We present a smart rigid body motion generator based on arrays of electromagnetically driven micromembrane actuators. Unlike previous motion generators, this architecture employs a large number of micro-sized (100–200 µm) membrane actuators to simultaneously generate the displacement of a large rigid optical mirror. Thus the actuation structure bridges the gap between the micro and macro worlds as well as the incompatibility between MEMS fabrication and traditional optical manufacturing. In order to estimate the feasibility of the architecture, a systematic study was performed on the design and simulation of the individual micromembrane actuator. Each membrane actuator consists of a high magnetization permanent magnet post structure support...
International audienceFor actuating the magnetic microrobots, two types of magnetic actuation techno...
A large adaptive deformable mirror with high actuator density is presented. The DM consists of a thi...
The force (F) and the power consumption (P) of a magnetic actuator are modeled, measured and optimiz...
A rigid-body motion generator based on an array of micromembrane actuators is described. Unlike prev...
This study reports the elaboration and characterization of a 4x4 MEMS elastomeric membrane array wit...
The present study presents a new micro electromagnetic actuator utilizing a PDMS membrane with a mag...
A large adaptive deformable mirror with high actuator density is presented. The DM consists of a thi...
Abstract. Actuators are used to perform a variety of functions in almost every type of electrome-cha...
A large adaptive deformable mirror with high actuator density is presented. The DM consists of a thi...
The work of this doctoral thesis involves in developing a smart surface (including modelling, design...
The work of this doctoral thesis involves in developing a smart surface (including modelling, design...
Microsensors and microactuators are considered to be the most crucial elements of micro-electromecha...
International audienceFor actuating the magnetic microrobots, two types of magnetic actuation techno...
Recent work in magnetically-actuated micro-scale robots for biomedical and microfluidic applications...
International audienceFor actuating the magnetic microrobots, two types of magnetic actuation techno...
International audienceFor actuating the magnetic microrobots, two types of magnetic actuation techno...
A large adaptive deformable mirror with high actuator density is presented. The DM consists of a thi...
The force (F) and the power consumption (P) of a magnetic actuator are modeled, measured and optimiz...
A rigid-body motion generator based on an array of micromembrane actuators is described. Unlike prev...
This study reports the elaboration and characterization of a 4x4 MEMS elastomeric membrane array wit...
The present study presents a new micro electromagnetic actuator utilizing a PDMS membrane with a mag...
A large adaptive deformable mirror with high actuator density is presented. The DM consists of a thi...
Abstract. Actuators are used to perform a variety of functions in almost every type of electrome-cha...
A large adaptive deformable mirror with high actuator density is presented. The DM consists of a thi...
The work of this doctoral thesis involves in developing a smart surface (including modelling, design...
The work of this doctoral thesis involves in developing a smart surface (including modelling, design...
Microsensors and microactuators are considered to be the most crucial elements of micro-electromecha...
International audienceFor actuating the magnetic microrobots, two types of magnetic actuation techno...
Recent work in magnetically-actuated micro-scale robots for biomedical and microfluidic applications...
International audienceFor actuating the magnetic microrobots, two types of magnetic actuation techno...
International audienceFor actuating the magnetic microrobots, two types of magnetic actuation techno...
A large adaptive deformable mirror with high actuator density is presented. The DM consists of a thi...
The force (F) and the power consumption (P) of a magnetic actuator are modeled, measured and optimiz...