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EuMC: Dual Band UHF and Microwave RFID Antenna

Author: T. Deleruyelle, P. Pannier, E. Bergeret, S. Bourdel

Proceedings of the 38th European Microwave Conference Dual Band UHF and Microwave RFID Antenna. T. Deleruyelle, P. Pannier, E. Bergeret, S. Bourdel IM2NP, UMR 6242 CNRS Universites Paul Cezanne, Provence et Sud Toulon-Var, 13451 Marseille Cedex20, France thibaut.deleruyelle@IM2NP.fr philippe.pannier@IM2NP.fr emmanuel.bergeret@IM2NP.fr sylvain.bourdel@IM2NP.fr Abstract-- This paper presents a new

EuMC: A Triangular Patch Antenna with Bow Tie Aperture Coupling for Improved Ellipticity Bandwidth

Author: Ajay Kumar Sharma, Kranti Kumar Chikkam, Ashok Mittal

Proceedings of the 38th European Microwave Conference A Triangular Patch Antenna with Bow Tie Aperture Coupling for Improved Ellipticity Bandwidth Ajay Kumar Sharma#1, Chikkam Kranti Kumar#2 and Ashok Mittal#3 # Central Research Laboratory, Bharat Electronics Limited, Bharat Nagar Post, Ghaziabad ­ 201 010 (U.P.), India 2 ajaykrsharma@bel.co.in chikkamkrantikumar@bel.co.in 3 ashokmittal@bel.co.

EuMC: An Automatic, Statistical-Based Detection of Outliers in an Inter-Laboratory Comparison of Nonlinear Measurements

Author: Wendy Van Moer, Kurt Barbe, Yves Rolain

Proceedings of the 38th European Microwave Conference An Automatic, Statistical-based Detection of Outliers in an Inter-laboratory Comparison of Nonlinear Measurements Wendy Van Moer, Kurt Barbé and Yves Rolain Vrije Universiteit Brussel, Dept. ELEC Pleinlaan 2, B-1050 Brussels, Belgium Wendy.VanMoer@vub.ac.be Kurt.barbe@vub.ac.be Yves.Rolain@vub.ac.be Abstract ­This paper describes the compariso

Microsoft PowerPoint - AMICOM Summer School - Technion1.ppt [Mode de compatibilité]

Author: fcoccett

Electromechanical design and modeling Vitaly Leus Faculty of Mechanical Engineering y g g Technion - Israel Institute of Technology, Haifa 32000, Israel Vitaly Leus, Technion 4th AMICOM Summer School, Toulouse 2007 Technion T h i Haifa Vitaly Leus, Technion 4th AMICOM Summer School, Toulouse 2007 Outline Mechanical considerations Static electromechanical response Dynamic electromechani

Microsoft PowerPoint - robert_amicom_ss_toulouse.ppt

Author: plana

Introduction to RF MEMS* AMICOM SUMMER SCHOOL, LAAS-CNRS September 2nd-September 6th R.PLANA *Some data have been given by Jérémie Bouchaud WTC AMICOM workshop EUMW 2005 Vision for future information and Communication systems How to detect or to sense ? How to send ? How to manipulate ? How to tailor ? AMICOM workshop EUMW 2005 Vision con't Miniaturisation Multifonctionality Heterogeneous

Microsoft PowerPoint - 1-60 Acoustic Technology_Cranfield Univ_AMICOM_2007_LAAS Summer School PPT

Author: wapbk

Acoustic Technology Paul B Kirby, Cranfield University, UK p.b.kirby@cranfield.ac.uk Acoustic RF MEMS Summary: · Introduction to RF-MEMS acoustic devices · Description of how acoustic waves are generated in piezoelectric materials · Some background to modeling piezoelectric devices. · Understanding of the physical operating principles of acoustic devices · Introduction to Bulk Acoustic Wave, Surf

Diapositive 1

Author: mdragoma

4th AMICOM Summer School- RF NEMS RF NEMS NEMS= NanoElectroMechanicalSystems= Nanosized mechanical elements or systems having the MECHANICAL resonance frequency in the frequency range GHz-THz RF NEMS = devices which exploit the coupling and/ or interaction between electromagnetic fields at GHzTHz range and NEMS oscillating mechanically in the same frequency range Prof Mircea Dragoman mircead@ im

Diapositive 1

Author: mdragoma

4th AMICOM Summer School- RF NEMS RF NEMS Carbon nanotubes (CNTs) reveal extraordinary physical properties, which cannot be encountered in any other materials making them extremely attractive for many applications in the area of nanoelectronics. The microwave applications of the CNTs encompass many concepts such as microelectromechanical systems (MEMS), nanoelectromechanical systems (NEMS), field

Diapositive 1

Author: mdragoma

4th AMICOM Summer School- RF NEMS 2. MEMS AND NEMS ·MEMS and NEMS combine mechanical and electrical devices that have, respectively, micronic (10-6 m) and nanometer (10-9 m) dimension . ·These system is called very often "smart" because it is able to sense the environment changes and to optimally reconfigure its functions to respond to new external conditions. A key component for MEMS or NEMS is

Présentation PowerPoint

Author: HCK

2007 2007 MEMS Technologies for Reconfigurable Antennas Laurent DUSSOPT laurent.dussopt@cea.fr - www.leti.fr © CEA 2007. Tous droits réservés. Toute reproduction totale ou partielle sur quelque support que ce soit ou utilisation du contenu de ce document est interdite sans l'autorisation écrite préalable du CEA All rights reserved. Any reproduction in whole or in part on any medium or use of th