Title :
A Parylene Bellows Electrochemical Actuator
Author :
Li, Po-Ying ; Sheybani, Roya ; Gutierrez, Christian A. ; Kuo, Jonathan T W ; Meng, Ellis
Author_Institution :
Dept. of Electr. Eng., Univ. of Southern California, Los Angeles, CA, USA
Abstract :
We present the first electrochemical actuator with Parylene bellows for large-deflection operation. The bellows diaphragm was fabricated using a polyethylene-glycol-based sacrificial molding technique followed by coating in Parylene C. Bellows were mechanically characterized and integrated with a pair of interdigitated electrodes to form an electrochemical actuator that is suitable for low-power pumping of fluids. Pump performance (gas generation rate and pump efficiency) was optimized through a careful examination of geometrical factors. Overall, a maximum pump efficiency of 90% was achieved in the case of electroplated electrodes, and a deflection of over 1.5 mm was demonstrated. Real-time wireless operation was achieved. The complete fabrication process and the materials used in this actuator are biocompatible, which makes it suitable for biological and medical applications.
Keywords :
bellows; bioMEMS; drug delivery systems; electrochemical devices; microactuators; microfluidics; micropumps; polymers; bellows diaphragm; gas generation rate; interdigitated electrodes; large deflection operation; low power fluid pumping; parylene C; parylene bellows electrochemical actuator; polyethylene glycol based sacrificial molding technique; pump efficiency; pump performance; Bellows; drug delivery device; electrolysis pump; intraocular implant;
Journal_Title :
Microelectromechanical Systems, Journal of
DOI :
10.1109/JMEMS.2009.2032670