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Design of Ultra-Wideband Filter with Embedded RF-MEMS based Reconfigurable Notched Band
Luca Pelliccia , Federico Casini , Fabrizio Cacciamani , Paola Farinelli , Roberto Sorrentino
Design of Ultra-Wideband Filter with Embedded RF-MEMS based Reconfigurable Notched Band Luca Pelliccia#, Federico Casini #, Fabrizio Cacciamani#, Paola Farinelli#, Roberto Sorrentino# # University of Perugia, DIEI, Via G. Duranti 93, 06125 Perugia, ITALY, Phone: +39-075-585-3658 {luca.pelliccia, federico.casini, fabrizio.cacciamani, paola.farinelli, roberto.sorrentino}-diei.unipg.it Abstract --
9.6-11.7 GHz Analogically Tuned Band Stop Filter based on RF-MEMS Varactors
David Mardivirin, Fabien Barrière, Arnaud Pothier, Aurélian Crunteanu and Pierre Blondy
9.6-11.7 GHz Analogically Tuned Band Stop Filter based on RF-MEMS Varactors David Mardivirin, Fabien Barrière, Arnaud Pothier, Aurélian Crunteanu and Pierre Blondy XLIM Research Institute ­ UMR 6172 Université de Limoges / CNRS, 123 Avenue Albert Thomas, 87060 Limoges Cedex, FRANCE Abstract -- Tunable 9.6 GHz to 11.7 GHz bandstop filters are presented. Tuning is done using RF MEMS structure with a
MEMS-Based Frequency-Tunable Reflect-Line Phase Shifter
Fabrizio Congedo , Giuseppina Monti , Luciano Tarricone , Paola Farinelli , Roberto Sorrentino , Jacopo Iannacci , Viviana Mulloni , Benno Margesin
MEMS-Based Frequency-Tunable Reflect-Line Phase Shifter Fabrizio Congedo1, Giuseppina Monti1, Luciano Tarricone1, Paola Farinelli2, Roberto Sorrentino2, Jacopo Iannacci3, Viviana Mulloni3, Benno Margesin3 University of Salento, Dept. Innovation Engineering, Via Monteroni, 73100, Lecce, Italy University of Perugia, Dept. of Electronic and Information Engineering, Via G. Duranti, 93 - I-06125 Perugi
Waveguide-Mounted RF MEMS for Tunable W-band Analog Type Phase Shifter
D. Psychogiou, J. Hesselbarth, Y. Li, S. Kühne, C. Hierold
Waveguide-Mounted RF MEMS for Tunable W-band Analog Type Phase Shifter 1 D. Psychogiou, 1J. Hesselbarth, 2Y. Li, 2S. Kühne, 2C. Hierold 1 Laboratory for Electromagnetic Fields and Microwave Electronics (IFH) 2 Group of Micro and Nanosystems (MNS) Swiss Federal Institute of Technology Zurich (ETH), 8092 Zurich, Switzerland Abstract -- A novel MEMS enabled W-band waveguide transmission phase shif
Diapositive 1
George Deligeorgis
Fabrication of graphene devices, issues and prospects Presenting author: George Deligeorgis Amicom Summer School 2011 CNRSLAAS G.Deligeorgis 1 What you should expect to see ·The material · Fabrication · Properties ·Current status · FET devices · Optoelectronics · Fabrication Issues · Contacts · Dielectrics Amicom Summer School 2011 CNRSLAAS G.Deligeorgis 2 Forms of Carbon
Microsoft PowerPoint - dnm.ppt
ozlem
RFMEMS Based Antennas and Arrays ÖZLEM AYDIN CIVI MIDDLE EAST TECHNICAL UNIVERSITY DEPT. OF ELECTRICAL & ELECTRONICS ENG. METUMEMS Research and Application Center ANKARA, TURKEY ozlem-metu.edu.tr METU Agenda · Introduction · Brief review of microstrip antennas · Micromachined antennas · Reconfigurable antennas by MEMS technology · Antennas with movable parts · Array antennas by MEMS technology
RF MEMS Phase shifters and switching networks
Joachim Oberhammer
1 Phase shifters and switching networks RF MEMS Summerschool 2011 Joachim Oberhammer KTH Royal Institute of Technology, Sweden joachim.oberhammer-ee.kth.se RF MEMS 2 ISS RF MEMS 2011 Joachim Oberhammer Goals of this lecture Goals: · basic understanding of phase-shifter concepts · understanding of MEMS phase-shifter implementations · understanding of MEMS switching networks · understanding of
RF MEMS Switch technology
karim segueni
RF MEMS Switch technology K. Segueni, DelfMEMS RF-MEMS switch technology 1 Advantage of MEMS compared to FET & PIN Diodes By order of importance : 1/ Outstanding linearity 2/ High frequency performance (low insertion loss together with high isolation level) 3/ Power consumption, especially compared to PIN diodes. RF-MEMS switch technology 2 2 Systems Improvements with High Linearity Devi
POLYNOE: Implementation of Physics Of Failure for MEMS EDA Programme POLYNOE ­ contract n° B-0035-IAP1-ERG
Fabio Coccetti
Nanoscale and macroscale characterization of the dielectric charging phenomenon in electrostatically driven MEMS devices U. Zaghloul1,2,3, G. Papaioannou4, B. Bhushan1, H. Wang1,2, F. Coccetti1,2,5, P. Pons1,2, R. Plana1,2 1LAAS-CNRS, Toulouse, France 2Université de Toulouse, Toulouse, France 3NLBB, Ohio State University, USA 4University of Athens, Athens, Greece 5Novamems, Toulouse, France 07/07
7th ISS RFMEMS_Cours SEGUINEAU
Cédric Seguineau
7th International Summer School on RF-MEMS and RF Microsystems 7 July 2011 SERVICES FOR RELIABILITY Advanced techniques for material and device characterization Cédric Seguineau Thursday 7 July 7th International Summer School on RF-MEMS and RF Microsystems NOVA MEMS 2011 - Reproduction is not allowed without authorization Tech. Analysis SERVICES FOR RELIABILITY Material Charac. Devices Pe
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