LT6023

RECOMMENDED FOR NEW DESIGNS

Dual Micropower, 1.4V/μs Precision Rail-to-Rail Output Amplifier

Part Models
12
1ku List Price
Starting From $2.25
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Part Details

  • Excellent Slew Rate to Power Ratio
    • Slew Rate: 1.4V/μs
    • Maximum Supply Current: 20μA/Amplifier
  • Maximum Offset Voltage: 30μV
  • High Dynamic Input Impedance
  • Fast Recovery from Shutdown
  • Maximum Input Bias Current: 3nA
  • No Output Phase Inversion
  • Gain Bandwidth Product: 40kHz
  • Wide Specified Supply Range: 3V to 30V
  • Operating Temperature Range: –40°C to 125°C
  • Rail-to-Rail Outputs
  • DFN and MS8 Packages
LT6023
Dual Micropower, 1.4V/μs Precision Rail-to-Rail Output Amplifier
±13.6V Input Range MUX Buffer MUX Buffer Response, 12V Step Product Package 1 Product Package 2 Product Package 3
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Documentation

Data Sheet

This is the most up-to-date revision of the Data Sheet.

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Tools & Simulations

Signal Chain Designer - BETA

Signal Chain Designer is a web-based tool designed to create and simulate complex precision signal chains. See your circuit’s performance before you commit to your PCB: transfer function, noise, power consumption, input range, and DC error. Quickly experiment with different parts and architectures. Signal chains can be exported to LTspice for further analysis.

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Analog Filter Wizard

Use the Analog Filter Wizard to design low-pass, high-pass, or band-pass filters with actual op amps in minutes. As you progress through the design process, you can observe the characteristics of your filter design from ideal specifications to real world circuit behavior. Quickly evaluate the tradeoffs in op amp specifications - including gain-bandwidth, noise, and supply current – to determine the best filter design for your requirements.

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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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