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Design of a Readout Circuit Chip for a Cosmic Ray Muon Detector with Multi-Angular Acceptance

机译:具有多角度接收的宇宙射线μ子探测器的读出电路芯片设计

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摘要

A cosmic ray muon is a natural ray source with strong penetrability and has broad application prospects, especially in the monitoring of atmospheric temperature variations. In order to accurately deduce the atmospheric temperature variations, a global cosmic ray monitoring network is needed, and a low-cost, low-power, high-accuracy, efficient, and portable muon detection system is required. In this paper, we present the design of a 32-channel readout circuit chip for a muon detector with multi-angular acceptance. It can detect the information of incident muon rays, including both the arrival time and the pulse width of the signals. A novel readout circuit structure using a digital phase-locked loop (DLL) is proposed to decrease the frequency of the system clock without sacrificing the time measurement accuracy. For an input system clock of 50 MHz, a time resolution of ±1 ns is achieved by using a DLL generating 20 equally delayed clock signals. The designed readout circuit chip follows a 0.18 μm mixed-signal CMOS process, and the simulation results demonstrate the above-mentioned functions and performances.
机译:宇宙射线μ子是具有强渗透性的天然射线源,具有广阔的应用前景,尤其是在大气温度变化的监测中。为了准确地推断出大气温度变化,需要一个全球宇宙射线监测网络,并且需要一种低成本,低功率,高精度,高效且便携式的μ子检测系统。在本文中,我们提出了一种用于具有多角度接受度的μ子探测器的32通道读出电路芯片的设计。它可以检测入射的μ子射线信息,包括信号的到达时间和脉冲宽度。提出了一种使用数字锁相环(DLL)的新颖的读出电路结构,以在不牺牲时间测量精度的情况下降低系统时钟的频率。对于50 MHz的输入系统时钟,通过使用DLL生成20个均等延迟的时钟信号,可以实现±1 ns的时间分辨率。设计的读出电路芯片采用0.18μm混合信号CMOS工艺,仿真结果证明了上述功能和性能。

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