DocumentCode :
3509594
Title :
Failure modes of Sn3.0Ag0.5Cu flip-chip solder joints under current stress
Author :
Lu, Yu-Dong ; He, Xiao-Qi ; En, Yun-Fei ; Wang, Xin
Author_Institution :
Key Lab. of Specially Functional Mater., South China Univ. of Technol., Guangzhou, China
fYear :
2009
fDate :
20-24 July 2009
Firstpage :
849
Lastpage :
853
Abstract :
Electromigration in flip chip solder joints of Sn3.0Ag0.5Cu has been studied at current density of 2.03times104 A/cm2 and the bump temperature was at 120 degC. Three potential failure modes were absolved and their corresponding microstructural mechanism was discussed in this paper. The pancake-type void is noticeable failure mode and dominated by current crowding. The continuous void at the cathode of contact interface between IMC and solder was also formed without current crowding. But the void has less area than the void at entire cathode contact interface to the Si Chip. The large area of IMC in left-hand section of solder joints distributed in solder joint uniquely. All of the unique microstructural evolution induced by electromigration concern the migration of atoms and vacancies in interconnects with unique geometry.
Keywords :
copper alloys; current density; electromigration; failure analysis; flip-chip devices; silver alloys; solders; tin alloys; voids (solid); IMC-solder contact interface; SnAgCu; bump temperature; cathode contact interface; current crowding; current density; current stress; electromigration; flip-chip solder joint failure modes; microstructural mechanism; pancake-type void; temperature 120 degC; Cathodes; Electromigration; Electronics industry; Flip chip; Flip chip solder joints; Industrial electronics; Joining materials; Materials science and technology; Soldering; Stress; Sn3.0Ag0.5Cu; electromigration; flip chip; solder joint;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Reliability, Maintainability and Safety, 2009. ICRMS 2009. 8th International Conference on
Conference_Location :
Chengdu
Print_ISBN :
978-1-4244-4903-3
Electronic_ISBN :
978-1-4244-4905-7
Type :
conf
DOI :
10.1109/ICRMS.2009.5269954
Filename :
5269954
Link To Document :
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