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Generalized Lossy Microwave Filter Coupling Matrix Synthesis and Design Using Mixed Technologies

机译:混合技术的广义有损微波滤波器耦合矩阵合成与设计

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摘要

This paper presents a generalized direct synthesis technique for lossy reciprocal and nonsymmetrical microwave filters. The procedure handles multiple complex coupling among resonators and finite- $Q$ resonators. A coupling matrix model with complex entries is used as the basis for the analysis. New mathematical definitions are introduced to find the necessary properties of the complex coupling matrix. Synthesis verification examples include symmetrical, asymmetrical and different loss level lossy functions. A lossy four-pole Chebyshev filter in $Ku$-band has been designed, fabricated and tested using mixed combline and microstrip technologies for the first time. This design has the advantage of having the signal passing through at least two resonators for any possible signal path, which eliminates unwanted source to load coupling to a great extent.
机译:本文提出了一种有损互惠和非对称微波滤波器的广义直接合成技术。该程序处理谐振器和有限$ Q $谐振器之间的多重复杂耦合。具有复杂条目的耦合矩阵模型被用作分析的基础。引入了新的数学定义以找到复数耦合矩阵的必要属性。综合验证示例包括对称,不对称和不同的损失水平有损函数。首次使用混合梳状线和微带技术设计,制造和测试了一个以美元为单位的有损四极切比雪夫滤波器。这种设计的优点是,对于任何可能的信号路径,信号都要通过至少两个谐振器,这在很大程度上消除了不必要的源到负载耦合。

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