The influence of the bias signal waveform on the electromechanical dynamic response of ohmic RF-MEMS
switches is here investigated by means of electromechanical characterizations and modelling procedures.
The actuation transient of ohmic RF-MEMS switches was studied in this work developing a fast to compute,
but comprehensive electromechanical model, using electromechanical parameters from experimental
results. The developed model was then used to investigate how different bias waveforms
influence the switch dynamic, in terms of actuation time, and bounces occurrences, and a practical solution
to limit bounces, without compromising the actuation time was presented. Furthermore, it was demonstrated
how it is possible to improve the reliability to cycling stress using ad hoc shaped bias signals
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