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Multichannel FPGA based MVT system for high precision time (20 ps RMS) and charge measurement

机译:基于多通道FPGA的MVT系统,用于高精度时间(20 ps RMS)和电荷测量

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摘要

In this article it is presented an FPGA based Multi- Voltage Threshold (MVT) system which allows of sampling fast signals (1–2 ns rising and falling edge) in both voltage and time domain. It is possible to achieve a precision of time measurement of 20 ps RMS and reconstruct charge of signals, using a simple approach, with deviation from real value smaller than 10%. Utilization of the differential inputs of an FPGA chip as comparators together with an implementation of a TDC inside an FPGA allowed us to achieve a compact multi-channel system characterized by low power consumption and low production costs. This paper describes realization and functioning of the system comprising 192-channel TDC board and a four mezzanine cards which split incoming signals and discriminate them. The boards have been used to validate a newly developed Time-of-Flight Positron Emission Tomography system based on plastic scintillators. The achieved full system time resolution of σ(TOF) ≈ 68 ps is by factor of two better with respect to the current TOF-PET systems.
机译:本文介绍了一种基于FPGA的多电压阈值(MVT)系统,该系统允许在电压和时域中对快速信号(上升和下降沿1-2 ns)进行采样。可以使用一种简单的方法来实现20 ps RMS的时间测量精度,并重建信号电荷,并且与实际值的偏差小于10%。利用FPGA芯片的差分输入作为比较器,以及在FPGA内部实现TDC的实现,使我们能够实现紧凑的多通道系统,其特点是功耗低,生产成本低。本文介绍了该系统的实现和功能,该系统包括192通道TDC板和四个用于拆分输入信号并对其进行区分的夹层卡。这些板已经用于验证基于塑料闪烁体的新开发的飞行时间正电子发射断层扫描系统。相对于当前的TOF-PET系统,获得的σ(TOF)≈68 ps的完整系统时间分辨率要好两倍。

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