Title :
Novel high-response electromagnetic actuator for electronic engraving system
Author :
Fang, Ping ; Ding, Fan ; Li, Qipeng
Author_Institution :
State Key Lab. of Fluid Power Transmission & Control, Hangzhou, China
fDate :
3/1/2006 12:00:00 AM
Abstract :
We describe a new moving-iron electromagnetic actuator that utilizes cantilever-beam-type springs, π type armature, full-bridge magnetic circuits, and a single driving coil. The actuator is suitable for electromechanical converters with high response and minor displacement for use in electronic engraving systems. We analyzed its static and dynamic characteristics by using a three-dimensional finite-element method. We used a simple and practical measuring method based on light reflection to detect the actuator´s real hysteresis loop and amplitude frequency response characteristics. The results show that the actuator has a displacement of ±65 μm, hysteresis of less than 5.5%, and amplitude cutoff frequency of 3.1 kHz. We tested the actuator on a real engraving system and confirmed its characteristics by the engraving results.
Keywords :
electromagnetic actuators; finite element analysis; frequency response; magnetic circuits; magnetic hysteresis; π type armature; cantilever-beam-type springs; driving coil; electromagnetic actuator; electromechanical converters; electronic engraving system; finite-element method; frequency response; full-bridge magnetic circuits; hysteresis loop; light reflection; Actuators; Coils; Finite element methods; Frequency measurement; Frequency response; Magnetic analysis; Magnetic circuits; Magnetic hysteresis; Optical reflection; Springs; Dynamic measurement; electromagnetic actuator; electronic engraving system; full-bridge magnetic circuit; high response;
Journal_Title :
Magnetics, IEEE Transactions on
DOI :
10.1109/TMAG.2005.862760