• DocumentCode
    1727216
  • Title

    Outperformance of Cu pillar flip chip bumps in electromigration testing

  • Author

    Labie, Riet ; Dosseul, Franck ; Webers, Tomas ; Winters, Christophe ; Cherman, Vladimir ; Beyne, Eric ; Vandevelde, Bart

  • Author_Institution
    Imec, Leuven, Belgium
  • fYear
    2011
  • Firstpage
    312
  • Lastpage
    316
  • Abstract
    Standard NiAu/SAC (SnAgCu) solder bumps are compared with Cu pillar bumps in terms of their electromigration behavior. Both bump configurations are flip chipped onto package substrates with a thick Cu finish. The Cu pillar bumps, which are soldered with a thin SnAg cap, outperform the standard solder flip chip bumps due to the fast formation of an intermetallic phase which covers the full solder stand-off height. These bumps do not show any significant electromigration damage and do not fail within reasonable testing times and test conditions. For the standard solder flip chip bumps, micro-structural degradation at the NiAu chip metallization coincides with an according bump resistance increase which can be clearly monitored for all different test conditions. The electromigration parameters are calculated to be 0.90eV for the activation energy Q and 1.69 for the current density exponential factor n. A TaN temperature sensor is incorporated in the test chip which allows in-situ measurements of the actual device temperature. This value may deviate from the ambient temperature due to Joule heating. Fuse tests in which the current is gradually ramped up to a maximum of 3A while the resulting temperature rise is simultaneously monitored, are performed. In general, the thermal performance of the pillar bump exceeds the one of the solder bump.
  • Keywords
    electromigration; flip-chip devices; metallisation; solders; tantalum compounds; temperature sensors; electromigration testing; intermetallic phase; metallization; package substrates; pillar flip chip bumps; solder flip chip bumps; temperature sensor; Copper; Electromigration; Intermetallic; Resistance; Temperature measurement; Temperature sensors; Testing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electronic Components and Technology Conference (ECTC), 2011 IEEE 61st
  • Conference_Location
    Lake Buena Vista, FL
  • ISSN
    0569-5503
  • Print_ISBN
    978-1-61284-497-8
  • Electronic_ISBN
    0569-5503
  • Type

    conf

  • DOI
    10.1109/ECTC.2011.5898531
  • Filename
    5898531