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基于可重构双现场可编程门阵列方法的用于符合测量的高空间分辨率探测器系统。

High Spatial Resolution Detector System Based on Reconfigurable Dual-FPGA Approach for Coincidence Measurements.

作者信息

Cautero Marco, Garzetti Fabio, Lusardi Nicola, Sergo Rudi, Stebel Luigi, Costa Andrea, Bonanno Gabriele, Ronconi Enrico, Geraci Angelo, Píš Igor, Magnano Elena, Pedio Maddalena, Cautero Giuseppe

机构信息

Dipartimento di Fisica, Università degli Studi di Trieste, 34127 Trieste, Italy.

Elettra Sincrotrone Trieste S.C.p.A., S.S. 14-km 163,5 in AREA Science Park, 34149 Basovizza, TS, Italy.

出版信息

Sensors (Basel). 2024 Aug 13;24(16):5233. doi: 10.3390/s24165233.

Abstract

Time-resolved spectroscopic and electron-ion coincidence techniques are essential to study dynamic processes in materials or chemical compounds. For this type of analysis, it is necessary to have detectors capable of providing, in addition to image-related information, the time of arrival for each individual detected particle ("x, y, time"). The electronics capable of handling such sensors must meet requirements achievable only with time-to-digital converters (TDC) with a resolution on the order of tens of picoseconds and the use of a field-programmable gate array (FPGA) to manage data acquisition and transmission. This study introduces the design and implementation of an innovative TDC based on two FPGAs working symbiotically with different tasks: the first (AMD/Xilinx Artix 7) directly implements a TDC, aiming for a temporal precision of 12 picoseconds, while the second (Intel Cyclone 10) manages the acquisition and connectivity with the external world. The TDC has been optimized to operate on eight channels (+ sync) simultaneously but is potentially extendable to a greater number of channels, making it particularly suitable for coincidence measurements where it is necessary to temporally correlate multiple pieces of information from various measurement systems.

摘要

时间分辨光谱技术和电子-离子符合技术对于研究材料或化合物中的动态过程至关重要。对于此类分析,除了与图像相关的信息外,还需要有能够提供每个检测到的单个粒子到达时间(“x,y,时间”)的探测器。能够处理此类传感器的电子设备必须满足仅使用分辨率在几十皮秒量级的时间数字转换器(TDC)以及使用现场可编程门阵列(FPGA)来管理数据采集和传输才能实现的要求。本研究介绍了一种基于两个协同执行不同任务的FPGA的创新型TDC的设计与实现:第一个(AMD/Xilinx Artix 7)直接实现一个TDC,目标是达到12皮秒的时间精度,而第二个(Intel Cyclone 10)管理采集以及与外部世界的连接。该TDC已优化为可同时在八个通道(+同步)上运行,但有可能扩展到更多通道,这使其特别适用于需要将来自各种测量系统的多条信息进行时间关联的符合测量。

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