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TLC27M2ACD Datasheet(PDF) 27 Page - Texas Instruments |
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TLC27M2ACD Datasheet(HTML) 27 Page - Texas Instruments |
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27 / 49 page ![]() TLC27M2, TLC27M2A, TLC27M2B, TLC27M7 LinCMOS PRECISION DUAL OPERATIONAL AMPLIFIERS SLOS051E − OCTOBER 1987 − REVISED AUGUST 2008 27 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 APPLICATION INFORMATION single-supply operation While the TLC27M2 and TLC27M7 perform well using dual power supplies (also called balanced or split supplies), the design is optimized for single-supply operation. This design includes an input common-mode voltage range that encompasses ground, as well as an output voltage range that pulls down to ground. The supply voltage range extends down to 3 V (C-suffix types), thus allowing operation with supply levels commonly available for TTL and HCMOS; however, for maximum dynamic range, 16-V single-supply operation is recommended. Many single-supply applications require that a voltage be applied to one input to establish a reference level that is above ground. A resistive voltage divider is usually sufficient to establish this reference level (see Figure 38). The low input bias current of the TLC27M2 and TLC27M7 permits the use of very large resistive values to implement the voltage divider, thus minimizing power consumption. The TLC27M2 and TLC27M7 work well in conjunction with digital logic; however, when powering both linear devices and digital logic from the same power supply, the following precautions are recommended: 1. Power the linear devices from separate bypassed supply lines (see Figure 39); otherwise, the linear device supply rails can fluctuate due to voltage drops caused by high switching currents in the digital logic. 2. Use proper bypass techniques to reduce the probability of noise-induced errors. Single capacitive decoupling is often adequate; however, high-frequency applications may require RC decoupling. R4 VO VDD R2 R1 VI VREF R3 C 0.01 µF V REF + V DD R3 R1 ) R3 V O + V REF –V I R4 R2 ) V REF Figure 38. Inverting Amplifier With Voltage Reference (a) COMMON SUPPLY RAILS Logic Power Supply Logic Logic Logic Logic Logic (b) SEPARATE BYPASSED SUPPLY RAILS (preferred) Power Supply Output Output Figure 39. Common Versus Separate Supply Rails |
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