非常见问题解答

可以吸收和提供正负电流和电压的电源。
虽然简单电压转换器可以从输入电压生成固定的输出电压,但在某些应用中,这种特性是不够的。一个例子是控制与电容相连的电压节点,...
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非常见问题第182期:控制LED驱动器的EMI
OCT 2020

非常见问题第181期:使用标准稳压器产生极低电压
SEP 2020
学生专区
学子专区——2020年11月 ADALM2000实验:零增益放大器(BJT)
欢迎大家。如果您是一名电气工程专业学生或对模拟电子技术感兴趣的应届毕业生,只需单击或双击即可查看文章、教程和大量其它有用资源。

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过往期刊
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UART: A Hardware Communication Protocol Understanding Universal Asynchronous Receiver/TransmitterThe Interleaved Inverting Charge Pump—Part 2: Implementation and ResultsAutomotive USB 2.0 and a 5 V, Type-C Solution for Charging and Robust Data Line Protection交错式反相电荷泵——第一部分:用于低噪声负电压电源的新拓扑结构多参数生命体征监测比以往任何时候都更容易RF IC放大器在Keysight Genesys和SystemVue中非线性仿真自动驾驶系统设计中的LIDAR:用于目标分类?还是目标检测?低压电池监控器进入高压电动汽车隔离式栅极驱动器的峰值电流卷 54, 3
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即使电池单元老化,也能最大化汽车电池包的运行时间利用采样保持放大器和RF ADC从根本上扩展带宽以突破X波段频率开发超低功耗系统时选择合适微控制器的策略如何选择散热性能良好的高功率可扩展式POL调节器并节省电路板空间Pin-Compatible, High Input Impedance ADC Family Enables Ease of Drive and Broadens ADC Driver Selection为应用选择最合适的MEMS加速度计——第二部分为应用选择最合适的MEMS加速度计——第一部分高精密电压源A Look at the New ANSI/ESDA/JEDEC JS-002 CDM Test Standard卷 51, 3
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Considering Multipliers (Part 1) [The Wit and Wisdom of Dr. Leif—7]Maintaining Public Railways with Lower Cost and Improved SafetyLinear Variable Differential TransformersImpedance Measurement Monitors Blood CoagulationFingerprint Sensor and Blackfin Processor Enhance Biometric-Identification Equipment Design卷 42, 2
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Noise Figure and Logarithmic Amplifiers [The Wit and Wisdom of Dr. Leif—6]Open-Loop Calibration Techniques for Digital-to-Analog ConvertersAC Shield Enhances Remote Capacitive SensingInexpensive High-Speed Amplifiers Make Flexible Clock BuffersUnderstanding Hot Swap: Example of Hot-Swap Circuit Design ProcessDiscrete- and Integrated Control of Power Amplifiers in Base-Station Applications卷 42, 1
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The Contaminator of Signals: High-Frequency Common-Mode-Generated ErrorsCooking Inductively: ADI iCoupler Technology Isolates the Hob and the User InterfaceAnalog-to-Digital Converter Clock Optimization: A Test Engineering PerspectiveBIST for Analog WeeniesADuC702x Analog Microcontroller Generates Programmable Digital WaveformsLeif's Teaser Number 1—Infinite Bandwidth Op Amp with Limited Bandwidth FeedbackMeasuring Ambient TemperaturePulse Oximeter Uses ADuC7024 MicroConverterHigh-Side Current Sensing: Difference Amplifier vs. Current-Sense Amplifier卷 41, 4
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Providing an Edge in Capacitive Sensor ApplicationsDC-to-DC Switching-Regulator Insights—Achieving Longer Battery Life in DSP SystemsIC provides temperature, bias, and gain in single-supply applicationsBroadband I/Q Modulator Eases Radio DesignESD Diode Doubles as Temperature SensorAsk The Applications Engineer—38: Better, Faster Open-Loop Gain MeasurementData Converter Function Can Help Solve Cost and Size Design Challenges in 3G and 4G Wireless InfrastructureSolving Dynamic Range Problems in Analog SystemsPhase Relations in Active Filters卷 41, 3
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Highly Integrated, Programmable Single-Component Sensors for Industrial System DesignToward More-Compact Digital MicrophonesData and Power Isolation in One Package Provides Total Isolation SolutionSingle-Chip Clock Generator with 14-Channel Distribution Solves Timing Challenges in NetworksIf All Else Fails, Read This Article. Avoid Common Problems When Designing Amplifier CircuitsBoost Precision and Accuracy with Single Chip Capacitance- and Impedance-to-Digital Converters三轴加速度传感器在跌倒检测中的应用8-Channel, 12-Bit, 10-MSPS to 50-MSPS Front End: The AD9271—A Revolutionary Solution for Portable Ultrasound卷 41, 2
