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Multichannel implementation of ROTOR amplifier for the readout of silicon drift detectors arrays

机译:ROTOR放大器的多通道实现,用于读出硅漂移检测器阵列

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In this paper, we present a multichannel very large scale integration implementation of ROTOR, a time-variant parameters shaping amplifier designed for the readout of high-rate asynchronous signals from multi-element solid-state X-ray detection systems. In particular, ROTOR was optimized for high-rate X-ray spectroscopy with multi-element semiconductor drift detectors (SDDs) in applications using synchrotron light sources such as X-ray holography or extended X-ray absorption fine structure (EXAFS) experiments. A 30 channels circuit has been implemented in the 1 /spl mu/m/5 V JFET/CMOS technology of the Fraunhofer-Institut, Duisburg, Germany. Each analog channel features a trapezoidal weighting function, 1.6 /spl mu/s wide, obtained by means of a switched-current technique. A digital section, directly integrated on the ROTOR chip, allows the timing and control of all the analog switches of the amplifiers as required for the circuit functionality, without the need of external signals. The main features of the circuit design and the results obtained in the experimental characterization of the prototype, also in spectroscopy measurements by using an SDD, are presented.
机译:在本文中,我们提出了ROTOR的多通道超大规模集成实现,ROTOR是一种时变参数整形放大器,设计用于从多元素固态X射线检测系统中读出高速率异步信号。特别是,在使用同步加速器光源(例如X射线全息照相法或扩展X射线吸收精细结构(EXAFS)实验)的应用中,使用多元素半导体漂移检测器(SDD)对ROTOR进行了优化,以用于高速率X射线光谱。德国杜伊斯堡弗劳恩霍夫研究所的1 / spl mu / m / 5 V JFET / CMOS技术中已实现了30通道电路。每个模拟通道都具有梯形加权功能,宽度为1.6 / spl mu / s,是通过开关电流技术获得的。直接集成在ROTOR芯片上的数字部分可根据电路功能的需要,对放大器的所有模拟开关进行定时和控制,而无需外部信号。介绍了电路设计的主要特征以及在原型的实验表征中获得的结果,以及在使用SDD的光谱测量中获得的结果。

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