2011Unpublished venueRequires access

Design and simulation of a lock-in amplifier

Qing Ping Yang

Open publisher page 3 citations

Abstract

Lock-in amplifiers are of great practical values in that they can extract weak signals from extremely noisy environment However, traditional lock-in amplifiers fail in making the phase of reference signals track the phase of input signals automatically, a Simplorer-based lock-in amplifier, therefore, was designed and simulated to tackle this problem. This lock-in amplifier enabled the two phases keep consistent with each other and thus achieved the function of cross-correlation detection. Consequently, it showed better performance in lessening noises and enhanced the function of extracting weak signals from intense noises, and by processing these signals, the desirable signal could be obtained.

About this research paper

What this paper is about

Lock-in amplifiers are of great practical values in that they can extract weak signals from extremely noisy environment However, traditional lock-in amplifiers fail in making the phase of reference signals track the phase of input signals automatically, a Simplorer-based lock-in amplifier, therefore, was designed and simulated to tackle this problem. This lock-in amplifier enabled the two phases keep consistent with each other and thus achieved the function of cross-correlation detection. Consequently, it showed better performance in lessening noises and enhanced the function of extracting weak signals from intense noises, and by processing these signals, the desirable signal could be obtained.

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OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Lock-in amplifiers are of great practical values in that they can extract weak signals from extremely noisy environment However, traditional lock-in amplifiers fail in making the phase of reference signals track the phase of input signals automatically, a Simplorer-based lock-in amplifier, therefore, was designed and simulated to tackle this problem. This lock-in amplifier enabled the two phases keep consistent with each other and thus achieved the function of cross-correlation detection. Consequently, it showed better performance in lessening noises and enhanced the function of extracting weak signals from intense noises, and by processing these signals, the desirable signal could be obtained.

Key concepts: Lock-in amplifier, Amplifier, Lock (firearm), Computer science, SIGNAL (programming language), Electronic engineering, Function (biology), Engineering

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