• DocumentCode
    1557512
  • Title

    A new 4H-SiC lateral merged double Schottky (LMDS) rectifier with excellent forward and reverse characteristics

  • Author

    Singh, Yashvir ; Kumar, M. Jagadesh

  • Author_Institution
    Centre for Appl. Res. in Electron., Indian Inst. of Technol., New Delhi, India
  • Volume
    48
  • Issue
    12
  • fYear
    2001
  • fDate
    12/1/2001 12:00:00 AM
  • Firstpage
    2695
  • Lastpage
    2700
  • Abstract
    The novel characteristics of a new Schottky rectifier structure, known as the lateral merged double Schottky (LMDS) rectifier, on 4H-SiC are explored theoretically and compared with those of the compatible conventional 4H-SiC Schottky rectifiers. The anode of the proposed lateral device utilizes the trenches filled with a high barrier Schottky (HBS) metal to pinch off a low barrier Schottky (LBS) contact during reverse bids. Numerical simulation of any such SiC structure is complicated by the fact that the thermionic emission theory predicts the reverse leakage current to be orders of magnitude smaller than the measured data. We, therefore, first propose a simple empirical model for barrier height lowering to accurately estimate the reverse leakage current in a SiC Schottky contact. The accuracy of the empirical model is verified by comparing the simulated reverse leakage current with the reported experimental results on different SiC Schottky structures. Using the proposed empirical model, the two-dimensional (2-D) numerical simulations reveal that the new LMDS rectifier demonstrates about three orders of magnitude reduction in the reverse leakage current and two times higher reverse breakdown voltage when compared to the conventional lateral low barrier Schottky (LLBS) rectifier while keeping the forward voltage drop comparable to that of the conventional LLBS rectifier
  • Keywords
    Schottky diodes; leakage currents; numerical analysis; semiconductor device breakdown; semiconductor device models; semiconductor-metal boundaries; silicon compounds; solid-state rectifiers; wide band gap semiconductors; 2D numerical simulations; 4H-SiC Schottky rectifiers; SiC; SiC Schottky contact; barrier height lowering; breakdown analysis; device parameters; empirical model; forward voltage drop; high barrier Schottky metal; lateral merged double Schottky rectifier; reverse breakdown voltage; reverse leakage current; sharp PiN diode-like reverse blocking characteristic; Anodes; Breakdown voltage; Current measurement; Leakage current; Numerical simulation; Rectifiers; Schottky barriers; Silicon carbide; Thermionic emission; Two dimensional displays;
  • fLanguage
    English
  • Journal_Title
    Electron Devices, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9383
  • Type

    jour

  • DOI
    10.1109/16.974692
  • Filename
    974692