LMC6482-MIL

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CMOS Dual Rail-to-Rail Input and Output Operational Amplifier

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Product details

Parameters

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Features

  • Typical Unless Otherwise Noted
  • Rail-to-Rail Input Common-Mode Voltage Range (Ensured Over Temperature)
  • Rail-to-Rail Output Swing (Within 20-mV of Supply Rail, 100-kΩ Load)
  • Ensured 3-V, 5-V, and 15-V Performance
  • Excellent CMRR and PSRR: 82 dB
  • Ultralow Input Current: 20 fA
  • High Voltage Gain (R L = 500 k Ω): 130 dB
  • Specified for 2-kΩ and 600-Ω Loads
  • Power-Good Output
  • Available in VSSOP Package

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Description

The LMC6482-MIL device provides a common-mode range that extends to both supply rails. This rail-to-rail performance combined with excellent accuracy, due to a high CMRR, makes it unique among rail-to-rail input amplifiers. The device is ideal for systems, such as data acquisition, that require a large input signal range. The LMC6482-MIL is also an excellent upgrade for circuits using limited common-mode range amplifiers such as the TLC272 and TLC277.

Maximum dynamic signal range is assured in low voltage and single supply systems by the rail-to-rail output swing of the LMC6482-MIL. The rail-to-rail output swing is ensured for loads down to 600 Ω of the device. Ensured low-voltage characteristics and low-power dissipation make the LMC6482-MIL especially well-suited for battery-operated systems. LMC6482-MIL is also available in a VSSOP package, which is almost half the size of a SOIC-8 device. See the LMC6484 data sheet for a quad CMOS operational amplifier with these same features.

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Technical documentation

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Type Title Date
* Data sheet LMC6482-MIL CMOS Dual Rail-to-Rail Input and Output Operational Amplifier datasheet Jun. 22, 2017
E-book The Signal e-book: A compendium of blog posts on op amp design topics Mar. 28, 2017
Application note AN-1234 RSDS™ Flat Panel Display Design Guidelines Part 1 (Rev. A) May 06, 2013
Application note AN-1237 RSDS™ Flat Panel Display Design Guidelines Part 2 (Rev. A) May 06, 2013
Application note AN-1515 A Comprehensive Study of the Howland Current Pump (Rev. A) Apr. 26, 2013
Application note Effect of Heavy Loads on Accuracy and Linearity of Op Amp Circuits (Rev. B) Apr. 22, 2013

Design & development

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Software development

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