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LMC6462 Datasheet PDF

Part Series:LMC6462 Series
Description:Dual Micropower, Rail-to-Rail Input and Output CMOS Operational Amplifier
Document:LMC6462BIN/NOPB Datasheet PDF (39 Pages)

LMC6462 Datasheet PDF

32 Pages
TI
TEXAS INSTRUMENTS LMC6462BIM/NOPB Operational Amplifier, Dual, 2 Amplifier, 50kHz, 0.015V/µs, 3V to 15.5V, SOIC, 8Pins
32 Pages
TI
TEXAS INSTRUMENTS LMC6462AIM/NOPB Operational Amplifier, Dual, 2 Amplifier, 50kHz, 0.015V/µs, 3V to 15.5V, SOIC, 8Pins
32 Pages
TI
TEXAS INSTRUMENTS LMC6462BIM Operational Amplifier, Dual, 2 Amplifier, 50kHz, 0.015V/µs, 3V to 15.5V, SOIC, 8Pins
32 Pages
TI
TEXAS INSTRUMENTS LMC6462AIN Operational Amplifier, Dual, 2 Amplifier, 50kHz, 0.015V/µs, 3V to 15.5V, DIP, 8Pins
31 Pages
TI
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TI
Dual Micropower, Rail-to-Rail Input and Output CMOS Operational Amplifier
21 Pages
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LMC6462 - TI Function Overview

The LMC6462/4 is a micropower version of the popular LMC6482/4, combining Rail-to-Rail Input and Output Range with very low power consumption.
The LMC6462/4 provides an input common-mode voltage range that exceeds both rails. The rail-to-rail output swing of the amplifier, ensured for loads down to 25 kΩ, assures maximum dynamic signal range. This rail-to-rail performance of the amplifier, combined with its high voltage gain makes it unique among rail-to-rail amplifiers. The LMC6462/4 is an excellent upgrade for circuits using limited common-mode range amplifiers.
The LMC6462/4, with ensured specifications at 3V and 5V, is especially well-suited for low voltage applications. A quiescent power consumption of 60 μW per amplifier (at VS = 3V) can extend the useful life of battery operated systems. The amplifier"s 150 fA input current, low offset voltage of 0.25 mV, and 85 dB CMRR maintain accuracy in battery-powered systems.
(Typical Unless Otherwise Noted)
Ultra Low Supply Current  20 μA/Amplifier
Ensured Characteristics at 3V and 5V
Rail-to-Rail Input Common-Mode Voltage Range
Rail-to-Rail Output Swing
(within 10 mV of rail, VS = 5V and RL = 25 kΩ)
Low Input Current 150 fA
Low Input Offset Voltage 0.25 mV
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