Please use this identifier to cite or link to this item: https://hdl.handle.net/20.500.14365/3538
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dc.contributor.authorShams S.I.-
dc.contributor.authorAli M.M.M.-
dc.contributor.authorSebak A.-
dc.contributor.authorElsaadany M.-
dc.contributor.authorGagnon G.-
dc.contributor.authorFawzy D.E.-
dc.contributor.authorAllam A.M.M.A.-
dc.date.accessioned2023-06-16T15:00:44Z-
dc.date.available2023-06-16T15:00:44Z-
dc.date.issued2020-
dc.identifier.isbn9.78173E+12-
dc.identifier.urihttps://doi.org/10.1109/ICEEE49618.2020.9102550-
dc.identifier.urihttps://hdl.handle.net/20.500.14365/3538-
dc.description7th International Conference on Electrical and Electronics Engineering, ICEEE 2020 -- 14 April 2020 through 16 April 2020 -- 160450en_US
dc.description.abstractThe 6G race has already begun, and many countries and giant corporations started directing significant efforts and funds towards the development of the future technology. The 6G standard is expected to migrate to higher bands of frequencies to support wider bandwidth. Through this wide bandwidth, it will be feasible to serve the expected massive number of users and future applications, such as virtual reality and HD realtime transmission. One major problem in high frequency ranges, such as mm-wave bands, is the high signal attenuation, which can be compensated through more efficient amplifier systems. In this paper, we propose a wideband amplifier design fed through a Ridge Gap Waveguide line. The proposed design has many advantages inherited from the host guiding structure. The signal is carried by a Quasi-TEM signal, which minimizes the signal distortion. Also, the structure acts as a large heat sink, which minimizes the operating temperature. As a result, the expected added noise by the proposed amplifier shall be minimal. © 2020 IEEE.en_US
dc.language.isoenen_US
dc.publisherInstitute of Electrical and Electronics Engineers Inc.en_US
dc.relation.ispartof2020 7th International Conference on Electrical and Electronics Engineering, ICEEE 2020en_US
dc.rightsinfo:eu-repo/semantics/closedAccessen_US
dc.subjectmm-wave systemen_US
dc.subjectridge gap waveguideen_US
dc.subjectWideband ampliferen_US
dc.subjectBandwidthen_US
dc.subjectDigital televisionen_US
dc.subjectHigh frequency amplifiersen_US
dc.subjectMillimeter wavesen_US
dc.subjectRidge waveguidesen_US
dc.subjectAmplifier systemsen_US
dc.subjectFuture applicationsen_US
dc.subjectFuture technologiesen_US
dc.subjectGuiding structuresen_US
dc.subjectHigh frequency HFen_US
dc.subjectMm-wave systemsen_US
dc.subjectOperating temperatureen_US
dc.subjectReal-time transmissionsen_US
dc.subjectBroadband amplifiersen_US
dc.titleInterfacing Wideband Amplifiers Using Ridge Gap Waveguide for mm-Wave Systemsen_US
dc.typeConference Objecten_US
dc.identifier.doi10.1109/ICEEE49618.2020.9102550-
dc.identifier.scopus2-s2.0-85086438541en_US
dc.authorscopusid57201750748-
dc.authorscopusid7005104207-
dc.authorscopusid36190739600-
dc.authorscopusid21833761700-
dc.authorscopusid23011278600-
dc.authorscopusid55582327600-
dc.identifier.startpage202en_US
dc.identifier.endpage205en_US
dc.identifier.wosWOS:000717525500039en_US
dc.relation.publicationcategoryKonferans Öğesi - Uluslararası - Kurum Öğretim Elemanıen_US
dc.identifier.scopusqualityN/A-
dc.identifier.wosqualityN/A-
item.grantfulltextreserved-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.cerifentitytypePublications-
item.openairetypeConference Object-
item.fulltextWith Fulltext-
item.languageiso639-1en-
Appears in Collections:Scopus İndeksli Yayınlar Koleksiyonu / Scopus Indexed Publications Collection
WoS İndeksli Yayınlar Koleksiyonu / WoS Indexed Publications Collection
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