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Wideband Power Combining of Four Microfabricated W-Band Traveling-Wave Tubes

机译:四个超细W波段行波管的宽带功率组合

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摘要

Wideband power combining of four W-band microfabricated traveling-wave tubes (TWTs) is presented. The proposed TWTs are based on a planar helix slow-wave structure (SWS) with straight-edge connections (PH-SEC) that can be microfabricated with stripline input–output feed. A novel 1:4 WR-10 waveguide-to-stripline power divider–combiner is designed that covers the frequency range of 92–104 GHz. The simulation results show that is less than −20 dB and the magnitude and phase differences among the four output signals are less than 0.01 dB and 0.41°, respectively, indicating a power combining efficiency as high as 99.9%. The power divider, four PH-SEC SWSs, and the power combiner are assembled and the performance of the overall assembly is checked by simulation. The overall is better than −15 dB in the frequency range of 91.7–100.7 GHz and is better than −12.3 dB. Effects of power and phase variation of individual TWTs have also been considered. With four 5-kV and 10-mA sheet electron beams, particle-in-cell simulations show that the combined TWTs can give 25-W saturation peak power at 94 GHz with a gain of 18 dB.
机译:介绍了四个W波段微型行波管(TWT)的宽带功率组合。拟议的TWT基于带直边连接(PH-SEC)的平面螺旋慢波结构(SWS),可以通过带状线输入输出馈送进行微加工。设计了一种新颖的1:4 WR-10波导至带状线功率分配器-组合器,其覆盖的频率范围为92-104 GHz。仿真结果表明,小于-20 dB,四个输出信号之间的幅度和相位差分别小于0.01 dB和0.41°,表明功率组合效率高达99.9%。组装了功率分配器,四个PH-SEC SWS和功率组合器,并通过仿真检查了整个组件的性能。在91.7–100.7 GHz的频率范围内,总体优于-15 dB,优于-12.3 dB。还考虑了各个TWT的功率和相位变化的影响。单元内粒子模拟显示,使用四个5kV和10mA的薄电子束,组合的TWT可以在94 GHz时产生25W的饱和峰值功率,增益为18 dB。

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