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Electromagnetic interference in substrate-integrated waveguides circuit and its suppression technique

机译:基片集成波导电路中的电磁干扰及其抑制技术

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As was well known, the substrate-integrated waveguide can be easily implemented and integrated with active and passive devices using the printed circuit process. Thus, the integration circuit and system based on the substrate-integrated waveguide technique becomes achievable. However, in the integrated circuit environment, the close proximity between adjacent substrate-integrated waveguides may cause the electromagnetic coupling, and thus the electromagnetic interference problem arises accordingly. In this research, we demonstrate the electromagnetic coupling between two parallel substrate-integrated waveguide. Moreover, the theory of Fabry-Perot resonator was employed to explain the resonance coupling between the substrate-integrated waveguides. On the other hand, a new substrate-integrated waveguide equipped with moats [1] was utilized to examine the capability of cross-talk suppression. Interestingly, we find that in comparison with the conventionally used substrate-integrated waveguide the new one can effectively suppress the electromagnetic wave coupling. Therefore, the signal integrity can be further improved in a microwave or millimeter-wave circuit or system implemented using the substrate-integrated waveguide technique.
机译:众所周知,集成衬底的波导可以很容易地实现,并利用印刷电路工艺与有源和无源器件集成在一起。因此,可以实现基于衬底集成波导技术的集成电路和系统。然而,在集成电路环境中,相邻的集成基板的波导之间的紧密接近会引起电磁耦合,因此会出现电磁干扰问题。在这项研究中,我们演示了两个平行的基板集成波导之间的电磁耦合。此外,采用法布里-珀罗谐振器的理论来解释衬底集成波导之间的谐振耦合。另一方面,新型的集成有substrate沟的基片集成波导[1]被用于检验串扰抑制能力。有趣的是,我们发现与传统使用的基片集成波导相比,新型波导可以有效地抑制电磁波耦合。因此,在使用衬底集成波导技术实现的微波或毫米波电路或系统中,可以进一步改善信号完整性。

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