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首页> 外文期刊>IEEE Transactions on Nuclear Science >First experimental characterization of ROTOR: the new switched-current VLSI amplifier for X-ray spectroscopy with silicon drift detectors
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First experimental characterization of ROTOR: the new switched-current VLSI amplifier for X-ray spectroscopy with silicon drift detectors

机译:ROTOR的首次实验表征:新型X射线光谱学的开关电流VLSI放大器,带有硅漂移检测器

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摘要

In this paper we present the results of an experimental characterization of ROTOR, a new VLSI shaping amplifier conceived for multi-anode Silicon Drift Detectors, or other multi-element solid-state X-ray detection systems. The readout scheme is suitable for the demanding requirements of new X-ray spectroscopy experiments with synchrotron light, like X-ray holography, where both high count-rates and good energy resolutions are required. The circuit, which is of time-variant nature, features a trapezoidal weighting function obtained by means of a switched-current technique. A first prototype of the circuit, integrated with the 1 /spl mu/m/5 V JFET/CMOS technology of the Fraunhofer-Institut, Duisburg (Germany), has been characterized in spectroscopy measurements with a Silicon Drift Detector. The experimental results are presented and discussed in the work.
机译:在本文中,我们介绍了ROTOR的实验表征结果,ROTOR是为多阳极硅漂移检测器或其他多元素固态X射线检测系统设计的新型VLSI成形放大器。读出方案适用于新的使用同步加速器光的X射线光谱实验的苛刻要求,例如X射线全息照相,要求同时具有高计数率和良好的能量分辨率。该电路具有时变特性,具有通过开关电流技术获得的梯形加权函数。该电路的第一个原型已与德国杜伊斯堡Fraunhofer-Institut的1 / spl mu / m / 5 V JFET / CMOS技术集成在一起,已通过硅漂移检测器进行了光谱测量。实验结果在工作中进行了介绍和讨论。

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