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AD8476 Datasheet PDF

Part Series:AD8476 Series
Category:Operational Amplifiers(General Purpose)
Description:ANALOG DEVICES AD8476ARMZ Differential Amplifier, Unity-Gain, 1 Amplifiers, 50µV, 5MHz, -40℃, 125℃
Document:AD8476ARMZ Datasheet PDF (26 Pages)

AD8476 Operational Amplifiers(General Purpose) Datasheet PDF

AD8476 Datasheet PDF Operational Amplifiers(General Purpose)

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AD8476ARMZ - ADI Specifications

TYPE
DESCRIPTION
Mounting Style
Surface Mount
Number of Pins
8 Pin
Case/Package
MSOP-8
Supply Current
330 µA
Number of Circuits
1 Circuit
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AD8476ARMZ - ADI Function Overview

The AD8476ARMZ is a Fully Differential Amplifier and ADC Driver with integrated gain resistors for unity gain. It is an ideal choice for driving low power, high performance ADCs as a single-ended-to-differential or differential-to-differential amplifier. It provides a precision gain of 1, common-mode level shifting, low temperature drift and rail-to-rail outputs for maximum dynamic range. The AD8476 works well with SAR, Σ-Δ and pipeline converters. The high current output stage of the part allows it to drive the switched capacitor front-end circuits of many ADCs with minimal error. Unlike many differential drivers, the AD8476 is a high precision amplifier. With 200µV maximum output offset, 39nV/√Hz noise and -102dB THD + N at 10kHz, the AD8476 pairs well with low power, high accuracy converters. Considering its low power consumption and high precision, the slew-enhanced AD8476 has excellent speed, settling to 16-bit precision for 250kSPS acquisition times.
Very low power
330µA Supply current
Extremely low harmonic distortion
Fully differential or single-ended inputs/outputs
Differential output designed to drive precision ADCs
Drives switched capacitor and Σ-Δ ADCs
VOCM pin adjusts output common-mode
Robust overvoltage up to 18V beyond supplies
High performance
Suitable for driving 16-bit converter up to 250kSPS
39nV/√Hz Output noise
1ppm/°C Gain drift maximum
200µV Maximum output offset
ESD sensitive device, take proper precaution while handling the device.
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