Producenci
Texas Instruments 8537 dokumentacji
NO. | Symbol elementu | Rozmiar pliku | Stron | Opis dokumentacji | Producent |
---|---|---|---|---|---|
301. | Application note |
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10 | IC Building Blocks Form Complete Isolated 4-20mA Current-Loop | Texas Instruments |
302. | Application note |
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6 | Diode-Based Temperature Measurement | Texas Instruments |
303. | Application note |
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9 | Mounting Consideration For TO-3 Packages | Texas Instruments |
304. | Application note |
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2 | Heat Sinking- TO-3 Thermal Model | Texas Instruments |
305. | Application note |
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7 | Power Amplifier Stress and Power Handling Limitations | Texas Instruments |
306. | Application note |
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3 | Single Supply 4-20mA Current Loop Receiver | Texas Instruments |
307. | Application note |
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5 | Programmable-Gain Instrumentation Amplifiers | Texas Instruments |
308. | Application note |
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3 | Use Low-Impedance Bridges on 4-20mA Current Loop | Texas Instruments |
309. | Application note |
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3 | Improved Device Noise Performance For the 3650 Isolation Amplifier | Texas Instruments |
310. | Application note |
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5 | Operational Amplifier Macromodels: A Comparison | Texas Instruments |
311. | Application note |
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9 | Noise Sources In Applications Using Capacitive Coupled Isolated Amplifier | Texas Instruments |
312. | Application note |
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3 | The ACF2101 Used as a Bipolar Switched Integrator | Texas Instruments |
313. | Application note |
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3 | The MPC100 Analog Multiplexer Improves RF Signal Distribution | Texas Instruments |
314. | Application note |
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2 | Double The Output Current To A Load With The Dual OPA2604 Audio Op Amp | Texas Instruments |
315. | Application note |
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5 | Improved Noise Performance of the ACF2101 Switched Integrator | Texas Instruments |
316. | Application note |
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3 | Precision IA Swings Rail-to-Rail on Single 5V Supply | Texas Instruments |
317. | Application note |
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8 | Comparison of Noise Performance of FET Transimpedence Amp/Switched Integrator | Texas Instruments |
318. | Application note |
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11 | Photodiode Monitoring with Op Amps | Texas Instruments |
319. | Application note |
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5 | Hybrid Isolation Amplifiers Zap Price and Voltage Barriers | Texas Instruments |
320. | Application note |
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3 | Simple Circuit Delivers 38Vp-p at 5A from 28V Unipolar Supply | Texas Instruments |
321. | Application note |
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2 | Level Shifting Signals with Differential Amplifiers | Texas Instruments |
322. | Application note |
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3 | Feedback Circuit Clamps Precisely | Texas Instruments |
323. | Application note |
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3 | Voltage-Feedback Amps vs Current-Feedback Amps: Bandwidth and Distortion | Texas Instruments |
324. | Application note |
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3 | SWOP Amplifiers Simplify RF Signal Processing | Texas Instruments |
325. | Application note |
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3 | Add Current Limit to the BUF634 | Texas Instruments |
326. | Application note |
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3 | DC MOTOR SPEED CONTROLLER: Control a DC Motor without Tachometer Feedback | Texas Instruments |
327. | Application note |
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3 | An Error Analysis of the ISO102 in a Small Signal Measuring Application | Texas Instruments |
328. | Application note |
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3 | Partial Discharge Testing: What It Is and What It Means | Texas Instruments |
329. | Application note |
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30 | Implementation and Applications of Current Sources and Current Receivers | Texas Instruments |
330. | Application note |
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18 | New Ultra High-Speed Circuit Techniques with Analog ICs | Texas Instruments |
331. | Application note |
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8 | Driving Video Output Stages with Monolithic Integrated Amps | Texas Instruments |
332. | Application note |
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5 | Building a 400MHz Wide-Band Differential Amp: With the Diamond Transistor OPA660 | Texas Instruments |
333. | Application note |
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13 | Designing Active Filters with the Diamond Transistor OPA660 | Texas Instruments |
334. | Application note |
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9 | Fiber Optic Transmission | Texas Instruments |
335. | Application note |
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3 | Make a -10V to +10V Adjustable Precision Voltage Source | Texas Instruments |
336. | Application note |
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5 | 20mA to 0-20mA Converter & Current Summing Current-to-Current Converters | Texas Instruments |
337. | Application note |
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9 | Op Amp Performance Analysis | Texas Instruments |
338. | Application note |
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3 | Compensate Transimpedance Amplifiers Intuitively | Texas Instruments |
339. | Application note |
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4 | OPA660 Drives Magnetic Recording Head | Texas Instruments |
340. | Application note |
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2 | Improve OPA541 Current-Limit Stability | Texas Instruments |
341. | Application note |
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3 | Diode-Connected FET Protects Op Amps | Texas Instruments |
342. | Application note |
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7 | Single-Supply Operation of Operational Amplifiers | Texas Instruments |
343. | Application note |
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6 | Noise Analysis of FET Transimpedance Amplifiers | Texas Instruments |
344. | Application note |
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4 | Designing Photodiode Amplifier Circuits with OPA128 | Texas Instruments |
345. | Application note |
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9 | Design/Application of Transformer-Coupled Hybrid Isolation Amplifier Model 3656 | Texas Instruments |
346. | Application note |
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10 | The Key to Understanding Sources Of Error in the ISO100 Isolation Amplifier | Texas Instruments |
347. | Application note |
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7 | Isolation Amps Hike Accuracy and Reliability | Texas Instruments |
348. | Application note |
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9 | Noise Analysis for High Speed Op Amps | Texas Instruments |
349. | Application note |
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5 | Tuning in Amplifiers | Texas Instruments |
350. | Application note |
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5 | Precision Absolute Value Circuits | Texas Instruments |
