• DocumentCode
    2056229
  • Title

    Investigation and Improvement of high performance planar IGBT

  • Author

    Zhang, Fei ; Zhang, Liang ; Li, Chengfang ; Shi, Lina ; Yu, Wen ; Wang, Wei ; Sun, Xiaowei

  • Author_Institution
    Dept. of Phys., Wuhan Univ., Wuhan
  • fYear
    2006
  • fDate
    18-21 Jan. 2006
  • Firstpage
    792
  • Lastpage
    796
  • Abstract
    In this paper, for the first time, an insulated gate bipolar transistor with an improved buffer is proposed to improve the IGBT losses. The structure of the proposed device is almost identical with that of the conventional IGBT, except for the buffer layer which is formed by employing a very highly doped stripped n+ and a weakly doped n" structure. Compared with the conventional PT-IGBT, the proposed device exhibits a better trade-off relation between the conduction and switching losses. An interesting feature of the improved IGBT is that its on- resistance(on-state losses) can be largely decreased at the expenditure of a moderate and neglectable increase in turn-off time. The weakly doped n" buffer region leads to a high injection efficiency anode providing an optimum level of conductivity modulation required for a given on-state voltage drop in the n- drift region, while the very highly doped n+ buffer region results in a low injection anode accelerating the device turn-off. Detailed physical mechanisms are given.
  • Keywords
    electric potential; insulated gate bipolar transistors; power semiconductor devices; conduction losses; conductivity modulation; device turn-off; drift region; high injection efficiency anode; high performance planar IGBT; improved buffer; insulated gate bipolar transistor; on-resistance; on-state losses; on-state voltage drop; power electronics; switching losses; turn-off time; weakly doped buffer region; Anodes; Buffer layers; Charge carrier processes; Conductivity; Insulated gate bipolar transistors; Performance loss; Spontaneous emission; Switching loss; Systems engineering and theory; Threshold voltage; better trade-off; insulated gate bipolar transistor; novel buffer; power device;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nano/Micro Engineered and Molecular Systems, 2006. NEMS '06. 1st IEEE International Conference on
  • Conference_Location
    Zhuhai
  • Print_ISBN
    1-4244-0139-9
  • Electronic_ISBN
    1-4244-0140-2
  • Type

    conf

  • DOI
    10.1109/NEMS.2006.334897
  • Filename
    4135070