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Design and Implement of High Performance and Miniaturization of SIR Microstrip Multi-Band Filters

机译:SIR微带多频带滤波器的高性能和小型化设计与实现

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摘要

This paper presents a novel method of designing mi-crostrip line multi-frequencies band filters by applying the SIR (stepped impedance resonators) technology. Utilizing the S-parameter and the ABCD parameters of a two-port network is for the analysis of short-circuited and open-circuited resonators with various combinations of series and shunt sequences. By controlling the impedance ratio of the resonators, both center frequencies of the two passbands then are determined. Moreover, a global synthesis approach is also discussed on miniaturization. A simplified architecture based on bent SIR offers the 50% area reduction of layout. Technology of matching circuit creates higher performance multi-band filter. We adjust impedance and electrical length of transmission line (TL) to compensate multi-band and bending for matches and highly improve the insertion and reflection loss. Simulation and measurement are performed to validate our method and are pretty matched.
机译:本文提出了一种通过应用SIR(步进阻抗谐振器)技术设计微带状线多频频带滤波器的新颖方法。利用两端口网络的S参数和ABCD参数分析具有串联和并联序列各种组合的短路和开路谐振器。通过控制谐振器的阻抗比,然后确定两个通带的两个中心频率。此外,还讨论了关于小型化的全局综合方法。基于弯曲SIR的简化架构可将布局面积减少50%。匹配电路技术创造了更高性能的多频带滤波器。我们调整传输线(TL)的阻抗和电气长度,以补偿多频带和弯曲的匹配,并极大地改善了插入和反射损耗。执行仿真和测量以验证我们的方法,并且非常匹配。

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