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S-Band space traveling-wave tubes employing velocity resynchronization and collector depression

机译:采用速度再同步和集电极抑制的S波段空间行波管

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Two related traveling-wave tubes, both of which demonstrate in excess of 50 percent efficiency over the design bandwidth, are introduced. Low dielectric and conductive shield loading are combined with suitable velocity resynchronization techniques to provide effective beam-circuit wave interaction. Use is made of multi-stage depressed collectors to sort the electrons according to energy, thus recovering a portion of the spent electron beam energy. Both devices utilize suitable helix phase velocity tapering to provide high basic interaction efficiencies. An extension of the extremely favorable beam-circuit wave interaction occurring just prior to saturation leads directly to improved efficiency performance. The tubes operate at moderate values of velocity parameter and possess smooth and continuous transfer characteristics across extended bandwidths. The tubes are lightweight and rugged and are consistent with space applications. Focusing is achieved using periodic permanent magnets of samarium cobalt.
机译:引入了两个相关的行波管,它们都证明在设计带宽上的效率超过50%。低介电和导电屏蔽负载与适当的速度重新同步技术相结合,可提供有效的电子束-电路波相互作用。利用多级凹陷收集器根据能量对电子进行分类,从而回收了一部分用过的电子束能量。两种设备都利用合适的螺旋相速度锥化来提供高的基本相互作用效率。刚好在饱和之前发生的非常有利的电子束-电路波相互作用的扩展直接导致改善的效率性能。这些电子管以中等速度参数运行,并在扩展的带宽范围内具有平稳连续的传输特性。该管重量轻且坚固耐用,与空间应用保持一致。使用periodic钴的周期性永磁体可实现聚焦。

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