒流驱动1.2A电流可设定PWM信号灰度调节MBI18022路恒流驱动360mA电流可两路单独设定PWM信号灰度调节MBI18044路恒流驱动240mA电流可设定PWM信号灰度调节MBI181616路恒流驱动电流可设定PWM信号灰度调节MBI5024面对低端客户16位LED屏幕、护栏灯管恒流驱动ICMBI502516位最大45mALED屏幕、护栏灯管恒流驱动ICMBI502616位最大90mA LED屏幕、护栏灯管恒流驱动ICMBI502816位最大90mA LED屏幕、护栏灯管恒流驱动IC,具电流增益功能MBI503016位内置PWM高灰阶LED恒流驱动ICMBI503116位内置PWM高灰阶LED恒流驱动IC,相对5030低端客户MBI5039MBI51688位LED屏幕、护栏灯管恒流驱动ICMBI60103位级联式LED灯饰屏幕,R/G/B单独电流可设置恒流驱动IC StarChips (晶錡科技) SCT202416位移位LED恒流驱动,适合目前LED大屏幕使用3-40mASCT202616位移位LED恒流驱动,适合目前LED大屏幕使用3-90mASCT221016位移位LED恒流驱动,适合LED大屏幕及插件护栏管使用3-120mASCT21108位移位LED恒流驱动IC,主要用于灯饰产品SCT251212位移位护栏管专用IC,3路OE灰度可以单独调节SCT20073路点光源驱动IC,可兼容MIB6010Shamrock (台湾芯瑞)SMD7333-40V电压输入,内置MOS管降压型驱动电流1ASMD7353-40V电压输入,降压型驱动电流700mA(可替代AMC7150)SMD736最高40V电压输入,内置MOS管降压型驱动电流3ASMD802市电直驱1A LED驱动IC(可替代HV9910)SMD911市电直驱IC,外置MOS LED隔离方案驱动ICSMD912市电隔离型直驱IC,外置MOS LED驱动ICOB (台湾昂宝) OB656380W PFC Module 400V 0.2ATM PFCOB6573300W PFC Module 400V 0.75A CCM PFCOB6561P36W LED Driver 24V 1.5ATM PFCTAC (台湾台创) TAC7135TAC7136TAC9920TAC5240TAC5241深圳市泉芯电子QX2706 背光恒流驱动2.7V~5.5V <=30V <=200mA <=85% SOT23-6QX2705 背光恒流驱动2.7V~5.5V <=30V <=200mA <=87% SOT23-5QX2703 背光恒流驱动2.7V~5.5V <=30V <=200mA <=87% SOT23-5QX7136 矿灯/手电筒驱动2.7V~6V- <=3A - SOT89-5QX7135 矿灯/手电筒驱动2.7V~6V- <=400mA - SOT-89-3 TO-252-2QX5234 三通道恒流驱动5.5V~17V <=17V <=200mA - SOP16 SSOP16 TSSOP16QX5238/9 背光恒流驱动2.7V~6V 2.7V~6V 15mA/20mA <=90% SOT23-6 MSOP-8QX2305 LED日光灯恒流驱动2V~400V - - <=90% SOP-8QX9910 LED日光灯恒流驱动2.5V~400V 2.5V~400V <=1A <=90% SOP-8QX5232B 太阳能草坪灯驱动1.2V~4V 1.2V~4V <=120mA <=90% DIP-8QX5251 太阳能草坪灯驱动0.9V~1.5V - <=300mA <=92% TO-94QX62726 LED显示屏恒流驱动4V~5.5V <=10V <=90mA - SSOP24-300-1.00 SSOP24-150-0.635QX5241 大功率低压恒流驱动5.5V~36V 5.5V~36V <=2A <=95% SOT23-6杭州士兰微电子SB1672616位恒流驱动全彩屏幕ICSC16722可级连、大电流输出的专用LED驱动电路SB42351350mA低压差白光固定式LED驱动芯片SB42510PWM控制、1A白光LED恒流芯片SA7525PFC功率因素控制技领半导体上海有限公司ACT34US-T SOT23-6 65kHz 7W 0.3WProduction ACT351HQ-T SIP-4 Adjustable 2W < 0.3WSampling ACT353HQ-T SIP-4 Adjustable 3W < 0.3WSampling ACT355HQ-T SIP-4 Adjustable 3.5W < 0.3WSampling ACT50UC-T SOT23-5 65kHz 18W 0.3WProduction ACT50DH DIP-8 65kHz 30W 0.3WProduction华润矽威科技(上海) PT4107通用18V~450V市电输入,高亮度LED驱动器.PT411530V/1.2A,高调光比LED恒流驱动器深圳市明微电子有限公司SM16130 LED驱动控制电路SM16128 LED驱动控制电路SM16126C 16位恒流LED驱动器SM16126B 16位恒流LED驱动器SM74HC595 LED显示驱动专用集成电路SM8061 高效节能功率因子校正芯片。
Texas Instruments •108 Wild Basin, Suite 350•Austin, TX 78746/stellarisCopyright © 2009–2011 Texas Instruments, Inc. All rights reserved. Stellaris andStellarisWare are registered trademarks of Texas Instruments. ARM and Thumb areregistered trademarks, and Cortex is a trademark of ARM Limited. Other names andbrands may be claimed as the property of others.PB-LM3S9B90EK-05June 29, 2011The Stellaris® LM3S9B90 Ethernet+USB-OTG Evaluation Kit provides a low-cost evaluation platform for the LM3S9B90 ARM® Cortex™-M3-based microcontroller. The kit includes two boards: the EK-LM3S9B90 evaluation board, and the BD-ICDI In-Circuit Debug Interface board.The evaluation board design highlights the LM3S9B90 microcontroller’s10/100 Mbit Ethernet port, full-speed USB-OTG port, In-Circuit Debug Interface (ICDI) board, and easy connection to the GPIO ports.Features The evaluation board uses the LM3S9B90 microcontroller which features a Hibernation module toefficiently power down the device to a low-power state during extended periods of inactivity.The LM3S9B90 microcontroller also features an external 16MHz crystal that provides the main oscillator clock which can directly drive the ARM core clock or an internalPLL to increase the core clock up to 80MHz. A 25MHz crystal is used for the Ethernet clock and a 4.194304MHz crystal is used for the real-time clock. The LM3S9B90 microcontroller also has an internal LDO voltage regulator that supplies power for internal use.The Stellaris LM3S9B90 evaluation board includes the following features: Stellaris LM3S9B90 high-performance microcontroller with large memory –32-bit ARM® Cortex™-M3 core –256KB main Flash memory, 96KB SRAM Ethernet 10/100 port with two LED indicators USB 2.0 Full-Speed OTG port Virtual serial communications port capability Oversized board pads for GPIO access Reset