Producenci
Analog Devices 5692 dokumentacji
NO. | Symbol elementu | Rozmiar pliku | Stron | Opis dokumentacji | Producent |
---|---|---|---|---|---|
4901. | AN224 |
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3 | Input/Output level Shifting with the AD7769 | Analog Devices |
4902. | AN225 |
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4 | Voltage Output DACs for Single Supply +5 V & +12 V System | Analog Devices |
4903. | AN227 |
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11 | Digital Control System Design with the ADSP-2100 Family. | Analog Devices |
4904. | AN228 |
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6 | Evaluation Board for the AD7884 16 Bit A/D Converter | Analog Devices |
4905. | AN229 |
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6 | Evaluation Board for the AD7885 16 Bit A/D Converter | Analog Devices |
4906. | AN23 |
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2 | D/Converter Generates Hyperbolic Functions | Analog Devices |
4907. | AN230 |
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3 | Circuit Applications of the AD2S90 R/D Converter | Analog Devices |
4908. | AN231 |
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11 | Considerations for Selecting DSP Processor, ADSP2111 vs DSP56000 | Analog Devices |
4909. | AN232 |
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4 | Bootstrapped IC Substrate Lowers Distortion in JFET Op Amps | Analog Devices |
4910. | AN233 |
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16 | Considerations for Selecting DSP Processor, ADSP2101 vs TMS32050 | Analog Devices |
4911. | AN234 |
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3 | Digital Resolver Integration. | Analog Devices |
4912. | AN235 |
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9 | Considerations for Selecting DSP Processor, ADSP21020 vs TMS320C30 | Analog Devices |
4913. | AN236 |
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3 | Speed Measurement and Control with the AD2S83, " Silicon Tachogenerator" | Analog Devices |
4914. | AN237 |
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11 | Choosing DACs for Direct Digital Synthesis, | Analog Devices |
4915. | AN238 |
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6 | RS-232 Communications | Analog Devices |
4916. | AN240 |
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12 | Considerations for Selecting DSP Processor, ADSP2101 vs DSP16A | Analog Devices |
4917. | AN242 |
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4 | Low Noise Microphone Preamp with Phantom Power Option | Analog Devices |
4918. | AN244 |
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10 | Users Guide to IC Instrumentation Amplifiers, by Jeffrey Riskin. | Analog Devices |
4919. | AN245 |
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9 | Instrumentation Amplifiers Solve Unusual Design Problems | Analog Devices |
4920. | AN246 |
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7 | Isolation Barrier Precisely Passes Transducer Signals | Analog Devices |
4921. | AN249 |
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2 | Protection for the ADG50x Multiplexer Series | Analog Devices |
4922. | AN25 |
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4 | Applying the OP06 as High Precision Comparator | Analog Devices |
4923. | AN250 |
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6 | Bandwidth, Off Isolation, and Crosstalk Performance of the ADG50xMultiplexer | Analog Devices |
4924. | AN251 |
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2 | Ron Modulation in CMOS Switches and Multiplexers; What It Is, and How to Predict its Effect on Signal Distortion | Analog Devices |
4925. | AN252 |
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4 | Using the AD2S80 SeriesResolver to Digital Converters with Syncros; Solid State Scott-T Circuit. | Analog Devices |
4926. | AN253 |
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2 | Find OP AMP Noise with a Spreadsheeet | Analog Devices |
4927. | AN254 |
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1 | Add Programmable Gain, Attenuation | Analog Devices |
4928. | AN255 |
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2 | Voltage Controlled Amp Covers 55dB Range | Analog Devices |
4929. | AN256 |
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2 | Accurately Testing OP AMP Settling Time | Analog Devices |
4930. | AN257 |
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9 | Careful Design Tames High Speed Op Amps, by Joe Buxton. | Analog Devices |
4931. | AN259 |
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4 | AD9617/AD9618 Current Feedback Amplifier Macromodels | Analog Devices |
4932. | AN260 |
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6 | Using Digitally Programmable Delay Generators, | Analog Devices |
4933. | AN261 |
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8 | Programmable Delay ICs Control System Timing. | Analog Devices |
