Title :
A MEMS conical spring actuator array
Author :
Fukushige, Takashi ; Hata, Seiichi ; Shimokohbe, Akira
Author_Institution :
Dept. of Mechano-Micro Eng., Tokyo Inst. of Technol., Japan
fDate :
4/1/2005 12:00:00 AM
Abstract :
A new MEMS conical spring actuator array is proposed. Previously, we have developed conical spring microactuators having a long stroke (180 μm) in the out-of-plane direction. However, the maximum output force and the packing density were not satisfactory. In the present paper, mechanical and electrical models of a conical spring are described for the calculation of the maximum output force and the driving voltage. Geometrical parameters were optimized using these models and a new geometry for the actuator was derived. The new geometry incorporates a wider and thicker spring that increased the maximum output force from 0.087 mN up to 0.83 mN. The packing density was increased up to 1 actuator/mm2 using an additional interconnect layer. In addition, the driving voltage was decreased using a thinner insulating layer. The use of an ac drive prevented the sticking of the actuator during operation. A detailed investigation of the ac drive was also performed.
Keywords :
AC motor drives; microactuators; springs (mechanical); 180 micron; 3D shape; AC drive; MEMS conical spring actuator array; actuator geometry; conical spring microactuators; driving voltage; electrical models; geometrical parameter; insulating layer; interconnect layer; maximum output force; mechanical models; packing density; thin film metallic glass; Actuators; Electrodes; Geometry; Insulation; Microactuators; Micromechanical devices; Springs; Substrates; Transistors; Voltage; AC drive; conical spring microactuator; out-of-plane; thin film metallic glass; three-dimensional (3-D) shape;
Journal_Title :
Microelectromechanical Systems, Journal of
DOI :
10.1109/JMEMS.2004.839345