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Ultra-Compact Tunable Filtering Rat-Race Coupler Based on Half-Mode SIW Evanescent-Mode Cavity Resonators

DOI:10.1109/TMTT.2018.2876238 期刊:IEEE Transactions on Microwave Theory and Techniques 出版年份:2018 更新时间:2025-09-11 14:15:04
摘要: In this paper, for the first time, an ultra-compact frequency-tunable filtering rat-race coupler based on half-mode evanescent-mode (EVA) cavity resonators is presented. Employing EVA cavity resonators in the coupler design yields attractive characteristics, such as a wide tuning range and a wide spurious-free range, while also adding filtering functionality to the device. The presented coupler is synthesized as a two pole bandpass filter using the coupling matrix method. Then, the coupling coefficients are mapped to a coupler topology. Design, simulations, and experimental validation are presented. The implemented rat-race coupler has a very compact size [0.14λg × 0.14λg (λg at 885 MHz)] achieving a 92% miniaturization in the structure footprint compared to the conventional planar one. The coupler has an 86% tuning range ranging between 0.885–1.65 GHz. Throughout the tuning range, the coupler shows an equal power splitting ratio and filtering profile with a measured insertion loss and 3-dB fractional bandwidth between 5 and 4.2 dB and 6.8% and 8%, respectively. The measured isolation is better than 30 dB. In addition, the coupler has a measured spurious-free range of 10.2 fo (at the lowest frequency) to 5.45 fo (at the highest frequency).
作者: Mohamed F. Hagag,Mohammad Abu Khater,Michael D. Sinanis,Dimitrios Peroulis
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To present an ultra-compact frequency-tunable filtering rat-race coupler based on half-mode evanescent-mode (EVA) cavity resonators, achieving a wide tuning range, a wide spurious-free range, and filtering functionality.

A novel ultra-compact frequency-tunable filtering rat-race coupler based on SIW half-mode EVA cavity resonators is presented, offering a wide tuning range, a wide spurious-free range, and filtering functionality while keeping the insertion loss at a reasonable level. The coupler is very compact and has an 86% tuning range starting from 0.855 GHz.

The simulated results are better in terms of the insertion loss, primarily due to losses associated with the coupler assembly. Nonideal coupler fabrication and assembly affect the in-band flatness as the coupler is tuned to lower frequencies.

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