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Configurable Quadrant Photodetector: An Improved Position Sensitive Device

机译:可配置象限光电探测器:一种改进的位置敏感设备

摘要

Position sensitive detectors (PSDs), used in high-end biotechnology, are based on optical sensors built over quadrant photodetectors (QPDs) or active pixel sensor (APS). These devices are intended to measure slight movements of laser spots. The QPD are, by far, the best approach in terms of resolution and noise, but requires complex and expensive x - y micropositioners to perform sensor alignment with the incoming laser spot. The APSs are more versatile devices that can virtually align with the spot by means of device configuration. However, due to its intrisic digital nature, the SNR and the resolutions are degraded in APS. In this paper, a new type of device called configurable QPD and its theory of operation is presented. This new device combines the analog operation of the QPD with the configurability of the APS, by means of combining photodetectors elements with analog switches in a matrix-shaped architecture. Finally, a prototype chip has been fabricated and tested and its measurements results are presented.
机译:高端生物技术中使用的位置敏感探测器(PSD)基于在象限光电探测器(QPD)或有源像素传感器(APS)之上构建的光学传感器。这些设备旨在测量激光光斑的轻微移动。到目前为止,QPD是分辨率和噪声方面最好的方法,但是需要复杂且昂贵的x-y微型定位器才能将传感器与入射的激光点对准。 APS是功能更广泛的设备,可以通过设备配置虚拟地与现场对齐。但是,由于其固有的数字特性,APS的SNR和分辨率会降低。本文提出了一种称为可配置QPD的新型设备及其工作原理。通过将光电探测器元件与矩阵形架构中的模拟开关相结合,该新设备将QPD的模拟操作与APS的可配置性相结合。最后,一个原型芯片已经被制造和测试,并给出了其测量结果。

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