Title :
Simultaneous On-Chip Sensing and Actuation Using the Thermomechanical In-Plane Microactuator
Author :
Waterfall, Tyler L. ; Teichert, Kendall B. ; Jensen, Brian D.
Author_Institution :
Lands´´ End Inc., Dodgeville, WI
Abstract :
Many applications in microelectromechanical systems require physical actuation for implementation or operation. On-chip sensors would allow control of these actuators. This paper presents experimental evidence showing that a certain class of thermal actuators can be used simultaneously as an actuator and a sensor to control the actuator´s force or displacement output. By measuring the current and voltage supplied to the actuator, a one-to-one correspondence is found between a given voltage and current and a measured displacement or force. This integrated sensor/actuator combination will lead to efficient on-chip control of motion for applications including microsurgery, biological cell handling, and optic positioning.
Keywords :
micro-optomechanical devices; microactuators; biological cell handling; microelectromechanical systems; microsurgery; on-chip sensors; one-to-one correspondence; optic positioning; physical actuation; thermal actuators; thermomechanical in-plane microactuator; Microelectromechanical system (MEMS); piezoresistance; thermal actuator;
Journal_Title :
Microelectromechanical Systems, Journal of
DOI :
10.1109/JMEMS.2008.2004433