• DocumentCode
    1525380
  • Title

    Optimization of SiGe HBTs for operation at high current densities

  • Author

    Joseph, Alvin J. ; Cressler, John D. ; Richey, David M. ; Niu, Guofu

  • Author_Institution
    IBM Microelectron., Essex Junction, VT, USA
  • Volume
    46
  • Issue
    7
  • fYear
    1999
  • fDate
    7/1/1999 12:00:00 AM
  • Firstpage
    1347
  • Lastpage
    1354
  • Abstract
    A comprehensive investigation of the impact of Ge profile shape as well as the scaling of collector and base doping profiles on high-injection heterojunction barrier effects in SiGe HBTs has been conducted over the -73-85°C temperature range. The onset of Kirk effect at high current densities is shown to expose the Si/SiGe heterojunction in the collector-base space charge region, thereby inducing a conduction band barrier which negatively impacts the collector and base currents as well as the dynamic response, leading to a premature roll-off in both β and fT. In light of this, careful profile optimization is critical for emerging SiGe HBT circuit applications, since they typically operate at high current densities to realize maximum performance. We first explore the experimental consequences and electrical signature of these barrier effects over the 200-358 K temperature range for a variety of Ge profiles from an advanced UHV/CVD SiGe HBT technology. We then use extensive simulations which were calibrated to measured results to explore the sensitivity of these barrier effects to both the Ge profile shape and collector profile design, and hence investigate the optimum profile design points as a function of vertical scaling
  • Keywords
    Ge-Si alloys; doping profiles; heterojunction bipolar transistors; semiconductor materials; -73 to 85 C; 200 to 358 K; Ge profile; Kirk effect; SiGe; UHV/CVD SiGe HBT; carrier injection; conduction band; current density; design optimization; doping profile; heterojunction barrier effect; space charge; Current density; Doping profiles; Germanium silicon alloys; Heterojunction bipolar transistors; Kirk field collapse effect; Lead; Shape measurement; Silicon germanium; Space charge; Temperature distribution;
  • fLanguage
    English
  • Journal_Title
    Electron Devices, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9383
  • Type

    jour

  • DOI
    10.1109/16.772475
  • Filename
    772475