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Multimode analysis of transmission lines and substrates for (sub)mm-wave calibration

机译:传输线和基板的多模分析,用于(亚)毫米波校准

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In this contribution we present a numerical and experimental analysis of the multimode propagation over coplanar transmission lines, in order to define guidelines for substrate selection to achieve accurate wafer-level (sub)mm-wave calibrations. Losses and coupling effects resulting from the multiple propagating modes on transmission lines conventionally employed for probe-level calibrations, are analysed by means of 3D electro-magnetic simulations. A low loss-tangent, low dielectric constant material (i.e., fused silica), providing low radiation losses due to mode coupling, is proposed as substrate to achieve accurate (sub)mm-wave calibrations. The structures required to perform a TRL calibration are integrated on the proposed fused silica substrate and the experimental data of probe-level calibration performed in the 220–325GHz band are presented.
机译:在这项贡献中,我们提供了共面传输线上多模传播的数值和实验分析,以定义用于选择衬底的准则,以实现准确的晶圆级(亚)毫米波校准。通过3D电磁仿真分析了传统上用于探头级校准的传输线上多种传播模式所导致的损耗和耦合效应。提出了一种低损耗角正切,低介电常数的材料(即,熔融石英),由于模式耦合而提供了低辐射损耗,被用作实现准确的(亚)毫米波校准的衬底。执行TRL校准所需的结构集成在建议的熔融石英基板上,并提供了在220–325GHz频段执行的探头级校准的实验数据。

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