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A digital coincidence measurement system using FPGA techniques

机译:使用FPGA技术的数字一致性测量系统

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A field programmable gate array (FPGA) based digital coincidence system has been developed to use with Nal scintillators for field applications. The analog output signal from the photomultiplier anode is directly transferred into digital signals by pulse height for pulse width conversion. The digital signal contains the energy and timing information of the radiation events. The pulse width is then measured by a vernier type of time-to-digital converter (TDC). The timing information of radiation events is recorded and analyzed by a coincidence unit. Both the TDC unit and the coincidence unit are implemented using a commercial available FPGA board. The measured data is then sent to a personal computer for spectrum display. Efficiency as well as energy calibration has been performed. The system showed a timing resolution about 13 ns and an energy resolution of 12% for 0.511 MeV annihilation gammas; it also successfully demonstrated the background rejection ability through coincidence measurement.
机译:已经开发了一种基于现场可编程门阵列(FPGA)的数字符合系统,可与Nal闪烁体一起用于现场应用。来自光电倍增管阳极的模拟输出信号通过脉冲高度直接转换为数字信号,以进行脉冲宽度转换。数字信号包含辐射事件的能量和时间信息。然后通过游标类型的时间数字转换器(TDC)测量脉冲宽度。辐射事件的时间信息由重合单元记录和分析。 TDC单元和符合单元均使用市售的FPGA板实现。然后将测得的数据发送到个人计算机进行频谱显示。效率以及能量校准已经执行。该系统显示出约13 ns的时序分辨率和0.511 MeV ni灭伽玛的12%能量分辨率;通过重合测量也成功地证明了背景抑制能力。

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