Title :
A simple bidirectional linear microactuator for nanopositioning - the "Baltan" microactuator
Author :
Friend, James ; Gouda, Yasuyuki ; Nakamura, Kentaro ; Ueha, Sadayuki
Author_Institution :
Precision & intelligence Lab., Tokyo Inst. of Technol., Yokohama, Japan
fDate :
6/1/2006 12:00:00 AM
Abstract :
A new linear microactuator, using bulk PZT and electro-discharge-machined components, generates a sliding velocity and force of 100 mm/s and 12 mN, respectively, in either direction, and a peak velocity and force of 212 mm/s and 44 mN, respectively. Using a simple combination of two slightly different beams placed in contact with a slider, and vibrated at two different resonance frequencies, 508 and 522 kHz, by a specially designed, axially vibrating piezoelectric element, bidirectional linear motion was obtained. By simply reducing the length of the applied signal, the sliding distance was reduced to 90 nm ± 2 nm, which could be improved with a variety of control methods. The design offers not only silent operation, slider clamping upon removal of power, and all of the other advantages of piezoelectric actuators, but also the potential to be further reduced in size to sub-mm3 for microrobotics and other applications.
Keywords :
microactuators; microrobots; nanopositioning; piezoelectric actuators; 100 mm/s; 212 mm/s; 508 kHz; 522 kHz; Baltan microactuator; PZT; bidirectional linear microactuator; bidirectional linear motion; electrodischarge-machined components; microrobotics; nanopositioning; piezoelectric actuators; slider clamping; sliding velocity; Assembly; Crystallization; Design methodology; Hydraulic actuators; Microactuators; Micromechanical devices; Nanopositioning; Piezoelectric actuators; Resonance; Resonant frequency; Computer-Aided Design; Electrochemistry; Electrostatics; Equipment Design; Equipment Failure Analysis; Microelectrodes; Micromanipulation; Miniaturization; Nanotechnology; Transducers; Ultrasonics; Vibration;
Journal_Title :
Ultrasonics, Ferroelectrics, and Frequency Control, IEEE Transactions on
DOI :
10.1109/TUFFC.2006.1642514