351. | Application note |
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9 | Video Operational Amplifier | Texas Instruments |
352. | Application note |
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6 | Ultra High-Speed ICs | Texas Instruments |
353. | Application note |
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8 | Diamond Transistor OPA660 | Texas Instruments |
354. | Application note |
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11 | Automatic Gain Control (AGC) Using the Diamond Transistor OPA660 | Texas Instruments |
355. | Application note |
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11 | Current or Voltage Feedback/New, Flexible,Wide-Band Operational Amplifier OPA622 | Texas Instruments |
356. | Application note |
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9 | Macromodels for RF Op Amps Are a Powerful Design Tool | Texas Instruments |
357. | Application note |
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6 | There's a World Of Line Drivers to Choose From | Texas Instruments |
358. | Application note |
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13 | The Current-Feedback Op Amp: A High-Speed Building Block | Texas Instruments |
359. | Application note |
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9 | Intermodulation Distortion (IMD) | Texas Instruments |
360. | Application note |
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3 | Clamping Amplifier Tracks Power Supplies | Texas Instruments |
361. | Application note |
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3 | Switch Gains Accurately with the INA120 | Texas Instruments |
362. | Application note |
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4 | AB-172: Current Feedback Amplifiers: Review, Stability Analysis,and Applications | Texas Instruments |
363. | Application note |
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5 | AB-173: Complete Audio Amplifier with Volume, Balance, and Treble Controls | Texas Instruments |
364. | Application note |
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11 | AB-170: Ultrasound Processor Supplementary Material | Texas Instruments |
365. | Application note |
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99 | Handbook of Operational Amplifier Applications | Texas Instruments |
366. | Application note |
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113 | Handbook of Operational Amplifier Active RC Networks | Texas Instruments |
367. | Application note |
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3 | Make A Precision Current Source or Current Sink | Texas Instruments |
368. | Application note |
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3 | Voltage-Reference Filters | Texas Instruments |
369. | Application note |
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4 | Input Overload Protection for the RCV420 4-20mA Current-Loop Receiver | Texas Instruments |
370. | Application note |
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8 | Frequency-To-Voltage Conversion | Texas Instruments |
371. | Application note |
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3 | Make a Precision -10 V Reference | Texas Instruments |
372. | Application note |
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3 | Make a Precision ± 10 V Reference | Texas Instruments |
373. | Application note |
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3 | Low Power Operation of REF102 10.0V Precision Voltage Reference | Texas Instruments |
374. | Application note |
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5 | Voltage-to-Frequency Converters Offer Useful Options in A/D Conversion | Texas Instruments |
375. | Application note |
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3 | Improved Voltage Reference Filter Has Several Advantages | Texas Instruments |
376. | Application note |
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3 | An Easy Solution to Current Limiting an Op Amp | Texas Instruments |
377. | Application note |
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4 | DC-to-DC Converter Noise Reduction | Texas Instruments |
378. | Application note |
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21 | Interfacing TI Clocked FIFOs With TI Floating-Point DSPs | Texas Instruments |
379. | Application note |
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22 | FIFOs With A Word Width Of One Bit | Texas Instruments |
380. | Application note |
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12 | FIFO Mailbox-Bypass Registers: Using Bypass Registers to Initialize DMA Control | Texas Instruments |
381. | Application note |
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18 | Simultaneous-Switching Noise Analysis For Texas Instruments FIFO Products | Texas Instruments |
382. | Application note |
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12 | FIFO Synchronous Retransmit: Programmable DSP-Interface for FIR Filtering | Texas Instruments |
383. | Application note |
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10 | 1K X 9 X 2 Asynchronous FIFOs - SN74ACT2235/2236 | Texas Instruments |
384. | Application note |
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6 | FIFO Memories: Solutions To Reduce FIFO Metastability | Texas Instruments |
385. | Application note |
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21 | Power-Dissipation Calculations for TI FIFO Products | Texas Instruments |
386. | Application note |
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12 | Advanced Bus-Matching/Byte-Swapping For Internetworking FIFO Applications | Texas Instruments |
387. | Application note |
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8 | Parity-Generate/Check Features For High-Bandwidth-Computing FIFO Applications | Texas Instruments |
388. | Application note |
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12 | Using The High-Speed, High-Drive SN74ABT7819 FIFO | Texas Instruments |
389. | Application note |
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11 | Advanced Low-Power CMOS FIFOs | Texas Instruments |
390. | Application note |
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21 | Internetworking The SN74ABT3614 | Texas Instruments |
391. | Application note |
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14 | SPARC MBus-to-Futurebus+ Bridge Using The TI Futurebus+ Chipset | Texas Instruments |
392. | Application note |
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15 | Seamless Processor Interface Using FIFO Bus Matching And Byte Swapping | Texas Instruments |
393. | Application note |
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13 | Optimizing DSP-Based Digital Filters With Application-Specific FIFOs | Texas Instruments |
394. | Application note |
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14 | K-Factor Test-Board Design Impact On Thermal Impedance Measurements | Texas Instruments |
395. | Application note |
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20 | Application and Design Considerations for CDC5xx Phase-Lock Loop Clock Drivers | Texas Instruments |
396. | Application note |
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10 | Clock Distribution in High-Performance PCs | Texas Instruments |
397. | Application note |
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16 | EMI Prevention in Clock-Distribution Circuits | Texas Instruments |
398. | Application note |
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10 | Minimizing Clock Driver Output Skew Using Ganged Outputs | Texas Instruments |
399. | Application note |
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8 | Phase-Lock Loop-Based (PLL) Clock Drivers: Benefits Versus Costs | Texas Instruments |
400. | Application note |
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22 | Advanced High-Speed CMOS (AHC) Logic Family | Texas Instruments |