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Enhancing the Performance of Pedometers Using a Single AccelerometerHigh-Speed Time-Domain Measurements—Practical Tips for ImprovementAsk The Application Engineer—36: Wideband A/D Converter Front-End Design Considerations II: Amplifier-or Transformer Drive for the ADC?Measuring PCB TemperatureHigh-Performance Multichannel Power-Line Monitoring with Simultaneous-Sampling ADCs卷 40, 4
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Digital Isolation Offers Compact, Low-Cost Solutions to Challenging Design ProblemsLens Drivers Focus on Performance in High-Resolution Camera ModulesD-Day (continued) [The Wit and Wisdom of Dr. Leif—5]Ask The Application Engineer—35 Capacitance Sensors for Human Interfaces to Electronic Equipment卷 40, 3
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Fast, Versatile Blackfin® Processors Handle Advanced RFID Reader ApplicationsPrecision Signal-Processing and Data-Conversion ICs for PLCs Now Have More Performance at Less Power, Size, and CostWideband A/D Converter Front-End Design Considerations: When to Use a Double Transformer ConfigurationD-Day [The Wit and Wisdom of Dr. Leif—4]卷 40, 2
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Ask The Application Engineer—32: Practical Techniques to Avoid Instability Due to Capacitive LoadingBridge-Type Sensor Measurements are Enhanced by Autozeroed Instrumentation Amplifiers with Digitally Programmable Gain and Output OffsetCurrent Measurement in Solenoids for Automotive Control Systems卷 38, 1
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Versatile Mixed-Signal Front Ends Speed Customized Design of Wireline Broadband Modems and Home NetworksInterfacing a Blackfin DSP to High-Speed Converters for Wireless ApplicationsX-Amp™, A New 45-dB, 500-MHz Variable-Gain Amplifier (VGA) Simplifies Adaptive Receiver DesignsSimplify Audio Setups with a SigmaDSP™ Pre-Programmed Fully Configurable Digital Audio Processor卷 35, 1
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用于高频接收器和发射器的锁相环——第一部分Ask The Applications Engineer—28: Logarithmic Amplifiers ExplainedAll-Electronic Power and Energy MetersAsk The Applications Engineer—27: Signal Corruption in Industrial MeasurementDual Axis, Low g, Fully Integrated Accelerometers A Chip You Can Use to Monitor Environmental Conditions on PC Motherboard Designs卷 32, 1
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Ask The Applications Engineer—26: Switches and MultiplexersInnovative Mixed-Signal Chipset Targets Hybrid-Fiber Coaxial Cable ModemsDSP 101 Part 3: Implement Algorithms on a Hardware PlatformPowerful Design Tools for Motion Control ApplicationsSelecting Mixed-Signal Components for Digital Communications Systems—Part V卷 31, 2
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Quad-SHARC DSP in Ceramic Quad Flatpack200-MHz 16 x 16 Video Crosspoint Switch ICWhy use a DSP? [Digital Signal Processing 101-An Introductory Course in DSP System Design-Part 2]14-Bit Monolithic ADCs: First to Sample Faster than 1 MSPSSelecting Mixed Signal Component for Digital Communications Systems IV: Receiver Architecture ConsiderationsAsk The Applications Engineer-25: Op Amps Driving Capacitive LoadsLi-Ion Battery Charging Requires Accurate Voltage Sensing卷 31, 1
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Selecting Mixed Signal Components for Digital Communication Systems—III: Sharing the ChannelBuild a Smart Analog Process-Instrument Transmitter with Low-Power Converters and a MicrocontrollerController Board System Allows For Easy Evaluation Of General-Purpose ConvertersAsk The Applications Engineer–24: Resistance卷 30, 4
