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A custom readout electronics for the BESIII CGEM detector

机译:BESIII CGEM检测器的自定义读数电子设备

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For the upgrade of the inner tracker of the BESIII spectrometer, planned for 2018, a lightweight tracker based on an innovative Cylindrical Gas Electron Multiplier (CGEM) detector is now under development. The analogue readout of the CGEM enables the use of a charge centroid algorithm to improve the spatial resolution to better than 130 μm while loosening the pitch strip to 650 μm, which allows to reduce the total number of channels to about 10 000. The channels are readout by 160 dedicated integrated 64-channel front-end ASICs, providing a time and charge measurement and featuring a fully-digital output. The energy measurement is extracted either from the time-over-threshold (ToT) or the 10-bit digitisation of the peak amplitude of the signal. The time of the event is generated by quad-buffered low-power TDCs, allowing for rates in excess of 60 kHz per channel. The TDCs are based on analogue interpolation techniques and produce a time stamp (or two, if working in ToT mode) of the event with a time resolution better than 50 ps. The front-end noise, based on a CSA and a two-stage complex conjugated pole shapers, dominate the channel intrinsic time jitter, which is less than 5 ns r.m.s. The time information of the hit can be used to reconstruct the track path, operating the detector as a small TPC and hence improving the position resolution when the distribution of the cloud, due to large incident angle or magnetic field, is very broad. Event data is collected by an off-detector motherboard, where each GEM-ROC readout card handles 4 ASIC carrier FEBs (512 channels). Configuration upload and data readout between the off-detector electronics and the VME-based data collector cards are managed by bi-directional fibre optical links. This paper covers the design of a custom front-end electronics for the readout of the new inner tracker of the BESIII experiment, addressing the relevant design aspects of the detector electronics and the front-end ASIC for the CGEM readout, and reviewing the first silicon results of the chip prototype.
机译:对于计划于2018年的BESIII光谱仪内部跟踪器的升级,基于创新的圆柱体气体电子乘数(CGEM)检测器的轻量级跟踪器现已正在开发中。 CGEM的模拟读数使使用电荷质心算法可以将空间分辨率提高到比130μm更好的,同时将螺距条松开至650μm,从而可以将通道总数降低到约10000。通道为约10 000。 160个专用集成的64通道前端ASIC读数,提供时间和充电测量,并具有完全数字的输出。能量测量是从阈值(TOT)或信号峰值幅度的10位数字化中提取的。事件的时间是由四边形缓冲的低功率TDC生成的,允许每个通道超过60 kHz的速率。 TDC基于模拟插值技术,并产生时间分辨率优于50 PS的事件的时间戳(或两个,如果在TOT模式下工作)。前端噪声基于CSA和两阶段的复合物共轭杆塑料,主导了通道内在的时间抖动,该通道小于5 ns R.M.M.S.命中的时间信息可用于重建轨道路径,将检测器作为小型TPC运行,因此当由于较大的入射角或磁场而云的分布非常广泛时,可以改善位置分辨率。事件数据由一个探测器主板收集,每个GEM-ROC读数卡都处理4个ASIC载体FEB(512个频道)。在访问器电子设备和基于VME的数据收集器卡之间的配置上传和数据读数由双向光纤链接管理。本文涵盖了自定义前端电子设备的设计,以读取BESIII实验的新内部跟踪器,以解决检测器电子设备的相关设计方面以及CGEM读数的前端ASIC,并审查第一个硅芯片原型的结果。

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