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Circuit design of a wideband W-band gyroklystron amplifier for radar applications

机译:雷达用宽带W波段回旋速调管放大器的电路设计

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A high power W-band gyroklystron amplifier has been designed as the driver for a millimeter wave radar system currently under development at the Naval Research Laboratory. A time dependent, nonlinear theory was used to design the interaction circuit. Studies to determine the optimal stagger tuning and cavity Q values were performed. Circuit stability was investigated and the effect of beam parameter variation on circuit performance was also studied. The effects of mechanical tolerances and deviation of circuit dimensions from design values were examined. Simulations show that a four cavity circuit operating in the TE/sub 011/ mode at the fundamental of the cyclotron frequency can achieve 80.2 kW peak output power and 20.6% efficiency at a center frequency of 94.0 GHz with 740 MHz full width half maximum (FWHM) bandwidth for a 65 kV, 6 A electron beam.
机译:海军研究实验室目前正在开发一种高功率W波段回旋速调管放大器,作为毫米波雷达系统的驱动器。基于时间的非线性理论被用来设计交互电路。进行了确定最佳交错调整和腔Q值的研究。研究了电路的稳定性,并研究了光束参数变化对电路性能的影响。检查了机械公差和电路尺寸偏离设计值的影响。仿真显示,在回旋加速器频率的基础上以TE / sub 011 /模式工作的四腔电路在94.0 GHz中心频率和740 MHz全宽一半最大值(FWHM)的情况下,可以达到80.2 kW峰值输出功率和20.6%的效率。 )65 kV,6 A电子束的带宽。

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