用于检测中频弱光信号的低噪声前端电子器件

Cunbao Lin, Shuhua Yan, Z. Du, Chun-hua Wei, Guochao Wang
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引用次数: 1

摘要

提出了一种新型的低噪声前端电子器件,用于检测强度约为10 μW、频率大于2.7 MHz的光信号。首先对直流电源、前置放大器和主放大器进行了设计、仿真和实现。采用小尺寸元器件,使电源体积小,前置放大器和主放大器的电容最小,避免了信号的相移。所开发的前端电子器件的性能在交叉光栅衍射实验中得到了验证。结果表明,±5 V直流电源的输出峰顶噪声约为2 mV,输出总电流为1.25 A。前置放大器输出信号的信噪比(SNR)约为50 dB,在主放大器后增加到近60 dB,这意味着该前端电子器件特别适合用于相敏和集成精密测量系统中。
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Low-noise front-end electronics for detection of intermediate-frequency weak light signals
A novel low-noise front-end electronics was proposed for detection of light signals with intensity about 10 μW and frequency above 2.7 MHz. The direct current (DC) power supply, pre-amplifier and main-amplifier were first designed, simulated and then realized. Small-size components were used to make the power supply small, and the pre-amplifier and main-amplifier were the least capacitors to avoid the phase shift of the signals. The performance of the developed front-end electronics was verified in cross-grating diffraction experiments. The results indicated that the output peak-topeak noise of the ±5 V DC power supply was about 2 mV, and the total output current was 1.25 A. The signal-to-noise ratio (SNR) of the output signal of the pre-amplifier was about 50 dB, and it increased to nearly 60 dB after the mainamplifier, which means this front-end electronics was especially suitable for using in the phase-sensitive and integrated precision measurement systems.
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