OP77

NOT RECOMMENDED FOR NEW DESIGNS

Next Generation OP07, Ultralow Offset Voltage Operational Amplifier

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Overview

  • Outstanding gain linearity
  • Ultrahigh gain, 5000 V/mV min
  • Low VOS over temperature, 55 μV max
  • TCVOS, 0.3 μV/°C max
  • High PSRR, 3 μV/V max
  • Low power consumption, 60 mW max
  • Available in die form

The OP77 significantly advances the state-of-the-art in precision op amps. The outstanding gain of 10,000,000 or more for the OP77 is maintained over the full 10 V output range. This exceptional gain-linearity eliminates incorrectable system nonlinearities common in previous monolithic op amps and provides superior performance in high closed-loop gain applications. Low initial VOS drift and rapid stabilization time, combined with only 50 mW of power consumption, are significant improvements over previous designs. These characteristics, plus the exceptional TCVOS of 0.3 μV/°C maximum and the low VOS of 25 μV maximum, eliminates the need for VOS adjustment and increases system accuracy over temperature.

PSRR of 3µV/V (110dB) and CMRR of 1.0µV/V maximum virtually eliminates errors caused by power supply drifts and common-mode signals. This combination of outstanding characteristics makes the OP77 ideally suited for high-resolution instrumentation and other tight error budget systems.

OP77
Next Generation OP07, Ultralow Offset Voltage Operational Amplifier
OP77-pcl
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Documentation

Data Sheet 1

Application Note 1

Frequently Asked Question 1

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Software Resources

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Hardware Ecosystem

Parts Product Life Cycle Description
ADA4177-1 RECOMMENDED FOR NEW DESIGNS

OVP and EMI Protected, Precision, Low Noise and Bias Current Single Op Amp

ADA4077-1 RECOMMENDED FOR NEW DESIGNS 4 MHz, 7 nV/√Hz, Low Offset and Drift, High Precision Single Amplifier
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Tools & Simulations

LTspice


Models for the following parts are available in LTspice:

  • OP77

OP77 SPICE Macro-Model 2

LTspice

LTspice® is a powerful, fast and free simulation software, schematic capture and waveform viewer with enhancements and models for improving the simulation of analog circuits.

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