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February 21, 2026IEICE Electronics Express0 citationsOpen Access

Optimization of temperature offset drift and noise efficiency factor for chopper and auto-zero instrumentation amplifiers using a Vth tracking reference

MPMinki ParkZLZhou LeiYMYoung-Jae Min

Key Points

  • The central aim is to optimize temperature offset drift and noise efficiency factor for specific types of instrumentation amplifiers.
  • Developed a prototype amplifier using 0.35μm CMOS technology.
  • Implemented a Vth tracking reference to manage offset drift.
  • Measured temperature offset drift and noise efficiency during testing.
  • Achieved an offset drift of 80 nV/℃.
  • Measured a noise efficiency factor of 2.45 under a supply current of 1.1 mA.

Abstract

This letter introduces a method to optimize the temperature offset drift and noise efficiency factor (NEF) for chopper and auto-zero instrumentation amplifiers. In order to optimize offset drift and NEF, our proposed amplifier exploits a threshold voltage (Vth) tracking reference. A prototype of the proposed amplifier was fabricated using a standard 0.35μm complementary metal oxide semiconductor technology and occupies 0.174 mm2. Using the Vth tracking reference, an offset drift of 80 nV/℃ is achieved. The measured NEF was 2.45 with a supply current of 1.1 mA.

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Cite This Study

Park et al. (2026) studied this question.

synapsesocial.com/papers/69994ba9873532290d01fbf8https://doi.org/10.1587/elex.23.20260076
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