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Selecting Mixed-Signal Components for Digital Communication Systems-IIFor Efficient Signal Processing in Embedded Systems, Take a DSP, not a RISCVoltage Regulators for Power ManagementAsk The Applications Engineer-23: Current Feedback Amplifiers IIAdvanced Digital Video EncodersSingle- and Dual-Axis Micromachined AccelerometersEMC, CE Mark, IEC801: What's it all about?卷 30, 3
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Single-Chip Direct Digital Synthesis vs. the Analog PLLDACs are Optimized for Communication Transmit PathBuffered Multiplexers for Video ApplicationsAsk The Applications Engineer-22: Current Feedback Amplifiers ISelecting Mixed-Signal Components for Digital Communication Systems—An Introduction卷 30, 2
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DSP and motor-control chips simplify DSP-based AC motor control hardwareAudio Noise-Reduction ICSingle-Chip Digital Stereo SubsystemIndustry's First Integrated Wavelet Video Codec Sets New Standards for Cost, Image Quality and FlexibilityA Bibliography on EMC/EMI/ESDAsk The Applications Engineer–21: Capacitance And Capacitors卷 30, 1
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Considerations In Designing Single Supply, Low-Power Systems Part II: Battery Powered SystemsRead-Channel Processor Uses PRML to Increase Capacity of MR Head-Based Disk DrivesBattery Discharge Power And EnergySingle-Chip PC Sound SystemAsk The Applications Engineer—20: Interfacing To Serial Converters-IIDigital-Output Sensor Simplifies Temperature AcquisitionNew Fixed-Point DSP Family Provides High-Performance Processing of Concurrent Signals卷 29, 3
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Considerations In Designing Single Supply, Low-Power Systems Part I: Designs Using Ac Line PowerLow-Power, Low-Voltage IC Choices for ECG System RequirementsVery Low Voltage, Micropower Amplifiers (V, (S)< 3 V, I(SY) < 500 µA)Single-Supply Acceleration-to-Frequency Circuits10-Bit Quad DACs for Single-Supply 3.0 V to 5.5 V OperationAsk The Applications Engineer—19: Interfacing To Serial Converters-I卷 29, 2
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Application Example—ADC DriverTwo-Stage Current-Feedback AmplifierNew High-Speed, Low-Power Data-Acquisition ICsUsing Histogram Techniques to Measure A/D Converter NoiseSingle-Supply IF-Strip Digitizes QAM SignalsA Pipelined Converter (AD876)AD607 ArchitectureWideband Radios Need Wide Dynamic Range ConvertersChoosing High-Speed Signal Processing Components for Ultrasound SystemsAsk the Applications Engineer—18: Settling Time卷 29, 1
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Highly Integrated Stereo Codec ICs Drive MultimediaWideband Supply Current-feedback Op AmpDesign Circuits with Digitally Controllable Variable ResistorsMicromachined Complete-on-a-Chip SensorDSP Family Adds 3.3 V OperationAbout Ratiometric ConvertersAsk the Applications Engineer-17: Must a 16-bit Converter Settle to 16 ppm?Understanding High-speed Clamp Amps卷 28, 3
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High-speed A/D Converters for Communications16-bit Fixed-point DSP with 80 kBytes of RAMLow-cost 16-bit DAC Updates at 30 MHzTechniques to Protect Amplifiers from OvervoltageVoltage-feedback Op Amps Offer Accurate Clamping12-bit Dual DAC: Serial, Single Supply Saves SpaceDSP Cluster Multi-processingDSP On-chip SRAM Design ConsiderationsFloating-point DSP Leads in Performance8-bit, 16-channel Voltage-output DACs卷 28, 2
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Intelligent Digitizing Signal Conditioner IC for SensorsDual Set-Point Single-Chip Temperature ControllerAsynchronous Sample-rate ConvertersIC Vector Processor for Motor ControlMicroprocessor Supervisory ICsGetting the Most from IC Voltage ReferencesLVDT Interfaces Offer Choice of Analog or Digital OutputSerial Input 16-bit DAC Has Choice of RangesGSM Chipset Implements All Baseband FunctionsLow-distortion Mixer: +24 dBm 3rd-order InterceptInstrumentation Applications for Sigma-Delta ADCsAsk the Applications Engineer—15: Using Sigma-Delta Converters, Part 1卷 27, 2