pushbutton and power LED User pushbutton and LEDDetachable In-Circuit Debug Interface (ICDI) board can be used for programming and debugging other Stellaris® boardsKit ContentsThe EK-LM3S9B90 evaluation kit comes with the following:EK-LM3S9B90 Evaluation Board (EVB)BD-ICDI In-Circuit Debug Interface BoardCables–USB cable–10-pin ribbon cable for JTAG–8-pin ribbon cable for power/UART connectionEvaluation Kit CD containing:–Complete documentation–StellarisWare® Peripheral Driver Library andexample source code– A supported evaluation version of one of thefollowing:–Keil™ RealView® MicrocontrollerDevelopment Kit (MDK-ARM)–IAR Embedded Workbench® developmenttools–Sourcery CodeBench development tools –Code Red Technologies Red Suite –Texas Instruments’ Code Composer Studio™ IDEOrdering InformationProductNumber Description EKK-LM3S9B90Stellaris® LM3S9B90 Low-Cost Evaluation Kit for Keil™ RealView® MDK-ARM (32 KB code-size limited)EKI-LM3S9B90Stellaris® LM3S9B90 Low-Cost Evaluation Kit for IAR Systems Embedded Workbench® (32 KB code-size limited)EKC-LM3S9B90Stellaris® LM3S9B90 Low-Cost Evaluation Kit for Sourcery CodeBench(30-day limited)EKT-LM3S9B90Stellaris® LM3S9B90 Low-Cost Evaluation Kit for Code Red Technologies Red Suite (90-day limited)EKS-LM3S9B90Stellaris® LM3S9B90 Low-Cost Evaluation Kit for Code ComposerStudio™ IDE (board-locked)Stellaris®LM3S9B90Ethernet+USB-OTG Evaluation Kit 芯天下--/IMPORTANT NOTICETexas Instruments Incorporated and its subsidiaries(TI)reserve the right to make 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TEXAS INSTRUMENTS-PRODUCTION DATAStellaris®LM3S6965MicrocontrollerDATA SHEETCopyright©2007-2011 DS-LM3S6965-11108CopyrightCopyright©2007-2011Texas Instruments Incorporated All rights reserved.Stellaris®and StellarisWare®are registered trademarks of Texas Instruments Incorporated.ARM and Thumb are registered trademarks and Cortex is a trademark of ARM Limited.Other names and brands may be claimed as the property of others.PRODUCTION DATA information is current as of publication date.Products conform to specifications per the terms of Texas Instruments standard warranty.Production processing does not necessarily include testing of all parameters.Please be aware that an important notice concerning availability,standard warranty,and use in critical applications of Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.Texas Instruments Incorporated108Wild Basin,Suite350Austin,TX78746/stellaris/sc/technical-support/product-information-centers.htmStellaris®LM3S6965MicrocontrollerTable of ContentsRevision History (25)About This Document (31)Audience (31)About This Manual (31)Related Documents (31)Documentation Conventions (32)1Architectural Overview (34)1.1Product Features (34)1.2Target Applications (43)1.3High-Level Block Diagram (43)1.4Functional Overview (45)1.4.1ARM Cortex™-M3 (45)1.4.2Motor Control Peripherals (46)1.4.3Analog Peripherals (47)1.4.4Serial Communications Peripherals (47)1.4.5System Peripherals (49)1.4.6Memory Peripherals (50)1.4.7Additional Features (50)1.4.8Hardware Details (51)2The Cortex-M3Processor (52)2.1Block Diagram (53)2.2Overview (54)2.2.1System-Level Interface (54)2.2.2Integrated Configurable Debug (54)2.2.3Trace Port Interface Unit(TPIU) (55)2.2.4Cortex-M3System Component Details (55)2.3Programming Model (56)2.3.1Processor Mode and Privilege Levels for Software Execution (56)2.3.2Stacks (56)2.3.3Register Map (57)2.3.4Register Descriptions (58)2.3.5Exceptions and Interrupts (71)2.3.6Data Types (71)2.4Memory Model (71)2.4.1Memory Regions,Types and Attributes (73)2.4.2Memory System Ordering of Memory Accesses (73)2.4.3Behavior of Memory Accesses (73)2.4.4Software Ordering of Memory Accesses (74)2.4.5Bit-Banding (75)2.4.6Data Storage (77)2.4.7Synchronization Primitives (78)2.5Exception Model (79)2.5.1Exception States (80)2.5.2Exception Types (80)2.5.3Exception Handlers (83)Table of Contents2.5.4Vector Table (83)2.5.5Exception Priorities (84)2.5.6Interrupt Priority Grouping (85)2.5.7Exception Entry and Return (85)2.6Fault Handling (87)2.6.1Fault Types (88)2.6.2Fault Escalation and Hard