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Low actuation-voltage shift in MEMS switch using ramp dual-pulse

journal contribution
posted on 2012-01-01, 00:00 authored by M Zarghami, Y Mafinejad, Abbas KouzaniAbbas Kouzani, K Mafinezhad
This paper proposes a ramp dual-pulse actuation-voltage waveform that reduces actuation-voltage shift in capacitive microelectromechanical system (MEMS) switches. The proposed waveform as well as two reported waveforms (dual pulse, and novel dual-pulse) are analyzed using equivalent-circuit and equation models. Based on the analysis outcome, the paper provides a clear understanding of trapped charge density in the dielectric. The results show that the proposed actuation-voltage waveform successfully reduces trapped charge and increases lifetime due to lowering of actuation-voltage shift. Using the proposed actuation-voltage waveform, the membrane reaches a steady state on the electrode faster.

History

Journal

IEICE electronics express

Volume

9

Issue

12

Pagination

1062 - 1068

Publisher

Denshi Jouhou Tsuushin Gakkai (Institute of Electronics Information and Communication Engineers)

Location

Tokyo, Japan

ISSN

1349-2543

eISSN

1349-9467

Language

eng

Publication classification

C1 Refereed article in a scholarly journal

Copyright notice

2012, The Authors

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