4934. | AN262 |
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4 | Low Noise, Low Drop Out Regulator for Portable Equipment. | Analog Devices |
4935. | AN263 |
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4 | Resolver to Digital Conversion;Simple Alternative to Optical Shaft Encoders | Analog Devices |
4936. | AN264 |
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3 | Dynamic Characteristics of Tracking Converter | Analog Devices |
4937. | AN265 |
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6 | Circuit Applications of the AD2S80 and AD2S81 Resolver to Digital | Analog Devices |
4938. | AN266 |
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12 | Passive Component Selection and Dynamic Modeling for theAD2S80 Series Resolver to Digital Converter | Analog Devices |
4939. | AN267 |
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11 | Vector Control using single Vector Rotation Semiconductor for Induction and Permanent Magnet Motora | Analog Devices |
4940. | AN268 |
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12 | RMS-to-DC Converters Ease Measurement Tasks, | Analog Devices |
4941. | AN269 |
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2 | Extend RMS-to-DC Converters Range | Analog Devices |
4942. | AN27 |
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2 | Polarity Prrogrammable Peak Detector | Analog Devices |
4943. | AN270 |
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8 | Applying IC Sample and Hold Amplifiers | Analog Devices |
4944. | AN271 |
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5 | Build Precise S/H for Fast 12 Bit ADCS | Analog Devices |
4945. | AN272 |
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4 | Accuracies of the AD590 Temperature to Current IC. | Analog Devices |
4946. | AN273 |
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6 | Use of the AD590 Temperature Transducer in Remote Sensing | Analog Devices |
4947. | AN274 |
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6 | Taking the Uncertainty Out ofThermocouple Temperature Measurement with the AD594/AD595, | Analog Devices |
4948. | AN275 |
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8 | Versatile Current Loop Transmitter Chip Links Strain Gauges and RTDs | Analog Devices |
4949. | AN276 |
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7 | Analog to Digital Conversion by Using V/F Converters | Analog Devices |
4950. | AN277 |
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18 | Applications for the AD537 Voltage to Frequency Converter | Analog Devices |
4951. | AN278 |
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28 | Operation and Applications of the AD654 IC V to F Converter | Analog Devices |
4952. | AN279 |
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6 | Using V/Fs as F/Vs Converters | Analog Devices |
4953. | AN280 |
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33 | Mixed Signal Circuit Techniques | Analog Devices |
4954. | AN281 |
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8 | Passive and Active Analog Filtering | Analog Devices |
4955. | AN282 |
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21 | Fundamentals of Sampled DatSystems | Analog Devices |
4956. | AN283 |
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16 | Sigma-DeltADCs and DACs | Analog Devices |
4957. | AN284 |
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4 | Implement Infinite Sample and Hold Circuits | Analog Devices |
4958. | AN285 |
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6 | Function Generator and Linearizer Circuit Using the AD7569 (ADC + DAC) | Analog Devices |
4959. | AN289 |
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7 | AD670 8 Bit to D Converter Applications | Analog Devices |
4960. | AN290 |
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2 | AD7578 and AD7582 Performance with Reduced Vdd Supply (+12V +/- 10%) | Analog Devices |
4961. | AN291 |
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2 | Asynchronous clock Interfacing with the AD7878 | Analog Devices |
4962. | AN292 |
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3 | Interfacing the AD7572to High Speed DSP Processors | Analog Devices |
4963. | AN293 |
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5 | AD7574 Analog to Microprocessor Interface. | Analog Devices |
4964. | AN294 |
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7 | Converter Delivers 12 Bit, 200 kHz Sampling Systems, by John Reidy. | Analog Devices |
4965. | AN296 |
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12 | Build Single Shot Recorder to Catch Fast Transients | Analog Devices |
4966. | AN297 |
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10 | Test Video A/D Converters under Dynamic Conditions | Analog Devices |
4967. | AN299 |
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3 | Simple Circuit Provides Ratiometric Reference Levels for AD782X Family of Half-Flash | Analog Devices |
