首页> 美国政府科技报告 >Design, Fabrication and Performance of Small, Graphite Electrode, Multistage Depressed Collectors with 200-W, CW, 8- to 18-Ghz Traveling-Wave Tubes
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Design, Fabrication and Performance of Small, Graphite Electrode, Multistage Depressed Collectors with 200-W, CW, 8- to 18-Ghz Traveling-Wave Tubes

机译:具有200W,CW,8至18-Ghz行波管的小型石墨电极,多级凹陷收集器的设计,制造和性能

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摘要

Small multistage depressed collectors (MDC's) which used pyrolytic graphite, ion-beam-textured pyrolytic graphite, and isotropic graphite electrodes were designed, fabricated, and evaluated in conjuntion with 200-W, continuous wave (CW), 8- to 18-GHz traveling-wave tubes (TWT's). The design, construction, and performance of the MDC's are described. The bakeout performance of the collectors, in terms of gas evolution, was indistinguishable from that of typical production tubes with copper collectors. However, preliminary results indicate that some additional radiofrequency (RF) and dc beam processing time (and/or longer or higher temperature bakeouts) may be needed beyond that of typical copper electrode collectors. This is particularly true for pyrolytic graphite electrodes and for TWT's without appendage ion pumps. Extended testing indicated good long-term stability of the textured pyrolytic graphite and isotropic graphite electrode surfaces. The isotropic graphite in particular showed considerable promise as an MDC electrode material because of its high purity, low cost, simple construction, potential for very compact overall size, and relatively low secondary electron emission yield characteristics in the as-machined state. However, considerably more testing experience is required before definitive conclusions on its suitability for electronic countermeasure systems and space TWT's can be made.

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