A force sensor with capacitive readout is designed and realized for the measurement of mechanical power transfer. The ultimate aim is to integrate this in a glove that determines the complete mechanical interaction between the human hand and the environment. The sensor measures the normal force and two perpendicular moments so that it can compensate for asymmetric loads. The fabrication process is based on silicon fusion bonding and allows the realization of extremely small gaps (250 nm). This, in combination with mechanical amplification due to the sensor structure, results in a large sensitivity of 16 pF/N and a full-scale range of 50 N
A silicon capacitive force/torque sensor is designed and realized to be used for biomechanical appli...
This paper presents a novel design and development of a low-cost and multi-touch sensor based on cap...
The analysis of the human grasping and manipulation capabilities is paramount for investigating huma...
A force sensor with capacitive readout is designed and realized for the measurement of mechanical po...
A force sensor with capacitive readout is designed and realized for the measurement of mechanical po...
The forces involved in interactions between the human body and the environment are important for man...
A silicon six-axis force–torque sensor is designed and realized to be used for measurement of the po...
A silicon six-axis force–torque sensor is designed and realized to be used for measurement of the po...
A miniature force sensor for the measurement of forces and moments at a human fingertip is designed ...
A force sensor, for use with an artificial hand, needs to be small, robust, low power, cheap and eas...
This thesis presents the design and development of a capacitive MEMS force sensor to overcome the li...
A sensor for the precise and accurate measurement of micromechanical forces is presented. The sensor...
A miniature capacitive force sensor for the measurement of shear- and normal force at the fingertip ...
Disruptive Technologies are developing sensor solutions for the Internet of Things. Their current se...
A silicon capacitive force/torque sensor is designed and realized to be used for biomechanical appli...
A silicon capacitive force/torque sensor is designed and realized to be used for biomechanical appli...
This paper presents a novel design and development of a low-cost and multi-touch sensor based on cap...
The analysis of the human grasping and manipulation capabilities is paramount for investigating huma...
A force sensor with capacitive readout is designed and realized for the measurement of mechanical po...
A force sensor with capacitive readout is designed and realized for the measurement of mechanical po...
The forces involved in interactions between the human body and the environment are important for man...
A silicon six-axis force–torque sensor is designed and realized to be used for measurement of the po...
A silicon six-axis force–torque sensor is designed and realized to be used for measurement of the po...
A miniature force sensor for the measurement of forces and moments at a human fingertip is designed ...
A force sensor, for use with an artificial hand, needs to be small, robust, low power, cheap and eas...
This thesis presents the design and development of a capacitive MEMS force sensor to overcome the li...
A sensor for the precise and accurate measurement of micromechanical forces is presented. The sensor...
A miniature capacitive force sensor for the measurement of shear- and normal force at the fingertip ...
Disruptive Technologies are developing sensor solutions for the Internet of Things. Their current se...
A silicon capacitive force/torque sensor is designed and realized to be used for biomechanical appli...
A silicon capacitive force/torque sensor is designed and realized to be used for biomechanical appli...
This paper presents a novel design and development of a low-cost and multi-touch sensor based on cap...
The analysis of the human grasping and manipulation capabilities is paramount for investigating huma...