DocumentCode :
1428258
Title :
High-speed imaging by electromagnetic alloy actuated probe with dual spring
Author :
Lee, Dong-Weon ; Ono, Takahito ; Esashi, Masayoshi
Author_Institution :
Fac. of Eng., Tohoku Univ., Sendai, Japan
Volume :
9
Issue :
4
fYear :
2000
Firstpage :
419
Lastpage :
424
Abstract :
This paper describes a magnetically actuated cantilever with dual spring (cantilevered actuator and torsional cantilever) for a high-speed imaging of atomic force microscopy (AFM). A fabricated cantilever beam with a high resonant frequency is successfully actuated by electromagnetic force. A planar coil is placed on the free end of the cantilever beam and embedded in a groove formed on the silicon cantilever to get a large deflection. Static and dynamic mechanical characteristics of the fabricated probes have been measured. The experimental results of the mechanical properties are compared with the calculation results obtained from a finite element method. When flowing a current of /spl plusmn/10 mA, a static deflection of /spl plusmn/2 can be achieved by a cantilever with a length of 400 /spl mu/m. The scanning speed of AFM is increased up to 1 mm/s by actuating the high resonant frequency cantilever in constant force mode.
Keywords :
atomic force microscopy; coils; electromagnetic actuators; finite element analysis; microactuators; probes; -10 to 10 mA; 400 micron; atomic force microscopy; cantilevered actuator; constant force mode; dynamic mechanical characteristics; electromagnetic alloy actuated probe; finite element method; magnetically actuated cantilever; planar coil; resonant frequency; scanning speed; static deflection; static mechanical characteristics; torsional cantilever; Actuators; Atomic force microscopy; Coils; Electromagnetic forces; Magnetic force microscopy; Magnetic resonance imaging; Probes; Resonant frequency; Springs; Structural beams;
fLanguage :
English
Journal_Title :
Microelectromechanical Systems, Journal of
Publisher :
ieee
ISSN :
1057-7157
Type :
jour
DOI :
10.1109/84.896762
Filename :
896762
Link To Document :
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