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Characterization of a piezoelectric MEMS actuator surface toward motion-enabled reconfigurable RF circuits.

Authors :
M C Tellers
J S Pulskamp
S S Bedair
R Q Rudy
I M Kierzewski
R G Polcawich
S E Bergbreiter
Source :
Journal of Micromechanics & Microengineering; Mar2018, Vol. 28 Issue 3, p1-1, 1p
Publication Year :
2018

Abstract

As an alternative to highly constrained hard-wired reconfigurable RF circuits, a motion-enabled reconfigurable circuit (MERC) offers freedom from transmission line losses and homogeneous materials selection. The creation of a successful MERC requires a precise mechanical mechanism for relocating components. In this work, a piezoelectric MEMS actuator array is modeled and experimentally characterized to assess its viability as a solution to the MERC concept. Actuation and design parameters are evaluated, and the repeatability of high quality on-axis motion at greater than 1 mm s<superscript>−1</superscript> is demonstrated with little positional error. Finally, an initial proof-of-concept circuit reconfiguration has been demonstrated using off-the-shelf RF filter components. Although initial feasibility tests show filter performance degradation with an additional insertion loss of 0.3 dB per contact, out-of-band rejection degradation as high as 10 dB, and ripple performance reduction from 0.25 dB to 1.5 dB, MERC is proven here as an alternative to traditional approaches used in reconfigurable RF circuit applications. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13616439
Volume :
28
Issue :
3
Database :
Complementary Index
Journal :
Journal of Micromechanics & Microengineering
Publication Type :
Academic Journal
Accession number :
127789963
Full Text :
https://doi.org/10.1088/1361-6439/aaa218