ZHANG Yun-long, WANG Huan-yu, WU Feng, CUI Xing-zhu, ZHANG Fei, LIANG Xiao-hua, PENG Wen-xi, LIU Ya-qing, DONG Yi-fan, GUO Dong-ya, FAN Rui-rui, GAO Min, ZHAO Xiao-yun, JIANG Wen-qi, GONG Ke, WU Di, ZHOU Da-wei, YU Jin-biao. Study on Charge Distribution of Silicon Detector Signal[J]. Atomic Energy Science and Technology, 2015, 49(1): 132-139. DOI: 10.7538/yzk.2015.49.01.0132
Citation: ZHANG Yun-long, WANG Huan-yu, WU Feng, CUI Xing-zhu, ZHANG Fei, LIANG Xiao-hua, PENG Wen-xi, LIU Ya-qing, DONG Yi-fan, GUO Dong-ya, FAN Rui-rui, GAO Min, ZHAO Xiao-yun, JIANG Wen-qi, GONG Ke, WU Di, ZHOU Da-wei, YU Jin-biao. Study on Charge Distribution of Silicon Detector Signal[J]. Atomic Energy Science and Technology, 2015, 49(1): 132-139. DOI: 10.7538/yzk.2015.49.01.0132

Study on Charge Distribution of Silicon Detector Signal

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  • The dynamic range matching technique between silicon detector (Si-PIN array detector and DSSD) and Front-end ASIC is the key technology. Three coupling methods to solve the problem of dynamic range matching were designed based on the generation and feature of silicon detector signal in this paper. The comparison result between the theoretical mode and experiment results shows that the coupling methods are feasible.
  • [1]
    WU Feng, WANG Huanyu. Design and performance study of the LEPD silicon tracker onboard the CSES satellite[J]. Chinese Physics C, 2013, 37(2): 026004.
    [2]
    谢一冈,陈昌,王曼,等. 粒子探测器与数据获取[M].北京:科学出版社,2003.
    [3]
    SPIELER H. Semiconductor detector systems[M]. United Kingdom: Oxford University Press, 2005.
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