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Use of the Kompfner dip effect in multistage gyro-TWTs of high average power

机译:Kompfner倾角效应在高平均功率的多级陀螺TWT中的使用

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Very often, in order to realize a high-gain operation of gyro-traveling-wave tubes (gyro-TWTs), the tubes are designed as multistage amplifiers, in which each section is short enough and thus, stable. In such tubes, the wave amplified in the input and intermediate stages should be absorbed at their ends by matching loads, which often limits the average power capability of these devices. This limitation can be avoided if these stages operate in the regime of the wave absorption by an electron beam. A long time ago, such a regime in conventional TWTs driven by linear electron beams was studied by Kompfner (1950), so the effect of wave attenuation in the gain curve is known as the Kompfner dip. In the present paper, we consider a two-stage (gyro-)TWT in which the first section operates in the Kompfner dip regime. The small-signal theory is developed, which allows one to analyze the tradeoffs in the small-signal gain and bandwidth associated with this kind of operation. The large-signal simulations indicate that such a two-stage gyro-TWT can operate with the orbital efficiency of 40% (total efficiency of 15%) and the gain over 40 dB.
机译:通常,为了实现陀螺旅行波管(gyro-TWT)的高增益操作,电子管被设计为多级放大器,其中每个部分都足够短,因此很稳定。在这种电子管中,在输入级和中间级放大的波应在其端部通过匹配负载吸收,这通常会限制这些设备的平均功率能力。如果这些阶段在电子束吸收波的方式下运行,则可以避免这种限制。很久以前,Kompfner(1950)研究了线性电子束驱动的传统TWT中的这种情况,因此,增益曲线中波衰减的影响被称为Kompfner倾角。在本文中,我们考虑了两阶段(陀螺)TWT,其中第一部分在Kompfner倾角状态下运行。发展了小信号理论,它使人们能够分析与这种操作相关的小信号增益和带宽之间的折衷。大信号模拟表明,这样的两级陀螺仪TWT可以以40%的轨道效率(总效率为15%)和超过40 dB的增益工作。

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