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TLC2810 Datasheet(PDF) 19 Page - Texas Instruments |
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TLC2810 Datasheet(HTML) 19 Page - Texas Instruments |
19 / 23 page – + TLE2426 V O + ( V DD * V I 2 )R2 R1 ) V DD 2 VO VI R1 R2 VDD Figure 31. Inverting Amplifier With Voltage Reference TLC2810Z, TLC2810Y LinCMOS ™ PRECISION DUAL OPERATIONAL AMPLIFIERS SLOS120A – AUGUST 1993 – REVISED AUGUST 1994 19 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 APPLICATION INFORMATION single-supply operation While the TLC2810Z performs well using dual-power supplies (also called balanced or split supplies), the design is optimized for single- supply operation. This 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 4 V, thus allowing operation with supply levels commonly available for TTL and CMOS. Many single-supply applications require that a voltage be applied to one input to establish a reference level that is above ground. This virtual ground can be generated using two large resistors, but a preferred technique is to use a virtual ground generator such as the TLE2426 (see Figure 31). The TLE2426 supplies an accurate voltage equal to VDD/2, while consuming very little power and is suitable for supply voltages of greater than 4 V. The TLC2810Z works 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 32). 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, RC decoupling may be necessary in high-frequency applications. – + Logic Logic Logic Power Supply – + Logic Logic Logic Power Supply (a) COMMON SUPPLY RAILS (b) SEPARATE BYPASSED SUPPLY RAILS (preferred) Output Output Figure 32. Common Versus Separate Supply Rails |
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