• DocumentCode
    1962139
  • Title

    Challenges and opportunities for the universities to support future technology developments in the semiconductor industry: staying on the Moore´s Law

  • Author

    Prasad, Jagdish

  • Author_Institution
    AMI Semicond. Inc., Pocatello, ID, USA
  • fYear
    2003
  • fDate
    30 June-2 July 2003
  • Firstpage
    166
  • Lastpage
    169
  • Abstract
    Moore´s 1st law requires performance scaling and thus the improved transistor Idsat. To improve transistor Idsat one need to increase the channel mobility and reduce the oxide thickness. Improvement in channel mobility requires channel and interface engineering. The reduction in SiO2 thickness has limits due to undesired effects on the leakage current. This limit on the SiO2 thickness has already been reached for current generation devices and therefore new dielectric materials with high k are needed to minimize the leakage. Industry has not yet decided on the material due to integration process problems and has delayed the introduction of low standby power (LSTP) devices. Thus it´s important to decide the next generation dielectric materials and solve the associated integration problems quickly to stay on the productivity curve and, thus, Moore´s Law. In the past 10 years, the growing size of required investments has motivated industry collaboration with the research universities and the trend is accelerating. There are huge opportunities for the research organizations to contribute and help the semiconductor industry to stay on pace with Moore´s Law. The thrust of this paper will be to review the current status of the front-end issues and identify the areas for future research.
  • Keywords
    dielectric materials; educational institutions; electronics industry; leakage currents; research and development; semiconductor technology; silicon compounds; Moore´s Law; SiO2; channel engineering; channel mobility; dielectric materials; interface engineering; leakage current; low standby power; research organizations; semiconductor industry; transistor; Delay; Dielectric materials; Educational institutions; Electronics industry; High K dielectric materials; High-K gate dielectrics; Investments; Leakage current; Moore´s Law; Productivity;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    University/Government/Industry Microelectronics Symposium, 2003. Proceedings of the 15th Biennial
  • ISSN
    0749-6877
  • Print_ISBN
    0-7803-7972-1
  • Type

    conf

  • DOI
    10.1109/UGIM.2003.1225719
  • Filename
    1225719