Title :
Piezoelectric parametric amplifiers with integrated actuation and sensing capabilities
Author :
Thomas, O. ; Mathieu, F. ; Mansfield, W. ; Huang, Chao ; Trolier-McKinstry, Susan ; Nicu, L.
Author_Institution :
LSIS, Arts et Metiers ParisTech, Paris, France
Abstract :
We report in this work on unprecedented levels of parametric amplification in microelectromechanical systems (MEMS) resonators with integrated piezoelectric actuation and sensing capabilities operated in air. The method presented here relies on accurate analytical modeling taking into account the geometrical nonlinearities inherent to the bridge-like configuration of the resonators used. The model provides, for the first time, precise analytical formula of the quality factor (Q) enhancement depending on the resonant mode examined. Experimental validations were conducted for resonant modes exhibiting, respectively, hard and soft-spring effects when driven in the nonlinear regime; Q amplification by a factor up to 14 has been obtained in air.
Keywords :
Q-factor; amplifiers; micromechanical resonators; piezoelectric actuators; MEMS resonator; bridge-like configuration; geometrical nonlinearities; integrated actuation; integrated piezoelectric actuation; microelectromechanical system resonator; parametric amplification; piezoelectric parametric amplifier; quality factor enhancement; sensing capability; Electrodes; Lithography; Micromechanical devices; Q factor; Resists; Resonant frequency; Sensors;
Conference_Titel :
Micro Electro Mechanical Systems (MEMS), 2013 IEEE 26th International Conference on
Conference_Location :
Taipei
Print_ISBN :
978-1-4673-5654-1
DOI :
10.1109/MEMSYS.2013.6474310