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DOI:10.1109/MWSYM.2015.7166748 - Corpus ID: 30464739
@article{Kazemi2015XbandAR, title={X-band all-waveguide radial combiner for high power applications}, author={Robab Kazemi and Gamal M. Hegazi and Aly E. Fathy}, journal={2015 IEEE MTT-S International Microwave Symposium}, year={2015}, pages={1-4}, url={https://api.semanticscholar.org/CorpusID:30464739}}
- R. Kazemi, G. Hegazi, A. Fathy
- Published in IEEE MTT-S International… 17 May 2015
- Engineering, Physics
- 2015 IEEE MTT-S International Microwave Symposium
The development of a 12-way X-band all-waveguide radial divider/combiner is presented. The radial combiner is comprised of three parts: a center feed, a radial line, and peripheral waveguide ports. The center feed is comprised of two sections: a rectangular waveguide section and a mode transducer section. The latter is a circular waveguide fed by four-way in-phase combiner to convert the rectangular waveguide TE10 mode to a TE10 circular waveguide mode for in-phase feeding of all peripheral…
19 Citations
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19 Citations
- J. CanoF. Di PaoloA. MediavillaP. Colantonio
- 2019
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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,…
- N. LopezA. Fathy C. Eckert
- 2022
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In this paper the development of a wideband high-power 16-way X-Band all-waveguide radial divider/combiner is presented. The radial combiner is comprised of four parts: a coaxial feed, a center…
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- Sungjun ParkBong-Kwon KangJinho Jeong
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A TM01 mode transducer based on dipole antenna is proposed to design a broadband and low-loss radial power combiner at Ka-band (26.5–40 GHz). It is an essential component in the radial power…
- 2
- PDF
- M. FahmiJ. Ruiz‐CruzR. Mansour
- 2020
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- 1
- M. FahmiJ. Ruiz‐CruzRaafat R. Mansour
- 2023
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IEEE Transactions on Components, Packaging and…
This article presents a systematic design approach and a novel configuration for compact radial combiners with rectangular waveguide ports. The design approach relies on utilizing short-circuited…
- M. FahmiJ. Ruiz‐CruzR. Mansour
- 2021
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This article presents a comprehensive treatment to the subject of designing ridge waveguide radial combiners. A theoretical framework for the design process is first presented paving the way to a…
- 7
- M. FahmiJ. Ruiz‐CruzR. Mansour
- 2019
Engineering, Physics
IEEE Transactions on Microwave Theory and…
This paper presents, to the best of the authors’ knowledge, the first realizations of the Gysel-type power combiner/divider in ridge waveguide technology with two different configurations, exhibiting very wide bandwidths while occupying very compact volumes.
- 20
- Shi BoLuo BinLeong Siew WengWang Wenjiang
- 2016
Engineering, Physics
2016 IEEE Region 10 Conference (TENCON)
This paper presented a low loss millimeter wave eight-way waveguide power combiner for high power combining. The design of combiner core is based on J. REED's multiple branch waveguide coupler…
- 3
- M. FahmiR. Mansour
- 2022
Engineering, Physics
2022 IEEE/MTT-S International Microwave Symposium…
This paper presents an innovative configuration for a compact non-resonant rectangular waveguide radial combiner. The combiner design relies on a curvilinear profile of its matching sections and…
- 3
- M. FahmiJ. Ruiz‐CruzR. Mansour
- 2023
Engineering, Physics
IEEE Transactions on Microwave Theory and…
This article presents a comprehensive treatment to a systematic design methodology of pyramidal waveguide radial combiners, which is based on nonuniform parallel plate waveguide sections with…
- 4
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