CMOS二进制位置敏感光电探测器(PSD)阵列

A. Makynen, T. Rahkonen, J. Kostamovaara
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引用次数: 10

摘要

介绍了一种用于位置传感的16 × 16二进制CMOS光电探测器阵列的实现和测试结果。与传统的位置敏感探测器(psd)不同,它能够同时进行高精度的多点检测。为了降低这类区域阵列的信号处理开销特性,采用了现场阈值二值检测和随机读取。阵列的填充系数和间距分别为30%和50 /spl mu/m。采用直径为280 /spl mu/m的光斑,总信号功率约为8 nW,脉冲宽度为8 ms,实现了4.3 /spl mu/m的量化有限位置传感精度。在弱反演条件下,由于阈值设置电流镜不匹配所产生的空间噪声限制了灵敏度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A CMOS binary position-sensitive photodetector (PSD) array
Implementation and test results of a 16 by 16 binary CMOS photodetector array for position sensing applications is presented. Unlike conventional position sensitive detectors (PSDs), it is capable of simultaneous multiple spot detection with high accuracy. To decrease signal processing overhead characteristic of this kind of area arrays, binary detection with on-site thresholding and random access readout is used. The fill factor and pitch of the array are 30% and 50 /spl mu/m, respectively. Quantization limited position sensing accuracy of 4.3 /spl mu/m is achieved using spot of a 280 /spl mu/m in diameter, total signal power of about 8 nW and pulse width of 8 ms. The sensitivity is limited by the spatial noise caused by the mismatch of threshold setting current mirrors operating in weak inversion.
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