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EuMC: Optimization of the Electrode Dimensions of an Electro-Optic Organic Modulator Based on Polymers Microwave Dielectric Characterization and Electromagnetic Simulations
Optimization of the Electrode Dimensions of an Electro-optic Organic Modulator Based on Polymers Microwave Dielectric Characterization and Electromagnetic Simulations C. Algani1,N.E. Belhadj-Tahar1, F. Deshours1, J.L. Montmagnon1, P. Roduit1, G. Alquié1, C. Fortin2, C. Kazmierski2 1 Université Pierre et Marie Curie, LISIF, 3, rue Galilée, 94200 Ivry/Seine, France, 33 1 44 27 74 59 2 Alcatel-Thale
EuMC: 38GHz Signal Optical Fiber Transmission Using Guided-Wave Electrooptic Single-Sideband Modulators with Polarization Reversals
38GHz Signal Optical Fiber Transmission Using Guided-Wave Electrooptic Single-Sideband Modulators with Polarization Reversals Hiroshi Murata1, 1 Kazumasa Kaneda1, Akira Enokihara2, Yasuyuki Okamura1 Osaka University, Graduate School of Engineering Science, Machikaneyama, Toyonaka, Osaka 560-8531 Japan, Phone:+81-6-6850-6306, Fax:+81-6-6850-6341, E-mail:murata@ee.es.osaka-u.ac.jp. 2 Matsushita
EuMC: High-Q On-chip Inductors Using Thin-Film Wafer Level Packaging Technology Demonstrated on a 90nm RF-CMOS 5GHz VCO
High-Q On-chip Inductors using Thin-Film Wafer Level Packaging Technology Demonstrated on a 90nm RF-CMOS 5GHz VCO X. Sun, D. Linten1, O. Dupuis, G. Carchon, P. Soussan, S. Decoutere and W. De Raedt Inter-university Micro-Electronics Center (IMEC) Kapeldreef 75, B-3001, Leuven, Belgium 1 also PhD student at the Vrije Universiteit Brussel, department ELEC-ETRO Phone: +32 16 288649 - Fax: +32 16 281
EuMC: A MEMS Programmable Power Divider/Combiner for Reconfigurable Antenna Systems
A MEMS Programmable Power Divider / Combiner for Reconfigurable Antenna Systems A.Ocera, R.Vincenti Gatti, P.Mezzanotte, P.Farinelli and R.Sorrentino University of Perugia, DIEI, Via G. Duranti 93, 06125 Perugia, ITALY Email: sorrentino@eumwa.org, Tel: +39-075-585-3658 Fax: +39-075-585-3658 Abstract A programmable power divider/combiner is proposed for applications to low-cost reconfigurable ant
EuMC: A MEMS Programmable Power Divider/Combiner for Reconfigurable Antenna Systems
A MEMS Programmable Power Divider / Combiner for Reconfigurable Antenna Systems A.Ocera, R.Vincenti Gatti, P.Mezzanotte, P.Farinelli and R.Sorrentino University of Perugia, DIEI, Via G. Duranti 93, 06125 Perugia, ITALY Email: sorrentino@eumwa.org, Tel: +39-075-585-3658 Fax: +39-075-585-3658 Abstract A programmable power divider/combiner is proposed for applications to low-cost reconfigurable ant
EuMC: SiGe BiCMOS Wide-Band and Tunable Bandpass LNAs for Adaptive Multi-Functional Phased Arrays
SiGe BiCMOS Wide-Band and Tunable Bandpass LNAs for Adaptive Multi-Functional Phased Arrays R. Malmqvist1, C. Samuelsson1, T. Nilsson1, I. Ferrer1, J. Svedin1, and A. Dalerå2,3 2 FOI Swedish Defence Research Agency, Olaus Magnus väg 42, SE-581 11 Linköping, Sweden, +46 13378353 Acreo AB Swedish Microelectronics and Optics Research Institute, Bredgatan 34, SE-602 21 Norrköping, Sweden 3 Wavebreake
EuMC: A PN-Radar Correlator with IF-Input Ports
A PN-Radar Correlator with IF-Input Ports F.B. Helmbrecht, M.O. Olbrich, D. Zitzmann, and E.M. Biebl Fachgebiet H¨ chstfrequenztechnik o Technische Universit¨ t M¨ nchen a u 80290 M¨ nchen, Germany u Email: helmbrecht@tum.de Abstract-- This paper presents an IF-correlator with IF-input ports avoiding DC-offsets in the correlation signal path, as well as the need for a detector for the received si
EuMC: A Novel Technique for Complex Permittivity Measurement Based on a Planar Four Port Device
A Novel Technique for Complex Permittivity Measurement Based on a Planar Four Port Device A. Ocera , M. Dionigi, E. Fratticcioli, R. Sorrentino University of Perugia, DIEI, via G.Duranti 93, 06125, Perugia, Italy Email: sorrentino@eumwa.org, phone +39 075 585 3653 (secr.) fax +39 075 585 3654 Abstract -- A novel four port device for complex permittivity measurement is presented consisting of the
EuMC: Current Compensation in Probe Feeding Simulation Using FDTD Algorithm
Current Compensation in Probe Feeding Simulation Using FDTD Algorithm Kyeong-Sik Min and Manh-Dat Vu Department of Radio Sciences and Engineering, College of Sciences and Engineering, Korea Maritime University, #1 Dongsam-Dong Yeongdo-Ku Busan, 606-791, Korea E-mail : ksmin@mail.hhu.ac.kr ,Tel: +82-51-410-4425 Abstract This paper presents a method to compensate the probe current computation in mic
EuMC: 2D-TLM Model for Propagation in Biisotropic Media
2DTLM Model for Propagation in Biisotropic Media Ana C.L. Cabeceira, Ana Grande, Ismael Barba, and José Represa University of Valladolid, Dpt. Electricity and Electronics, C/ Real de Burgos s/n, 47071, Spain, (+34) 983 423894 II. M AXWELL EQUATIONS AND W AVE EQUATIONS The propagation of plane waves in the xyplane is now considered. First of all, the Maxwell equations in differential form are arr