A new design for a single-use disposable pneumatic microgripper is presented in this paper. It enables very cost-eective batch microfabrication in SU-8 with a single lithography mask by shifting manufacturing complexity into reusable components. An optically readable force sensor with potential to be used in a feedback loop has been integrated in order to enable gripping with a controlled force. The sensors are first examined separately from the gripper and exhibit good linearity. The gripper function utilizes the disposable gripper element together with a reusable gripper fixture. During experiments, the pneumatically actuated microgripper can vary the gripping force within a range of a few mN (up to 5.7 mN was observed). This micro...
Several novel devices under development in our laboratories to ultimately realize a micro robotic sy...
Several novel devices under development in our laboratories to ultimately realize a micro robotic sy...
Several novel devices under development in our laboratories to ultimately realize a micro robotic sy...
AbstractRecent developments in the functionality of micro-electromechanical systems (MEMS), particul...
This paper presents a novel micro-gripper design with the dual functions of manipulation and force s...
AbstractThis paper presents a novel micro-gripper design with the dual functions of manipulation and...
This work presents the design, fabrication and testing of a thermally actuated microgripper for the ...
This work presents the design, fabrication and testing of a thermally actuated microgripper for the ...
Cellular force sensing and control techniques are capable of en-hancing the dexterity and reliabilit...
Cellular force sensing and control techniques are capable of en-hancing the dexterity and reliabilit...
AbstractThis paper presents a novel micro-gripper design with the dual functions of manipulation and...
Abstract — A microelectromechanical systems (MEMS) rotary micro-gripper incorporating electrothermal...
Microfabricated grippers and tweezers are promising tools for manipulation of micro- and nanoscale o...
AbstractThis paper presents a novel micro-gripper design with the dual functions of manipulation and...
A microelectromechanical systems (MEMS) rotary microgripper incorporating electrothermal force senso...
Several novel devices under development in our laboratories to ultimately realize a micro robotic sy...
Several novel devices under development in our laboratories to ultimately realize a micro robotic sy...
Several novel devices under development in our laboratories to ultimately realize a micro robotic sy...
AbstractRecent developments in the functionality of micro-electromechanical systems (MEMS), particul...
This paper presents a novel micro-gripper design with the dual functions of manipulation and force s...
AbstractThis paper presents a novel micro-gripper design with the dual functions of manipulation and...
This work presents the design, fabrication and testing of a thermally actuated microgripper for the ...
This work presents the design, fabrication and testing of a thermally actuated microgripper for the ...
Cellular force sensing and control techniques are capable of en-hancing the dexterity and reliabilit...
Cellular force sensing and control techniques are capable of en-hancing the dexterity and reliabilit...
AbstractThis paper presents a novel micro-gripper design with the dual functions of manipulation and...
Abstract — A microelectromechanical systems (MEMS) rotary micro-gripper incorporating electrothermal...
Microfabricated grippers and tweezers are promising tools for manipulation of micro- and nanoscale o...
AbstractThis paper presents a novel micro-gripper design with the dual functions of manipulation and...
A microelectromechanical systems (MEMS) rotary microgripper incorporating electrothermal force senso...
Several novel devices under development in our laboratories to ultimately realize a micro robotic sy...
Several novel devices under development in our laboratories to ultimately realize a micro robotic sy...
Several novel devices under development in our laboratories to ultimately realize a micro robotic sy...