Actuators for Micropositioners and Nanopositioners

Author:

Hubbard Neal B.1,Culpepper Martin L.2,Howell Larry L.3

Affiliation:

1. L-3 Communications, Integrated Systems, P.O. Box 154580, MS 1124, Waco, TX 76715

2. Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139

3. Department of Mechanical Engineering, Brigham Young University, Provo, UT 84602

Abstract

A summary of recent research in micropositioning and nanopositioning is presented. The work is classified into five groups by actuation approach, including piezoelectric, magnetic, electrostatic, thermal, and electrochemical microactuators. A consistent set of measurable, key characteristics are proposed: degrees of freedom, range, resolution, range-to-resolution ratio, footprint, force, natural frequency, and bandwidth. Values of the key characteristics are listed in tables. The results demonstrate the boundaries of current knowledge and the advantages of each actuation approach. This is the first time this information has been compiled in this growing field and it is summarized in such a way as to be useful to readers. There are 82 references cited in this review article.

Publisher

ASME International

Subject

Mechanical Engineering

Reference82 articles.

1. Small-Scale Micro/Nano-Manipulators in Precision Alignment and Positioning;Golda

2. Design, Fabrication, Position Sensing, and Control of an Electrostatically-Driven Polysilicon Microactuator;Cheung;IEEE Trans. Magn.

3. MEMS Milliactuator for Hard-Disk-Drive Tracking Servo;Hirano;J. Microelectromech. Syst.

4. High-Bandwidth High-Accuracy Rotary Microactuators for Magnetic Hard Disk Drive Tracking Servos;Hirano;IEEE/ASME Trans. Mechatron.

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