LT6010

PRODUCTION

135µA, 14nV/√Hz, Rail-to-Rail Output Precision Op Amp with Shutdown

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Overview

  • 35µV Maximum Offset Voltage
  • 110pA Maximum Input Bias Current
  • 135µA Supply Current
  • Rail-to-Rail Output Swing
  • 12µA Supply Current in Shutdown
  • 120dB Minimum Voltage Gain (VS = ±15V)
  • 0.8µV/°C Maximum VOS Drift
  • 14nV/√Hz Input Noise Voltage
  • 2.7V to ±18V Supply Voltage Operation
  • Operating Temperature Range: –40°C to 85°C
  • Space Saving 3mm × 3mm DFN Package

The LT6010 op amp combines low noise and high precision input performance with low power consumption and rail-to-rail output swing.

Input offset voltage is trimmed to less than 35µV. The low drift and excellent long-term stability guarantee a high accuracy over temperature and over time. The 110pA maximum input bias current and 120dB minimum voltage gain further maintain this precision over operating conditions.

The LT6010 works on any power supply voltage from 2.7V to 36V, and draws only 135µA of supply current on a 5V supply. A power saving shutdown feature reduces supply current to 12µA. The output voltage swings to within 40mV of either supply rail, making the amplifier a good choice for low voltage single supply operation.

The LT6010 is fully specified at 5V and ±15V supplies and from –40°C to 85°C. The device is available in SO-8 and space-saving 3mm × 3mm DFN packages. This op amp is also available in dual (LT6011) and quad (LT6012) packages.

Applications

  • Thermocouple Amplifiers
  • Precision Photo Diode Amplifiers
  • Instrumentation Amplifiers
  • Battery-Powered Precision Systems

LT6010
135µA, 14nV/√Hz, Rail-to-Rail Output Precision Op Amp with Shutdown
Single Supply Current Source for Platinum RTD Distribution of Offset Voltage Drift Product Package 1 Product Package 2
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Documentation

Data Sheet

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Tools & Simulations

LTspice


Models for the following parts are available in LTspice:

  • LT6010

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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Evaluation Kits

eval board
DC417B

DIP8, MS8, S8, SOT23-6 | Multi-Footprint General Purpose Board for Single Op. Amp

Product Details

DC417B: Demo Board


 


DC417B
DIP8, MS8, S8, SOT23-6 | Multi-Footprint General Purpose Board for Single Op. Amp
DC417B Demo Board DC417B Demo Board DC417B Demo Board DC417B Demo Board DC417B - Schematic

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