4968. | AN301 |
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7 | Undersampling Techniques Simplify Digital Radio, | Analog Devices |
4969. | AN302 |
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5 | Exploit Digital Advantages in an SSB Receiver | Analog Devices |
4970. | AN304 |
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7 | One Chip Slide Rule Works with Logs, Antilogs, for Real Time Processing, | Analog Devices |
4971. | AN306 |
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1 | Synchronous System Measures uOhms | Analog Devices |
4972. | AN307 |
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13 | Modem Circuit Techniques Simplify Instrumentation Designs, | Analog Devices |
4973. | AN308 |
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1 | Commutating Amp Multiplies Precisely | Analog Devices |
4974. | AN309 |
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9 | Build Fast VCAs & VCFs with Analog Multipliers, | Analog Devices |
4975. | AN310 |
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4 | Single Supply 12-Bit DAC Circuits Using the AD7568 | Analog Devices |
4976. | AN311 |
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3 | How to Reliably Protect CMOS Circuits Against Power Supply Overvoltage | Analog Devices |
4977. | AN312 |
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5 | DAS Packs Memory for Micro-Processor Interface | Analog Devices |
4978. | AN313 |
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12 | Getting the Most from High Resolution D to Converters, | Analog Devices |
4979. | AN316 |
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3 | AD7224 Provides ProgrammableVoltages Over Varying Ranges | Analog Devices |
4980. | AN317 |
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6 | AD7226 Quad CMOS DAC | Analog Devices |
4981. | AN318 |
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8 | AD7528 Dual, 8 Bit CMOS DAC, (Sine Wave Oscillator, Wave Form Generator) | Analog Devices |
4982. | AN319 |
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6 | Programmable Sin Wave Oscillator using Simple Interface Between D/& Microcomputer | Analog Devices |
4983. | AN320A |
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12 | CMOS DACs and Op Amps Combine to Build Programmable Gain Amplifier, PART 1 | Analog Devices |
4984. | AN320B |
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10 | CMOS DACs and Op Amps Combine to Build Programmable Gain Amplifier, PART 2 | Analog Devices |
4985. | AN322 |
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6 | Improve Function Generators with Matched D to Converters | Analog Devices |
4986. | AN323 |
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8 | Microstepping Drive Circuits for Single Supply Systems | Analog Devices |
4987. | AN324 |
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5 | Simple DAC Based Circuit Implements Constant Linear Velocity Motor Speed Control | Analog Devices |
4988. | AN325 |
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4 | 12 Analog I/O Port Uses AD7549 and 8051Microcomputer | Analog Devices |
4989. | AN326 |
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3 | Interfacing the AD7549 to the MCS-48 and MCS-51 Microcomputer Familie | Analog Devices |
4990. | AN327 |
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4 | DAC ICs: How Many Bits is Enough?, by Robert Adams. | Analog Devices |
4991. | AN328 |
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6 | Generate 4 Channels of Analog Output Using AD7542 12 Bit D to Converters and Control the Lot. | Analog Devices |
4992. | AN329 |
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6 | Dynamic Performance of CMOS DACs in Modem Applications, | Analog Devices |
4993. | AN330 |
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8 | Animation Using the Pixel ReadMask Register of the ADV47x Seriesof Video RAM-DACs, | Analog Devices |
4994. | AN331 |
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1 | Changing your VGDesign from ADV171/176 to ADV471 | Analog Devices |
4995. | AN332 |
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2 | Improved PCB Layouts for VideoRAM-DACs Can Use Either PLCC or DIP Package | Analog Devices |
4996. | AN333 |
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16 | Design and Layout of Video Graphics System for Reduced EMI, | Analog Devices |
4997. | AN334 |
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16 | Digital Signal Processing Techniques | Analog Devices |
4998. | AN336B |
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4 | JPEG Compression | Analog Devices |
4999. | AN338 |
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4 | Loading an ADSP-2101 Program via the Serial Port, | Analog Devices |
5000. | AN342 |
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8 | Analog Signal Handling for High Speed and Accuracy, | Analog Devices |