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March 29, 2026Review of Scientific Instruments0 citations

A square-wave pulse generator with approximately 100 kV amplitude and kHz repetition rates

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YSYi ShenZHZhiyong HuangXCXiaojie Cai

Key Points

  • The study aims to develop a compact pulse power scheme for high-repetition-rate x-ray radiotherapy applications.
  • Develop a hydrogen thyratron-driven tri-coaxial Blumlein pulse forming line.
  • Generate square-wave pulses with tens of kilovolts and kilohertz repetition rates.
  • Design an induction voltage adder to amplify output to approximately 100 kV.
  • Successfully achieved stable generation of square-wave pulses.
  • Output voltage maintained at approximately 100 kV.
  • Pulses delivered with a repetition rate in kilohertz and 100-ns duration.

Abstract

Flash x-ray radiotherapy is an emerging, promising technique for tumor treatment, and a Repetition-rate Linear Induction Accelerator (RLIA) is currently under development at the Institute of Fluid Physics, China Academy of Engineering Physics, for this purpose. To fulfill the demanding high-repetition-rate requirements of RLIA, this paper presents a compact pulse power scheme based on a hydrogen thyratron-driven tri-coaxial Blumlein pulse forming line, capable of delivering burst-mode square-wave pulses with tens of kilovolts amplitude, kilohertz repetition rates, and 100-ns pulse widths. The pulses are subsequently amplified via a custom-designed induction voltage adder to achieve an output of ∼100 kV, while preserving the kilohertz repetition rate and 100-ns pulse duration. Experimental results confirm the stable generation of high-quality square-wave pulses that meet the key specifications for driving an induction cavity in flash x-ray radiotherapy applications. The proposed system demonstrates a viable, high-performance solution for repetitive pulsed-power generation in advanced radiotherapy systems.

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Cite This Study

Shen et al. (2026) studied this question.

synapsesocial.com/papers/69c8c2a4de0f0f753b39d12ahttps://doi.org/10.1063/5.0316581
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