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Amplifier and Data Converter Selection Guide (Rev. B

Amplifier and Data Converter Selection Guide (Rev. B

Amplifier and Data Converter Selection Guide (Rev. B

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112➔Design <strong>and</strong> Evaluation Tools<strong>Amplifier</strong> <strong>and</strong> Signal Processing Application ReportsTitleSwitch ModeConditioning a Switch-Mode Power Supply Current SignalPWM Power Driver Modulation SchemesTransimpedanceComparison of Noise Performance of FET TransimpedanceUsing TI Op Amps for FilteringGetting the Full Potential from your ADCFilterPro MFB <strong>and</strong> Sallen-Key Low-Pass Filter Design Program (<strong>Rev</strong>. A)Analysis of the Sallen-Key Architecture (<strong>Rev</strong>. B)Active Low-Pass Filter Design (<strong>Rev</strong>. A)Using the Texas Instruments Filter Design <strong>Data</strong>baseFilter Design on a BudgetFilter Design in Thirty SecondsMore Filter Design on a BudgetActive filters using current-feedback amplifiersVideo AmpsMeasuring Differential Gain <strong>and</strong> PhaseVideo Designs Using High-Speed <strong>Amplifier</strong>sVideo Operational <strong>Amplifier</strong>Analog Monitor <strong>and</strong> Control CircuitryAMC7820REF: A Reference Design for DWDM Pump LasersUsing a SAR ADC for Current Measurement in Motor Control ApplicationsChoosing an Optocoupler for the ADS1202 Operating in Mode 1Combining ADS1202 with FPGA Digital Filter for Current Measurement inMotor Control ApplicationsInterfacing the ADS1202 Modulator w/a Pulse Transformer in Galvanically IsolatedClock Divider Circuit for the ADS1202 in Mode 3 OperationDesigning with the THS1206 High-Speed <strong>Data</strong> <strong>Converter</strong>Resetting Non-FIFO Variations of the 10-bit THS10064Resetting Non-FIFO Variations of the 12-bit THS1206Software Control of the ADS8364Interfacing the ADS8361 to the TMS320VC5416 DSPInterfacing the ADS8364 to the TMS320F2812 DSPInterfacing the ADS8361 to the TMS320C6711 DSPInterfacing the ADS8361 to the TMS320F2812 DSPUsing the ADS1202 Reference DesignUsing the ADS7869 Reference Design Evaluation ModuleAnalog-to-Digital <strong>Converter</strong>sTips for Using the ADS78xx Family of ADCsProgramming Tricks for Higher Conversion Speeds Utilizing DS <strong>Converter</strong>sGiving Delta-Sigma <strong>Converter</strong>s a Gain Boost with a Front-End Analog Gain StageADS7809 Tag FeaturesVoltage Reference Scaling Techniques Increase <strong>Converter</strong> <strong>and</strong> Resolution AccuracyDEM-ADS1210/11 Demo Board Tricks Evaluate ADS1211 Multiplexer Switch ResponseInterfacing the ADS1210 with an 8x C51 MicrocontrollerAccessing the ADS1210 Demo Board with Your PCOverdriving the Inputs To The ADS1210, ADS1211, ADS1212, <strong>and</strong> ADS1213Synchronization of External Analog Multiplexers with Delta-Sigma ADCsShort Cycling the 8-Pin ADS78xx FamilyRemove the DC Portion of Signals with the ADS7817<strong>Guide</strong> for Delta-Sigma <strong>Converter</strong>s: ADS1210, ADS1211, ADS1212, ADS1213How to Get 23 bits of Effective Resolution from Your 24-bit <strong>Converter</strong>Interfacing the ADS7822 to Syn. Serial Port of the 80x51 MicrocontrollerUsing the Continuous Parallel Mode with the ADS7824 <strong>and</strong> ADS7825Customizing the DDC112 Evaluation FixtureADS121x ADC Applications PrimerUnderst<strong>and</strong>ing The DDC112’s Continuous <strong>and</strong> Non-Continuous ModesThe DDC112's Test ModeRetrieving <strong>Data</strong> from the DDC112Using External Integration Capacitors on the DDC112Lit No.SLOA044SLOA092SBOA034SBAA069SBFA001SLOA024SLOA049SLOA062SLOA065SLOA093SLOA096SLYT081SLOA040SLOA057SBOA069SBAA072SBAA081SBAA088SBAA096SBAA105SLAA094SLAA144SLAA145SLAA155SLAA162SLAA163SLAA164SLAA167SLAA186SLAA231SBAA003SBAA005SBAA006SBAA007SBAA008SBAA009SBAA010SBAA011SBAA012SBAA013SBAA014SBAA015SBAA016SBAA017SBAA018SBAA019SBAA021SBAA022SBAA024SBAA025SBAA026SBAA027TitleLit No.Analog-to-Digital <strong>Converter</strong>s (continued)Multi-DDC112 DUT Board for the DDC112 Evaluation FixtureSBAA029New Software For The DDC112 Evaluation