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CMOS 10-bit 15 MHz ADC for Imaging ApplicationsSurface-machined Monolithic Accelerometer"Uncommon-mode" High-speed Video Feedback AmplifierHigh-performance ICs in Single-supply Analog CircuitsFast, Accurate, Monolithic Sampling A/D ConverterVideo RAM-DACs Offer True-color Screen ImagesIncrease Laser Printer Resolution Ask the Applications Engineer—14: High Frequency Signal ContaminationUse Analog I/O Ports as Infinite Sample/Holds and Peak FollowersDesign Ideas for Sigma-Delta Instrumentation ADCs卷 27, 1
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ADI's Smallest, Lowest-cost, Signal Conditioning Modules for Process ControlFast, Accurate, Timing Recovery for Fiber Optics Links3V Supply 12-bit Multi-channel Data Acquisition System Samples at 50 kHzSoundPort Codecs: Complete Audio I/O Subsystem ICsLow-noise, Low-drift, Precision Op Amps for InstrumentationTwo Op Amp Types Combine Precision and Wide BandwidthOp Amps in Line-driver and Receiver Circuits – Part 2Four New Wideband Op Amps for Video, Imaging, and Much MoreWhat's New in DSPComplete 12-bit and 10-bit 25.6 MSPS A/D Converters Ask the Applications Engineer-13: Confused About Amplifier Distortion Specs?Monolithic 80-dB +5 V Single-supply Log Amp Has 50-MHz Frequency Range卷 26, 2
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Single- or Dual-supply Difference Amplifier's Common-mode Range Exceeds SupplyLow-noise, Wideband Voltage-controlled Amplifier with "Linear-in-dB" Gain3-V Precision Op Amps from Analog DevicesDual Op Amp Has Low-noise and DissipationSignal Computing: Hardware Chipsets & Signal-processing Algorithms CombinedOp Amps in Line Driver and Receiver Circuits – Part 1Low-cost 12-bit IC Resolver-to-Digital Converter Emulates Optical EncoderWhy Do You Say That the Clock of a System is a Reference?Decreasing Size, More-Demanding Performance Pace Disk-Drive IC DesignAsk the Applications Engineer—12: Grounding (Again)卷 26, 1
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Floating-point DSP for High Speed Signal ProcessingNumerical C Speeds Code Development and ExecutionSingle-supply In-amp for Automotive ApplicationsDevelopment Tools and Third-party Support for Floating-point DSPDisk-drive ICs - Optimized for Read-channel and Servo Loop Control3 New S/H Chips for Fast, Accurate Data AcquisitionMonolithic 10-bit, 18 MSPS Sampling A/D Converter with On-chip Track-HoldComplete 16-bit DACPORT in SOIC Package Includes On-chip 10-V ReferenceAdvanced SPICE Op-amp Macromodel: A Powerful Tool for DesignersAsk the Applications Engineer—10: About WireFET-input Op Amp Has Lowest Combined V and I NoisePhase Accumulator for Direct Digital Synthesis Resolves to Within 0.7 HzSerial IC Analog I/O Port: 14-bit Performance and Small Package卷 25, 1
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Automotive Sensor Detects Lamp and Indicator Failures AutomaticallyDolby Pro-logic Surround Sound Decoder for Audio RealismFast 14-bit ADC Samples at 10 MSPS, Has 50-MHz BandwidthMonolithic 16-bit Voiceband Codec Uses Sigma-Delta TechnologyA Quarter-Century of Analog DialogueSampling 12-bit ADC: Faster, Better, and CheaperAsk the Applications Engineer—9: Seminars and Support卷 24, 3
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RAM-DAC Upgrade Enhances VGA GraphicsFirst Monolithic Triple 10-bit Video DACs Provide True ColorComplete Monolithic Current TransformerDSP Enhancements Include IC Processors, Development ToolsMixed-signal ASICs Offer Designers an Alternative SolutionAsk the Applications Engineer—8: Op-Amp IssuesElectronic Adjustment Made Easy with TrimDAC卷 24, 2