Faults (88)2.6.3Fault Status Registers and Fault Address Registers (89)2.6.4Lockup (89)2.7Power Management (89)2.7.1Entering Sleep Modes (90)2.7.2Wake Up from Sleep Mode (90)2.8Instruction Set Summary (91)3Cortex-M3Peripherals (94)3.1Functional Description (94)3.1.1System Timer(SysTick) (94)3.1.2Nested Vectored Interrupt Controller(NVIC) (95)3.1.3System Control Block(SCB) (97)3.1.4Memory Protection Unit(MPU) (97)3.2Register Map (102)3.3System Timer(SysTick)Register Descriptions (104)3.4NVIC Register Descriptions (108)3.5System Control Block(SCB)Register Descriptions (121)3.6Memory Protection Unit(MPU)Register Descriptions (148)4JTAG Interface (158)4.1Block Diagram (159)4.2Signal Description (159)4.3Functional Description (160)4.3.1JTAG Interface Pins (160)4.3.2JTAG TAP Controller (162)4.3.3Shift Registers (163)4.3.4Operational Considerations (163)4.4Initialization and Configuration (166)4.5Register Descriptions (166)4.5.1Instruction Register(IR) (166)4.5.2Data Registers (168)5System Control (171)5.1Signal Description (171)5.2Functional Description (171)5.2.1Device Identification (172)5.2.2Reset Control (172)5.2.3Power Control (176)5.2.4Clock Control (177)5.2.5System Control (182)5.3Initialization and Configuration (183)5.4Register Map (184)5.5Register Descriptions (185)Stellaris®LM3S6965Microcontroller 6Hibernation Module (238)6.1Block Diagram (239)6.2Signal Description (239)6.3Functional Description (240)6.3.1Register Access Timing (240)6.3.2Clock Source (241)6.3.3Battery Management (242)6.3.4Real-Time Clock (242)6.3.5Battery-Backed Memory (243)6.3.6Power Control (243)6.3.7Initiating Hibernate (243)6.3.8Interrupts and Status (244)6.4Initialization and Configuration (244)6.4.1Initialization (244)6.4.2RTC Match Functionality(No Hibernation) (244)6.4.3RTC Match/Wake-Up from Hibernation (245)6.4.4External Wake-Up from Hibernation (245)6.4.5RTC/External Wake-Up from Hibernation (245)6.5Register Map (245)6.6Register Descriptions (246)7Internal Memory (259)7.1Block Diagram (259)7.2Functional Description (259)7.2.1SRAM Memory (259)7.2.2Flash Memory (260)7.3Flash Memory Initialization and Configuration (261)7.3.1Flash Programming (261)7.3.2Nonvolatile Register Programming (262)7.4Register Map (263)7.5Flash Register Descriptions(Flash Control Offset) (264)7.6Flash Register Descriptions(System Control Offset) (272)8General-Purpose Input/Outputs(GPIOs) (285)8.1Signal Description (285)8.2Functional Description (290)8.2.1Data Control (291)8.2.2Interrupt Control (292)8.2.3Mode Control (293)8.2.4Commit Control (293)8.2.5Pad Control (293)8.2.6Identification (294)8.3Initialization and Configuration (294)8.4Register Map (295)8.5Register Descriptions (297)9General-Purpose Timers (332)9.1Block Diagram (333)9.2Signal Description (334)9.3Functional Description (334)9.3.1GPTM Reset Conditions (334)Table of Contents9.3.232-Bit Timer Operating Modes (335)9.3.316-Bit Timer Operating Modes (336)9.4Initialization and Configuration (340)9.4.132-Bit One-Shot/Periodic Timer Mode (340)9.4.232-Bit Real-Time Clock(RTC)Mode (341)9.4.316-Bit One-Shot/Periodic Timer Mode (341)9.4.416-Bit Input Edge Count Mode (342)9.4.516-Bit Input Edge Timing Mode (342)9.4.616-Bit PWM Mode (343)9.5Register Map (343)9.6Register Descriptions (344)10Watchdog Timer (369)10.1Block Diagram (370)10.2Functional Description (370)10.3Initialization and Configuration (371)10.4Register Map (371)10.5Register Descriptions (372)11Analog-to-Digital Converter(ADC) (393)11.1Block Diagram (393)11.2Signal Description (394)11.3Functional Description (395)11.3.1Sample Sequencers (395)11.3.2Module Control (396)11.3.3Hardware Sample Averaging Circuit (396)11.3.4Analog-to-Digital Converter (397)11.3.5Differential Sampling (397)11.3.6Test Modes (399)11.3.7Internal Temperature Sensor (399)11.4Initialization and Configuration (400)11.4.1Module Initialization (400)11.4.2Sample Sequencer Configuration (400)11.5Register Map (401)11.6Register Descriptions (402)12Universal Asynchronous Receivers/Transmitters(UARTs) (430)12.1Block Diagram (431)12.2Signal Description (431)12.3Functional Description (432)12.3.1Transmit/Receive