We present a comprehensive study on a high reliability RF-MEMS switch with an active thermal recovery capability to counteract stiction. Applying finite element (FE) simulations we investigate the complete recovery process including mechanical, electrical, thermal and fluidic effects. The experimentally calibrated thermo-mechanical FE-model is used to extract key parameters of the recovery process. Therewith we are able to estimate the efficiency of the recovery capability and to figure out possible design improvements in order to optimize the investigated switch with respect to reliability.

Modeling and simulation of an active restoring mechanism for high reliability switches in RF-MEMS technology

Iannacci, Jacopo
2012-01-01

Abstract

We present a comprehensive study on a high reliability RF-MEMS switch with an active thermal recovery capability to counteract stiction. Applying finite element (FE) simulations we investigate the complete recovery process including mechanical, electrical, thermal and fluidic effects. The experimentally calibrated thermo-mechanical FE-model is used to extract key parameters of the recovery process. Therewith we are able to estimate the efficiency of the recovery capability and to figure out possible design improvements in order to optimize the investigated switch with respect to reliability.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11582/114601
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