Title :
Effect of Carbon Inclusion in the Ni-P Coating on Shearing Behavior of Sn4Ag0.5Cu Ball Grid Array Solder Joints
Author :
Gu, X. ; Chan, Y.C. ; Wu, B.Y. ; Yang, D.
Author_Institution :
Hong Kong City Univ., Kowloon
Abstract :
This study employed an electroless Ni-P-carbon nanotubes (Ni-P-CNTs) composite coating as a pad finish for electronic packaging. It aimed at investigating the effect of carbon on the mechanical behavior and microstructure of ball grid array (BGA) solder joints after multiple reflows. Electroless Ni-P and electroless Ni-P-CNTs composite coatings with the same P-content were prepared for comparison. It was found that the carbon in the coating increased the brittleness of solder joints and weakened their shear strength. After shearing tests, more brittle fractures occurred in the intermetallic compound (IMC) layer in the Sn-4Ag-0.5Cu/Ni-P-CNTs (SAC/Ni-P-CNTs) solder joints. After multiple reflows, a Ni3Sn4 IMC layer and a P-rich layer were formed in the solder joints on both coatings. The IMC layers in the SAC/Ni-P solder joints were found to be compact with chunky-shaped grains, whilst the IMC layers in the SAC/Ni-P-CNTs solder joints were porous with needle-shaped grains.
Keywords :
ball grid arrays; brittle fracture; carbon; carbon nanotubes; composite materials; copper alloys; nickel; phosphorus; shear strength; silver alloys; soldering; tin alloys; BGA solder joints; Sn-Ag-Cu-Ni-P-C; ball grid array solder joints; brittle fracture; carbon inclusion; chunky-shaped grains; electroless Ni-P-carbon nanotubes composite coating; electronic packaging; intermetallic compound layer; mechanical behavior; multiple reflows; needle-shaped grains; shear strength; shearing behavior; solder joint brittleness; Coatings; Electronics packaging; Gold; Nanotubes; Nickel; Shearing; Soldering; Surface cleaning; Temperature; Testing;
Conference_Titel :
Electronic Packaging Technology, 2007. ICEPT 2007. 8th International Conference on
Conference_Location :
Shanghai
Print_ISBN :
978-1-4244-1392-8
Electronic_ISBN :
978-1-4244-1392-8
DOI :
10.1109/ICEPT.2007.4441510