DocumentCode
2253190
Title
Flux-underfill compatibility and failure mode analysis in high yield flip chip processing
Author
Houston, Paul N. ; Baldwin, Daniel F. ; Tsai, W. Mike
Author_Institution
Adv. Assembly Technol., Siemens Dematic Electron. Assembly Syst., Norcross, GA, USA
fYear
2002
fDate
2002
Firstpage
78
Lastpage
84
Abstract
The compatibility of flux and underfill material systems significantly contributes to the formation and growth of process-induced defects and further influences flip chip reliability. Various no-clean fluxes, along with a water-soluble flux used as the baseline, are tested with two fast flow, snap cure underfills. Liquid-to-liquid thermal shock and temperature and humidity tests are conducted to evaluate the reliability of each flux-underfill material system. The failure modes, specifically underfill delamination, solder fatigue, and die cracking, are identified and analyzed. The correlation among process manufacturing defects, failure modes, and long-term reliability are determined. Understanding these failure modes will further enable and facilitate the implementation of low cost, high yield flip chip processing in standard surface mount technology.
Keywords
failure analysis; flip-chip devices; reliability; die cracking; failure mode analysis; fast-flow snap cure underfill; flip-chip processing; flux-underfill material system; humidity test; liquid-to-liquid thermal shock; manufacturing defects; no-clean flux; process yield; reliability; solder fatigue; surface mount technology; temperature test; underfill delamination; water-soluble flux; Conducting materials; Electric shock; Failure analysis; Flip chip; Humidity; Materials reliability; Materials testing; System testing; Temperature; Thermal conductivity;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronics Manufacturing Technology Symposium, 2002. IEMT 2002. 27th Annual IEEE/SEMI International
Print_ISBN
0-7803-7301-4
Type
conf
DOI
10.1109/IEMT.2002.1032727
Filename
1032727
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