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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Simple and Compact Balanced Bandpass Filters Based on Magnetically Coupled Resonators
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Simple and Compact Balanced Bandpass Filters Based on Magnetically Coupled Resonators

机译:基于磁耦合谐振器的简单且紧凑的平衡带通滤波器

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A simple strategy is proposed to design differential-mode bandpass filters with good common-mode (CM) rejection using simple resonators. Specifically, the CM rejection is enhanced by using conventional open-loop resonators as well as folded stepped-impedance resonators without the addition of printed or lumped elements along the symmetry plane of the filter or the use of defected ground solutions. The novelty of the present proposal is that a good CM rejection is achieved by the use of magnetic coupling instead of the more commonly employed electrical coupling. Magnetic coupling inherently yields poorer CM transmission as requested by good differential filters. The resonators, due to their geometrical simplicity, can easily be cascaded to implement high-order filters. The use of simple geometries also simplifies the design methodology and makes final tuning based on electromagnetic simulation simpler or unnecessary.
机译:提出了一种简单的策略,以使用简单的谐振器设计具有良好共模(CM)抑制性能的差模带通滤波器。具体而言,通过使用常规的开环谐振器以及折叠式步进阻抗谐振器,无需沿着滤波器的对称平面添加印刷或集总元件或使用有缺陷的接地解决方案,就可以提高CM抑制能力。本提议的新颖性在于,通过使用磁耦合而不是更常用的电耦合实现了良好的共模抑制。磁耦合固有地会产生差的滤波器所要求的较差的CM传输。谐振器由于其几何简单性,可以轻松地级联以实现高阶滤波器。简单几何形状的使用还简化了设计方法,并使基于电磁仿真的最终调整变得更简单或不必要。

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