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Design of a 7 MW, 95 GHz, three-cavity gyroklystron

机译:7 MW,95 GHz三腔陀螺速调管的设计

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In this paper we present a three-cavity design of a gyroklystron amplifier at 95 GHz. We present the design of the magnetron injection gun (MIG), the magnetic field coils, and the three-cavity microwave circuit. The MIG produces a 500 kV, 45 A small orbit annular beam with an average perpendicular-to-parallel velocity ratio of 1.5 and a parallel velocity spread below 5% (RMS). The MIG requires a control anode with a voltage of about 65 kV, a magnetic compression of about 30, and a cathode loading near 10 A/cm/sup 2/. The circuit magnetic field is about 28.7 kG. The microwave circuit has a first-harmonic TE/sub 011/ input cavity which is driven at 47.5 GHz, and second-harmonic TE/sub 021/ buncher and output cavities which are resonant at 95 GHz. A peak power of 7.56 MW is obtained with 51.6 dB gain and 33.6% efficiency. A complete description of the system is presented along with a systematic study of the sensitivity of the device to parametric variations.
机译:在本文中,我们介绍了95 GHz陀螺速调管放大器的三腔设计。我们介绍了磁控管注入枪(MIG),磁场线圈和三腔微波电路的设计。 MIG产生500 kV,45 A小轨道环形光束,平均垂直与平行速度比为1.5,平行速度散布在5%(RMS)以下。 MIG需要一个控制阳极,其电压约为65 kV,磁压缩约为30,阴极负载接近10 A / cm / sup 2 /。电路磁场约为28.7 kG。微波电路具有一个在47.5 GHz下驱动的第一谐波TE / sub 011 /输入腔,以及一个在95 GHz谐振的第二谐波TE / sub 021 /聚束器和输出腔。获得的峰值功率为7.56 MW,增益为51.6 dB,效率为33.6%。介绍了系统的完整说明以及对设备对参数变化的敏感性的系统研究。

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