A Highly Reliable MEMS Relay With Two-Step Spring System and Heat Sink Insulator for High-Power Switching Applications

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This paper reports a highly reliable electrostatic microelectromechanical systems (MEMS) relay for high-power switching applications. The main proposal to elevate reliability is to reduce thermal damage in the contact area. Since a contact resistance is the key parameter determining the amount of Joule-heating and the corresponding thermal damage, we devised a unique spring structure to maximize the contact force (resulting in a low contact resistance) using a reasonable actuation voltage named a two-step spring system. Another important feature was applied to alleviate Joule-heating, which is to use an insulator having high thermal conductivity to dissipate the generated heat efficiently, named a heat sink insulator. The fabricated MEMS relay exhibited 2 m Omega in contact resistance, which is the lowest level reported so far with an actuation voltage of 45 V. Reliability was remarkably enhanced over ten times by the heat sink insulator. Consequently, by applying these two approaches simultaneously, the fabricated MEMS relay was successfully operated up to the 5.3 x 10(6) cycles at 1 V/200 mA in ambient air and hot switching condition, which is the highest reliability reported at that power level.
Publisher
IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
Issue Date
2016-02
Language
English
Article Type
Article
Keywords

CONTACT SWITCHES

Citation

JOURNAL OF MICROELECTROMECHANICAL SYSTEMS, v.25, no.1, pp.217 - 226

ISSN
1057-7157
DOI
10.1109/JMEMS.2015.2509006
URI
http://hdl.handle.net/10203/207624
Appears in Collection
EE-Journal Papers(저널논문)
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