Magnetoresistive spin-valve sensors were used to provide on-chip detection of the mechanical resonance of a thin silicon microelectromechanical systems cantilever. The spin-valve sensor was placed underneath the free end of the cantilever. A CoCrPt thin-film permanent magnet was placed on top of the amorphous silicon/Al cantilever. The cantilever was electrostatically actuated and its deflection creates a change in the magnetic field that can be sensed by the spin-valve sensor. The resonance frequency of the structure in the megahertz range is detected by the measurement of the spin-valve sensor output. Minimum deflection detection limit is determined to be 0.06 Å/Hz1/2
We have designed and fabricated micromechanical magnetometers intended for a 3D electronic compass w...
We present a microelectromechanical system (MEMS)-based magnetic field sensor with simple structural...
This paper describes sound-excited vibrations of a silicon cantilever resonator for measuring its re...
This work reports a novel construction of a micromachined MEMS magnetometer detecting static magneti...
An ultrasensitive displacement sensing device for use in accelerometers, pressure gauges, temperatur...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
Nanosensitive mechanical microprobes with CMOS transistors, inverters, inverters cascades and ring o...
This digest reports for the first time on the concept, fabrication and characterization of a spintro...
Most microelectromechanical systems (MEMS) sensors are based on the microcantilever technology, whic...
We have designed and fabricated micromechanical magnetometers intended for a 3D electronic compass w...
MEMS based microcantilever is a microfabricated mostly rectangular bar shaped structure, longer as c...
We report the fabrication of silicon microcantilevers with MOSFET detection, to be used in force mea...
Microcantilevers have been actively used in probe-based microscopy and gravimetric sensing for biolo...
In recent years, demand for biological sensors which are capable of fast and accurate detection of m...
We have designed and fabricated micromechanical magnetometers intended for a 3D electronic compass w...
We present a microelectromechanical system (MEMS)-based magnetic field sensor with simple structural...
This paper describes sound-excited vibrations of a silicon cantilever resonator for measuring its re...
This work reports a novel construction of a micromachined MEMS magnetometer detecting static magneti...
An ultrasensitive displacement sensing device for use in accelerometers, pressure gauges, temperatur...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
Silicon microcantilevers are realized and tested using different ferromagnetic thin films as active ...
Nanosensitive mechanical microprobes with CMOS transistors, inverters, inverters cascades and ring o...
This digest reports for the first time on the concept, fabrication and characterization of a spintro...
Most microelectromechanical systems (MEMS) sensors are based on the microcantilever technology, whic...
We have designed and fabricated micromechanical magnetometers intended for a 3D electronic compass w...
MEMS based microcantilever is a microfabricated mostly rectangular bar shaped structure, longer as c...
We report the fabrication of silicon microcantilevers with MOSFET detection, to be used in force mea...
Microcantilevers have been actively used in probe-based microscopy and gravimetric sensing for biolo...
In recent years, demand for biological sensors which are capable of fast and accurate detection of m...
We have designed and fabricated micromechanical magnetometers intended for a 3D electronic compass w...
We present a microelectromechanical system (MEMS)-based magnetic field sensor with simple structural...
This paper describes sound-excited vibrations of a silicon cantilever resonator for measuring its re...