A Broadband Transition between Dielectric and Planar Waveguides at Millimeterwave Frequencies

J. Richter, Y. Yazici, C. Ziegler, L. Schmidt
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引用次数: 20

Abstract

A variety of transitions between rectangular dielectric waveguides and planar waveguides like microstrip or slotline have been designed to combine the advantages of dielectric wave-guides at millimeterwaves with the excellent hybrid integration capabilities of planar circuits. FDTD field simulations have been applied to analyze and optimize the designed transitions with respect to low insertion and return losses as well as minimized mutual coupling between adjacent transitions. Experimental investigations between 60 and 90 GHz proved the promising results of the simulations with insertion losses between 0.5 and 1.5 dB over the full waveguide band (WR-12). The transitions can well be used for the integration of planar circuits into dielectric waveguides or rod antennas and the designed structures are scalable up to frequencies beyond 100 GHz.
毫米波频率下介电波导与平面波导之间的宽带跃迁
为了将介电波导在毫米波处的优势与平面电路优异的混合集成能力相结合,设计了多种介电波导与平面波导(如微带或槽线)之间的过渡。利用时域有限差分(FDTD)场模拟分析和优化设计的转换,使其具有较低的插入损耗和回波损耗,并使相邻转换之间的相互耦合最小化。在60 ~ 90 GHz范围内的实验研究证明了在全波导带(WR-12)内插入损耗在0.5 ~ 1.5 dB的模拟结果。这种转换可以很好地用于将平面电路集成到介质波导或杆天线中,并且所设计的结构可扩展到100 GHz以上的频率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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