A new electromagnetic force-displacement sensor is presented. Its operating principle is based on the fundamental laws of electromagnetism (Faraday-Lenz law) and the mechanical properties of a spring. The active elements are two coils made by a wire of 60 µm in diameter. Using different wire diameters or different number of wire turns in the coil modify the intensity of the magnetic field and the sensor response. The average accuracy of the sensor is about ∆d=1µm, and as a force sensor is about ∆F=1µN. This sensor could be successfully used for the manufacture of several measuring instruments
Many new sensors appear at the market and occasionally it is required to test specification given by...
A moving-coil designed micro-mechanics tester, named as MicroUTM (universal testing machine), is in-...
In this paper, the design and investigation of an innovative force sensor, based on the Villari effe...
A new electromagnetic force-displacement sensor is presented. Its operating principle is based on th...
Micro/Nano force measurement is becoming more essential in the fields of AFM metrology, biomedical i...
This material is presented to ensure timely dissemination of scholarly and technical work. Copyright...
International audienceThis paper is focused on the design and modeling of a new micro and nano force...
The increased prevalence of wearable sensing devices is accelerating the development of personalised...
International audienceThis paper is focused on the study of a new low frequency micro and nanoforce ...
In modern industrial production processes, the actual displacement of fast moving objects needs to b...
Our novel position sensor is based on the combination of the eddy-current and permeability effects. ...
The usage of planar sensors is widespread due to their non-contact nature and small size profiles, h...
In this report, a compliant-mechanisms-based precision force sensor has been developed. The first pa...
© 2016 American Scientific Publishers All rights reserved. A wireless, passive sensor was fabricatio...
The currently accepted interval of weekly cast changes in the treatment of clubfeet seems unsubstant...
Many new sensors appear at the market and occasionally it is required to test specification given by...
A moving-coil designed micro-mechanics tester, named as MicroUTM (universal testing machine), is in-...
In this paper, the design and investigation of an innovative force sensor, based on the Villari effe...
A new electromagnetic force-displacement sensor is presented. Its operating principle is based on th...
Micro/Nano force measurement is becoming more essential in the fields of AFM metrology, biomedical i...
This material is presented to ensure timely dissemination of scholarly and technical work. Copyright...
International audienceThis paper is focused on the design and modeling of a new micro and nano force...
The increased prevalence of wearable sensing devices is accelerating the development of personalised...
International audienceThis paper is focused on the study of a new low frequency micro and nanoforce ...
In modern industrial production processes, the actual displacement of fast moving objects needs to b...
Our novel position sensor is based on the combination of the eddy-current and permeability effects. ...
The usage of planar sensors is widespread due to their non-contact nature and small size profiles, h...
In this report, a compliant-mechanisms-based precision force sensor has been developed. The first pa...
© 2016 American Scientific Publishers All rights reserved. A wireless, passive sensor was fabricatio...
The currently accepted interval of weekly cast changes in the treatment of clubfeet seems unsubstant...
Many new sensors appear at the market and occasionally it is required to test specification given by...
A moving-coil designed micro-mechanics tester, named as MicroUTM (universal testing machine), is in-...
In this paper, the design and investigation of an innovative force sensor, based on the Villari effe...