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Investigation of Rods Shapes and Materials Influence on Q-Band Travelling Wave Tube High Frequency Characteristics

机译:棒形和材料对Q波段行波管高频特性影响的研究

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This investigation aimed to find a compromise between enough heat dissipation, high interactive impedance and low RF loss. Several constructions of helix slow-wave structure (SWS) with different dielectric rods shapes (i.e., rectangular, wedge, T-shaped, and stairs) are analyzed in this paper. The use of the promising SWS construction with stairs-shaped dielectric rods allowed to obtain 47% increase in interactive impedance value compared to the initial SWS with rectangular BeO rods. Scrutiny of two rods materials (beryllium oxide and boron nitride) revealed that use of the latter one and three times reduction of rods width lead to 94 % increase in interactive impedance value compared to the first calculated SWS with thick BeO rods. Conducted wire geometry optimization provided minimum level of RF loss and sufficient heat dissipation. Calculations of interactive space construction confirmed the benefit of using SWS construction with BN rods: 6 – 8% increase in output power was obtained within operating range.
机译:这项研究旨在找到足够的散热,高交互阻抗和低RF损耗之间的折衷方案。本文分析了具有不同介电棒形状(即矩形,楔形,T形和阶梯形)的螺旋慢波结构(SWS)的几种结构。与具有矩形BeO棒的初始SWS相比,将有前途的SWS结构与阶梯形介电棒一起使用可使交互式阻抗值增加47%。仔细检查了两种棒材料(氧化铍和氮化硼)后发现,与使用BeO粗棒计算出的第一个SWS相比,使用后者减小棒宽度一到三倍会导致交互式阻抗值增加94%。导线几何形状的优化提供了最低水平的RF损耗和足够的散热。交互式空间结构的计算证实了使用带BN棒的SWS结构的好处:在工作范围内,输出功率提高了6 – 8%。

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