This paper reports a novel 3D-printed MEMS resonant magnetometer with optical readout which features a mechanical conversion of a vertical oscillation into a horizontal one. This demonstrates the advantages of 3D-printing technology in terms of rapid prototyping, low costs and fast product development cycles. In addition, 3D-printing enables ‘true’ three-dimensional MEMS structures in contrast to the traditional MEMS technology which allows only two dimensional structures. The measurement approach comprises a hybrid implementation of an optical modulator, an LED and a photodetector
In this paper, the innovative fabrication process for electro-mechanical sensors, born from the smar...
Nowadays, going beyond the 2D conventionally laminated structures is essential for improving the fun...
In the present work, prototypes of polymeric cantilever-based magnetic microstructures were fabricat...
This paper reports a novel 3D printed MEMS magnetometer with optical readout, which demonstrates the...
Additive manufacturing, also known as 3D printing has already transformed from a rapid prototyping t...
Within this work a passive and wireless magnetic sensor, to monitor linear displacements, is propose...
In this paper we present fabrication steps for manufacturing MEMS based magnetometer which is actuat...
We have designed and fabricated micromechanical magnetometers intended for a 3D electronic compass w...
This digest reports for the first time on the concept, fabrication and characterization of a spintro...
This PhD thesis deals with the design, the technological implementation, and functional characteriza...
The compliant parallel mechanisms (CPM) used in precision positioners are commonly fabricated in par...
In the present work, prototypes of polymeric cantilever-based magnetic microstructures were fabricat...
We have designed and fabricated micromechanical magnetometers intended for a 3D electronic compass w...
Microelectromechanical systems (MEMS) technology allows the integration of magnetic field sensors wi...
The geometry of MEMS devices is limited by the technologies used to fabricate them. Today, microsyst...
In this paper, the innovative fabrication process for electro-mechanical sensors, born from the smar...
Nowadays, going beyond the 2D conventionally laminated structures is essential for improving the fun...
In the present work, prototypes of polymeric cantilever-based magnetic microstructures were fabricat...
This paper reports a novel 3D printed MEMS magnetometer with optical readout, which demonstrates the...
Additive manufacturing, also known as 3D printing has already transformed from a rapid prototyping t...
Within this work a passive and wireless magnetic sensor, to monitor linear displacements, is propose...
In this paper we present fabrication steps for manufacturing MEMS based magnetometer which is actuat...
We have designed and fabricated micromechanical magnetometers intended for a 3D electronic compass w...
This digest reports for the first time on the concept, fabrication and characterization of a spintro...
This PhD thesis deals with the design, the technological implementation, and functional characteriza...
The compliant parallel mechanisms (CPM) used in precision positioners are commonly fabricated in par...
In the present work, prototypes of polymeric cantilever-based magnetic microstructures were fabricat...
We have designed and fabricated micromechanical magnetometers intended for a 3D electronic compass w...
Microelectromechanical systems (MEMS) technology allows the integration of magnetic field sensors wi...
The geometry of MEMS devices is limited by the technologies used to fabricate them. Today, microsyst...
In this paper, the innovative fabrication process for electro-mechanical sensors, born from the smar...
Nowadays, going beyond the 2D conventionally laminated structures is essential for improving the fun...
In the present work, prototypes of polymeric cantilever-based magnetic microstructures were fabricat...