用于空间应用的SiPM模拟前端电子器件

N. Müller, M. Cveczilberg, G. A. Sanca, F. Golmar, F. Izraelevitch, P. Levy
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引用次数: 0

摘要

硅光电倍增管是一种新型的固态光电器件。与传统的光电倍增管相比,它们具有几个优点,如优越的光子探测效率和时间分辨率。它们结构紧凑,机械坚固,对磁场不敏感,并且需要相对较低的偏置电压,这些特性对空间应用具有吸引力。在这项工作中,我们提出了一种用于sipm的模拟前端(AFE)电子设计,该设计针对超低光空间应用进行了优化。该系统由一个跨阻放大器和一个带差分LVDS输出的高速比较器组成,用于数据传输。讨论了设计考虑因素,并介绍了原型的制作,以及对其进行的模拟和数字表征测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SiPM Analog Front-End Electronics For Space-Borne Applications
Silicon photomultipliers (SiPMs) are novel optoelectronic devices of solid-state technology. They have several advantages with respect to the traditional photomultiplier tubes, such as a superior Photon Detection Efficiency and time resolution. They are compact, mechanically robust, insensitive to magnetic fields and require a relatively low bias voltage, which are attractive characteristics for space-borne applications. In this work, we present the design of an Analog Front-End (AFE) Electronics for SiPMs, optimized for ultra low-light space-borne applications. The system is composed by a transimpedance amplifier and a high speed comparator with differential LVDS output for data transmission. Design considerations are discussed and the fabrication of a prototype is presented, along with analog and digital characterization measurements performed on it.
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