Logic (432)12.3.2Baud-Rate Generation (433)12.3.3Data Transmission (433)12.3.4Serial IR(SIR) (434)12.3.5FIFO Operation (435)12.3.6Interrupts (435)12.3.7Loopback Operation (436)12.3.8IrDA SIR block (437)12.4Initialization and Configuration (437)12.5Register Map (438)12.6Register Descriptions (439)Stellaris®LM3S6965Microcontroller 13Synchronous Serial Interface(SSI) (473)13.1Block Diagram (473)13.2Signal Description (473)13.3Functional Description (474)13.3.1Bit Rate Generation (474)13.3.2FIFO Operation (475)13.3.3Interrupts (475)13.3.4Frame Formats (475)13.4Initialization and Configuration (483)13.5Register Map (484)13.6Register Descriptions (485)14Inter-Integrated Circuit(I2C)Interface (511)14.1Block Diagram (512)14.2Signal Description (512)14.3Functional Description (513)14.3.1I2C Bus Functional Overview (513)14.3.2Available Speed Modes (515)14.3.3Interrupts (516)14.3.4Loopback Operation (517)14.3.5Command Sequence Flow Charts (517)14.4Initialization and Configuration (524)14.5Register Map (525)14.6Register Descriptions(I2C Master) (526)14.7Register Descriptions(I2C Slave) (539)15Ethernet Controller (548)15.1Block Diagram (548)15.2Signal Description (549)15.3Functional Description (551)15.3.1MAC Operation (551)15.3.2Internal MII Operation (554)15.3.3PHY Operation (554)15.3.4Interrupts (555)15.4Initialization and Configuration (556)15.4.1Hardware Configuration (556)15.4.2Software Configuration (557)15.5Ethernet Register Map (558)15.6Ethernet MAC Register Descriptions (559)15.7MII Management Register Descriptions (577)16Analog Comparators (596)16.1Block Diagram (597)16.2Signal Description (597)16.3Functional Description (598)16.3.1Internal Reference Programming (598)16.4Initialization and Configuration (599)16.5Register Map (600)16.6Register Descriptions (600)Table of Contents17Pulse Width Modulator(PWM) (608)17.1Block Diagram (609)17.2Signal Description (610)17.3Functional Description (611)17.3.1PWM Timer (611)17.3.2PWM Comparators (611)17.3.3PWM Signal Generator (612)17.3.4Dead-Band Generator (613)17.3.5Interrupt/ADC-Trigger Selector (613)17.3.6Synchronization Methods (614)17.3.7Fault Conditions (614)17.3.8Output Control Block (614)17.4Initialization and Configuration (614)17.5Register Map (615)17.6Register Descriptions (617)18Quadrature Encoder Interface(QEI) (647)18.1Block Diagram (647)18.2Signal Description (648)18.3Functional Description (649)18.4Initialization and Configuration (651)18.5Register Map (651)18.6Register Descriptions (652)19Pin Diagram (665)20Signal Tables (667)20.1100-Pin LQFP Package Pin Tables (667)20.2108-Ball BGA Package Pin Tables (680)20.3Connections for Unused Signals (694)21Operating Characteristics (697)22Electrical Characteristics (698)22.1DC Characteristics (698)22.1.1Maximum Ratings (698)22.1.2Recommended DC Operating Conditions (698)22.1.3On-Chip Low Drop-Out(LDO)Regulator Characteristics (699)22.1.4GPIO Module Characteristics (699)22.1.5Power Specifications (699)22.1.6Flash Memory Characteristics (701)22.1.7Hibernation (701)22.1.8Ethernet Controller (701)22.2AC Characteristics (701)22.2.1Load Conditions (701)22.2.2Clocks (702)22.2.3JTAG and Boundary Scan (703)22.2.4Reset (705)22.2.5Sleep Modes (707)22.2.6Hibernation Module (707)22.2.7General-Purpose I/O(GPIO) (708)22.2.8Analog-to-Digital Converter (708)Stellaris®LM3S6965Microcontroller 22.2.9Synchronous Serial Interface(SSI) (709)22.2.10Inter-Integrated Circuit(I2C)Interface (711)22.2.11Ethernet Controller (712)22.2.12Analog Comparator (715)A Serial Flash Loader (716)A.1Serial Flash Loader (716)A.2Interfaces (716)A.2.1UART (716)A.2.2SSI (716)A.3Packet Handling (717)A.3.1Packet Format (717)A.3.2Sending Packets (717)A.3.3Receiving Packets (717)A.4Commands (718)A.4.1COMMAND_PING(0X20) (718)A.4.2COMMAND_GET_STATUS(0x23) (718)A.4.3COMMAND_DOWNLOAD(0x21) (718)A.4.4COMMAND_SEND_DATA(0x24) (719)A.4.5COMMAND_RUN(0x22) (719)A.4.6COMMAND_RESET(0x25) (719)B Register Quick Reference (721)C Ordering and Contact Information (745)C.1Ordering Information (745)C.2Part Markings (745)C.3Kits (746)C.4Support Information (746)D Package Information (747)D.1100-Pin