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Design and Multiphysics Analysis of Direct and Cross-Coupled SIW Combline Filters Using Electric and Magnetic Couplings

机译:使用电磁耦合的直交和交叉耦合SIW梳状滤波器的设计和多物理场分析

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摘要

In this paper, combline substrate integrated waveguide (SIW) filters using electric and magnetic couplings are thoroughly studied. Thus, a negative coupling scheme consisting on an open-ended coplanar probe is proposed and analyzed in detail. Several in-line 3-pole filters at C-band are designed, manufactured and measured showing how the presented approach can be used for implementing direct couplings while enabling an important size reduction and improved spurious-free band compared to conventional magnetic irises. A fully-packaged quasi-elliptic 4-pole filter is also designed at 5.75 GHz showing how the negative coupling structure can be used for introducing transmission zeros by means of cross-couplings between non-adjacent resonators. Finally, average and peak power handling capabilities of these filters have been also analyzed from a multiphysics point of view. Measured results validate the theoretical predictions confirming that combline SIW filters can handle significant levels of continuous and peak power, providing at the same time easy integration, compact size and advanced filtering responses.
机译:在本文中,对使用电和磁耦合的梳状衬底集成波导(SIW)滤波器进行了深入研究。因此,提出并详细分析了由开放式共面探针组成的负耦合方案。设计,制造和测量了几个处于C波段的在线3极滤波器,显示了所提出的方法可以用于实现直接耦合,同时与传统的电磁虹膜相比,可以实现重要的尺寸减小和改善的无杂散频带。还设计了一个全封装的准椭圆四极滤波器,频率为5.75 GHz,显示了如何利用负耦合结构通过非相邻谐振器之间的交叉耦合引入传输零点。最后,还从多物理场的角度分析了这些滤波器的平均和峰值功率处理能力。测量结果验证了理论预测,证实梳状SIW滤波器可以处理相当大的连续功率和峰值功率,同时提供易于集成,紧凑的尺寸和先进的滤波响应。

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