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Clock and trigger distribution for CBM-TOF quality evaluation of RPC super module detector assemblies

机译:RPC超模块探测器组件CBM-TOF质量评估的时钟和触发分布

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摘要

RPC Super module (SM) detector assemblies are used for charged hadron identification in the Time-of-Flight (TOF) spectrometer at the Compressed Baryonic Matter (CBM) experiment. Each SM contains several multi-gap Resistive Plate Chambers (MRPCs) and provides up to 320 electronic channels in total for high-precision time measurements. Time resolution of the Time-to- Digital Converter (TDC) is required to be better than 20 ps. During mass production, the quality of each SM needs to be evaluated. In order to meet the requirements, the system clock signal as well as the trigger signal should be distributed precisely and synchronously to all electronics modules within the evaluation readout system. In this paper, a hierarchical clock and trigger distribution method is proposed for the quality evaluation of CBM-TOF SM detectors. In a first stage, the master clock and trigger module (CTM) allocated in a 6U PXI chassis distributes the clock and trigger signals to the slave CTM in the same chassis. In a second stage, the slave CTM transmits the clock and trigger signals to the TDC readout module (TRM) through one optical link. In a third stage, the TRM distributes the clock and trigger signals synchronously to 10 individual TDC boards. Laboratory test results show that the clock jitter at the third stage is less than 4 ps (RMS) and the trigger transmission latency from the master CTM to the TDC is about 272 ns with 11 ps (RMS) jitter. The overall performance complies well with the required specifications.
机译:RPC超级模块(SM)检测器组件用于压缩的放静克物质(CBM)实验的飞行时间(TOF)光谱仪中的带电HOTRON识别。每个SM包含几个多间隙电阻板室(MRPC),总共提供高精度时间测量的320个电子通道。时间到数字转换器(TDC)的时间分辨率需要优于20 ps。在大规模生产期间,需要评估每个SM的质量。为了满足要求,系统时钟信号以及触发信号应在评估读数系统内的所有电子模块精确地和同步分发。在本文中,提出了一种分层时钟和触发分布方法,用于CBM-TOF SM探测器的质量评估。在第一阶段,在6U PXI机箱中分配的主时钟和触发模块(CTM)将时钟分配到同一机箱中的从CTM触发到从CTM。在第二阶段,从CTM通过一个光链路将时钟和触发信号发送到TDC读出模块(TRM)。在第三阶段,TRM将时钟分配到10个单独TDC板同步触发信号。实验室测试结果表明,第三阶段的时钟抖动小于4 ps(rms),并且从主CTM到TDC的触发传输延迟是大约272 ns,具有11 ps(rms)抖动。整体性能符合所需规格。

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  • 作者单位

    State Key Laboratory of Particle Detection and Electronics University of Science and Technology of China 96 JinZhai Road Hefei China;

    State Key Laboratory of Particle Detection and Electronics University of Science and Technology of China 96 JinZhai Road Hefei China;

    State Key Laboratory of Particle Detection and Electronics University of Science and Technology of China 96 JinZhai Road Hefei China;

    State Key Laboratory of Particle Detection and Electronics University of Science and Technology of China 96 JinZhai Road Hefei China;

    State Key Laboratory of Particle Detection and Electronics University of Science and Technology of China 96 JinZhai Road Hefei China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 仪器、仪表;
  • 关键词

    Instrumentation and methods for time-of-flight (TOF) spectroscopy; Modular electronics; Data acquisition circuits;

    机译:飞行时间(TOF)光谱的仪器方法;模块化电子;数据采集电路;

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