LQFP Package (747)D.1.1Package Dimensions (747)D.1.2Tray Dimensions (749)D.1.3Tape and Reel Dimensions (749)D.2108-Ball BGA Package (751)D.2.1Package Dimensions (751)D.2.2Tray Dimensions (753)D.2.3Tape and Reel Dimensions (754)Table of ContentsList of FiguresFigure1-1.Stellaris LM3S6965Microcontroller High-Level Block Diagram (44)Figure2-1.CPU Block Diagram (54)Figure2-2.TPIU Block Diagram (55)Figure2-3.Cortex-M3Register Set (57)Figure2-4.Bit-Band Mapping (77)Figure2-5.Data Storage (78)Figure2-6.Vector Table (84)Figure2-7.Exception Stack Frame (86)Figure3-1.SRD Use Example (100)Figure4-1.JTAG Module Block Diagram (159)Figure4-2.Test Access Port State Machine (163)Figure4-3.IDCODE Register Format (169)Figure4-4.BYPASS Register Format (169)Figure4-5.Boundary Scan Register Format (170)Figure5-1.Basic RST Configuration (173)Figure5-2.External Circuitry to Extend Power-On Reset (174)Figure5-3.Reset Circuit Controlled by Switch (174)Figure5-4.Power Architecture (177)Figure5-5.Main Clock Tree (179)Figure6-1.Hibernation Module Block Diagram (239)Figure6-2.Clock Source Using Crystal (241)Figure6-3.Clock Source Using Dedicated Oscillator (242)Figure7-1.Flash Block Diagram (259)Figure8-1.GPIO Port Block Diagram (291)Figure8-2.GPIODATA Write Example (292)Figure8-3.GPIODATA Read Example (292)Figure9-1.GPTM Module Block Diagram (333)Figure9-2.16-Bit Input Edge Count Mode Example (338)Figure9-3.16-Bit Input Edge Time Mode Example (339)Figure9-4.16-Bit PWM Mode Example (340)Figure10-1.WDT Module Block Diagram (370)Figure11-1.ADC Module Block Diagram (394)Figure11-2.Differential Sampling Range,V IN_ODD=1.5V (398)Figure11-3.Differential Sampling Range,V IN_ODD=0.75V (398)Figure11-4.Differential Sampling Range,V IN_ODD=2.25V (399)Figure11-5.Internal Temperature Sensor Characteristic (400)Figure12-1.UART Module Block Diagram (431)Figure12-2.UART Character Frame (433)Figure12-3.IrDA Data Modulation (435)Figure13-1.SSI Module Block Diagram (473)Figure13-2.TI Synchronous Serial Frame Format(Single Transfer) (476)Figure13-3.TI Synchronous Serial Frame Format(Continuous Transfer) (477)Figure13-4.Freescale SPI Format(Single Transfer)with SPO=0and SPH=0 (477)Figure13-5.Freescale SPI Format(Continuous Transfer)with SPO=0and SPH=0 (478)Figure13-6.Freescale SPI Frame Format with SPO=0and SPH=1 (479)Figure13-7.Freescale SPI Frame Format(Single Transfer)with SPO=1and SPH=0 (479)Figure13-8.Freescale SPI Frame Format(Continuous Transfer)with SPO=1and SPH=0 (480)Figure13-9.Freescale SPI Frame Format with SPO=1and SPH=1 (481)Figure13-10.MICROWIRE Frame Format(Single Frame) (481)Figure13-11.MICROWIRE Frame Format(Continuous Transfer) (482)Figure13-12.MICROWIRE Frame Format,SSIFss Input Setup and Hold Requirements (483)Figure14-1.I2C Block Diagram (512)Figure14-2.I2C Bus Configuration (513)Figure14-3.START and STOP Conditions (513)plete Data Transfer with a7-Bit Address (514)Figure14-5.R/S Bit in First Byte (514)Figure14-6.Data Validity During Bit Transfer on the I2C Bus (514)Figure14-7.Master Single SEND (518)Figure14-8.Master Single RECEIVE (519)Figure14-9.Master Burst SEND (520)Figure14-10.Master Burst RECEIVE (521)Figure14-11.Master Burst RECEIVE after Burst SEND (522)Figure14-12.Master Burst SEND after Burst RECEIVE (523)Figure14-13.Slave Command Sequence (524)Figure15-1.Ethernet Controller (549)Figure15-2.Ethernet Controller Block Diagram (549)Figure15-3.Ethernet Frame (551)Figure15-4.Interface to an Ethernet Jack (557)Figure16-1.Analog Comparator Module Block Diagram (597)Figure16-2.Structure of Comparator Unit (598)parator Internal Reference Structure (599)Figure17-1.PWM Unit Diagram (609)Figure17-2.PWM Module Block Diagram (610)Figure17-3.PWM Count-Down Mode (612)Figure17-4.PWM Count-Up/Down Mode (612)Figure17-5.PWM Generation Example In Count-Up/Down Mode (613)Figure17-6.PWM Dead-Band Generator (613)Figure18-1.QEI Block Diagram (648)Figure18-2.Quadrature Encoder and Velocity Predivider Operation (650)Figure19-1.100-Pin LQFP Package Pin Diagram (665)Figure19-2.108-Ball BGA Package Pin Diagram(Top View) (666)Figure22-1.Load Conditions (702)Figure22-2.JTAG