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Peak Detector Circuit Captures 200-ns PulsesMixed-signal Processor Merges DSP with A/D, D/A ConvertersLow-dissipation Multiple Line Drivers/Receivers3/4 GHz Monolithic Unity-gain Buffer for Analog SignalsMeasuring Amplifier Differential Gain and Phase AccuratelyCurrent-output Module Augments 6B SeriesAsk the Applications Engineer—7: Op-amp NoiseMonolithic 12-bit High-speed A/D Converter OptionsIndustrial Process Controller IC is Programmable in C卷 24, 1
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Application Decides Optimal DSP Processor ArchitectureFastest 10-bit ADCs Provide Superior Dynamic PerformanceMonolithic Op Amps Have Wide Bandwidth, Low Distortion12-bit, 100-kSPS Complete Sampling A/D Converter IC 14-bit, 2-Channel Synchro/Resolver-to-Digital ConverterIsolation Amplifiers for Low-level SignalsReal-world Interface Cards for Micro-channel SystemsAsk The Applications Engineer—6: Op Amp Issues: Why are There so Many Types of Op Amps?Computer Interface Panel Handles Eight Analog Outputs卷 23, 4
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Floating-point Data Acquisition System12-bit DACs Optimized for Direct Digital Synthesis8-bit Analog I/O Port for Position Monitoring and ControlHigh-speed Automatic Testing for Advanced ComponentsDistributed Data Acquisition and Control FlexibilityIndustry's Fastest Monolithic FET-input Op AmpHigh-performance Electrometer Op Amp in 8-pin Plastic DIPComplete Monolithic 12-bit DAC Interfaces with Fast DSPsAsk the Applications Engineer—5: High-speed Comparators Provide Many Useful Circuit FunctionsMonolithic Dual 12-bit DACPORTs Save Space, Power, CostFast Precise Comparator Has Differential Input RangeUltrafast Monolithic Single and Dual TTL Comparators卷 23, 3
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22-bit A/D Converter Evaluation Board for the PC8-bit Flash A/D Converters Encode at up to 300 MSPSGrounding for Low- and High-frequency CircuitsMonolithic DC-to-120-MHz Log-amp is Stable and AccurateIC LVDT Conditioner is Insensitive to Usual Error SourcesA Pair of 16-bit-Performance Sample-Hold Amplifiers14-bit 100 kSPS Monolithic Sampling A/D ConvertersRatiometric 16-bit LVDT-to-Digital ConverterAsk the Applications Engineer—4: Disk-based Component Selection Guide Seeks Best ChoicesPortable µP-controlled Synchro Simulator and TesterCPU, Software & I/O Integrated in Distributed Control卷 23, 2
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Advanced Microcomputer is Optimized for DSPConverter/Filter Chipset for Voiceband ApplicationsFastest Slewing Monolithic Op Amp has Wide BandwidthIsolated Strain-gage Chipset Module Joins 5B Conditioner Family6-bit Monolithic Flash ADCs Sample at up to 500 MHzEnhancements to LTS-2020 Benchtop IC TestersAsk The Applications Engineer—3: V/F ConvertersFast, Low-power Op Amps Offer Gain-bandwidth Choice卷 23, 1
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Reference Maximizes Resolution with 12-V SuppliesHigh-accuracy, Widest Bandwidth IC Analog MultiplierSensor-to-Serial Communications with a ScrewdriverUltra-high-speed Phase Discriminator Has no Dead ZoneDual Bipolar Op Amp Provides Superior Matching of SpecsNew 12-bit Sampling ADCs Digitize Fast AC WaveformsAsk the Applications Engineer—2: When it Comes to Trimming Offset and Gain...4 Sample/Holds on a Chip with 1-µs Max Acquisition TimeIsolated mV/TC Conditioner Has High Gain, Low Drift卷 22, 2
