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Design of a Cost-Effective Analog Lock-In Amplifier Using Phase Sensitive Detector

机译:使用相位敏感检测器设计经济高效的模拟锁放大器

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The measurement of a physical quantity in the presence of noise is a typical situation in research science. A lock-in amplifier is an electronic measurement device which has the capability of detecting, amplifying, extracting and measuring small signals buried within noise sources. This noise source can typically be thousands of times greater than the original signal. This paper details the procedure of building a simple and cost-effective analog lock-in amplifier. Some approaches have been investigated in designing this lock-in amplifier, taking into consideration the efficiency, expense, and practicality of the design. The final design is simulated in NI Multisim program and then executed in a practical circuit using basic, inexpensive electronic components. Using the essential technique of phase sensitive detection, the lock-in amplifier can provide extensive improvements on the signal-to-noise ratio. The simulation output presents very accurate results showing the functionality of the lock-in amplifier. The practical output also shows a compelling result with the presence of minor fluctuations in the amplitude of the signal.
机译:噪声存在下的物理量的测量是研究科学的典型情况。锁定放大器是一种电子测量装置,其具有检测,放大,提取和测量掩埋在噪声源内的小信号的能力。该噪声源通常可以比原始信号大的数千倍。本文详细介绍了构建简单且经济高效的模拟锁放大器的程序。考虑到设计的效率,费用和实用性,在设计这种锁定放大器时已经研究了一些方法。最终设计在NI MultiSim程序中模拟,然后使用基本廉价的电子元件在实用电路中执行。使用相位敏感检测的基本技术,锁定放大器可以对信噪比提供广泛的改进。仿真输出具有非常准确的结果,显示锁定放大器的功能。实际输出还显示出在信号幅度中存在轻微波动的引人注目的结果。

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