• DocumentCode
    148765
  • Title

    New interconnection alloy metal for high bonding strength nano composite particles synthesized by nanomized method

  • Author

    Sekine, S. ; Kimura, Ryuji ; Okada, Kenichi ; Shindo, Hiroaki ; Ooi, Tatsuya ; Itoh, Uichi ; Yoshida, Manabu ; Tokuhisa, Hideo

  • Author_Institution
    Napra Corp., Tokyo, Japan
  • fYear
    2014
  • fDate
    23-25 April 2014
  • Firstpage
    152
  • Lastpage
    155
  • Abstract
    In the metallization technology for power electronic device, it has been required to develop new material with low cost for operating high-temperature at 300 degree C and highly-reliable interconnection. We have developed new method to fabricate fine metal alloy particles with narrow distribution of particle size from 0.5 to 10μm. We called it as Nanomized method. The fine particles are composed of uniform structure dispersed metal alloy in nano-scale level and do not include void in the particle. The metal alloy particles fabricated by conventional atomized method include void inside particle and non-uniformly dispersed alloy components. We confirmed reliability and mechanical strength. We produced bonding material from the mixture of Cu particles and Sn-based alloy particles. The bonding strength of die chip on Al electrode reached 80 MPa as a top data, 50 MPa in average. The bonding strength of Sn-based alloy particle fabricated from conventional atomized method deteriorated less than 8 MPa after 500 hours later at 300 degree C.
  • Keywords
    bonding processes; copper alloys; metallisation; nanocomposites; tin alloys; Cu; Sn; fine metal alloy particles; high bonding strength nano composite particles; interconnection alloy metal; metallization technology; nanomized method; particle size; size 0.5 mum to 10 mum; temperature 300 degC; Metals; TV; Cu paste; interconnection; nanomized method; power device;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electronics Packaging (ICEP), 2014 International Conference on
  • Conference_Location
    Toyama
  • Print_ISBN
    978-4-904090-10-7
  • Type

    conf

  • DOI
    10.1109/ICEP.2014.6826680
  • Filename
    6826680