Test Clock Input Timing (704)Figure22-3.JTAG Test Access Port(TAP)Timing (705)Figure22-4.JTAG TRST Timing (705)Figure22-5.External Reset Timing(RST) (706)Figure22-6.Power-On Reset Timing (706)Figure22-7.Brown-Out Reset Timing (706)Figure22-8.Software Reset Timing (706)Figure22-9.Watchdog Reset Timing (707)Figure22-10.Hibernation Module Timing (708)Figure22-11.ADC Input Equivalency Diagram (709)Figure22-12.SSI Timing for TI Frame Format(FRF=01),Single Transfer TimingMeasurement (710)Figure22-13.SSI Timing for MICROWIRE Frame Format(FRF=10),Single Transfer (710)Figure22-14.SSI Timing for SPI Frame Format(FRF=00),with SPH=1 (711)Figure22-15.I2C Timing (712)Figure22-16.External XTLP Oscillator Characteristics (714)Figure D-1.Stellaris LM3S6965100-Pin LQFP Package Dimensions (747)Figure D-2.100-Pin LQFP Tray Dimensions (749)Figure D-3.100-Pin LQFP Tape and Reel Dimensions (750)Figure D-4.Stellaris LM3S6965108-Ball BGA Package Dimensions (751)Figure D-5.108-Ball BGA Tray Dimensions (753)Figure D-6.108-Ball BGA Tape and Reel Dimensions (754)List of TablesTable1.Revision History (25)Table2.Documentation Conventions (32)Table2-1.Summary of Processor Mode,Privilege Level,and Stack Use (57)Table2-2.Processor Register Map (58)Table2-3.PSR Register Combinations (63)Table2-4.Memory Map (71)Table2-5.Memory Access Behavior (73)Table2-6.SRAM Memory Bit-Banding Regions (76)Table2-7.Peripheral Memory Bit-Banding Regions (76)Table2-8.Exception Types (81)Table2-9.Interrupts (82)Table2-10.Exception Return Behavior (87)Table2-11.Faults (88)Table2-12.Fault Status and Fault Address Registers (89)Table2-13.Cortex-M3Instruction Summary (91)Table3-1.Core Peripheral Register Regions (94)Table3-2.Memory Attributes Summary (97)Table3-3.TEX,S,C,and B Bit Field Encoding (100)Table3-4.Cache Policy for Memory Attribute Encoding (101)Table3-5.AP Bit Field Encoding (101)Table3-6.Memory Region Attributes for Stellaris Microcontrollers (101)Table3-7.Peripherals Register Map (102)Table3-8.Interrupt Priority Levels (127)Table3-9.Example SIZE Field Values (155)Table4-1.JTAG_SWD_SWO Signals(100LQFP) (159)Table4-2.JTAG_SWD_SWO Signals(108BGA) (160)Table4-3.JTAG Port Pins Reset State (160)Table4-4.JTAG Instruction Register Commands (166)Table5-1.System Control&Clocks Signals(100LQFP) (171)Table5-2.System Control&Clocks Signals(108BGA) (171)Table5-3.Reset Sources (172)Table5-4.Clock Source Options (178)Table5-5.Possible System Clock Frequencies Using the SYSDIV Field (180)Table5-6.Examples of Possible System Clock Frequencies Using the SYSDIV2Field (180)Table5-7.System Control Register Map (184)Table5-8.RCC2Fields that Override RCC fields (199)Table6-1.Hibernate Signals(100LQFP) (239)Table6-2.Hibernate Signals(108BGA) (240)Table6-3.Hibernation Module Register Map (246)Table7-1.Flash Protection Policy Combinations (260)er-Programmable Flash Memory Resident Registers (263)Table7-3.Flash Register Map (263)Table8-1.GPIO Pins With Non-Zero Reset Values (286)Table8-2.GPIO Pins and Alternate Functions(100LQFP) (286)Table8-3.GPIO Pins and Alternate Functions(108BGA) (287)Table8-4.GPIO Signals(100LQFP) (288)Table8-5.GPIO Signals(108BGA) (289)Table8-6.GPIO Pad Configuration Examples (294)Table8-7.GPIO Interrupt Configuration Example (294)Table8-8.GPIO Register Map (296)Table9-1.Available CCP Pins (333)Table9-2.General-Purpose Timers Signals(100LQFP) (334)Table9-3.General-Purpose Timers Signals(108BGA) (334)Table9-4.16-Bit Timer With Prescaler Configurations (336)Table9-5.Timers Register Map (343)Table10-1.Watchdog Timer Register Map (371)Table11-1.ADC Signals(100LQFP) (394)Table11-2.ADC Signals(108BGA) (394)Table11-3.Samples and FIFO Depth of Sequencers (395)Table11-4.Differential Sampling Pairs (397)Table11-5.ADC Register Map (401)Table12-1.UART Signals(100LQFP) (431)Table12-2.UART Signals(108BGA) (432)Table12-3.UART Register Map (438)Table13-1.SSI Signals(100LQFP) (474)Table13-2.SSI Signals(108BGA) (474)Table13-3.SSI Register Map (484)Table14-1.I2C Signals(100LQFP) (512)Table14-2.I2C Signals(108BGA) (512)Table14-3.Examples of I2C Master Timer Period versus Speed Mode (515)Table14-4.Inter-Integrated