Abstract
Very high-power and high-efficiency microwave applications require waveguide structures to combine/divide the power from/to a variable number of high-power solid-state devices. In the literature, among the different waveguide configurations, those capable of providing the maximum output power show a limited relative bandwidth. To overcome this limitation, in this paper a full-band (40%) waveguide power divider/combiner specifically designed for high-power applications (up to several kW) is presented. The proposed structure uses an evolved turnstile junction with a standard rectangular waveguide common port, rotated 45°, with respect to its central axis, to divide/combine the signal to/from the four output/input rectangular ports. The inclusion of an oversized central cavity together with circular and rectangular waveguide impedance transformers at the common port allows the achievement of a full-band operation with excellent electrical performance, while maintaining a very simple and compact configuration. Only two layers of metal are required for the physical implementation of this structure in platelet configuration. A prototype has been designed covering the full Ka-band (26.5–40 GHz), showing an excellent measured performance with around 30 dB of return loss, 0.18 dB of insertion loss, and less than 1.5° of phase imbalance.
Funder
Ministero dell’Istruzione, dell’Università e della Ricerca
Subject
Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering
Cited by
5 articles.
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1. Design of a Compact Low Loss Four-Way Power Divider at W-band;2023 7th International Conference on Electronics, Materials Engineering & Nano-Technology (IEMENTech);2023-12-18
2. A Novel Cruciform TE10/TE20 Dual-Mode Power Divider Based on Groove Gap Waveguides;IEEE Transactions on Microwave Theory and Techniques;2023-12
3. A Compact X-Band Coaxial Line to Four Rectangular Waveguides Power Divider/Combiner;2022 24th International Microwave and Radar Conference (MIKON);2022-09-12
4. Ka-Band 16-Way Radial Power Combiner Design with Low-Loss and
High-Efficiency;The Journal of Korean Institute of Electromagnetic Engineering and
Science;2022-04
5. W-Band 4-Way Waveguide Power Combiner Using Perpendicular Mode
Conversion;The Journal of Korean Institute of Electromagnetic Engineering and
Science;2021-04