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W-Band 1-kW Staggered Double-Vane Traveling-Wave Tube

机译:W波段1kW交错双叶片行波管

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A design study for a W-band traveling-wave tube (TWT) using a staggered double-vane slow-wave structure combined with a sheet electron beam shows that an output power of over 1 kW should be possible. Numerical eigenmode calculations indicated that the structure has a strong longitudinal component of electric field for interaction with the electron beam. A novel input and output coupler was proposed that can produce good input and output matches. Finally, a TWT model with moderate dimensions was established. The particle-in-cell simulation results revealed that the tube can be expected to produce over 1 kW of peak power in the range from 90 to 95 GHz, assuming an RF input signal with a peak power of 0.15 W and a beam power of 10.3 kW. The corresponding conversion efficiency values vary from 9.87% to 12.15%, and the maximum gain is 39.2 dB at 93 GHz.
机译:使用交错双叶片慢波结构和薄板电子束的W波段行波管(TWT)的设计研究表明,输出功率应超过1 kW。数值本征模计算表明,该结构具有很强的电场纵向分量,可与电子束相互作用。提出了一种新颖的输入和输出耦合器,可以产生良好的输入和输出匹配。最后,建立了中等尺寸的TWT模型。单元中的粒子模拟结果表明,假设RF输入信号的峰值功率为0.15 W,射束功率为10.3,则可以预期该管在90至95 GHz范围内产生超过1 kW的峰值功率。千瓦相应的转换效率值在9.87%至12.15%之间变化,并且在93 GHz时最大增益为39.2 dB。

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