DocumentCode
3103783
Title
The two-dimensional micro conveyer: principles and fabrication process of the actuator
Author
Nakazawa, Haruo ; Watanabe, Yasumasa ; Morita, Osamu ; Edo, Masaharu ; Yonezawa, Eiichi
Author_Institution
Functional Device Lab., Fuji Electr. Corp. Res. & Dev. Ltd., Kanagawa, Japan
Volume
1
fYear
1997
fDate
16-19 Jun 1997
Firstpage
33
Abstract
We present a two-dimensional micro conveyer which utilizes electromagnetic force. The micro conveyer comprises a two-layer planar coil array 40 mm2 in size for the stator and a permanent magnet for the mover. This paper describes the design principle, calculation of thrust, fabrication process of the planar coil array and conveyance properties of the fabricated micro conveyer. Three driving methods are discussed: linear DC motor (LDM), linear induction motor (LIM) and linear pulse motor (LPM). The maximum conveyance mass of 1.2 g were obtained with the applied current of 1 A/phase and the maximum conveyance speed was 30 mm/sec without a conveyance object when the NdFeB magnet 5×5×1 mm3 in size magnetized in the vertical direction was used as the mover
Keywords
DC motor drives; arrays; coils; conveyors; linear induction motors; linear motors; microactuators; permanent magnet motors; 1 mm; 1.2 g; 30 mm/s; 40 mm; 5 mm; NdFeB; NdFeB magnet; actuator; conveyance properties; design principle; electromagnetic force; fabrication process; linear DC motor; linear induction motor; linear pulse motor; maximum conveyance mass; maximum conveyance speed; mover; permanent magnet; stator; thrust; two-dimensional micro conveyer; two-layer planar coil array; Actuators; Cities and towns; Coils; DC motors; Electromagnetic forces; Electromagnetic wave absorption; Fabrication; Magnetic materials; Permanent magnets; Stators;
fLanguage
English
Publisher
ieee
Conference_Titel
Solid State Sensors and Actuators, 1997. TRANSDUCERS '97 Chicago., 1997 International Conference on
Conference_Location
Chicago, IL
Print_ISBN
0-7803-3829-4
Type
conf
DOI
10.1109/SENSOR.1997.613574
Filename
613574
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