AbstractA principle for contactless interrogation of passive micromechanical resonator sensors is proposed, in which an external primary coil is electromagnetically air-coupled to a secondary coil connected to a conductive path on the resonator. The interrogation periodically switches between interleaved excitation and detection phases. During the excitation phase the resonator is driven into vibrations, while in the detection phase the excitation signal is turned off and the decaying oscillations are contactless sensed. The principle advantageously avoids magnetic properties required to the resonator, thereby ensuring compatibility with standard microfabrication processes. Results are reported on the successful implementation on a MEMS SOI...
Coil-coupled passive sensors can be interrogated without contact, exploiting the magnetic coupling b...
This paper presents design, fabrication, and implementation of a novel electromechanical energy scav...
Cantilever electrostatically-actuated resonators show great promise in sensing and actuating applica...
AbstractA principle for contactless interrogation of passive micromechanical resonator sensors is pr...
A technique for the electromagnetic contactless interrogation of entirely passive micromechanical re...
A technique and electronic circuit for contactless electromagnetic interrogation of piezoelectric mi...
AbstractThis paper reports numerical and experimental investigation on a BESOI-MEMS device. The impl...
An electromagnetic contactless interrogation technique to induce and sense mechanical vibrations on ...
This paper reports an innovative contactless MEMS-based microresonator actuated by an external time-...
AbstractPiezoelectric resonator sensors that can be contactless interrogated as passive elements are...
An electromagnetic contactless excitation principle is presented to induce mechanical vibrations on ...
In some specific applications, the measuring environment can have characteristics unsuitable for the...
Electromagnetic transduction is a means of actuating and sensing microelectromechanical systems (MEM...
Piezoelectric resonator sensors that can be contactless interrogated as passive elements are propose...
Coil-coupled passive sensors can be interrogated without contact, exploiting the magnetic coupling b...
Coil-coupled passive sensors can be interrogated without contact, exploiting the magnetic coupling b...
This paper presents design, fabrication, and implementation of a novel electromechanical energy scav...
Cantilever electrostatically-actuated resonators show great promise in sensing and actuating applica...
AbstractA principle for contactless interrogation of passive micromechanical resonator sensors is pr...
A technique for the electromagnetic contactless interrogation of entirely passive micromechanical re...
A technique and electronic circuit for contactless electromagnetic interrogation of piezoelectric mi...
AbstractThis paper reports numerical and experimental investigation on a BESOI-MEMS device. The impl...
An electromagnetic contactless interrogation technique to induce and sense mechanical vibrations on ...
This paper reports an innovative contactless MEMS-based microresonator actuated by an external time-...
AbstractPiezoelectric resonator sensors that can be contactless interrogated as passive elements are...
An electromagnetic contactless excitation principle is presented to induce mechanical vibrations on ...
In some specific applications, the measuring environment can have characteristics unsuitable for the...
Electromagnetic transduction is a means of actuating and sensing microelectromechanical systems (MEM...
Piezoelectric resonator sensors that can be contactless interrogated as passive elements are propose...
Coil-coupled passive sensors can be interrogated without contact, exploiting the magnetic coupling b...
Coil-coupled passive sensors can be interrogated without contact, exploiting the magnetic coupling b...
This paper presents design, fabrication, and implementation of a novel electromechanical energy scav...
Cantilever electrostatically-actuated resonators show great promise in sensing and actuating applica...