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The suppression of stray output of Multi-Beam broadband Klystron

机译:抑制多光束宽带Klystron的杂散输出

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The purity of output spectrum of high power microwave vacuum electronic devices is very important for the microwave electronic system. The stray outputs with frequency in or near the operating frequency band have been observed in some Multi-Beam Klystron (MBK). The exits of the stray outputs have serious influence on the normal operation of the microwave electronic systems. The variation of stray outputs with different operating frequency observed in an S band MBK was described, and the reasons for generating the stray outputs were analyzed by using 1D klystron code in this paper. The reflecting electrons and secondary electrons caused by the interception of electron beam on gap head of the cavity are responsible for the stray outputs. They will be accelerated by RF electric field on the cavity gap in reverse direction, and return back to previous cavity. The retuning electrons provide the feedback way between successive two cavities, and generate oscillation, which will be amplified by following cavities and form stray outputs. The stray outputs can be reduced or suppressed by decreasing the number of retuning electrons. It can be realized by making small slots on the surface of the gap head. The new MBK with slots on the gap head was made and tested, the power level of the stray outputs are less than -70dBc.
机译:高功率微波真空电子设备的输出频谱的纯度对于微波电子系统非常重要。在一些多光束klystron(MBK)中,已经观察到在工作频带中或接近工作频带附近的杂散输出。杂散输出的出口对微波电子系统的正常运行产生严重影响。描述了在S频段MBK中观察到不同工作频率的杂散输出的变化,并通过本文中使用1D Klystron码来分析产生杂散输出的原因。由腔的间隙头上拦截电子束引起的反射电子和二次电子负责杂散输出。它们将由RF电场沿相反方向上的腔间隙上加速,并返回到先前的腔体。固定电子提供连续两个空腔之间的反馈方式,并产生振荡,这将通过跟随腔并形成杂散输出来放大。通过降低重新固化的电子的数量,可以减小或抑制杂散输出。它可以通过在间隙头的表面上制作小槽来实现。采用GAP头部的槽的新MBK进行了测试并测试,杂散输出的功率水平小于-70dBc。

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