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Development of a pulse modulator to drive 6.19 MW Klystron for 15 MeV electron linac

机译:开发脉冲调制器以驱动6.19 MW Klystron 15 Mev电子LINAC

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We present the Design, construction, and characterization of a line-type pulse high-voltage modulator system capable of generating 140-kV, 6 μs pulses width at 150 pulses per second into a Klystron as load. The modulator is used to energize a variety of high-power microwave devices requiring voltage stability and reproducibility. Voltage ripple is less than 0.4% during the flat top, with a shot-to-shot voltage variation of less than 0.2 %. The primary circuit consists of six-stage tuneable pulse-forming networks (PFN's). The PFN is charged by a highly stable charging power supply. The total energy stored is released through a CX-1559 E2V make thyratron into a 1: 11 pulse transformer, which generates 140 kV, 6 μs pulses. The flat-top voltage generated by the modulator is highly desirable for driving RF sources requiring high quality electron beams. Linac is one of the important fields of study in modern technology due its wide applications for Medical and Industrial purposes in addition to physics research [3].
机译:我们介绍了能够产生140 kV,6μs脉冲宽度的线型脉冲高压调制器系统的设计,施工和表征,以每秒150次脉冲宽度作为负载作为klystron。调制器用于通电需要电压稳定性和再现性的各种高功率微波器件。平顶期间电压纹波小于0.4%,射击电压变化小于0.2%。主电路由六级可调脉冲形成网络(PFN)组成。通过高度稳定的充电电源充电PFN。存储的总能量通过CX-1559 E2V释放,使Thyratron成为1:11脉冲变压器,其产生140kV,6μs脉冲。由调制器产生的平顶电压非常希望用于驱动需要高质量电子束的RF源。 Linac是除了物理研究外,由于其广泛的医疗和工业目的,现代技术的重要研究领域之一。除了物理研究[3]。

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