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Analysis of a new millimetre wave power combiner
Bauer T., Freyer J.
Analysis of a new millimetre power combiner T Bauer and J Freyer Lehrstuhl fOr Allgemeine Elektrotechnik und Angewandte Elektronik Technische Universit~U MOnchen Arcisstr. 21, 80290 MOnchen, Germany Tel. 089/21052957, Fax 089/21052950 Abstract A mm-wave power combining structure for twoterminal devices, consisting of an integrated 3-diodemodule and a resonant cap in waveguide technique, is analyze
Silicon interconnects for millimetre wave circuits
Fusco v.F., Hu Z.R., Wu Y., Gamble H.G., Armstrong B.M., Stewart J.A.C.
Silicon interconnects wave circuits v F Fusco, Z R Hu, YWu, H G Gamble, B M Armstrong and J A C Stewart. Department of Electrical & Electronic Engineering The Queen's Universityof Belfast Ashby Building,StranmillisRoad Belfast, BT9 SAH, Northern Ireland Abstract Recently high resistivity silicon (HRS) has been reported as an alternative to Gallium Arsenide as a high frequency MMIC foundry material
A Millimeter-wave Bridge-Type MMIC Switch
Matsui K., Minakawa A., Imai N.
A Millimeter-wave Switch Kazuhlro Matsui, Aklr. Mlnakawa and Nobuakllmal ATR Optical and Radio Communications Research Laboratories 2-2 Hikaridai, Seikacho, Soraku-gun, Kyoto 619-02, Japan Telephone: +81-774-95-1548 Facsimile: +81-774-95-1508 Abstract A novelbridge-typeswitchis proposed employinga bridgecircuitconsisting of four switchingdevices and a balun. The isolation of conventional switches
Hilbert transform spectrometer using shunted SIS junctions
Vystavkin A., Tarasov M., Shul'man A., Prokopenko G., Koshelets V., Polyanski O., Lapitskaya I., Kosarev E.
Hilbert transform spectrometer shuntedSIS junctions A VystaYkin,M Tarasoy, A Shu.I'lI1an,G Prokopenko, V Koshelets, 0 Polyanski, I Lapltskaya* and E.Kosarey** *Institute of Radip Engineering & Electronics of Russian Academy of Sciences, Mokhovaya 11, Moscow 103907, Russia, **P l Kapitza Institute for Physical Problems of the RAS, Moscow 117334, Russia using Abstract A millimeter-wave spectromete
Invention and developments of peniotron and ledatron
Ono S.
On the analysis of multiple waveguide discontinuities by combined 1D-3D FDTD method
Alimenti F., Mezzanotte P., Roselli L., Sorrentino R.
On the analysis of multiple waveguide discontinuities by combined 1D-3D FDTD method F Allmentl, P Mezzanotte, L Roselli and R Sorrentino Istituto di Elettronica, Universita di Perugia, Perugia, Italy Tel. +39-75-5852658 Fax +39-75-5852654 e-mail: sorrent-ipguniv.unipg.it Abstract A novel FDTD algorithm for the efficient analysis of waveguide circuits is employed. The method consists of a combinati
Linear and second order edge- Lagrange finite elements for efficient analysis of waveguide structures with curved contours
Blanc-Castillo F., Salazar-Palma M., García-Castillo L.E.
Linear and second order edgeLagrange finite elements for efficient analysis of waveguide structures with curved contours Fernando 8Ianc-Castlllo, Magdalena Salazar-Palma Luis E Garcia-Castillo and Grupo Microondas y Radar, Dpto. Seriales, Sistemas y Radiocomunicaciones, E. T.S.I. Telecomunicaci6n, Universidad Politecnica de Madrid, Ciudad Universitaria sin, 28040 Madrid, Spain Tel: 34-1-336- 73-5
Experimental characterization of gaps in HTSC coplanar waveguides
Gevorgian S.S., Martinsson T., Carisson E., Linnér P.
Experimental characterization of gaps in HTSC coplanar waveguides s.s Gevorglan, T.Martlnsson, E.Carlsson, and P.Linner Department of Microwave Technology, Chalmers University of Technology, S-412 96 Goteborg, Sweden Abstract -networkcapacitances of the gaps are temperature dependent and correlated to the effective dielectric constant and parameters ofthe HTSC film. Series gaps in the central stri
Automatic synthesis tool for waveguide components supported by hybrid edge-element formulation
Tsuji M., Nomura Y., Shigesawa H.
Automatic synthesis tool for waveguide components supported hybrid edge-element formulation Mikio Tsuji, Yoshinorl Hiroshi Shigesawa Nomura and by Department of Electronics, Doshisha University, Tanabe, Kyoto, 61003 Japan Abstract In this paper, we show an efficient automatic synthesistoolbased on a completefull-wave numerical method and supported by a nonlinear optimization technique, Forautom
Optimum CAD of complex rectangular and circular waveguide circuits by combination of field theory with the nodal approach
Keller R., Banhardt U., Birn B., Hauth W., Müller G.
Optimum CAD of complex rectangular and circular waveguide circuits by combination of field theory with the nodal approach Reinhard Keller, Ulrich Banhardt, Bruno Birn, WOlfgang Hauth, Gunter Miiller ANTNachrichtentechnik, Gerberstr. 33, D71520 Backnang, Germany Abstract: A very fast and reliableanalysisand optimizationtool for complex waveguide structures is presented, wich combines the rigorous
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