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On the electrostatic actuation of capacitive RF MEMS switches on GaAs substrate

Academic Article
Publication Date:
2015
abstract:
Abstract The electrostatic actuation behaviour of the gold bridge in capacitive radio frequency microelectromechanical system switches, fabricated on GaAs substrate, is investigated. An unconventional imaging technique, based on the out-of-focus reflection, was used to evaluate the topographic profile of the suspended bridge and its lowering as a function of the voltage. Important parameters for the switch actuation, such as the pull-down voltage and the air gap between the bridge and the actuator, are estimated. Capacitance-voltage curves allow to evaluate the capacitance associated to the bridge in the up and down states as well as the dielectric constant of the Si3N4 layer, which covers the actuator. The experimental values of the pull-down voltage and the dielectric constant are used to extract from the theoretical equations the residual stress of the fabricated gold membrane. Finally, the current through the dielectric Si3N4 layer was measured as a function of the voltage applied to the actuator, finding that the Poole-Frenkel effect is the dominant conduction mechanism when the switch is actuated.
Iris type:
01.01 Articolo in rivista
Keywords:
Capacitive RF MEMS switches; Double-clamped bridge; Electrostatic actuation; GaAs technology
List of contributors:
Quaranta, Fabio; Cola, Adriano; Martucci, MARIA CONCETTA; Persano, Anna; Siciliano, PIETRO ALEARDO
Authors of the University:
COLA ADRIANO
MARTUCCI MARIA CONCETTA
PERSANO ANNA
QUARANTA FABIO
SICILIANO PIETRO ALEARDO
Handle:
https://iris.cnr.it/handle/20.500.14243/312526
Published in:
SENSORS AND ACTUATORS. A, PHYSICAL
Journal
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URL

https://www.sciencedirect.com/science/article/pii/S0924424715300042
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