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MUSIC: An 8 channel readout ASIC for SiPM arrays

机译:音乐:用于SiPM阵列的8通道读出ASIC

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摘要

This paper presents an 8 channel ASIC for SiPM anode readout based on a novel low input impedance current conveyor (under patent). This Multiple Use SiPM Integrated Circuit (MUSIC) has been designed to serve several purposes, including, for instance, the readout of SiPM arrays for some of the Cherenkov Telescope Array (CTA) cameras. The current division scheme at the very front end part of the circuit splits the input current into differently scaled copies which are connected to independent current mirrors. The circuit contains a tunable pole zero cancellation of the SiPM recovery time constant to deal with sensors from different manufacturers. Decay times up to 100 ns are supported covering most of the available SiPM devices in the market. MUSIC offers three main features: (1) differential output of the sum of the individual input channels; (2) 8 individual single ended analog outputs and; (3) 8 individual binary outputs. The digital outputs encode the amount of collected charge in the duration of the digital signal using a time over threshold technique. For each individual channel, the user must select the analog or digital output. Each functionality, the signal sum and the 8 A/D outputs, include a selectable dual-gain configuration. Moreover, the signal sum implements dual-gain output providing a 15 bit dynamic range. Full die simulation results of the MUSIC designed using AMS 0.35μm SiGe technology are presented: total die size of 9 mm~2, 500 MHz bandwidth for channel sum and 150 MHz bandwidth for A/D channels, low input impedance (≈32Ω), single photon output pulse width at half maximum (FWHM) between 5 and 10 ns and with a power consumption of ≈ 30 mW/ch plus ≈ 200 mW for the 8 ch sum. Encapsulated prototype samples of the MUSIC are expected by March 2016.
机译:本文提出了一种基于新颖的低输入阻抗电流传输器(已获得专利)的用于SiPM阳极读数的8通道ASIC。这种多用途SiPM集成电路(MUSIC)已设计用于多种用途,例如,包括为一些Cherenkov望远镜阵列(CTA)相机读取SiPM阵列。电路最前端的电流分配方案将输入电流分成不同比例的副本,这些副本连接到独立的电流镜。该电路包含SiPM恢复时间常数的可调整零极点抵消功能,以应对来自不同制造商的传感器。支持高达100 ns的衰减时间,涵盖市场上大多数可用的SiPM器件。 MUSIC提供三个主要功能:(1)各个输入通道总和的差分输出; (2)8个独立的单端模拟输出,以及; (3)8个单独的二进制输出。数字输出使用超时阈值技术对数字信号持续时间内收集到的电荷量进行编码。对于每个单独的通道,用户必须选择模拟或数字输出。每种功能(信号总和和8个A / D输出)均包括可选的双增益配置。此外,信号总和实现了双增益输出,可提供15位动态范围。给出了使用AMS0.35μmSiGe技术设计的MUSIC的完整芯片仿真结果:总芯片尺寸为9 mm〜2,通道总和为500 MHz带宽,A / D通道为150 MHz带宽,低输入阻抗(≈32Ω),单光子输出脉冲宽度为5ns至10ns之间的一半最大值(FWHM),功耗为≈30 mW / ch,加上8 ch总和的≈200 mW。 MUSIC的封装原型样品有望在2016年3月之前发布。

著录项

  • 来源
    《Optical sensing and detection IV》|2016年|98990G.1-98990G.10|共10页
  • 会议地点 Brussels(BE)
  • 作者单位

    Institute of Cosmos Sciencies - University of Barcelona (ICC-UB), Marti i Franques, 1, 08028, Barcelona, Spain;

    Institute of Cosmos Sciencies - University of Barcelona (ICC-UB), Marti i Franques, 1, 08028, Barcelona, Spain;

    Institute of Cosmos Sciencies - University of Barcelona (ICC-UB), Marti i Franques, 1, 08028, Barcelona, Spain;

    Institute of Cosmos Sciencies - University of Barcelona (ICC-UB), Marti i Franques, 1, 08028, Barcelona, Spain;

    Institute of Cosmos Sciencies - University of Barcelona (ICC-UB), Marti i Franques, 1, 08028, Barcelona, Spain;

    Institute of Cosmos Sciencies - University of Barcelona (ICC-UB), Marti i Franques, 1, 08028, Barcelona, Spain;

    Institute of Cosmos Sciencies - University of Barcelona (ICC-UB), Marti i Franques, 1, 08028, Barcelona, Spain;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    SiPM anode readout; photo-detection; current conveyor; pole zero cancellation; ASIC;

    机译:SiPM阳极读数;光电检测电流输送机零极点取消;专用集成电路;

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