An Innovative Odd-Power Divider by means of a Triple FinLine Waveguide to Microstrip Transition

IF 0.8 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Advanced Electromagnetics Pub Date : 2022-04-03 DOI:10.7716/aem.v11i1.1742
S. Fantauzzi, L. Valletti, D. Passi, F. Paolo
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引用次数: 4

Abstract

This paper outlines a novel approach to design a waveguide to microstrip Finline transition, that allows a division by three of the RF power traveling inside a rectangular waveguide. The possibility of obtaining and odd power division of microwave and millimeter wave signals with such Finline transition is completely unexplored yet harbinger of great opportunities. Starting from a 3D CAD model of the structure and continuing with Electromagnetic simulations, the obtained results completely describe a transition able to achieve an almost perfect power splitting by three. Multyphisics simulations, show an intrinsic resistance to vibrations of such transition, allowing it to be installed on aircraft or satellites modules. Thanks to this achievement a total new kind of power devices will come next, exploiting this odd power division in fact, it will be possible to realize different types of microwave amplifiers, increasing the efficiency and decreasing the occupied size. At the Author’s best knowledge it is the first time a divider by three Finline transition is reported in literature.
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一种创新的三鳍线波导-微带转换奇数功率分配器
本文概述了一种设计波导到微带Finline过渡的新方法,该方法允许将矩形波导内传播的RF功率除以三。利用这种Finline跃迁获得微波和毫米波信号并对其进行奇数功率划分的可能性尚未被探索,但这预示着巨大的机遇。从结构的3D CAD模型开始,继续进行电磁模拟,获得的结果完全描述了能够实现几乎完美的三次功率分配的过渡。Multyphisics模拟显示了对这种过渡振动的固有阻力,使其能够安装在飞机或卫星模块上。由于这一成就,下一代将出现一种全新的功率器件,利用这种奇怪的功率划分,事实上,将有可能实现不同类型的微波放大器,从而提高效率并减小占用面积。据作者所知,这是文献中首次报道三分频Finline跃迁。
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来源期刊
Advanced Electromagnetics
Advanced Electromagnetics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
12.50%
发文量
33
审稿时长
10 weeks
期刊介绍: Advanced Electromagnetics, is electronic peer-reviewed open access journal that publishes original research articles as well as review articles in all areas of electromagnetic science and engineering. The aim of the journal is to become a premier open access source of high quality research that spans the entire broad field of electromagnetics from classic to quantum electrodynamics.
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