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TLC2272A


Part Number TLC2272A
Manufacturer Texas Instruments
Title Advanced LinCMOS Rail-to-Rail Operational Amplifiers
Description The TLC2272 and TLC2274 are dual and quadruple operational amplifiers from Texas Instruments. Both devices exhibit rail-to-rail output performance...
Features
•1 Output Swing Includes Both Supply Rails
• Low Noise: 9 nV/√Hz Typical at f = 1 kHz
• Low-Input Bias Current: 1-pA Typical
• Fully-Specified for Both Single-Supply and SplitSupply Operation
• Common-Mode Input Voltage Range Includes Negative Rail
• High-Gain Bandwidth: 2.2-MHz Typical
• High Slew ...

File Size 2.38MB
Datasheet TLC2272A PDF File








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TLC2272-Q1 : The TLC2272-Q1 and TLC2274-Q1 devices are dual and quadruple operational amplifiers from Texas Instruments. Both devices exhibit rail-to-rail output performance for increased dynamic range in singleor split-supply applications. The TLC227x-Q1 family offers 2 MHz of bandwidth and 3 V/μs of slew rate for higher-speed applications. These devices offer comparable AC performance while having better noise, input offset voltage, and power dissipation than existing CMOS operational amplifiers. The TLC227x‑Q1 has a noise voltage of 9 nV/√Hz, two times lower than competitive solutions. The TLC227x-Q1, exhibiting high input impedance and low noise, is excellent for small-signal conditioning for high-i.

TLC2272A-EP : The TLC2272A and TLC2274A are dual and quadruple operational amplifiers from Texas Instruments. Both devices exhibit rail-to-rail output performance for increased dynamic range in single- or split-supply applications. The TLC227xA family offers 2 MHz of bandwidth and 3 V/µs of slew rate for higher speed applications. These devices offer comparable ac performance while having better noise, input offset voltage, and power dissipation than existing CMOS operational amplifiers. The TLC227xA has a noise voltage of 9 nV/√Hz, two times lower than competitive solutions. D Low Noise 9 nV/√Hz Typ at f = 1 kHz D Low Input Bias Current 1 pA Typ D Fully Specified for Both Single-Supply and S.

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