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Monolithic Software-Programmable-Gain AmplifierMonolithic DAC Combines Speed and AccuracyComplete Monolithic 8-Bit 400-kSPS Analog I/O SystemMonolithic 10-Bit, 20-µs Sampling A/D Converter22-Bit Complete Modular Integrating A/D ConverterFast, Accurate BiFET Op Amp Settles to 0.01% in 900 ns maxPlug-In Boards Add Power and Versatility for VMEbus UsersTwo New Multiple M-DACs Save Space and Power in Board Designs8-Bit Video Digitizer for Cameras Includes Control SignalsTwo New High-Precision Monolithic Voltage ReferencesHigh-Resolution Monolithic Resolver-to-Digital ConverterMonolithic Electrometer Has 60 fA max Bias CurrentHigh-Performance Analog Input Boards for IBM PC-ATFast-Settling 12-Bit DAC Provides 40-ns µP Interfacing64-Bit Floating-Point Chipset with 40-MFLOPS ThroughputHigh-Speed Single and Dual Monolithic Latching Comparators卷 21, 1
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Monolithic IC for Process-Control Transmitters8-Bit ADC with 150-MSPS Encode Rate16 x 16-Bit Multiplication in 15 ns8-Bit, 300-MHz Monolithic D/A Converter for DisplaysFirst Monolithic Resolver-to-Digital ConverterMonolithic Precision Voltage ReferenceQuad 12-Bit Readback DAC with 40-ns Bus Access TimeWide-Bandwidth Fast-Settling Operational AmplifierNew DSP ICs for Increased Functionality and PerformancePrecision Signal Conditioner for Bridge TransducersModular I/O Card for the IBM PCProcess Monitoring and Operator Interface Software for µMACsHigh-Speed Pin Driver for Digital Device Testing卷 20, 2
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Data-Conversion Amplifier Noise RevisitedSecond-Generation Monolithic RMS-to-DC Converter75-MHz Conversions with 6-Bit Monolithic Flash ADCFast, Simple Approximation of FunctionsRate-of-Cooling Meter for Cryogenic ApplicationsMonolithic CMOS Triple-Output DC-to-DC ConverterComplete Monolithic 8-Bit, 10-µs A/D Converter卷 17, 3
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Program Interrupts, Error Trapping, Program WorkspacesStandalone Single-Board Measurement and Control SystemMUX200 Increases Channel Capacity of MACSYM 350 Systems12-Channel Analog Expander Board for µMAC SystemsBooleans, 8-Color Plotter, 10MB Winchester, BuffersGround Rules for High-Speed CircuitsData Acquisition Information System卷 17, 2
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Low-Power Digital Signal-Processing ICsShielding and GuardingFast, Flexible Switched Dual-Input Op Amp and ComparatorModular Alarm Limit Subsystem Is Versatile and Rugged12-Bit, 10-MHz Analog-to-Digital ConverterLevel-Independent Automatic Gain ControlUnderstanding the MACSYM 150/350 SoftwareTest Digital and Linear ICs with LTS-2000 Test Systems卷 16, 3
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Multichannel Signal-Conditioning Input/Output SubsystemSensor-Based Intelligent Data Acquisition for STD BusAnalog Signal-Conditioning ICs Take Two Giant StepsPowerful Measurement-and-Control System... and Much MoreFaster Testing with New µC-Based Benchtop TesterIndustry's First Quad 12-Bit DAC in a 28-Pin DIPHighest-Performance 12-Bit Monolithic D/A ConverterMACSYM SpeaksWideband 2-Channel Monolithic Analog Multiplier/DividerUnderstanding Interference-Type Noise卷 16, 2
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AD7528: A Dual Monolithic DAC for Many ReasonsUse Your Personal Computer for Measurement and ControlApplying High-Performance Monolithic FET-Input Op AmpsMultitaskingVersatile µP-Based Meters for J-K-T-E-R-S ThermocouplesDeglitching a 16-Bit Monolithic D/A ConverterLogarithmic Multiplying CMOS D/A ConverterImproved Vector-Scan Displays Are ComingSuper-Performance Hybrid Op-Amp FamiliesHigh-Performance Hybrids for Data-AcquisitionNew Software Package for LTS-2010 Test Systems卷 16, 1
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World's First Monolithic 16-Bit D/A ConverterMonolithic 12-Bit DAC Has 6-Word FIFO MemoryHybrid Isolation Amplifiers with a New TwistMonolithic Systems DACAnalog I/O Interface Cards for STD BusFirst Monolithic FET Op Amp with 1 µV/°C DriftHigh-Resolution Data-Acquisition FamilyDouble-Buffered Complete 12-Bit D/A ConverterTesting A/D Converters AutomaticallyMACSYM 10 for Industrial-Plant-Floor Environments卷 15, 2
