• High Power Laser and Particle Beams
  • Vol. 36, Issue 5, 055001 (2024)
Weihua Jiang, Akira Tokuchi, Taichi Sugai, Liang Yu..., Yu Feng, Longyu Zhuang, Xiaojing Ren and Junxiang Yang|Show fewer author(s)
Author Affiliations
  • Extreme Energy-Density Research Institute, Nagaoka University of Technology, Nagaoka, Niigata 9402188, Japan
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    DOI: 10.11884/HPLPB202436.240053 Cite this Article
    Weihua Jiang, Akira Tokuchi, Taichi Sugai, Liang Yu, Yu Feng, Longyu Zhuang, Xiaojing Ren, Junxiang Yang. Compact pulsed-power circuit methods and practice[J]. High Power Laser and Particle Beams, 2024, 36(5): 055001 Copy Citation Text show less
    Concept and illustration of voltage generation based on primary capacitive energy storage
    Fig. 1. Concept and illustration of voltage generation based on primary capacitive energy storage
    Illustrated concept of voltage adding
    Fig. 2. Illustrated concept of voltage adding
    Switching unit using power semiconductor devices
    Fig. 3. Switching unit using power semiconductor devices
    Step-down DC-DC converter
    Fig. 4. Step-down DC-DC converter
    FPGA board DE0-Nano using Intel Cyclone IV, made by Terasic Inc
    Fig. 5. FPGA board DE0-Nano using Intel Cyclone IV, made by Terasic Inc
    Circuit diagram of Marx generator using capacitive energy storage
    Fig. 6. Circuit diagram of Marx generator using capacitive energy storage
    Output voltage waveform generated by Marx circuit using capacitive energy storage[25]
    Fig. 7. Output voltage waveform generated by Marx circuit using capacitive energy storage[25]
    Circuit diagram of Marx generator using inductive energy storage
    Fig. 8. Circuit diagram of Marx generator using inductive energy storage
    Output voltage waveform generated by Marx circuit using inductive energy storage[26]
    Fig. 9. Output voltage waveform generated by Marx circuit using inductive energy storage[26]
    Circuit diagram of Marx generator using hybrid energy storage
    Fig. 10. Circuit diagram of Marx generator using hybrid energy storage
    Output voltage waveform generated by Marx circuit using hybrid energy storage[28]
    Fig. 11. Output voltage waveform generated by Marx circuit using hybrid energy storage[28]
    Equivalent circuit of LTD module using capacitive energy storage
    Fig. 12. Equivalent circuit of LTD module using capacitive energy storage
    Output voltage waveform generated by LTD using capacitive energy storage
    Fig. 13. Output voltage waveform generated by LTD using capacitive energy storage
    Equivalent circuit of LTD module using inductive energy storage
    Fig. 14. Equivalent circuit of LTD module using inductive energy storage
    Output voltage waveform generated by LTD circuit using inductive energy storage[36]
    Fig. 15. Output voltage waveform generated by LTD circuit using inductive energy storage[36]
    Weihua Jiang, Akira Tokuchi, Taichi Sugai, Liang Yu, Yu Feng, Longyu Zhuang, Xiaojing Ren, Junxiang Yang. Compact pulsed-power circuit methods and practice[J]. High Power Laser and Particle Beams, 2024, 36(5): 055001
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