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W-band phase-velocity-taper Traveling Wave Tube based on sine waveguide

机译:基于正弦波导的W波段相位速度 - 锥形波管

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A W-band phase-velocity-taper Sine waveguide traveling wave tube (TWT) with sheet electron beam is proposed to amplify the millimeter wave. In this paper, the high frequency characteristics of sine waveguide with sheet electron beam tunnel are simulated by 3-D high frequency simulation software. The simulation results also show that the tube with phase taper structure can produce over 235W output power and 32dB gain at typical frequency 94GHz with an operating voltage of 20.3 kV, a current of 0.2A, and an input power of 150mW. The corresponding gain is more than30dB from 90GHz to 100GHz. The particle-in-cell simulation results indicate that the phase-velocity-tapered sine waveguide structure can increase the output power 46% at 94 GHz.
机译:提出了一种具有片电子束的W波段相位速度 - 锥形正弦波管(TWT)以放大毫米波。本文采用了3-D高频仿真软件模拟了带电子束隧道的正弦波导的高频特性。仿真结果还表明,具有相锥结构的管可以在典型频率94GHz上产生超过235W的输出功率和32dB增益,其工作电压为20.3kV,电流为0.2a,输入功率为150mW。相应的增益从90GHz到100GHz的增益超过30dB。粒子内仿真结果表明,相位速度锥形正弦波导结构可以在94GHz处增加输出功率46 %。

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