Product details

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  • Wide Supply Ranges
    • Single Supply: 3 V to 32 V
    • Dual Supplies: ±1.5 V to ±16 V
  • Low Supply-Current Drain Independent of
    Supply Voltage: 0.8 mA Typical
  • Common-Mode Input Voltage Range Includes Ground, Allowing Direct Sensing Near Ground
  • Low Input Bias and Offset Parameters
    • Input Offset Voltage: 3 mV Typical
    • Input Offset Current: 2 nA Typical
    • Input Bias Current: 20 nA Typical
  • Differential Input Voltage Range Equal to Maximum-Rated Supply Voltage:
    32 V
  • Open-Loop Differential Voltage Amplification:
    100 V/mV Typical
  • Internal Frequency Compensation
  • On Products Compliant to MIL-PRF-38535,
    All Parameters are Tested Unless Otherwise Noted. On All Other Products, Production Processing Does Not Necessarily Include Testing of All Parameters.
  • Wide Supply Ranges
    • Single Supply: 3 V to 32 V
    • Dual Supplies: ±1.5 V to ±16 V
  • Low Supply-Current Drain Independent of
    Supply Voltage: 0.8 mA Typical
  • Common-Mode Input Voltage Range Includes Ground, Allowing Direct Sensing Near Ground
  • Low Input Bias and Offset Parameters
    • Input Offset Voltage: 3 mV Typical
    • Input Offset Current: 2 nA Typical
    • Input Bias Current: 20 nA Typical
  • Differential Input Voltage Range Equal to Maximum-Rated Supply Voltage:
    32 V
  • Open-Loop Differential Voltage Amplification:
    100 V/mV Typical
  • Internal Frequency Compensation
  • On Products Compliant to MIL-PRF-38535,
    All Parameters are Tested Unless Otherwise Noted. On All Other Products, Production Processing Does Not Necessarily Include Testing of All Parameters.

This device consist of four independent high-gain frequency-compensated operational amplifiers that are designed specifically to operate from a single supply or split supply over a wide range of voltages.

This device consist of four independent high-gain frequency-compensated operational amplifiers that are designed specifically to operate from a single supply or split supply over a wide range of voltages.

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Technical documentation

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Type Title Date
* Data sheet LM324-MIL Quadruple Operational Amplifier datasheet 21 Jun 2017
E-book The Signal e-book: A compendium of blog posts on op amp design topics 28 Mar 2017
Application note AN-256 Circuitry for Inexpensive Relative Humidity Measurement (Rev. B) 06 May 2013
Application note AN-262 Applying Dual and Quad FET Op Amps (Rev. B) 06 May 2013
Application note AN-260 A 20-Bit (1 ppm) Linear Slope-Integrating A/D Converter (Rev. B) 05 May 2013
Application note AN-30 Log Converters (Rev. B) 01 May 2013
Application note AN-79 IC Preamplifier Challenges Choppers on Drift (Rev. B) 01 May 2013
Application note AN-278 Designing with a New Super Fast Dual Norton Amplifier (Rev. B) 23 Apr 2013
Application note AN-263 Sine Wave Generation Techniques (Rev. C) 22 Apr 2013
Application note Audio Applications of Linear Integrated Circuits 02 May 2004

Design & development

For additional terms or required resources, click any title below to view the detail page where available.

Simulation model

LMx24_LM2902 PSpice Model (Rev. B)

SGLM009B.ZIP (30 KB) - PSpice Model
Simulation model

LMx24_LM2902 Reference Design

SGLM036.ZIP (22 KB) - TINA-TI Reference Design
Simulation model

LMx24_LM2902 TINA-TI Macro

SGLM037.ZIP (4 KB) - TINA-TI Spice Model
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