WANG Shengchang, DONG Dong, PEI Shilun, et al., “Development of S-Band High Power Klystron,” Chinese Journal of Electronics, vol. 29, no. 4, pp. 772-778, 2020, doi: 10.1049/cje.2020.06.005
Citation: WANG Shengchang, DONG Dong, PEI Shilun, et al., “Development of S-Band High Power Klystron,” Chinese Journal of Electronics, vol. 29, no. 4, pp. 772-778, 2020, doi: 10.1049/cje.2020.06.005

Development of S-Band High Power Klystron

doi: 10.1049/cje.2020.06.005
Funds:  This work is supported by the National Natural Science Foundation of China (No.11575215).
  • Received Date: 2019-08-12
  • Rev Recd Date: 2019-11-22
  • Publish Date: 2020-07-10
  • A 2998MHz, 60MW klystron has been developed for future linear accelerators of synchrotron radiation sources. In order to save development and construction time, the 2998MHz, 60MW klystron is a modified version of an existing 2856MHz klystron used in linear accelerator of Beijing Electron-Positron Collider Ⅱ. Based on the simulations, it was shown that the scaled version klystron was able to produce more than 60MW at a 350kV beam voltage. A prototype was built and tested. It successfully produced 50MW output power with an RF pulse width of 4.0μs, which exceeded the operating requirement of China's High Energy Photon Source. It also produced 62MW with an RF pulse width of 1.6μs, which proved the validity of new RF circuit design. This paper describes the details of the progresses of this klystron and advantages of this tube development.
  • loading
  • X.M. Jiang, “The Chinese high-energy photon source and its R&D project”, Synchrotron Radiation News, Vol.27, No.6, pp.27-31, 2014.
    G. X. Pei, “Progress of the injector linac upgrade for the BEPC-Ⅱ project”, High Energy Physics and Nuclear Physics, Vol.28, No.11, pp.1214-1218, 2004.
    G. Caryotakis, “High power klystrons: Theory and practice at the Stanford Linear Accelerator Center, Part I”, Report, SLAC-PUB-10620, 2005.
    R. C. Hou, “The Beijing electron positron collider”, Chinese Science Bulletin, Vol.34, No.7, pp.529-532, 1989.
    D. Dong, Z.S. Zhou, L.Zhang, et al., “IHEP S-band 45MW pulse power klystron development”, High Energy Physics and Nuclear Physics, Vol.30, No.11, pp.1113-1115, 2006. (in Chinese)
    A. Jensen, A. S. Beebe, M. V. Fazio, et al., “25 year performance review of the SLAC 5045 S-band klystron”, Proc. IPAC, San Sebastián, Spain, pp.409-411, 2011.
    L. Ludeking, MAGIC User's Manual 2006, Mission Research Corp Newington VA, USA, 2003.
    K. Halbach and R.F. Holsinger, “SUPERFISH-A computer program for evaluation of RF cavities with cylindrical symmetry”, Particle Accelerators, Vol.7, pp.213-222, 1976.
    S. Fukuda, K. Hayashi, S. Maeda, et al., “Performances of a high-power klystron using a BI Cathode in KEK electron linac”, Applied Surface Science, Vol.146, No.1, pp.84-88, 1999.
    W.B. Hermannsfeldt, “EGUN-An electron optics and gun design program”, Report, SLAC-331, 1988.
    T. Shintake, “Klystron simulation and design using the Field Charge Interaction (FCI) code”, Nuclear Instruments and Methods in Physics Research, A, Vol.363, No.1, pp.83-89, 1995.
    “CST Microwave Studio”, www.cst.com.html, 2018.
    S. Fukuda, S. Michizono, K. Nakao, et al., “Design and evaluation of a compact 50 MW RF source of the PF linac for the KEKB project”, Nuclear Instruments and Methods in Physics Research, A, Vol.368, No.3, pp.561-571, 1996.
  • 加载中

Catalog

    通讯作者: 陈斌, bchen63@163.com
    • 1. 

      沈阳化工大学材料科学与工程学院 沈阳 110142

    1. 本站搜索
    2. 百度学术搜索
    3. 万方数据库搜索
    4. CNKI搜索

    Article Metrics

    Article views (471) PDF downloads(145) Cited by()
    Proportional views
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return