All Alternatives

Alternatives to Texas Instruments LMC7111BIM5/NOPB

Texas Instruments LMC7111BIM5/NOPB and its qualified second sources, compared on form, fit and function, stock, lifecycle and price — the same checks Parter runs inside a BOM.

Equivalent and substitute parts for Texas Instruments LMC7111BIM5/NOPB

LMC7111BIM5/NOPB compared against its qualified second sources
LMC7111BIM5/NOPBTexas InstrumentsTLV2711IDBVRTexas InstrumentsTLV2731IDBVRTexas Instruments+1more
FFF CompatibilityExactly matches the unusual reversed-supply pinout (Pin 2 = VDD+, Pin 5 = VDD-/GND) and SOT-23-5 footprint.Matches the identical SOT-23-5 physical package dimensions and mounting footprint.Operates down to 2.7V with rail-to-rail input/output and has nearly identical micropower characteristics and bandwidth. Maximum supply voltage is limited to 10V (versus 11V max of the original).Exactly matches the unusual reversed-supply pinout (Pin 2 = VDD+, Pin 5 = VDD-/GND) and SOT-23-5 footprint.Identical SOT-23-5 physical package dimensions and footprint.Provides significantly higher bandwidth and speed, but draws higher supply current (850 µA vs 25 µA) and has a slightly lower maximum supply voltage (10V vs 11V).
AI Summary

LMC7111BIM5/NOPB by Texas Instruments: Standard (General Purpose) Amplifier 1 Circuit Rail-to-Rail SOT-23-5.

This is the ideal drop-in replacement. It is specifically designed with the same 'reversed-supply' pinout as the LMC7111, meaning it can be placed directly on existing circuit boards without layout changes while maintaining micropower characteristics.

  • Direct pin-compatible drop-in replacement (uses the same reversed-supply pinout as the LMC7111)
  • Extremely low micropower supply current (13 µA typical vs 25 µA of the LMC7111)
  • Very similar 65 kHz gain bandwidth (vs 50 kHz of the LMC7111)
  • Slightly lower maximum supply voltage ceiling (10V vs 11V)

This drop-in alternative is ideal if your application can benefit from significantly higher speed and bandwidth, though it trades off with a higher quiescent current draw.

  • Direct pin-compatible drop-in replacement (uses the same reversed-supply pinout)
  • Much higher gain-bandwidth product (2 MHz vs 50 kHz of the LMC7111) for faster signal response
  • Higher slew rate (1.6 V/µs vs 0.03 V/µs)
  • Higher supply current draw (850 µA typical vs 25 µA)
  • Slightly lower maximum supply voltage ceiling (10V vs 11V)
Lifecycle StatusObsoleteActiveActive
Market AvailabilityIn stockIn stockIn stock
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