DocumentCode
2675653
Title
Fundamental Properties of OFF-ON Resistance of a New Type Self-recovering Fuse Operated by Dielectrophoresis
Author
Ohtsuka, S. ; Suetomi, H. ; Hikita, M.
Author_Institution
Kyushu Inst. of Technol., Kitakyushu
fYear
2006
fDate
14-18 May 2006
Firstpage
474
Lastpage
477
Abstract
This paper deals with fundamental properties of the OFF to ON state transition of a new type of self-recovering fuse (SRF) device operated by dielectrophoresis (DEP) we have proposed and developed. This fuse device basically consists of electrodes made on a substrate, a fuse element to make and break the conducting path between the electrode gap, and liquid matrix as insulation media to cover the fuse element and the electrodes. The self-recovering operation, i.e. the OFF to ON state transition, is mainly controlled by DEP and viscous forces. In this study, we experimentally investigated influence of the liquid matrix and the substrate material on the OFF and ON resistances of the SRF device in terms of improvement of the resistance characteristics. We also investigated the effect of a mechanical impact or vibration on the ON state properties. As a result, we achieved the OFF resistance more than 1 MOmega without remarkably increasing the ON resistance, by using silicone oil as liquid matrix and the glass substrate. We confirmed the self-recovering operation by DEP and the maintaining ON state under both DC and high frequency (up to 100 kHz) AC voltage applications. In addition, the mechanical impact endurance of the SRF device was basically found
Keywords
electric fuses; electric resistance; electrodes; electrophoresis; impact (mechanical); silicone insulation; substrates; switchgear insulation; DEP; OFF-ON resistance characteristics; SRF device; dielectrophoresis; electrodes; glass substrate; high frequency AC voltage applications; liquid matrix insulation; mechanical impact; selfrecovering fuse; silicone oil; vibration; viscous forces; Dielectric liquids; Dielectrophoresis; Electrodes; Force control; Fuses; Glass; Insulation; Mechanical factors; Petroleum; Vibrations;
fLanguage
English
Publisher
ieee
Conference_Titel
Power Modulator Symposium, 2006. Conference Record of the 2006 Twenty-Seventh International
Conference_Location
Arlington, VA
Print_ISBN
1-4244-0018-X
Electronic_ISBN
1-4244-0019-8
Type
conf
DOI
10.1109/MODSYM.2006.365287
Filename
4216239
Link To Document