DocumentCode
1676082
Title
FlashSoldering update-extending fine magnet wire joining applications
Author
Steinmeier, David W. ; Becker, Mike
Author_Institution
Micro Joining Solutions, USA
fYear
1999
fDate
6/21/1905 12:00:00 AM
Firstpage
39
Lastpage
46
Abstract
FlashSoldering was first developed in 1998 as a new innovative, non-contact, localized reflow soldering process for terminating fine insulated copper magnet wires to electronic contacts without first removing the wire insulation. Subsequent research in 1999 has extended FlashSoldering applications from miniature magnetic component packages to soldering insulated single and multiple magnet wires and Litz wire to high-speed data connectors and other forms of electronic contacts. Quality issues concerned with copper-tin intermetallic growth and what happens to the magnet wire insulation during FlashSoldering were successfully resolved. Applications for FlashSoldering have broadened to include: single and multiple toroidal transformer packaging; LAN filters; low power DC-DC converters; single or multiple form coils and inductors; woven or braided high speed data cables; and connecting a single wire to a Litz wire bundle
Keywords
DC-DC power convertors; coils; copper; electric connectors; insulated wires; magnets; power transformers; reflow soldering; FlashSoldering; LAN filters; Litz wire; coils; copper-tin intermetallic growth; fine insulated copper magnet wires termination; high-speed data connectors; inductors; low power DC-DC converters; miniature magnetic component packages; noncontact localized reflow soldering process; toroidal transformer packaging; wire bundle; wire insulation; Cable insulation; Connectors; Contacts; Copper; Electronics packaging; Magnetic separation; Power transformer insulation; Reflow soldering; Toroidal magnetic fields; Wire;
fLanguage
English
Publisher
ieee
Conference_Titel
Electrical Insulation Conference and Electrical Manufacturing & Coil Winding Conference, 1999. Proceedings
Conference_Location
Cincinnati, OH
ISSN
0362-2479
Print_ISBN
0-7803-5757-4
Type
conf
DOI
10.1109/EEIC.1999.826177
Filename
826177
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