DocumentCode
2363308
Title
Disengaging connectors under automotive 42 VDC loads
Author
Schoepf, Thomas J. ; Drew, George A.
Author_Institution
Delphi Res. Labs, Shelby Township, MI, USA
fYear
2002
fDate
2002
Firstpage
120
Lastpage
127
Abstract
Connectors are designed to pass current but are generally not designed to disconnect electrical loads under power. In some circumstances, however, connectors are mated and unmated under load, as for instance during repairs, diagnostic procedures, or when blown fuses are replaced under short circuit conditions. With the present 14 VDC automotive power network no serious consequences are associated with plugging and unplugging under load due to very short break arcs (the system voltage is approximately the same as the minimum arc voltage of the contact material). For the 42 VDC PowerNet, however, serious consequences may result; impacting the reliability of the connection, the electrical distribution system, and automotive safety. The authors show component design approaches, which minimize damage when connectors are disengaged under DC loads. The connector damage is evaluated employing insertion force readings, and contact resistance measurements as part of a field correlated life test for automotive connections.
Keywords
automobiles; circuit-breaking arcs; contact resistance; electric connectors; life testing; reliability; safety; 42 V; PowerNet; automotive loads; blown fuses; break arcs; component design; connectors; contact resistance measurements; diagnostic procedures; electrical distribution system; field correlated life test; insertion force readings; minimum arc voltage; reliability; repairs; safety; short circuit conditions; system voltage; Automotive engineering; Circuits; Connectors; Contact resistance; Electrical resistance measurement; Electrical safety; Force measurement; Fuses; Power system reliability; Voltage;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical Contacts, 2002. Proceedings of the Forty-Eighth IEEE Holm Conference on
Print_ISBN
0-7803-7433-9
Type
conf
DOI
10.1109/HOLM.2002.1040831
Filename
1040831
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