International audienceThis paper describes the theory, design and test of a novel architecture of highly-selective micromechanical filters employing electrostatically coupled resonators with floating or biased coupling electrodes. This original method avoids the use of mechanical coupling springs thus extending the potential of a given process to higher frequencies. It gives also the possibility to implement more complex filter architectures and to tune the coupling factor of resonators. Filters with 2.8 MHz and 10.6 MHz center frequency having tunable relative bandwidths of 0.025-0.17% have been built from pairs of clamped-clamped beam resonators. Special design techniques have been used to reduce parasitic capacitances on the coupling nod...
Abstract—A second-order microelectromechanical systems (MEMS) filter with high selectivity and sharp...
There has been significant interest toward highly tunable resonators for on-demand frequency selecti...
MEMS based mechanical resonators and filters have shown promising characteristics in achieving high ...
Micro-electromechanical systems (MEMS) bandpass filters based on arrays of electrostatically driven ...
MEMS resonators have potential application in the area of frequency selective devices (e.g., gyrosco...
This paper presents the design optimization of the coupling beam of wine glass (WG) mode micromechan...
The design of coupling spring for a microelectromechanical (MEM) filter is driven by the requirement...
Bandpass filters based on resonant microelectromechanical systems (MEMS) have the unique advantage o...
Power consumption, form factor and more importantly cost, are major challenges for today’s wireless ...
This dissertation explores the performance capabilities and limitations of micromechanical resonator...
An innovative Micro-Electro-Mechanical System (MEMS) electrically-tunable filter exploiting bandgap ...
Abstract — Microelectromechanical filters based on coupled lateral microresonators are demonstrated....
An innovative Micro-Electro-Mechanical System (MEMS) electrically-tunable filter exploiting bandgap ...
This paper presents a new concept for implementing high-order mechanically-coupled ultra-small bandw...
We demonstrate a proof-of-concept highly tunable narrow bandpass filter based on electrothermally an...
Abstract—A second-order microelectromechanical systems (MEMS) filter with high selectivity and sharp...
There has been significant interest toward highly tunable resonators for on-demand frequency selecti...
MEMS based mechanical resonators and filters have shown promising characteristics in achieving high ...
Micro-electromechanical systems (MEMS) bandpass filters based on arrays of electrostatically driven ...
MEMS resonators have potential application in the area of frequency selective devices (e.g., gyrosco...
This paper presents the design optimization of the coupling beam of wine glass (WG) mode micromechan...
The design of coupling spring for a microelectromechanical (MEM) filter is driven by the requirement...
Bandpass filters based on resonant microelectromechanical systems (MEMS) have the unique advantage o...
Power consumption, form factor and more importantly cost, are major challenges for today’s wireless ...
This dissertation explores the performance capabilities and limitations of micromechanical resonator...
An innovative Micro-Electro-Mechanical System (MEMS) electrically-tunable filter exploiting bandgap ...
Abstract — Microelectromechanical filters based on coupled lateral microresonators are demonstrated....
An innovative Micro-Electro-Mechanical System (MEMS) electrically-tunable filter exploiting bandgap ...
This paper presents a new concept for implementing high-order mechanically-coupled ultra-small bandw...
We demonstrate a proof-of-concept highly tunable narrow bandpass filter based on electrothermally an...
Abstract—A second-order microelectromechanical systems (MEMS) filter with high selectivity and sharp...
There has been significant interest toward highly tunable resonators for on-demand frequency selecti...
MEMS based mechanical resonators and filters have shown promising characteristics in achieving high ...