We present a comprehensive study on a high reliability RF-MEMS switch with an active thermal recovery capability to counteract stiction. Applying finite element (FE) simulations we investigate the complete recovery process including mechanical, electrical, thermal and fluidic effects. The experimentally calibrated thermo-mechanical FE-model is used to extract key parameters of the recovery process. Therewith we are able to estimate the efficiency of the recovery capability and to figure out possible design improvements in order to optimize the investigated switch with respect to reliability
RF-MEMS (MicroElectroMechanical-Systems for Radio Frequency applications) switches and components ca...
This paper reports on the design, manufacturing and characterization of an active push/pull toggle R...
In this paper, the reliability of capacitive shunt RF MEMS switches have been investigated using thr...
We present a detailed study on an active thermal recovery mechanism intended to counteract stiction ...
We present a comprehensive study on an electrostatically actuated RF-MEMS switch with active thermal...
We present comprehensive theoretical and experimental investigations on one of the most relevant fai...
MicroElectroMechanical Systems for Radio Frequency applications (i.e. RF-MEMS) show very good perfor...
Stiction of MEMS (MicroElectroMechanical System) switches for RF (Radio Frequency) applications is a...
In this work we discuss the operation of an active self-recovery mechanism, embedded within MEMS (Mi...
In this work, the operation of an active self-recovery mechanism embedded within microelectromechani...
An active mechanism to retrieve the functionality of RF-MEMS ohmic switches after stiction takes pla...
Reliability of RF-MEMS devices is one of the main concerns of the engi-neers and scientists dealing ...
We propose an active mechanism to retrieve the functionality of RF-MEMS ohmic switches after stictio...
AbstractRF-MEMS (MicroElectroMechanical-Systems for Radio Frequency applications) switches and compo...
Up to date, the remarkable performances and characteristics of MEMS switches and lumped components f...
RF-MEMS (MicroElectroMechanical-Systems for Radio Frequency applications) switches and components ca...
This paper reports on the design, manufacturing and characterization of an active push/pull toggle R...
In this paper, the reliability of capacitive shunt RF MEMS switches have been investigated using thr...
We present a detailed study on an active thermal recovery mechanism intended to counteract stiction ...
We present a comprehensive study on an electrostatically actuated RF-MEMS switch with active thermal...
We present comprehensive theoretical and experimental investigations on one of the most relevant fai...
MicroElectroMechanical Systems for Radio Frequency applications (i.e. RF-MEMS) show very good perfor...
Stiction of MEMS (MicroElectroMechanical System) switches for RF (Radio Frequency) applications is a...
In this work we discuss the operation of an active self-recovery mechanism, embedded within MEMS (Mi...
In this work, the operation of an active self-recovery mechanism embedded within microelectromechani...
An active mechanism to retrieve the functionality of RF-MEMS ohmic switches after stiction takes pla...
Reliability of RF-MEMS devices is one of the main concerns of the engi-neers and scientists dealing ...
We propose an active mechanism to retrieve the functionality of RF-MEMS ohmic switches after stictio...
AbstractRF-MEMS (MicroElectroMechanical-Systems for Radio Frequency applications) switches and compo...
Up to date, the remarkable performances and characteristics of MEMS switches and lumped components f...
RF-MEMS (MicroElectroMechanical-Systems for Radio Frequency applications) switches and components ca...
This paper reports on the design, manufacturing and characterization of an active push/pull toggle R...
In this paper, the reliability of capacitive shunt RF MEMS switches have been investigated using thr...