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LMC6064

LMC6064 Series

Precision CMOS Quad Micropower Operational Amplifier

Manufacturer: Texas Instruments

Catalog

Precision CMOS Quad Micropower Operational Amplifier

Key Features

Typical values unless otherwise notedLow offset voltage: 100µVUltra-low supply current: 16µA/amplifierSupply range: 4.5V to 15VUltra-low input bias current: 10fAOutput swing within 10mV of supply rail, 100kΩ loadInput common-mode includes V−High voltage gain: 140dBImproved latchup immunityTypical values unless otherwise notedLow offset voltage: 100µVUltra-low supply current: 16µA/amplifierSupply range: 4.5V to 15VUltra-low input bias current: 10fAOutput swing within 10mV of supply rail, 100kΩ loadInput common-mode includes V−High voltage gain: 140dBImproved latchup immunity

Description

AI
The LMC6061, LMC6062, and LMC6064 (LMC606x) are precision, low-offset-voltage, micropower operational amplifiers (op amps), capable of precision single-supply operation. Performance characteristics include ultra-low input bias current, high voltage gain, rail-to-rail output swing, and an input common-mode voltage range that includes ground. These features, plus the low power consumption of the op amps, make the LMC606x an excellent choice for battery-powered applications. Other applications using the LMC606x include precision full-wave rectifiers, integrators, references, sample-and-hold circuits, and true instrumentation amplifiers. This device is built with TI’s advanced double-poly silicon-gate CMOS process. For designs that require higher speed, see theLMC608xprecision operational amplifiers. PATENT PENDING The LMC6061, LMC6062, and LMC6064 (LMC606x) are precision, low-offset-voltage, micropower operational amplifiers (op amps), capable of precision single-supply operation. Performance characteristics include ultra-low input bias current, high voltage gain, rail-to-rail output swing, and an input common-mode voltage range that includes ground. These features, plus the low power consumption of the op amps, make the LMC606x an excellent choice for battery-powered applications. Other applications using the LMC606x include precision full-wave rectifiers, integrators, references, sample-and-hold circuits, and true instrumentation amplifiers. This device is built with TI’s advanced double-poly silicon-gate CMOS process. For designs that require higher speed, see theLMC608xprecision operational amplifiers. PATENT PENDING