• DocumentCode
    2849130
  • Title

    IMC Evolution and Reliability of Lead-free Solder Bump Formed by Induction Self Heat Reflow

  • Author

    Li, Mingyu ; Xu, Hongbo ; Wang, Chunqing ; Bang, Han Sur ; Bang, Hee Seon

  • Author_Institution
    Shenzhen Graduate Sch., Harbin Inst. of Technol.
  • fYear
    2005
  • fDate
    2-2 Sept. 2005
  • Firstpage
    1
  • Lastpage
    6
  • Abstract
    Induction self heat reflow (ISHR) technology, which has the advantages of 3-D selective heating and high heating speed, can solve the problems which can´t be controlled in traditional reflow technologies, such as inhomogeneous heating of ball grid array (different bumps), simultaneous heating of chip and carrier with solder ball, etc., which have been increasingly serious with the development of packaging technology. In this paper, the results of the aging experiment and bump shear experiment of Sn3.5Ag and Sn3Ag0.5Cu solder bumps reflowed on the Au/Ni/Cu pad respectively are used for evaluating the reliability of the bumps manufactured through ISHR. It is shown that the bumps can supply sufficient shear strength for use. Three kinds of different shear failure behaviors controlled by different failure mechanisms are observed. During the aging time a continual pure NixSn4 layer exists at the interface of Sn3.5Ag solder bumps, and dispersed (Aux,Ni1-x)Sn4 inside solder matrix. Two quaternary Au-Ni-Cu-Sn IMC layers, (Cu,Ni,Au)3 Sn close to Ni layer and (Cu,Ni,Au)6Sn5 close to solder bulk, existed at the interface of the Sn3.0Ag 0.5Cu bump after aging. IMC thickness increased linearly with square root of aging time. The IMC growth was a diffusion controlled process
  • Keywords
    ageing; ball grid arrays; copper alloys; induction heating; reflow soldering; reliability; silver alloys; solders; tin alloys; (CuNiAu)3Sn; (CuNiAu)6Sn5; 3D selective heating; NiSn4; SnAgCu; aging experiment; ball grid array; bump shear experiment; induction self heat reflow; lead-free solder bump; packaging technology; Aging; Electronics packaging; Environmentally friendly manufacturing techniques; Failure analysis; Gold; Lead; Process control; Pulp manufacturing; Temperature control; Tin;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electronic Packaging Technology, 2005 6th International Conference on
  • Conference_Location
    Shenzhen
  • Print_ISBN
    0-7803-9449-6
  • Type

    conf

  • DOI
    10.1109/ICEPT.2005.1564651
  • Filename
    1564651