Miniaturized planar branch-line coupler with asymmetrical π-shaped structure

D. Dasgupta, Biswajit Sarkar, Manimala Pal, R. Ghatak
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Abstract

This paper presents a new design methodology for microstrip branch-line couplers utilizing asymmetrical π-structures. Design equations of the coupler with sub-optimum performance are analytically derived. The branches of the original hybrid coupler are decomposed in to high and low impedance sections with the low impedance section being reduced to an equivalent π-network. The proposed approach features compact size, planar structure and low-loss. The developed planar branch-line coupler occupies 46.28% of circuit area compared to the conventional structure. Design method is illustrated with a microstrip branch-line coupler operating at 2.44 GHz. The isolation is 40dB at 2.44GHz. The impedance bandwidth of 38.6% is obtained centered about the design frequency.
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非对称π形结构的小型化平面分支线耦合器
本文提出了一种利用非对称π结构设计微带支路耦合器的新方法。解析导出了次优性能耦合器的设计方程。将原混合式耦合器的支路分解为高阻抗和低阻抗两部分,低阻抗部分简化为等效π网络。该方法具有体积小、平面结构和低损耗等特点。与传统结构相比,所研制的平面分支线耦合器占电路面积的46.28%。以工作频率为2.44 GHz的微带支路耦合器为例说明了设计方法。在2.44GHz时,隔离度为40dB。阻抗带宽为38.6%,以设计频率为中心。
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