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首页> 外文期刊>Proceedings of the IEE - Part B: Radio and Electronic Engineering >Constructional and design difficulties of wide-band high-power pulsed travelling-wave tubes in the 10 Gc/s region
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Constructional and design difficulties of wide-band high-power pulsed travelling-wave tubes in the 10 Gc/s region

机译:宽带大功率脉冲行波管在10 Gc / s区域的构造和设计困难

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摘要

The paper describes some of the difficulties met in the development of a pulsed travelling-wave amplifier having a maximum power in the region of 1kW and gain greater than 30dB over the frequency band 7.5-11.5Gc/s. This is a considerably higher power level than has been previously attempted in this country with a helix-type tube, and the parts of the development which are described are, in general, only those in which difficulty was met due to the particular combination of high power, high frequency and broad bandwidth. Broad bandwidth in travelling-wave tubes necessitates the use of a helical circuit. This imposes design limitations which restrict the operating voltage in order to avoid backward-wave oscillation. The maximum power that can be achieved is thus limited, even under pulsed conditions, and becomes less as the frequency increases. In a practical design of a waveguide-coupled high-power pulsed travelling-wave tube for the X-band, it was found necessary to maintain a small external diameter. This led to a large dielectric loading factor, which was reduced by a suitable choice of wire diameter and by control of the envelope wall thickness. A simple coupling was developed which gives a voltage standing-wave ratio of less than 1.5 over the range 7.5-11.0Gc/s. An attenuator which is well matched and has substantially constant loss over the same band has also been provided. In operation, the onset of backward-wave oscillation is decreased by the use of an operating voltage considerably higher than the synchronous voltage. From the final valve, pulsed output powers of 1kW are obtained at a gain of 30dB. Small-signal gains of up to 50dB have also been observed.
机译:本文描述了在最大功率在1kW范围内并且在7.5-11.5Gc / s频带内增益大于30dB的脉冲行波放大器的开发过程中遇到的一些困难。这比以前在该国使用螺旋管所尝试的功率水平要高得多,所描述的开发部分通常仅是由于高功率的特殊组合而遇到困难的部分。功率,高频和宽带宽。行波管中的宽带宽需要使用螺旋电路。这施加了限制工作电压的设计限制,以避免倒波振荡。因此,即使在脉冲条件下,可获得的最大功率也受到限制,并且随着频率的增加而变得越来越小。在用于X波段的波导耦合大功率脉冲行波管的实用设计中,发现必须保持较小的外径。这导致较大的介电负载因子,通过适当选择导线直径和控制包络壁厚度可以降低介电负载因子。开发了一种简单的耦合器,在7.5-11.0Gc / s的范围内,其电压驻波比小于1.5。还提供了一种衰减器,该衰减器匹配良好并且在相同频带上具有基本恒定的损耗。在操作中,通过使用比同步电压高得多的工作电压,可以减少反向波振荡的发生。从最终的阀门中,以30dB的增益获得1kW的脉冲输出功率。还观察到高达50dB的小信号增益。

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