DocumentCode :
1373114
Title :
Experimental Study of Energy Dissipation in High Quality Factor Hollow Square Plate MEMS Resonators for Liquid Mass Sensing
Author :
Blanco-Gomez, Gerald ; Agache, Vincent
Author_Institution :
CEA-LETI, DTBS, Grenoble, France
Volume :
21
Issue :
1
fYear :
2012
Firstpage :
224
Lastpage :
234
Abstract :
We report on a capacitively transduced, Lamé-mode resonator for real-time mass sensing in liquid. The resonators are fabricated in silicon, presenting a square plate geometry, and incorporate an integrated fluidic channel diagonally crossing the 50 μm wide plate. Varying shapes of the buried fluidic channels (rectangular and ellipsoidal) are studied, resulting in mechanical resonance frequencies between 70 and 78 MHz. Volumes of those nanochannels range between 223 and 833 fL. For fluid-filled rectangular channels, quality factors demonstrate increasing values up to 4300 (compared with 3200 in air), when the resonance frequency × quality factor product exceeds 300 GHz. An extensive study has been carried out with the rectangular channels, showing downward frequency shifts proportional to the liquid mass, as compared with dry devices. Experimental mass responsivities for all tested devices approached 1 kHz.pg-1. We examined different sources of dissipation, taking place in our structures, through qualitative analysis to explain the quality factor variations between dry and wet devices. We particularly focused on flow conditions, the vibration amplitude, the channel design and position relative to the resonator anchor, as well as the variation of acoustic energy dissipation within the embedded-channel cavities.
Keywords :
microcavities; micromechanical resonators; Lamé-mode resonator; MEMS resonators; acoustic energy dissipation; embedded-channel cavities; fluid-filled rectangular channels; high quality factor hollow square plate; liquid mass sensing; real-time mass sensing; Electrodes; Fabrication; Optical resonators; Q factor; Resonant frequency; Silicon; Silicon on insulator technology; Fluidics; Lamé mode; mass sensor; quality factor; square plate resonator; transducer;
fLanguage :
English
Journal_Title :
Microelectromechanical Systems, Journal of
Publisher :
ieee
ISSN :
1057-7157
Type :
jour
DOI :
10.1109/JMEMS.2011.2170820
Filename :
6075226
Link To Document :
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