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Ridge-Loaded staggered single-slot rectangular coupled-cavity structure for X-band traveling-wave tube

机译:用于X波段行进波管的脊装的交错单槽矩形耦合腔结构

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The analysis of the novel coupled-cavity traveling-wave tube(CC-TWT) operating at X-band is presented for the purpose of gaining higher power with a smaller size compared with the existing coupled cavity circuit. The electromagnetic characteristics, and the beamwave interaction based on the ridge-loaded staggered single-slot rectangular coupled-cavity slow-wave structure(SWS) are investigated. Compared with the existing staggered single-slot rectangular coupled cavity TWT, our designed TWT has the advantage in coupled impedance and electron efficiency, which makes it has the potential of miniaturization in CC-TWT. The calculation results reveal that it can produce saturated output power over 23 kilowatts from 8.6 to 9.5GHz when the cathode voltage are set from 25.9kV to 26.9kV and beam current is 5A, respectively. The corresponding saturated gain and electron efficiency can reach over 39dB and 17.4%.
机译:为了与现有的耦合腔电路相比,提出了在X频带的新颖耦合腔行进波管(CC-TWT)的分析以获得更高的尺寸的尺寸更高。研究了基于脊的交错单槽矩形耦合腔慢波结构(SWS)的电磁特性和基于脊的交错单槽矩形耦合腔慢波结构(SWS)的光束相互作用。与现有交错的单槽矩形耦合腔TWT相比,我们设计的TWT具有耦合阻抗和电子效率的优点,这使得它具有CC-TWT的小型化的潜力。计算结果表明,当阴极电压设定为25.9kV至26.9kV时,它可以在8.6到9.5GHz上产生超过23千瓦的饱和输出功率分别为5A。相应的饱和增益和电子效率可达到39dB和17.4%。

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