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May 9, 2026Measurement Science Review0 citationsOpen Access

Methods and Practical Aspects of Measuring 1/f Noise in Zero-drift Operational Amplifiers

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JSJaromir SukubaNBNikolai BeevJSJakub Sabo

Key Points

  • Characterizing noise performance of operational amplifiers at low frequencies using innovative measurement techniques.
  • Presented and compared different techniques for voltage noise density measurement.
  • Developed methods allowing noise measurement with a unity gain configuration.
  • Highlighted practical aspects necessary for obtaining reliable results.
  • Introduced an open-hardware design for an ultra low-noise amplifier.
  • Demonstrated that traditional high gain configurations hinder accurate noise measurement.
  • Provided techniques suitable for using regular measuring equipment in labs.

Abstract

Abstract Operational amplifiers are an important ingredient of analogue electronic circuits, and their noise performance is an essential design parameter. However, at low frequencies, data provided by component manufacturers usually cover only a limited range (typically 0.1 Hz to 10 Hz). The frequencies below this range, critical for high-stability and precision circuits, such as signal conditioning stages, voltage references, or digitizing voltmeters, are rarely addressed. Therefore, it is often necessary to characterize the parts. The traditional noise measurement technique requires the amplifier to be configured for very high gain, which is seldom the way the amplifier is used. Different techniques for voltage noise density measurement are presented and compared in this paper, including two methods that allow for noise measurement with a unity gain configuration - a mode that has not been explored until now. Practical aspects required to obtain reliable results are highlighted. A side product of this work is an open-hardware design of an ultra low-noise amplifier, which can be used to measure the noise performance of operational amplifiers or resistors using regular measuring equipment readily available at universities or industrial laboratories.

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Cite This Study

Sukuba et al. (2026) studied this question.

synapsesocial.com/papers/69fed140b9154b0b828786e7https://doi.org/10.2478/msr-2026-0017
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