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A Multi-Hole Groove Gap Waveguide Directional Coupler based on Glide-Symmetric Holey EBG for E-Band Application

机译:基于滑动对称孔EBG的多孔槽隙波导定向耦合器在电子频带中的应用

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This paper presents a directional coupler in E-band based on recently introduced multi-layer waveguide transmission line. In this technology, by stacking several thin metal plates and creating a groove inside the structure, a transmission line is realized. To eliminate the field leakage via air gap between the metal layers, periodic holes on the metal plates are used to work as an Electromagnetic Band Gap (EBG) structure. The EBG holes have glide symmetry to obtain a wide band-gap from 50GHz to 100GHz. Then a multi-hole directional coupler based on the multi-layer gap waveguide and required transitions to standard WR-12 flange is designed and simulated. Different directional coupler with 20dB, 25dB, and 30dB coupling factor in the frequency range of 70GHz to 90GHz are designed and studied in this paper.
机译:本文介绍了一种基于最近推出的多层波导传输线的E波段定向耦合器。在这项技术中,通过堆叠多个薄金属板并在结构内部创建凹槽,可以实现传输线。为了消除通过金属层之间的气隙引起的场泄漏,金属板上的周期性孔用作电磁带隙(EBG)结构。 EBG孔具有滑行对称性,可在50GHz至100GHz范围内获得宽带隙。然后,设计并仿真了基于多层间隙波导和向标准WR-12法兰过渡的多孔定向耦合器。本文设计并研究了在70GHz至90GHz频率范围内具有20dB,25dB和30dB耦合因子的不同定向耦合器。

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