DocumentCode
2878708
Title
Lead-Free Solder Micro-Ball Bumps for the Next Generation of Flip Chip Interconnection: Micro-Ball Materials, Bump Formation Process and Reliability
Author
Ishikawa, Shinji ; Uchiyama, Tomoyuki ; Hashino, Eiji ; Kohno, Taro ; Tanaka, Masamoto ; Tatsumi, Kohei
Author_Institution
Nippon Steel Corp., Chiba
fYear
2007
fDate
May 29 2007-June 1 2007
Firstpage
872
Lastpage
877
Abstract
Micro-ball wafer bumping (MBB) technology, which has capability of fine pitch bumping such as 150-mum pad pitch and the advantages of adjusting the optimum material combinations of joints, was brought into practice. High productivity and yield were achieved by employing an inspection and the repair process with special equipment, and a void-less reflow process was established. Package-level reliability tests were performed for chips with Ti/NiV/Cu-UBM and Sn-Ag-Cu solder bumps using MBB technology with excellent results. An evaluation on reliability was also conducted with Sn-1.2Ag-0.5Cu-Ni solder and pure tin solder bumps. As a result of multiple reflow cycle tests for Ti/NiV/Cu-UBM and various lead-free solders, the shape of IMC and the spalling of IMC were influenced by the total amount of Cu and Ni in the solder and the UBM composition. Ti/NiV/Cu-UBM can be applied to various solders by changing the thickness of the surface Cu layer according to the composition of the solder.
Keywords
flip-chip devices; integrated circuit interconnections; integrated circuit reliability; maintenance engineering; reflow soldering; solders; bump formation process; flip chip interconnection; lead-free solder microball bumps; microball materials; package-level reliability tests; pitch bumping; reflow cycle tests; repair process; Environmentally friendly manufacturing techniques; Flip chip; Inspection; Joining materials; Lead; Materials reliability; Packaging machines; Performance evaluation; Productivity; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic Components and Technology Conference, 2007. ECTC '07. Proceedings. 57th
Conference_Location
Reno, NV
ISSN
0569-5503
Print_ISBN
1-4244-0985-3
Electronic_ISBN
0569-5503
Type
conf
DOI
10.1109/ECTC.2007.373901
Filename
4249987
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