DocumentCode :
2908622
Title :
Contactless Electromagnetic Excitation of Conductive Microstructures for Resonant Sensors
Author :
Bad, M. ; Ferrari, Vittorio ; Marioli, Daniele ; Sardini, Emilio ; Serpelloni, Mauro ; Taroni, Andrea
Author_Institution :
Brescia Univ., Brescia
fYear :
2007
fDate :
1-3 May 2007
Firstpage :
1
Lastpage :
6
Abstract :
In the present work a contactless excitation principle for resonators is proposed. The main interest is to develop an effective way to overcome the difficulties of activation of sensors in harsh or non-accessible environments. The investigated principle focuses on the vibrations and resonances contactless induced on structures by a time-variant external magnetic field. Our proposal is based on a fully passive sensing element without any specific magnetic properties that is simply required to be electrically conductive in a suitable frequency region. A simple theoretical model has been derived and has been verified and improved by means of FEM simulations. Experimentally, cantilever and a clamped-clamped beam miniaturized structures have been used as resonators to verify the theoretical expectations. To detect the vibrations, either piezoelectric and optical readout methods have been employed at present, with the aim of implementing a contactless electromagnetic readout method in the future.
Keywords :
cantilevers; finite element analysis; magnetic field effects; micromechanical devices; micromechanical resonators; microsensors; vibrations; FEM simulation; cantilever; clamped-clamped beam; conductive microstructure; contactless electromagnetic excitation; harsh environment; nonaccessible environment; optical readout; passive sensing element; piezoelectric readout; resonant sensors; sensor activation; sensor resonance; sensor vibration; time-variant external magnetic field; Contacts; Frequency; Magnetic fields; Magnetic properties; Magnetic resonance; Magnetic sensors; Microstructure; Optical resonators; Proposals; Structural beams; contactless sensors; eddy currents; electromagnetic excitation; microresonators;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Instrumentation and Measurement Technology Conference Proceedings, 2007. IMTC 2007. IEEE
Conference_Location :
Warsaw
ISSN :
1091-5281
Print_ISBN :
1-4244-0588-2
Type :
conf
DOI :
10.1109/IMTC.2007.379168
Filename :
4258087
Link To Document :
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