使用不同的CPW地平面结构的CPW到微带转换

R. S. Beeresha, A. Khan, H. Reddy
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引用次数: 4

摘要

多层电路在传输高频信号时受到无源元件的影响。所述无源元件为平面集成电路的容性和感抗。电路整体效率的一部分取决于元件的无源性、互连及其几何结构,这有助于构建低损耗的多层集成电路。本文的目的是设计工作频带为1GHz ~ 75GHz的共面波导到微带线过渡结构。采用线性锥形过渡方法,对常规、阶梯边、锐边和线性曲率边四种不同的CPW地平面结构进行了检测。线性曲率边缘CPW地平面结构与传统的阶梯边缘和锐边缘结构相比,具有更好的转换效率、工作频带和更低的插入损耗。利用NI/AWR工具对设计的结构进行了电磁仿真。CPW微带线结构尺寸紧凑,广泛应用于射频/微波电路元件的开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
CPW to microstrip transition using different CPW ground plane structures
The multilayer circuits are suffers from passive components effect to transit high frequency signal. The passive components are capacitive and inductive reactance of the planar integrated circuit. The part of overall circuit efficiency depending on passivity of the components, interconnections and its geometrical structure, which is helps to build low loss multilayer integrated circuits (MIC). The aim of this paper is to design coplanar wave guide (CPW) to microstrip line transition structure with 1GHz to 75GHz operating frequency band. The linear tapered transition method is used and inspected with four different CPW ground plane structures are conventional, stepped edge, sharp edge and linear curvature edge. The linear curvature edged CPW ground plane structure gives better transition efficiency, operating frequency band and lower insertion loss compare to conventional, stepped edge and sharp edge structures. The designed structures are electromagnetic simulated using NI/AWR tool. The CPW to microstrip line structure is compact in size and widely used for RF/Microwave circuit component development.
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