Circuit(I2C)Interface Register Map (525)Table14-5.Write Field Decoding for I2CMCS[3:0]Field(Sheet1of3) (530)Table15-1.Ethernet Signals(100LQFP) (550)Table15-2.Ethernet Signals(108BGA) (550)Table15-3.TX&RX FIFO Organization (553)Table15-4.Ethernet Register Map (558)Table16-1.Analog Comparators Signals(100LQFP) (597)Table16-2.Analog Comparators Signals(108BGA) (597)Table16-3.Internal Reference Voltage and ACREFCTL Field Values (599)Table16-4.Analog Comparators Register Map (600)Table17-1.PWM Signals(100LQFP) (610)Table17-2.PWM Signals(108BGA) (610)Table17-3.PWM Register Map (616)Table18-1.QEI Signals(100LQFP) (648)Table18-2.QEI Signals(108BGA) (648)Table18-3.QEI Register Map (652)Table20-1.Signals by Pin Number (667)Table20-2.Signals by Signal Name (671)Table20-3.Signals by Function,Except for GPIO (675)Table20-4.GPIO Pins and Alternate Functions (679)Table20-5.Signals by Pin Number (680)Table20-6.Signals by Signal Name (685)Table20-7.Signals by Function,Except for GPIO (689)Table20-8.GPIO Pins and Alternate Functions (693)Table20-9.Connections for Unused Signals(100-pin LQFP) (694)Table20-10.Connections for Unused Signals,108-pin BGA (695)Table21-1.Temperature Characteristics (697)Table21-2.Thermal Characteristics (697)Table21-3.ESD Absolute Maximum Ratings (697)Table22-1.Maximum Ratings (698)Table22-2.Recommended DC Operating Conditions (698)Table22-3.LDO Regulator Characteristics (699)Table22-4.GPIO Module DC Characteristics (699)Table22-5.Detailed Power Specifications (700)Table22-6.Flash Memory Characteristics (701)Table22-7.Hibernation Module DC Characteristics (701)Table22-8.Ethernet Controller DC Characteristics (701)Table22-9.Phase Locked Loop(PLL)Characteristics (702)Table22-10.Actual PLL Frequency (702)Table22-11.Clock Characteristics (702)Table22-12.Crystal Characteristics (703)Table22-13.System Clock Characteristics with ADC Operation (703)Table22-14.JTAG Characteristics (703)Table22-15.Reset Characteristics (705)Table22-16.Sleep Modes AC Characteristics (707)Table22-17.Hibernation Module AC Characteristics (707)Table22-18.GPIO Characteristics (708)Table22-19.ADC Characteristics (708)Table22-20.ADC Module Internal Reference Characteristics (709)Table22-21.SSI Characteristics (709)Table22-22.I2C Characteristics (711)Table22-23.100BASE-TX Transmitter Characteristics (712)Table22-24.100BASE-TX Transmitter Characteristics(informative) (712)Table22-25.100BASE-TX Receiver Characteristics (712)Table22-26.10BASE-T Transmitter Characteristics (712)Table22-27.10BASE-T Transmitter Characteristics(informative) (713)Table22-28.10BASE-T Receiver Characteristics (713)Table22-29.Isolation Transformers (713)Table22-30.Ethernet Reference Crystal (713)Table22-31.External XTLP Oscillator Characteristics (714)Table22-32.Analog Comparator Characteristics (715)Table22-33.Analog Comparator Voltage Reference Characteristics (715)Table C-1.Part Ordering Information (745)List of RegistersThe Cortex-M3Processor (52)Register1:Cortex General-Purpose Register0(R0) (59)Register2:Cortex General-Purpose Register1(R1) (59)Register3:Cortex General-Purpose Register2(R2) (59)Register4:Cortex General-Purpose Register3(R3) (59)Register5:Cortex General-Purpose Register4(R4) (59)Register6:Cortex General-Purpose Register5(R5) (59)Register7:Cortex General-Purpose Register6(R6) (59)Register8:Cortex General-Purpose Register7(R7) (59)Register9:Cortex General-Purpose Register8(R8) (59)Register10:Cortex General-Purpose Register9(R9) (59)Register11:Cortex General-Purpose Register10(R10) (59)Register12:Cortex General-Purpose Register11(R11) (59)Register13:Cortex General-Purpose Register12(R12) (59)Register14:Stack Pointer(SP) (60)Register15:Link Register(LR) (61)Register16:Program Counter(PC) (62)Register17:Program Status Register(PSR) (63)Register18:Priority Mask Register(PRIMASK) (67)Register19:Fault Mask Register(FAULTMASK) (68)Register20:Base Priority Mask Register(BASEPRI) (69)Register21:Control Register(CONTROL) (70)Cortex-M3Peripherals (94)Register1:SysTick Control and Status Register(STCTRL),offset0x010 (105)Register2:SysTick Reload Value