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Report on the one-megawatt, CW, X-band project

机译:关于1兆瓦,连续波,X波段项目的报告

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A two-year program has been undertaken to develop a klystron amplifier operating at 8 kMc and delivering one megawatt of CW power. The final tube will employ four cavities of the extended-interaction type. It is designed to operate at 10 kilovolts and a microperveance of 0.3. This paper will deal with the results of three major experiments which were performed during the first year of the program in order to establish the final design. These experiments were: 1. Evaluation of the electron gun in a specially designed beam analyzer. 2. The construction and experimental evaluation of a beam tester operating at full beam power. 3. The construction and testing of a pulsed klystron employing an extended-interaction output cavity and operating at one megawatt of peak power with a duty factor of 0.001. As a result of the first experiment a gun design was evolved which produced a beam having the desired size and uniformity. In the second experiment this gun was used to focus a beam through a drift tube with a transmission exceeding 99.9% at average beam power levels up to 2 megawatts. The general design of the beam analyzer will be given along with a discussion of the design and operation of the multimegawatt beam tester and collector. In the third experiment the same beam was employed in the pulsed klystron. Efficiencies exceeding 50 per cent were obtained with no instabilities at voltages between 125 and 150 kv. In view of the above results and the properties of the extended-interaction cavities, it would appear that the final design of the one-megawatt CW klystron could result in a successful tube.
机译:已经进行了为期两年的计划,以开发工作在8 kMc并提供一兆瓦CW功率的速调管放大器。最终的管子将采用四个扩展交互作用型腔。它的设计工作电压为10千瓦,微导率为0.3。本文将处理在计划的第一年进行的三个主要实验的结果,以建立最终的设计。这些实验是:1.在专门设计的束分析仪中评估电子枪。 2.以全光束功率运行的光束测试仪的构造和实验评估。 3.使用扩展交互输出腔并以0.001的占空比在1兆瓦的峰值功率下工作的脉冲速调管的构造和测试。作为第一个实验的结果,开发了一种枪支设计,该枪支设计产生了具有所需尺寸和均匀性的光束。在第二个实验中,该枪用于在不超过2兆瓦的平均光束功率水平下将光束聚焦通过漂移管,其透射率超过99.9%。将给出光束分析仪的总体设计,并讨论兆瓦级光束测试仪和收集器的设计和操作。在第三个实验中,脉冲速调管采用了相同的光束。在125至150 kv的电压范围内获得的效率超过50%,没有任何不稳定。鉴于上述结果和扩展相互作用腔的特性,看来一兆瓦的连续波速调管的最终设计可能会产生成功的电子管。

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