• DocumentCode
    3559119
  • Title

    Reliability of Lead-Free BGA Assembly: Correlation Between Accelerated Ageing Tests and FE Simulations

  • Author

    Guedon-Gracia, A. ; Woirgard, Eric ; Zardini, Christian

  • Author_Institution
    Lab. de I´´Integration du Materiau au Syst., Univ. Bordeaux 1, Talence
  • Volume
    8
  • Issue
    3
  • fYear
    2008
  • Firstpage
    449
  • Lastpage
    454
  • Abstract
    In 2006, lead was banished in electrical and electronic equipment in Europe, but the reliability of lead-free technology is not yet well known. This paper describes a methodology using experiments and FE simulations that allow us to assess acceleration coefficients (ACs) and to predict assembly lifetimes. Two accelerated ageing tests have been conducted on lead-free ball grid array (BGA) assemblies. During the ageing test, cycles-to-failure have been accurately determined by an event detector from AnaTech. The 3-D nonlinear finite-element model of the BGA assembly has been designed and built using ANSYS software. Thermomechanical simulations have been carried out on this model to compute the strain energy density (SED) that dissipated in the solder joints during the thermal cycles. Then, the correlation between the experimentations and the simulations has allowed us to assess the ACs of two different kinds of thermal cycles and, thus, the cycles-to-failure for another test.
  • Keywords
    ageing; ball grid arrays; finite element analysis; reliability; solders; 3-D nonlinear finite-element model; ANSYS; AnaTech; FE simulations; accelerated ageing tests; lead-free BGA assemblies; lead-free ball grid array assemblies; solder joints; strain energy density; thermomechanical simulations; Accelerated aging; Assembly; Computational modeling; Electronic equipment; Environmentally friendly manufacturing techniques; Europe; Iron; Lead; Life estimation; Testing; Accelerated ageing tests; acceleration coefficient (AC); finite-element simulations; lead-free solder joint; reliability of BGA assemblies;
  • fLanguage
    English
  • Journal_Title
    Device and Materials Reliability, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1530-4388
  • Type

    jour

  • DOI
    10.1109/TDMR.2008.2000895
  • Filename
    4655570