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Experimental studies of a four-cavity, 35 GHz gyroklystron amplifier

机译:四腔35 GHz回旋速调管放大器的实验研究

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The experimental results from a four-cavity, Ka-band gyroklystron amplifier operating in the(TE)/sub 011/ cylindrical mode at the fundamental of the cyclotron frequency are presented. A peak output power of 208 kW at 31.90 GHz, with a 3-dB bandwidth of 178 MHz (0.5%), an electronic efficiency of 30%, and a saturated gain of 53 dB was obtained with a 72-kV, 9.6-A electron beam at a magnetic field of 12.95 kG and a measured beam velocity ratio of 1.36. The magnetic field was found to have a strong influence on the power-bandwidth tradeoff. At 13.35 kG, a peak output power of 174 kW at 31.90 GHz, with a 3-dB bandwidth of 240 MHz (0.7%), an electronic efficiency of 25%, and a saturated gain of 56 dB was obtained with the same beam parameters. The gyroklystron amplifier was unconditionally stable at these operating points and stability studies are reported. Experimental results were found to be in excellent agreement with large signal simulations.
机译:给出了在回旋频率基础上以(TE)/ sub 011 /圆柱模式工作的四腔Ka波段回旋速调管放大器的实验结果。在72kV,9.6-A下获得31.90 GHz的峰值输出功率208 kW,3 dB带宽为178 MHz(0.5%),电子效率为30%,饱和增益为53 dB磁场为12.95 kG的电子束,测得的束速比为1.36。发现磁场对功率带宽权衡有很大影响。在相同的光束参数下,在13.35 kG时,在31.90 GHz处的峰值输出功率为174 kW,3-dB带宽为240 MHz(0.7%),电子效率为25%,饱和增益为56 dB。 。陀螺速调管放大器在这些工作点上是无条件稳定的,并且已进行了稳定性研究。实验结果与大型信号仿真非常吻合。

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