Simulation of an Industrial Magnetron Using Cathode Modulation

Andong Yue, J. Browning, M. Worthington, J. Cipolla
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Abstract

Results of a simulation study of the L3Harris CWM75KW industrial strapped magnetron is presented. This study is part of a larger project which studies the feasibility of achieving phase control and faster startup in the magnetron via controlled electron injection by using gated field emission arrays (GFEAs). The device was simulated by using the 3-D PIC code VSim at its typical operating conditions (18kV, 5A, 1900G, 896-929MHz). The startup behavior was examined with 1) no priming of any kind, 2) RF Priming, and 3) cathode modulation. With no priming, no oscillations were seen up to 300 ns; with RF priming for the first 50 ns, oscillations were then observed at 150 ns; and with cathode modulation to create electron spokes, RF oscillation was observed at 130 ns.
工业磁控管阴极调制模拟
介绍了L3Harris CWM75KW工业束缚磁控管的仿真研究结果。这项研究是一个更大项目的一部分,该项目研究了利用门控场发射阵列(GFEAs)通过受控电子注入实现磁控管相位控制和更快启动的可行性。利用三维PIC代码VSim对该器件进行了典型工作条件(18kV, 5A, 1900G, 896-929MHz)下的仿真。在1)没有任何类型的启动,2)射频启动和3)阴极调制的情况下检查启动行为。在没有启动的情况下,300 ns内没有振荡;射频启动前50 ns,然后在150 ns处观察振荡;通过阴极调制产生电子辐条,在130 ns处观察到射频振荡。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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