• NUCLEAR TECHNIQUES
  • Vol. 47, Issue 2, 020402 (2024)
Zixing HE*, Liyun XU, Liujun HAN, Fengli GUO, Gen YANG, Wei WANG, and Lingling ZHANG
Author Affiliations
  • Wuxi Huapu Microelectronics Co. Ltd., Wuxi 214000, China
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    DOI: 10.11889/j.0253-3219.2024.hjs.47.020402 Cite this Article
    Zixing HE, Liyun XU, Liujun HAN, Fengli GUO, Gen YANG, Wei WANG, Lingling ZHANG. Control measurement method of range switch for dual GM counter tubes[J]. NUCLEAR TECHNIQUES, 2024, 47(2): 020402 Copy Citation Text show less
    References

    [1] XIE Weiping, ZHAO Xihuan, CHEN Hao et al. Exploration of quality control methods for monitoring the dose equivalent rate round γ in nuclear power plant[J]. Journal of Radiation Research and Radiation Processing, 40, 040601(2022).

    [2] YANG Song, ZHANG Xiaoquan, DENG Changming et al. Design of portable multi-function radiation detection system[J]. Nuclear Techniques, 45, 110403(2022).

    [3] YUE Qingyu, WANG Wei, SHENG Peiru. Application of G-M counter in environmental γ radiation continuous monitoring[J]. Radialization Protection, 25, 227-230(2005).

    [4] Akyurek T, Yousaf M, Liu X et al. GM counter deadtime dependence on applied voltage, operating temperature and fatigue[J]. Radiation Measurements, 73, 26-35(2015).

    [5] SUN Guangzhi, QIU Shunli, XIAO Wei et al. Development of a super-high rang γ monitor for high temperature and pressure environment[J]. Nuclear Techniques, 44, 040402(2021).

    [6] GONG Junjun, SHAO Beibei, XIA Wenming et al. Experimental investigation on range extension of GM tube by Time-to-Count method[J]. Atomic Energy Science and Technology, 47, 674-678(2013).

    [7] LIU Liangjun, WANG Jiangyong. Development of a radicalization monitor based on Time-to-Count technology[J]. Nuclear Electronics & Detection Technology, 32, 616-619(2012).

    [8] CUI Wei, FANG Dengfu, CHEN Li et al. GM tube radiation detector based on time-to-count method[J]. Nuclear Electronics & Detection Technology, 37, 641-646(2017).

    [9] Wang P, Tang X B, Gong P et al. Design of a portable dose rate detector based on a double Geiger-Mueller counter[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 879, 147-152(2018).

    [10] ZHAO Jianwei, ZHAO Xinhua, HUANG Xiaofei et al. The control technique of range switch for dual G-M counter tubes[J]. Nuclear Electronics & Detection Technology, 33, 1263-1265(2013).

    [11] ZHANG Jun, LI Zhongliang, LIU Shuhuan et al. Primary testing performance of designed wide-dynamic range gamma ray dosimeter based on double GM counters[J]. Atomic Energy Science and Technology, 55, 2251-2259(2021).

    [12] DENG Changming, REN Yi, ZHANG Shirang et al. The method of switch dual GM counter tube[J]. Nuclear Electronics & Detection Technology, 31, 1321-1322(2011).

    [13] FAN Lei, ZUO Liangzhou, GUO Xiaobin et al. Circuit design on setting dead time of G-M tube[J]. Nuclear Electronics & Detection Technology, 41, 285-288(2021).

    [14] CHANG Hao, ZHANG Jian, WANG Bin. Design of electric vehicle housekeeper based on CKS32F103[J]. Electronics & Packaging, 21, 010501(2021).

    [15] CHENG Longjun, YIN Bohua, SUN Botong et al. Time constant of double exponential signal for X-ray energy spectrum detector[J]. Nuclear Techniques, 44, 110403(2021).

    [16] LI Mengyu, ZHAO Rui, QU Bingbing et al. Establishment of low-dose rate X-ray radiation quality and calibration of the instruments[J]. Nuclear Techniques, 45, 060403(2022).

    Zixing HE, Liyun XU, Liujun HAN, Fengli GUO, Gen YANG, Wei WANG, Lingling ZHANG. Control measurement method of range switch for dual GM counter tubes[J]. NUCLEAR TECHNIQUES, 2024, 47(2): 020402
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