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An X-band magnetron Q-measuring apparatus

机译:X波段磁控管Q测量装置

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摘要

The Q-factors of a resonant-cavity magnetron are usually estimated, in terms of the frequency bandwidth of a resonance curve, from measurement of the standing wave which exists in a feeder through which power is supplied to the magnetron at, and near to, its resonant frequency. The accuracy of this method is high, but when changes in Q-factors are to be measured which, for example, may result from changes in the output coupling or tuning of the magnetron, its application is tedious. The use of a directional coupler replacing the standing-wave indicator to monitor the reflected power is well known. Such a coupler may be used in conjunction with a frequency-swept oscillator and cathode-ray tube to give a visual display of the magnetron resonance curve. The paper describes an apparatus of this type which was used for the qualitative examination of magnetron resonances in the 3 cm wave-band, and details of an improved equipment which may be used to measure magnetron Q-factors are given, with a discussion of the accuracy of measurement which may be achieved.
机译:通常根据谐振曲线的频率带宽,通过测量馈线中存在的驻波来估计谐振腔磁控管的Q因子,馈线通过馈线在磁控管上及附近向磁控管供电。它的共振频率。这种方法的精度很高,但是当要测量例如因磁控管的输出耦合或调谐变化引起的Q因子变化时,其应用很繁琐。使用定向耦合器代替驻波指示器来监视反射功率是众所周知的。这样的耦合器可以与扫频振荡器和阴极射线管一起使用,以给出磁控管共振曲线的视觉显示。该论文描述了一种用于定性检查3 cm波段磁控管共振的设备,并给出了可用于测量磁控管Q因子的改进设备的详细信息,并讨论了可以达到的测量精度。

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