Higher-Order Filtering Attenuator Design Considerations for Filter Shape Optimization

J. Knowles, H. Sigmarsson, J. Mcdaniel
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Abstract

Filtering attenuators (filtenuators) combine the frequency selectivity of filters with the controlled loss of an attenuator in a single component. Often, the filtenuator is made of three resonators or less to minimize the complexity of the design and the resistive π-network distribution is straightforward. However, the resistive network distribution is less clear for high-order filtenuator designs. This paper presents an alternative method of loading a filtenuator that has more than three resonators and is compared to the traditional π-network method of loading a resonating circuit. A detailed analysis of the resistive network distribution is conducted to optimize the filter shape using a fifth-order Chebyshev bandpass filter topology. A 900 MHz fifth-order filtenuator with 6.5 dB of passband loss is designed using the optimized distribution method, and the measured results are compared to simulation.
滤波器形状优化的高阶滤波衰减器设计考虑
滤波衰减器(filtenuators)将滤波器的频率选择性与衰减器在单个元件中的可控损耗相结合。滤波器通常由三个或更少的谐振器组成,以尽量减少设计的复杂性,并且电阻π-网络分布是直接的。然而,对于高阶滤波器设计,电阻网络的分布不太清楚。本文提出了一种加载具有三个以上谐振器的滤波器的替代方法,并与传统的加载谐振电路的π-网络方法进行了比较。通过对电阻网络分布的详细分析,采用五阶切比雪夫带通滤波器拓扑优化滤波器形状。采用优化分配方法设计了一个通带损耗为6.5 dB的900 MHz五阶滤波器,并将测量结果与仿真结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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