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Planar Helix With Straight-Edge Connections in the Presence of Multilayer Dielectric Substrates

机译:多层介质基体中具有直边连接的平面螺旋

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A planar slow-wave structure consisting of a planar helix with straight-edge connections has been studied in the context of application in traveling-wave tubes. The effects of several practical modifications to the basic structure are examined. These modifications comprise a vacuum tunnel, metal shield, and multilayer dielectric substrates. A modified effective dielectric constant method is proposed to obtain the dispersion characteristics for different possible configurations. Furthermore, coupling impedance for the different configurations has been calculated using the corresponding 2-D approximations. It is shown that, far from cutoff, the phase velocity and coupling impedance values calculated in this manner match very well with the simulation results obtained from CST Microwave Studio. The effects of variations in aspect ratio, metal shield distance, and dielectric constant of the substrates on phase velocity and coupling impedance are studied. A coplanar waveguide feed has been designed for one of the possible configurations. The measured $S$-parameters and phase velocity values for this proof-of-concept configuration agree well with the simulated results and confirm the ease of fabrication, low loss, and the wideband potential of the planar helix with straight-edge connections.
机译:在行波管中的应用中,已经研究了由具有直边连接的平面螺旋组成的平面慢波结构。研究了对基本结构的几种实际修改的效果。这些修改包括真空隧道,金属屏蔽和多层介电基板。为了获得不同可能配置的色散特性,提出了一种改进的有效介电常数方法。此外,已经使用相应的2-D近似值计算了不同配置的耦合阻抗。结果表明,以这种方式计算的相速度和耦合阻抗值远非截止值,与从CST Microwave Studio获得的仿真结果非常吻合。研究了纵横比,金属屏蔽距离和基板介电常数的变化对相速度和耦合阻抗的影响。已针对一种可能的配置设计了共面波导馈源。此概念验证配置的$ S $参数和相速度值与仿真结果非常吻合,并证实了制造简单,低损耗以及具有直边连接的平面螺旋的宽带潜力。

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