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2B56 Programmable Cold-Junction CompensatorIsolated Conversion from Digital to 4-to-20 mAIsolate, Amplify, Multiplex 4+ Channels10-Bit 20-MHz Video A/D Converter0 to 88.5 dB in 1.5-dB Steps12-Bit CMOS M-DAC Interfaces Directly with µPsDAC Controls Precision UHF Noise LevelPutting the AD558 DACPORT™ on the Bus卷 14, 1
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MACSYM II: A Complete Measurement-And-Control SYsteMMACSYM II: Fast, Efficient 16-Bit Central-Processing UnitMACSYM II: Card Library Provides Flexible Input/Output CapabilityMACSYM II: ADIO Controller and Bus Minimize Interference, Power, and CostMACSYM II: The Proof of MACSYM's Power Is in the ApplicationsMACSYM II: MACBASIC Measurement-and-Control-Oriented Software卷 12, 3
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Inductosyn-to-Digital Converters13-Bit Monolithic CMOS A/D ConverterMonolithic Sample-Hold Amplifiers10-Volt (±1 mV) ReferencesFET-Input IC ElectrometersSimple Rules for Choosing Resistor Values in Adder-Subtractor CircuitsDifferential High-Impedance RMS-to-DC ConversionD/A Conversion with Single-Supply CurrentAudio Application Ideas for CMOS DACs卷 9, 3
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Comparing Thin Films for Precision Resistor Networks12-Bit Integrated Circuit D/A ConverterSpecifying and Measuring a Low-Noise FET-Input IC Op AmpKeys to Longer Life for CMOSHandling Variable Data Rates with SERDEXVoltage Measurements in Biomedical ResearchUsing DPMs in Our Own Test EquipmentWays of Using the AD7520卷 8, 1
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A 10-Bit Monolithic CMOS D/A ConverterHigh-Precision Thin-Film Resistance NetworksTemperature Measuring Circuit Borrows Power and Reference from DPMReducing Multiplier Linearity ErrorsHigh-Speed Op Amps RevisitedCurrent Controller Uses Adjustable ExponentLock-In Amplifier Uses Single ICUsing CMOS Switches For...卷 7, 2
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Not by Drift Alone... The 741 Op Amp FamilyDesigning a Slim, Low-Cost 3½-Digit DPMThe AD520: Not an Op Amp but an Instrumentation AmplifierTrue RMS Measurement Using the AD53130-dB Automatic Gain Control with the AD531A Low-Noise, Low-Drift FET-Input Amplifier DesignVector Difference with the AD531卷 6, 3
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Monolithic Operational Amplifier with 1 µ/°C DriftQuad-Switch TTL-Compatibility12-Bit DAC Design Can Be Routine... 16 Bits Is more Difficult, but AchievableGood Circuit Practice Gets Best Results from Isolation AmplifiersProtecting a 1/8-Gigawatt Power Supply, or How Do You Make a 2000-A Fuse?卷 5, 2
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AD555 Monolithic "µDAC" Quad Switches Make 4-Quadrant Multiplying DACs with 12-Bit LinearityOp Amps as Electrometers or—The World of fACharge AmplifierA Choice, Not an Echo: The AD530 vs....Track-Hold AmplifierLong-Term Drift Measurements on Op AmpsMeasuring Sine-Wave Amplitudes Without Filtering卷 5, 1
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Chopper Amplifier's PPM Stability Enables Electron Microscope to Scrutinize Individual MoleculesEquivalent Circuits for Operational Amplifier Drift and NoiseHow to Select R and C for Minimum Integrator DriftSolid-State Op Amp Measures Kilovolts with 0.05% AccuracyIdeal Rectifier Uses Equal-Value ResistorsModified Feedback Simplifies Programmable Voltage SupplyOp Amp Mounting TechniquesSignal Is Sampled and Held for 1 MinutePrecision Peak-Reading Circuit卷 1, 3
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2021
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