• DocumentCode
    1527991
  • Title

    The development of reflowable materials systems to integrate the reflow and underfill dispensing processes for DCA/FCOB assembly

  • Author

    Gamota, Daniel R. ; Melton, Cindy M.

  • Author_Institution
    Interconnect Technol. Res. Group, Motorola Inc., Schaumburg, IL, USA
  • Volume
    20
  • Issue
    3
  • fYear
    1997
  • fDate
    7/1/1997 12:00:00 AM
  • Firstpage
    183
  • Lastpage
    187
  • Abstract
    Unique materials systems with sufficient fluxing activities to remove the metal oxides on the die and/or substrate bumps and assist in the formation of metallurgical interconnects were developed for the assembly of flip chip on board (FCOB). This materials system is referred to as a reflowable underfill. The experimental process flow was as follows: a finite volume of reflowable underfill was dispensed on the printed circuit board (PCB) at the die site, the die was aligned over the bond pads, and the die was placed into the material. Next, the FCOB assembly was transferred to a reflow furnace and subjected to a standard surface mount technology (SMT) eutectic Pb/Sn reflow profile, the solder was reflowed, interconnects were formed between the die and PCB, and the reflowable underfill was partially cured. The built FCOB assemblies were placed in liquid to liquid thermal shock and air to air temperature cycling. The assembly yields varied and continued development of systems with increased flux activity are warranted for the acceptance of this FCOB assembling technology. Promising accelerated life testing (ALT) results were obtained warranting further evaluation of the reflowable materials systems and process
  • Keywords
    assembling; circuit reliability; encapsulation; flip-chip devices; life testing; printed circuit manufacture; printed circuit testing; reflow soldering; surface mount technology; thermal shock; DCA/FCOB assembly; SMT eutectic Pb/Sn reflow profile; accelerated life testing; air to air temperature cycling; assembly yields; bond pads; die site; direct chip attach; encapsulant; flip chip on board; fluxing activities; liquid to liquid thermal shock; metal oxide removal; metallurgical interconnects formation; partial curing; printed circuit board; reflow furnace; reflowable materials systems; reflowable underfill; reliability; substrate bumps; underfill dispensing process; Assembly systems; Bonding; Electric shock; Flip chip; Furnaces; Inorganic materials; Integrated circuit interconnections; Printed circuits; Surface-mount technology; Tin;
  • fLanguage
    English
  • Journal_Title
    Components, Packaging, and Manufacturing Technology, Part C, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1083-4400
  • Type

    jour

  • DOI
    10.1109/3476.649438
  • Filename
    649438