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Rapid Modeling, Characterization, Optimization Methodology and Analysis for Low Cost RF Filter Design

机译:低成本射频滤波器设计的快速建模,表征,优化方法和分析

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The increasing popularity of the IEEE 802.11n wireless applications demand low cost and high quality RF applications in the 5 GHz spectrum region particularly for RF filters. Simulation performances and low cost implementations are given the spotlight in many RF filter designs proposed in the literatures but fail to address the importance of physical performances which are dependent on design, material of choice, design and fabrication methodologies and particularly, matching the physical RF feed. This paper presents the rapid modeling, characterization and optimization methodology to produce high performance RF filter design and showing the severe effect of imbalance feed structure when joining the filter feed with RF connectors. This paper also shows how two equal RF filters using parallel microstrip coupled line design with different feed structures connecting to RF connectors can have different performance. The filters are fabricated on Rogers R04350B substrate with dielectric 3.66 using computer numerical control (CNC) machine for rapid design characterization and optimization to achieve matching impedance at the joints and performance. High performance filter design with low insertion loss of 1 dB, return loss of 20 dB and wide operating bandwidth is achievable with the proposed methodology.
机译:IEEE 802.11n无线应用程序的日益普及要求在5 GHz频谱区域中尤其是RF滤波器的低成本和高质量RF应用程序。文献中提出的许多RF滤波器设计都将仿真性能和低成本实现作为关注点,但未能解决物理性能的重要性,而物理性能取决于设计,选择的材料,设计和制造方法,特别是与物理RF馈送匹配。本文介绍了快速建模,表征和优化方法,以产生高性能的RF滤波器设计,并展示了将滤波器馈源与RF连接器连接时,馈源结构不平衡的严重影响。本文还展示了使用并联微带耦合线设计和连接到射频连接器的不同馈电结构的两个相等的射频滤波器如何具有不同的性能。滤波器是使用计算机数控(CNC)机器在电介质为3.66的Rogers R04350B基板上制造的,用于快速设计表征和优化,以实现接头处的匹配阻抗和性能。所提出的方法可以实现具有1 dB的低插入损耗,20 dB的回波损耗和宽工作带宽的高性能滤波器设计。

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