• DocumentCode
    1728196
  • Title

    Next generation fine pitch Cu Pillar technology — Enabling next generation silicon nodes

  • Author

    Gerber, Mark ; Beddingfield, Craig ; O´Connor, Shawn ; Yoo, Min ; Lee, MinJae ; Kang, DaeByoung ; Park, SungSu ; Zwenger, Curtis ; Darveaux, Robert ; Lanzone, Robert ; Park, KyungRok

  • Author_Institution
    Texas Instrum. Inc., Dallas, TX, USA
  • fYear
    2011
  • Firstpage
    612
  • Lastpage
    618
  • Abstract
    There has been a growing need for fine pitch flip chip technology in support of next generation communication devices with increasing die complexities. The increase in functionality which drives a larger number of signal I/O´s in combination with small die size requirements as a result of transistor size reductions have driven the need to investigate finer die interconnect pitches. Traditional solder or Cu Pillar interconnect pitches of 150um to 200um that are currently used in both low and high end flip chip applications are now facing a number of technical limitations as device scaling requirements push the limits of flip chip pad density per square mm of silicon. This paper will review the process development and advancement of several next generation fine pitch Cu Pillar bumping and assembly processes, with pitches less than 60um, that are focused on addressing the challenges seen on silicon nodes such as 65nm and beyond.
  • Keywords
    copper; elemental semiconductors; fine-pitch technology; flip-chip devices; silicon; Cu; Si; assembly processes; fine pitch flip chip technology; next generation communication devices; next generation fine pitch pillar bumping; next generation silicon nodes; pillar interconnect; size 150 mum to 200 mum; transistor size reductions; Arrays; Assembly; Copper; Flip chip; Gold; Silicon; Substrates;
  • 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.2011.5898576
  • Filename
    5898576