EventsInternational Electronic Conference on Sensors and Applications
Published
This submission belongs to the session e. MEMS and NEMS of the event International Electronic Conference on Sensors and Applications
Published date
02 Jun, 2014
Citation
Mehrdad Bagherinia, Stefano Mariani, Alberto Corigliano, Stochastic Effects on the Dynamics of a Resonant MEMS Magnetometer: A Monte Carlo Investigation, in Proceedings of International Electronic Conference on Sensors and Applications, 1 June–16 June 2014, MDPI: Basel, Switzerland, doi: 10.3390/ecsa-1-e003
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Stochastic Effects on the Dynamics of a Resonant MEMS Magnetometer: A Monte Carlo Investigation

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1. Politecnico di Milano, Dipartimento di Ingegneria Civile e Ambientale, Piazza L. da Vinci 32, 20133 Milano, Italy
Abstract
In the design of Lorentz force MEMS magnetometers, the coupled thermo-electro-magneto-mechanical fields governing the dynamics of the relevant compliant structures can be appropriately exploited to enhance their performances. In recent works, we showed that reduced-order models for the dynamics of the said movable structures can be recast in the form of theDuffingequation, where nonlinear terms arise from the multi-physics governing the problem. As stochastic effects may play a role due to the micrometric dimensions of the device, an investigation of the link between the statistics of sensor imperfections and output is here carried out. The said imperfections at the microscopic length-scale are modeled in terms of:overetch thickness, assumed to feature a uniform distribution in a proper interval matching available experimental data; and elastic properties of the vibrating polycrystalline silicon film, as obtained through a numerical homogenization procedure over a representative film volume. To get insights into the effects of the parameters governing the nonlinear dynamics of the resonant structure, a Monte Carlo analysis is adopted.
Keywords
MEMS
Lorentz force magnetometer
coupled thermo-electro-magneto-mechanical formulation
sensitivity to imperfections.
Manuscript
Poster
ECSA-1_Stochastic Effects on the Dynamics_Presentation_Bagherinia et al.pdf
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