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A Millimeter-Wave Klystron Upconverter With a Higher Order Mode Output Cavity

机译:具有高阶模式输出腔的毫米波速调管上变频器

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摘要

Manufacturing of klystrons in the millimeter-wave frequency range is challenging due to the small size of the cavities and the ratio of the maximum gap voltage to the beam energy. The small dimensions also make difficult to produce devices with the output power required by a number of applications at millimeter wave, such as communications and spectroscopy. Operating with a higher order mode can be a potential solution, as a larger transverse size structure can be used. Unfortunately, high-order mode cavities have a lower impedance than in fundamental mode. In this paper is proposed a novel solution to overcome the reduced impedance by utilizing an upconverter, where all cavities except the output cavity are designed to work in high-order mode. To demonstrate the effectiveness of the approach, two klystron upconverters were designed. One has six cavities aiming to achieve a maximum output power of $~$90 W at 105 GHz. The second klystron upconverter was a simpler three-cavity structure designed for quick prototype. Millimeter-wave measurements of the three-cavity klystron upconverter are presented.
机译:由于腔的尺寸小以及最大间隙电压与电子束能量之比,在毫米波频率范围内速调管的制造具有挑战性。小尺寸还使得难以生产具有毫米波等多种应用所需的输出功率的设备,例如通信和光谱学。由于可以使用较大的横向尺寸结构,因此以较高阶模式进行操作可能是一种潜在的解决方案。不幸的是,高阶模腔的阻抗低于基本模腔。在本文中,提出了一种新颖的解决方案,通过利用上变频器来克服降低的阻抗,在上变频器中,除输出腔外的所有腔均设计为以高阶模式工作。为了证明该方法的有效性,设计了两个速调管上变频器。一个具有六个腔,旨在在105 GHz时达到$〜$ 90 W的最大输出功率。第二个速调管上变频器是为快速原型设计的更简单的三腔结构。提出了三腔速调管上变频器的毫米波测量。

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