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A compensation circuit for the gain temperature drift of silicon photomultiplier tube

  • Background Silicon photomultiplier tube (SiPM) has been widely applied in high energy physics experiments. The wide field of view Cherenkov telescope array of Large High Altitude Air Shower Observatory (LHAASO) consists of 12 arrays of SiPMs. Each of the array includes 32 * 32 pixels. Large Array of imaging atmospheric Cherenkov Telescopes (LACT), the next generation of particle astrophysics experiment, will also adopt SiPM arrays.
    Purpose LACT will located at a high altitude, leading to a significant operating temperature variation of the SiPM. Since the gain of SiPM is temperature-sensitive, in order to keep it stable, compensation for the gain is necessary by adjusting the bias voltage of SiPM.
    Methods The compensation circuit provides the bias voltage of SiPM by using a high-voltage output Digital-to-Analog Converter and several high-voltage output amplifiers. To reduce the temperature drift of the gain, the compensation circuit adjust the bias voltage of SiPM according to the operating temperature.
    Results The compensation circuit supplies SiPM with an adjustable bias voltage from 0 to 80 V, and the adjustment step is 1.22 mV. When the output voltage of the compensation circuit is 64 V, the voltage ripple is 2.59 mV, and the temperature drift is 0.17 mV/℃. In the temperature range from - 20 to 30 ℃, the compensation circuit reduces the gain temperature drift of SiPM to within 2%.
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  • Chang-ge Zi, Jin-fan Chang, Ming-jie Yang, Feng-fan Yang, Yu-Sheng Wang. A compensation circuit for the gain temperature drift of silicon photomultiplier tube[J]. Radiation Detection Technology and Methods, 2023, 7(4): 571-577. DOI: 10.1007/s41605-023-00422-z
    Citation: Chang-ge Zi, Jin-fan Chang, Ming-jie Yang, Feng-fan Yang, Yu-Sheng Wang. A compensation circuit for the gain temperature drift of silicon photomultiplier tube[J]. Radiation Detection Technology and Methods, 2023, 7(4): 571-577. DOI: 10.1007/s41605-023-00422-z

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