DocumentCode
2879915
Title
From Leaded to Lead Free Assembly and New Packaging Technology Challenges
Author
Lavoie, Helene ; Paquet, Marie-Claude ; Sylvestre, Julien ; Ouimet, Sylvain ; Duchesne, Eric ; Barbeau, Stephane ; Gauvin, Marco ; Oberson, Valerie
Author_Institution
IBM Canada, Markham
fYear
2007
fDate
May 29 2007-June 1 2007
Firstpage
1333
Lastpage
1339
Abstract
The migration to lead free connections in the microelectronic industry has brought forth many technical challenges, especially in the packaging technology area with respect to materials and processes. The two major drivers to these challenges are the higher melting point and the thermo-mechanical behaviour (less creep than SnPb alloy) of the replacement alloy. The higher melting point drives higher reflow temperatures during the packaging assembly as well as the card assembly and this requires the use of new materials. Higher stresses in the package can result in a reliability impact for the product. The challenge of these lead free related changes is exacerbated by other trends in leading edge organic packaging such as chip low K dielectric materials, larger package and larger chip dimensions and, reduced chip bump pitch. This paper provides the reliability results obtained through various lead free organic package test matrices and qualifications. The principal failure mechanisms are presented and are explained through material properties and finite element modeling studies. Details of the package technology qualification process and results are presented.
Keywords
finite element analysis; integrated circuit packaging; edge organic packaging; finite element modeling; microelectronic industry; packaging technology; Assembly; Creep; Dielectric materials; Environmentally friendly manufacturing techniques; Microelectronics; Packaging; Qualifications; Temperature; Thermal stresses; Thermomechanical processes;
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.2007.373968
Filename
4250054
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