• DocumentCode
    2583617
  • Title

    Application of thermoelectricity to IGBT for temperature regulation and energy harvesting

  • Author

    Tian, Yi ; Vasic, Dejan ; Lefebvre, Stephane

  • Author_Institution
    SATIE, UniverSud, Cachan, France
  • fYear
    2012
  • fDate
    28-31 May 2012
  • Firstpage
    211
  • Lastpage
    216
  • Abstract
    The internal junction temperature of an IGBT is the key element of confining life period of components. Meanwhile, during the IGBT works as a switch in a half bridge circuit, it usually arrives at a high temperature level about 150°C to 175°C, due to the accumulation of heat in the junction of IGBT. Thus, a large quantity of energy is lost in the form of heat. This paper focuses on the reduction of the internal junction temperature of the IGBT using a thermoelectric module (TEM), also known as thermoelectric generator (TEG), sitting between the IGBT component and heatsink. As an application of thermoelectric energy harvesting, this technique combines a cooling system equiped TEM for the IGBT and electrical energy harvesting. Moreover, for the optimal load, the maximum electrical harvest power arrives at 0.5 W. Finally, based on the experimental results on two comparable models, we could prove that the cooling system with the TEM reduces internal junction temperature of the IGBT by several degrees. Consequently, with this cooling system, the IGBT could work at a higher current and several electrical energy is harvested.
  • Keywords
    energy harvesting; heat sinks; insulated gate bipolar transistors; thermoelectric cooling; thermoelectricity; IGBT; TEM; cooling system; half bridge circuit; heatsink; internal junction temperature; power 0.5 W; temperature 150 degC to 175 degC; temperature regulation; thermoelectric energy harvesting; thermoelectric generator; thermoelectric module; thermoelectricity application; Cooling; Force; Heating; Insulated gate bipolar transistors; Junctions; Temperature measurement; Voltage measurement; Thermoelectric module (TEM); cooling system; energy harvesting; reducing temperature; thermoelectricity;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Industrial Electronics (ISIE), 2012 IEEE International Symposium on
  • Conference_Location
    Hangzhou
  • ISSN
    2163-5137
  • Print_ISBN
    978-1-4673-0159-6
  • Electronic_ISBN
    2163-5137
  • Type

    conf

  • DOI
    10.1109/ISIE.2012.6237086
  • Filename
    6237086