• DocumentCode
    1805954
  • Title

    Effects of post deposition annealing of evaporated Copper and Aluminium on MSQ low-k dielectric spin on glass

  • Author

    Aw, K.C. ; Ibrahim, K.

  • Author_Institution
    Sch. of Appl. Phys., Univ. Sci. of Malaysia, Penang, Malaysia
  • fYear
    2002
  • fDate
    19-21 Dec. 2002
  • Firstpage
    33
  • Lastpage
    35
  • Abstract
    The organic Methylsilsesquioxane (MSQ) exhibits low dielectric constant and is an important and promising material to reduce the capacitive coupling between metal layers in semiconductor integrated circuits. However, MSQ has lower film density and therefore more porous than the traditional SiO2 film and could pose reliability issues. The aim of this paper is to study the effect of post deposition annealing of Copper and Aluminium using evaporation method. Electrical characterisation employing high-frequency C-V and bias-temperature stress (BTS) were employed to study the effect of MOS capacitor (MOSC) structures annealed at different temperatures. The results showed that the leakage current of MOSC with Aluminium and Copper gate increases as the annealing temperatures increases. In addition, MOSC with Aluminium gate has greater reliability compared to MOSC with Copper gate when subject to BTS. However, the leakage current of MOSC with Aluminium gate is much greatly affected by the operating temperature. These concerns need to be addressed and overcome to ensure that MSQ can be a viable interlayer dielectric (ILD) for integrated circuits (IC).
  • Keywords
    MOS capacitors; aluminium; annealing; capacitance; copper; elemental semiconductors; high-frequency effects; leakage currents; silicon; vacuum deposition; IC; MOS capacitor; MSQ; Si-Al; Si-Cu; SiO2 film; bias temperature stress; capacitive coupling; dielectric spin on glass; electrical properties; evaporated aluminium gate; evaporated copper gate; film density; high frequency capacitance-voltage properties; integrated circuits; interlayer dielectrics; leakage current; low dielectric constant; metal layers; organic methylsilsesquioxane; porosity; post deposition annealing; reliability; semiconductor integrated circuits; Aluminum; Annealing; Copper; Dielectric constant; Dielectric materials; Glass; Integrated circuit reliability; Leakage current; Semiconductor films; Temperature;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Semiconductor Electronics, 2002. Proceedings. ICSE 2002. IEEE International Conference on
  • Print_ISBN
    0-7803-7578-5
  • Type

    conf

  • DOI
    10.1109/SMELEC.2002.1217769
  • Filename
    1217769