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首页> 外文期刊>Physics of plasmas >Experimental studies of bandwidth and power production in a three-cavity, 35 GHz gyroklystron amplifier
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Experimental studies of bandwidth and power production in a three-cavity, 35 GHz gyroklystron amplifier

机译:三腔35 GHz陀螺速调管放大器中带宽和功率产生的实验研究

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摘要

The operating characteristics of a three-cavity, Ka-Band gyroklystron employing a large amount of stagger-tuning are reported. Particular attention is given to examining how the frequency response (peak power, bandwidth, and overall shape) is altered by changes in operating parameters. A peak power of 225 kW at 34.90 GHz, with a 2 mu s pulse length, 32% efficiency, 30.3 dB saturated gain, and a 3 dB bandwidth of 0.82% (286 MHz) was obtained with a 70.2 kV, 10.0 A beam at a magnetic field of 13.07 kG. This operating point represents a compromise between the output power and the bandwidth. The operating magnetic field was found to have a dramatic influence on the power-bandwidth tradeoff; a lower field of 12.91 kG produced 245 kW with 0.63% bandwidth, while a higher field of 13.39 kG increased the bandwidth to 0.94% at a lower power of 200 kW. The results are in excellent agreement with large signal simulations. (C) 1999 American Institute of Physics. [S1070-664X(99)02001-7]. [References: 37]
机译:据报道,采用大量交错调谐的三腔Ka波段回旋速调管的工作特性。特别注意检查操作参数的变化如何改变频率响应(峰值功率,带宽和整体形状)。在70.2 kV,10.0 A的光束下,在34.90 GHz处获得225 kW的峰值功率,脉冲长度为2 s s,效率为32%,饱和增益为30.3 dB,带宽为3 dB为0.82%(286 MHz)(286 MHz) 13.07 kG的磁场。该工作点代表了输出功率和带宽之间的折衷。发现工作磁场对功率带宽的折衷有很大影响。较低的12.91 kG磁场产生245 kW,带宽为0.63%,而较高的13.39 kG磁场在带宽为200 kW的情况下将带宽提高到0.94%。结果与大信号仿真非常吻合。 (C)1999美国物理研究所。 [S1070-664X(99)02001-7]。 [参考:37]

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