针对红外激光干涉仪精度计算的探测器阵列和电路优化

Xiaojie Sun
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引用次数: 1

摘要

低噪声跨阻放大器(TIA)用于宽带PIN(正本征负)激光探测器阵列,将红外干涉激光功率产生的光电流转换为具有指定幅值和频率响应的输出电压。在本文中,我们考虑了一个PIN检测器阵列与TIA电路耦合的规格。然后研究了影响高精度计算结果的问题:探测器阵列和TIA前置放大器的低噪声性能;调频干扰信号对幅值波动的影响探测器的感光面积(PA)和探测器之间的物理距离。我们发现噪声性能与信噪比(SNR)有关,定义了最小的计算误差。与灵敏度相关的PA对结电容和幅值波动有影响。同时,与暗电流相关的偏置电路模式也会影响幅值响应。在此基础上,提出了一种由5个传感器组成的PIN探测器阵列对。根据参考激光干涉仪的要求,探测器阵列的中心响应波长在850nm左右。
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Optimization of detector arrays and circuits targeted for precision calculation in infrared laser interferometer
A low noise transimpedance amplifier (TIA) is used in a wide band PIN (Positive Intrinsic Negative) laser detector arrays to transform the photo current produced by an infrared interfering laser power to an output voltage with a specified amplitude and frequency response. In this paper we consider the specifications of a PIN detector array coupled with a TIA circuit. Then the following issues that influence high precision calculation results will be investigated: low noise performance of the detector array and TIA pre-amplifier; fluctuation effects of amplitude caused by frequency modulation interfering signal; photosensitive area (PA) of the detector and physical distance between detectors. We find that noise performance related with signal to noise ratio (SNR) defines the minimum calculation error. And PA related with sensitivity has influence on junction capacitance and amplitude fluctuation. Meanwhile bias circuit mode related with dark current also influence amplitude response. Based on these issues, a PIN detector array pair is constructed of five sensors arranged in cross. The center response wavelength of the detector array is around 850 nm according to the requirement of the referential laser interferometer.
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