Register(STRELOAD),offset0x014 (107)Register3:SysTick Current Value Register(STCURRENT),offset0x018 (108)Register4:Interrupt0-31Set Enable(EN0),offset0x100 (109)Register5:Interrupt32-43Set Enable(EN1),offset0x104 (110)Register6:Interrupt0-31Clear Enable(DIS0),offset0x180 (111)Register7:Interrupt32-43Clear Enable(DIS1),offset0x184 (112)Register8:Interrupt0-31Set Pending(PEND0),offset0x200 (113)Register9:Interrupt32-43Set Pending(PEND1),offset0x204 (114)Register10:Interrupt0-31Clear Pending(UNPEND0),offset0x280 (115)Register11:Interrupt32-43Clear Pending(UNPEND1),offset0x284 (116)Register12:Interrupt0-31Active Bit(ACTIVE0),offset0x300 (117)Register13:Interrupt32-43Active Bit(ACTIVE1),offset0x304 (118)Register14:Interrupt0-3Priority(PRI0),offset0x400 (119)Register15:Interrupt4-7Priority(PRI1),offset0x404 (119)Register16:Interrupt8-11Priority(PRI2),offset0x408 (119)Register17:Interrupt12-15Priority(PRI3),offset0x40C (119)Register18:Interrupt16-19Priority(PRI4),offset0x410 (119)Register19:Interrupt20-23Priority(PRI5),offset0x414 (119)Register20:Interrupt24-27Priority(PRI6),offset0x418 (119)Register21:Interrupt28-31Priority(PRI7),offset0x41C (119)Register22:Interrupt32-35Priority(PRI8),offset0x420 (119)Register23:Interrupt36-39Priority(PRI9),offset0x424 (119)Register24:Interrupt40-43Priority(PRI10),offset0x428 (119)Register25:Software Trigger Interrupt(SWTRIG),offset0xF00 (121)Register26:CPU ID Base(CPUID),offset0xD00 (122)Register27:Interrupt Control and State(INTCTRL),offset0xD04 (123)Register28:Vector Table Offset(VTABLE),offset0xD08 (126)Register29:Application Interrupt and Reset Control(APINT),offset0xD0C (127)Register30:System Control(SYSCTRL),offset0xD10 (129)Register31:Configuration and Control(CFGCTRL),offset0xD14 (131)Register32:System Handler Priority1(SYSPRI1),offset0xD18 (133)Register33:System Handler Priority2(SYSPRI2),offset0xD1C (134)Register34:System Handler Priority3(SYSPRI3),offset0xD20 (135)Register35:System Handler Control and State(SYSHNDCTRL),offset0xD24 (136)Register36:Configurable Fault Status(FAULTSTAT),offset0xD28 (140)Register37:Hard Fault Status(HFAULTSTAT),offset0xD2C (146)Register38:Memory Management Fault Address(MMADDR),offset0xD34 (147)Register39:Bus Fault Address(FAULTADDR),offset0xD38 (148)Register40:MPU Type(MPUTYPE),offset0xD90 (149)Register41:MPU Control(MPUCTRL),offset0xD94 (150)Register42:MPU Region Number(MPUNUMBER),offset0xD98 (152)Register43:MPU Region Base Address(MPUBASE),offset0xD9C (153)Register44:MPU Region Base Address Alias1(MPUBASE1),offset0xDA4 (153)Register45:MPU Region Base Address Alias2(MPUBASE2),offset0xDAC (153)Register46:MPU Region Base Address Alias3(MPUBASE3),offset0xDB4 (153)Register47:MPU Region Attribute and Size(MPUATTR),offset0xDA0 (155)Register48:MPU Region Attribute and Size Alias1(MPUATTR1),offset0xDA8 (155)Register49:MPU Region Attribute and Size Alias2(MPUATTR2),offset0xDB0 (155)Register50:MPU Region Attribute and Size Alias3(MPUATTR3),offset0xDB8 (155)System Control (171)Register1:Device Identification0(DID0),offset0x000 (186)Register2:Brown-Out Reset Control(PBORCTL),offset0x030 (188)Register3:LDO Power Control(LDOPCTL),offset0x034 (189)Register4:Raw Interrupt Status(RIS),offset0x050 (190)Register5:Interrupt Mask Control(IMC),offset0x054 (191)Register6:Masked Interrupt Status and Clear(MISC),offset0x058 (192)Register7:Reset Cause(RESC),offset0x05C (193)Register8:Run-Mode Clock Configuration(RCC),offset0x060 (194)Register9:XTAL to PLL Translation(PLLCFG),offset0x064 (198)Register10:Run-Mode Clock Configuration2(RCC2),offset0x070 (199)Register11:Deep Sleep Clock Configuration(DSLPCLKCFG),offset0x144 (201)Register12:Device Identification1(DID1),offset0x004 (202)Register13:Device Capabilities0(DC0),offset0x008 (204)Register14:Device Capabilities1(DC1),offset0x010 (205)Register15:Device Capabilities2(DC2),offset0x014 (207)Register16:Device Capabilities3(DC3),offset0x018 (209)Register17:Device Capabilities4(DC4),offset0x01C (211)Register18:Run Mode Clock Gating Control Register0(RCGC0),offset0x100 (213)Register19:Sleep Mode Clock Gating Control Register0(SCGC0),offset0x110 (215)。