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Analysis of Substrate Parameters’ Variations in a PCB-based 60 GHz GCPW Marchand Balun Design

机译:基于PCB的60 GHz GCPW Marchand Balun设计中的基板参数变化分析

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This paper presents the design of a 60 GHz grounded coplanar waveguide (GCPW) based Marchand balun that is robust against variations of substrate height or dielectric constant. The via-free design and minimum trace width and trace-to-trace clearance of 0.1 mm makes this balun compatible for fabrication with economical printed circuit board (PCB) development technology. For optimal choice of height for a given substrate with known dielectric constant, simulation results show 33% bandwidth with maximum amplitude and phase imbalance of 0.2 dB and 13 degree, respectively. The substrate dependency analysis in terms of height and dielectric constant show the possibility of implementing this GCPW balun on substrates with deviations in height or dielectric constant with tolerable performance degradation. It provides a cost-effective rapid solution of measuring differential antennas and commercially available differential millimeter-wave components using single-ended laboratory equipment. Simulation results are verified through fabrication and laboratory measurements of two baluns backto-back connected through their differential ports. The measured results are in accordance with the simulated results.
机译:本文介绍了基于Marchand balun的60 GHz接地共面波导(GCPW)的设计,该设计可抵抗衬底高度或介电常数的变化。无通孔设计以及最小的走线宽度和0.1mm的走线间隙使该巴伦兼容经济的印刷电路板(PCB)开发技术进行制造。对于具有已知介电常数的给定基板的最佳高度选择,仿真结果显示带宽为33%,最大振幅和相位不平衡分别为0.2 dB和13度。根据高度和介电常数进行的衬底依赖性分析表明,可以在衬底上实现这种GCPW巴伦,而高度或介电常数会有偏差,并且性能会下降。它提供了一种经济高效的快速解决方案,可使用单端实验室设备测量差分天线和市售差分毫米波组件。通过两个通过其差分端口背对背连接的平衡-不平衡变换器的制造和实验室测量,验证了仿真结果。测量结果与模拟结果一致。

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