Microstrip switchable bandstop filter using PIN diodes with precise frequency and bandwidth control

Z. Brito-Brito, I. Llamas-Garro, L. Pradell-Cara, A. Corona‐Chavez
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引用次数: 35

Abstract

In this paper a switchable bandstop filter able to switch between two different central frequency states while precisely maintaining a fixed bandwidth is presented. The filter topology allows precise control over the design parameters frequency and bandwidth, achieved by choosing adequate resonator sections which are switched by PIN diodes to obtain two discreet states. The central frequency control was obtained by modifying resonator length. Bandwidth control was achieved by choosing a resonator width and controlling the normalized reactance slope parameter of a decoupling resonator by means of a switchable resonator extension. The filter was designed to have center frequencies of 2 and 1.5 GHz both having an 8% fractional bandwidth. The comparison between simulations and measurements showed a central frequency deviation of 4 MHz for the 2 GHz frequency response, and a deviation of 2 MHz for the 1.5 GHz frequency response. The fractional bandwidth deviation for the 2 GHz filter response was 0.67%, while at 1.5 GHz a 0.4% deviation was observed. The simulation and measured responses are in very good agreement.
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微带开关带阻滤波器使用PIN二极管与精确的频率和带宽控制
本文提出了一种可切换带阻滤波器,可以在两种不同的中心频率状态之间切换,同时精确地保持固定带宽。滤波器拓扑允许精确控制设计参数频率和带宽,通过选择适当的谐振器部分来实现,这些谐振器部分由PIN二极管开关以获得两个离散状态。通过调整谐振腔长度实现了中心频率控制。通过选择谐振腔宽度和通过可切换谐振腔扩展控制去耦谐振腔的归一化电抗斜率参数来实现带宽控制。该滤波器被设计为具有2 GHz和1.5 GHz的中心频率,都具有8%的分数带宽。仿真与测量结果的对比表明,2 GHz频率响应的中心频率偏差为4 MHz, 1.5 GHz频率响应的中心频率偏差为2 MHz。2 GHz滤波器响应的分数带宽偏差为0.67%,而在1.5 GHz时观察到0.4%的偏差。仿真结果与实测结果吻合较好。
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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