Micro electromagnetic actuator with high energy density based on MEMS technology
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Micro electromagnetic actuator with high energy density based on MEMS technology
Optics and Precision EngineeringVol. 15, Issue 6, Pages: 866-872(2007)
作者机构:
1. 中国科学院 研究生院 北京,100039
2. 中国科学院 长春光学精密机械与物理研究所 应用光学国家重点实验室, 吉林 长春 130033
作者简介:
基金信息:
DOI:
CLC:TP271.4;TM57
Received:10 December 2006,
Revised:22 January 2007,
Published Online:30 June 2007,
Published:30 June 2007
稿件说明:
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ZHANG Tao, WU Yi-hui, LI Hai-wen, et al. Micro electromagnetic actuator with high energy density based on MEMS technology[J]. Optics and precision engineering, 2007, 15(6): 866-872.
DOI:
ZHANG Tao, WU Yi-hui, LI Hai-wen, et al. Micro electromagnetic actuator with high energy density based on MEMS technology[J]. Optics and precision engineering, 2007, 15(6): 866-872.DOI:
Micro electromagnetic actuator with high energy density based on MEMS technology
A fabricating technology for high energy density micro electromagnetic actuator based on Micro Electron Mechanics System(MEMS) is introduced. The main steps on MEMS technology are as follows: Firstly
etching plating trenches of multi-turn double planar microcoils and permalloy (NiFe) core into silicon wafers prior to electrode position
a seed layer of copper must is deposited on the wafer; secondly
when the thick of seed layer reaches to about 20 μm by electroplating
peeling the surface plating on the wafer and coating the core by photoresist
electroplating the coil in the groove; thirdly
when the coil groove is filled with copper
coating the coils and electroplating permally core. In the 10 mm×10 mm×0.38 mm square silicon wafer
a high energy density electromagnetic microactuator
composed of multi-turn double planar microcoils (22×2 turns
section of copper wire is 60 μm×60 μm
length is 1 164 mm) and permalloy core (3 mm×3 mm×0.2 mm)
is fabricated. Finally
the estimated force produced by the integrated electromagnetic microactuator is around 50 mN at a sinusoidal current amplitude of 0.3 A
which is fabricated and tested on the valveless micropump. Experiment results show the microactuator is efficient in producing large magnetic force and flexible in application.