LTC6079

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Micropower Precision, Quad CMOS Rail-to-Rail Input/Output Amplifiers

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Overview

  • Maximum Offset Voltage of 25μV (25°C)
  • Maximum Offset Drift of 0.7μV/°C
  • Maximum Input Bias:
    • 1pA (25°C)
    • 50pA (≤85°C)
  • Micropower: 54μA per Amp
  • 95dB CMRR (Min)
  • 100dB PSRR (Min)
  • Input Noise Voltage: 16nV/√Hz
  • Rail-to-Rail Inputs and Outputs
  • 2.7V to 5.5V Operation Voltage
  • LTC6078 Available in 8-Lead MSOP and 10-Lead DFN Packages; LTC6079 Available in 16-Lead SSOP and DFN Packages

The LTC6078/LTC6079 are dual/quad, low offset, low noise operational amplifiers with low power consumption and rail-to-rail input/output swing.

Input offset voltage is trimmed to less than 25μV and the CMOS inputs draw less than 50pA of bias current. The low offset drift, excellent CMRR, and high voltage gain make it a good choice for precision signal conditioning.

Each amplifier draws only 54μA current on a 3V supply. The micropower, rail-to-rail operation of the LTC6078/LTC6079 is well suited for portable instruments and single supply applications.

The LTC6078/LTC6079 are specified on power supply voltages of 3V and 5V from -40 to 125°C. The dual amplifier LTC6078 is available in 8-lead MSOP and 10-lead DFN packages. The quad amplifier LTC6079 is available in 16-lead SSOP and DFN packages.

Applications

  • Photodiode Amplifier
  • High Impedance Sensor Amplifier
  • Microvolt Accuracy Threshold Detection
  • Instrumentation Amplifiers
  • Battery Powered Applications

LTC6079
Micropower Precision, Quad CMOS Rail-to-Rail Input/Output Amplifiers
Thermocouple Signal Conditioner Vos Distribution Product Package 1 Product Package 2 Product Package 3 Product Package 4
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Documentation

Data Sheet

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Tools & Simulations

LTspice


Models for the following parts are available in LTspice:

  • LTC6079

Analog Photodiode Wizard

Use Photodiode Wizard to design a transimpedance amplifier circuit to interface with a photodiode. Select a photodiode from the library included in the tool, or enter custom photodiode specifications. Quickly observe tradeoffs between Bandwidth, Peaking (Q), and ENOB/SNR. Modify circuit parameters, and immediately see results in plots for pulse response, frequency response, and noise gain.

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LTspice

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