基于新型中心对称螺旋数字间谐振器的小型化支路耦合器设计

Xiao-Kuan Zhang, Chao Zhou, Guo‐cheng Wu, Y. Zhuang
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引用次数: 5

摘要

本文采用一种新型中心对称螺旋数字间谐振器(CSSIR)的单元格,实现了分支线耦合器的小型化。由于其固有的卷曲结构,CSSIR可以完全嵌入微带线中,实现了紧凑的横向尺寸。利用Ansoft Designer软件和等效电路模型对CSSIR的电磁特性进行了分析,证明了通带内相移-90度的频率点的特性,并将其应用于正交微波元件的设计。根据微带支路耦合器的设计方法,设计了嵌入CSSIR的90度相移30.5 Ω和50Ω传输线。本文采用基于cssir的传输线代替传统的四分之一波长传输线来构建微带支路耦合器。然后对所设计的分支线耦合器进行制作和测量;测量结果与仿真结果吻合良好,表明该支路耦合器的工作频率为3.22GHz,带宽为3.18GHz-3.32GHz,具有良好的电磁性能。设计的分支线耦合器尺寸为16.5mm × 11.3mm,比常规分支线耦合器尺寸减小54.7%。此外,所提出的分支线耦合器是单平面的,没有引入过孔、缺陷接地结构和集总元件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of miniaturized branch-line coupler based on novel center-symmetrical spiral-interdigital resonators
A miniaturized branch-line coupler is achieved by using the unit cells of novel center-symmetrical spiral-interdigital resonator (CSSIR) in this article. Due to its intrinsic convoluted structure, CSSIR can be completely embedded in the microstrip line, and a compact transversal dimension is realized. The electromagnetic characteristics of CSSIR are analyzed by Ansoft Designer and equivalent circuit model, and the characteristic of a frequency point with -90-degree phase shift in the passband is proved, and it can be applied to design the quadrature microwave components. According to the design methods of the microstrip branch-line coupler, the 90-degree phase shift 30.5 Ω and 50Ω transmission lines embedded with CSSIR are designed. Instead of the corresponding conventional quarter-wavelength transmission lines, the proposed CSSIR-based transmission lines are utilized to construct the microstrip branch-line coupler. Then, the designed branch-line coupler is fabricated and measured; the measured and simulated results are in good agreement with each other, showing that the operating frequency of this coupler is 3.22GHz, the bandwidth is 3.18GHz-3.32GHz, and this designed branch-line coupler has good electromagnetic performances. Moreover, the size of the designed branch-line coupler is 16.5mm × 11.3mm, and it realizes 54.7% size reduction in comparison with the conventional one. Besides, the proposed branch-line coupler is uniplanar, and no via, defected ground structure or lumped element is introduced.
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