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NASA NTRS ยท 20050214854

A Step Made Toward Designing Microelectromechanical System (MEMS) Structures With High Reliability

Abstract

The mechanical design of microelectromechanical systems-particularly for micropower generation applications-requires the ability to predict the strength capacity of load-carrying components over the service life of the device. These microdevices, which typically are made of brittle materials such as polysilicon, show wide scatter (stochastic behavior) in strength as well as a different average strength for different sized structures (size effect). These behaviors necessitate either costly and time-consuming trial-and-error designs or, more efficiently, the development of a probabilistic design methodology for MEMS. Over the years, the NASA Glenn Research Center s Life Prediction Branch has developed the CARES/Life probabilistic design methodology to predict the reliability of advanced ceramic components. In this study, done in collaboration with Johns Hopkins University, the ability of the CARES/Life code to predict the reliability of polysilicon microsized structures with stress concentrations is successfully demonstrated.

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BibTeXRIS

Nemeth, Noel N.. 2003-03-01. A Step Made Toward Designing Microelectromechanical System (MEMS) Structures With High Reliability. https://ntrs.nasa.gov/citations/20050214854

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