FixtureSBAA030Using the ADS1201 Evaluation BoardSBAA031Creating a Bipolar Input Range for the DDC112SBAA034DDC112UK DEMO BOARDSBAA038Comparing the ADS1201 to the CS5321SBAA039Improved 60Hz Performance for ADS1211SBAA040Interfacing the ADS7870 <strong>and</strong> the MC68HC11E9 Analog to µcomputer Made Easy SBAA041Coding Schemes used with <strong>Data</strong> <strong>Converter</strong>sSBAA042CDAC Architecture gives ADC574 Pinout/Sampling, Low Power, New Input Ranges SBAA043Using the ADS7800 12-bit ADC with Unipolar Input SignalsSBAA044Complete Temp <strong>Data</strong> Acquisition System from a Single +5V SupplySBAA050A Clarification of Use of High-Speed S/H to Improve Sampling ADC Performance SBAA053Measuring Temperature with the ADS1216, ADS1217, or ADS1218SBAA073The Offset DACSBAA077Underst<strong>and</strong>ing the ADS1252 Input CircuitrySBAA082ADS1240, 1241 App-Note: Accessing the Onboard Temp Diode in the ADS1240 / ADS1241 SBAA083Overclocking the ADS1240 <strong>and</strong> ADS1241SBAA084Underst<strong>and</strong>ing the ADS1251, ADS1253, <strong>and</strong> ADS1254 Input CircuitrySBAA086Calibration Routines <strong>and</strong> Register Value Generation for the ADS121x SeriesSBAA099A Spreadsheet for Calculating the Frequency Response of the ADS1250-54SBAA103Using Ceramic Resonators with the ADS1255/6SBAA104ADC Gain Calibration - Extending the ADC Input RangeSBAA107ADS5500, OPA695: PC Board Layout for Low Drivers Distortion High-Speed ADC SBAA113<strong>Data</strong> Capture with Multiple ADS1244 or ADS1245 Devices in ParallelSBAA116<strong>Data</strong> <strong>Converter</strong>s for Industrial Power MeasurementsSBAA117LVDS Outputs on the ADS527xSBAA118Using the ADSDeSer-50EVM to Deserialize ADS527x 10-Bit OutputsSBAA119Interfacing the ADS1241 to the MSP430F449SBAA121Reading <strong>Data</strong> from the ADS7862SBAA138Synchronizing the ADS1271SBAS355Solder Pad Recommendations for Surface-Mount Devices (<strong>Rev</strong>. A)SBFA015Interfacing High-Speed LVDS Outputs of the ADS527x/ADS524xSBOA104Using TI FIFOs to Interface High-Speed <strong>Data</strong> <strong>Converter</strong>s with TI TMS320 DSPs SDMA003Interfacing the TLV1549 10-bit Serial-Out ADC to Popular 3.3-V Microcontrollers SLAA005Microcontroller Based <strong>Data</strong> Acquisition Using the TLC2543 12-Bit Serial Out ADC SLAA012Interfacing the TLC2543 ADC to the TMS320C25 DSPSLAA017Signal Acquisition <strong>and</strong> Conditioning with Low Supply VoltagesSLAA018Interfacing the TLV1544/1548 ADC to Digital ProcessorsSLAA022Interfacing the TLV1544 ADC to the TMS320C50 DSPSLAA025Interfacing the TLV1572 ADC to the TMS320C203 DSPSLAA026Interfacing the TLV1544 Analog-to-Digital <strong>Converter</strong> to the TMS320C203 DSPSLAA028Low-Power Signal Conditioning For A Pressure SensorSLAA034Switched-Capacitor ADC Analog Input CalculationsSLAA036Interfacing the TLV1562 Parallel ADC to the TMS320C54x DSPSLAA040Choosing an ADC <strong>and</strong> Op Amp for Minimum OffsetSLAA064Interfacing the TLV1571/78 ADC to the TMS320C542 DSPSLAA077Interfacing the MSP430x11x(1) <strong>and</strong> TLV0831SLAA092Interfacing the TLV2544/TLV2548 ADC to the TMS320C5402 DSPSLAA093Using the TMS320C5402 DMA Channels to Read From the TLV2548SLAA095Using the TMS320C5402 DMA Channels to Read from the TLV1570 ADCSLAA097Interfacing the TMS320C5402 DSP to the TLV2541 ADC <strong>and</strong> the TLV5636 DACSLAA098Interfacing the TLV2544/TLV2548 ADC to the TMS320C31 DSPSLAA101Interfacing the ADS7822 to the TMS3420C5402 DSPSLAA107SPI-Based <strong>Data</strong> Acquisition/Monitor Using the TLC2551 Serial ADCSLAA108Interfacing the TLV2541 ADC <strong>and</strong> the TLV5618A DAC to the TMS320C31 DSPSLAA111Interfacing the MSP430 <strong>and</strong> TLC549/1549 ADCsSLAA112Interfacing the ADS8320 ADC to the TMS320C5402 DSPSLAA118Implementing a Direct Thermocouple Interface with MSP430x4xx <strong>and</strong> ADS1240 SLAA125<strong>Amplifier</strong> <strong>and</strong> <strong>Data</strong> <strong>Converter</strong> <strong>Selection</strong> <strong>Guide</strong> Texas Instruments 3Q 2007

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