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Haisheng SONG, Chengfei LI, Xianqin LI, Honglin ZHANG, Xiaoyang NIU, Wenjian SUN, Peng PENG, Chengxin ZHAO, Haibo YANG. Development and Verification of SiPM High Voltage Power Supply[J]. Nuclear Physics Review, 2021, 38(1): 66-72. DOI: 10.11804/NuclPhysRev.38.2020048
Citation: Haisheng SONG, Chengfei LI, Xianqin LI, Honglin ZHANG, Xiaoyang NIU, Wenjian SUN, Peng PENG, Chengxin ZHAO, Haibo YANG. Development and Verification of SiPM High Voltage Power Supply[J]. Nuclear Physics Review, 2021, 38(1): 66-72. DOI: 10.11804/NuclPhysRev.38.2020048

Development and Verification of SiPM High Voltage Power Supply

  • Silicon Photomultiplier (SiPM) is a new generation of semiconductor photon detector, which is widely used in high-energy physics, nuclear medical imaging and nuclear physics and other fields. As the bias voltage of different SiPM is different, a high voltage power supply with adjustable voltage and temperature adaptive function is designed to meet the working voltage demand of SiPM. High voltage power supply mainly uses DC/DC module to generate high voltage to supply power to SiPM.The voltage of the high-voltage power supply can reach up to 200 V. The DC/DC module outputs different voltage values by changing the resistance value of the potentiometer to carry out partial voltage. Finally, the stability of DC/DC module, temperature adaptive testing, the performance and working characteristics of the high-voltage power supply plate were completed. The results show that the integral nonlinearity of the DC/DC module is 0.14‰, and the module works steadily. At different temperatures, the maximum change rate of system gain is 1.12%, and the system gain remains relatively stable. The maximum fluctuation of the self-made high-voltage power supply is about 0.01 V, and the work is stable. The ripple coefficient is below 0.02%, with low ripple. Meanwhile, in the same test environment, the resolution of the all-purpose peak of the high-voltage power supply and the commercial power supply are 7.84% and 9.88% respectively, and the performance of the self-made high-voltage power supply is better than that of the commercial power supply.
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