DocumentCode :
2706254
Title :
Advanced AgSnO/sub 2/ contact materials for the replacement of AgCdO in high current contactors
Author :
Hauner, F. ; Jeannot, D. ; McNeilly, K. ; Pinard, J.
Author_Institution :
Metalor Contacts Deutschland, Redwitz, Germany
fYear :
2000
fDate :
25-27 Sept. 2000
Firstpage :
225
Lastpage :
230
Abstract :
New silver tin oxide contact materials for a low voltage application were developed. They exhibit excellent over-temperature behavior and a very long life compared to commercial AgSnO/sup 2/ contact materials. These new contact materials are produced by die compaction or extrusion using a newly developed precipitated powder. Defined particle size distibution and high shrinkage during sintering characterize these powders. The new contact materials have comparable electrical properties whether produced by die compaction or extrusion. This paper reports on the production and electrical properties of these new materials. Tests were conducted using a 250 A contactor originally optimized for AgCdO and a 250 A contactor optimized for AgSnO/sub 2/. The test results show these new contact materials have the potential to replace AgCdO without changing the design of AgCdO optimized contactors. This is due primarily to their superior over-temperature behavior. The contacts and contactors made with these new materials have considerable technical, economical and environmental benefits.
Keywords :
contactors; densification; electrical contacts; electronic equipment testing; environmental factors; extrusion; optimisation; particle size; powder technology; shrinkage; silver compounds; sintering; tin compounds; 250 A; AgCdO; AgCdO optimized contactor design; AgCdO replacement; AgSnO/sub 2/; AgSnO/sub 2/ contact materials; AgSnO/sup 2/ contact materials; contact materials; contactor tests; contactors; die compaction; economical benefits; electrical properties; environmental benefits; extrusion; high current contactors; low voltage application; material life; optimized contactor; over-temperature behavior; particle size distibution; precipitated powder; shrinkage; silver tin oxide contact materials; sintering; Compaction; Conducting materials; Contacts; Design optimization; Low voltage; Materials testing; Powders; Production; Silver; Tin;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical Contacts, 2000. Proceedings of the Forty-Sixth IEEE Holm Conference on
Conference_Location :
Chicago, IL, USA
Print_ISBN :
0-7803-5960-7
Type :
conf
DOI :
10.1109/HOLM.2000.889933
Filename :
889933
Link To Document :
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