• DocumentCode
    78208
  • Title

    High Temperature Unclamped Inductive Switching Mode Evaluation of SiC JFET

  • Author

    Pushpakaran, Bejoy N. ; Hinojosa, Miguel ; Bayne, Stephen B. ; Veliadis, Victor ; Urciuoli, Damian ; El-Hinnawy, Nabil ; Borodulin, Pavel ; Gupta, Swastik ; Scozzie, Charles

  • Author_Institution
    Department of Electrical and Computer Engineering, Texas Tech University, Lubbock, TX, USA
  • Volume
    34
  • Issue
    4
  • fYear
    2013
  • fDate
    Apr-13
  • Firstpage
    526
  • Lastpage
    528
  • Abstract
    Silicon carbide (SiC) unipolar transistors are an efficient choice in the design of high temperature 1200 V switching power supplies and dc-dc converters. To reduce the form factor and increase the power density of the circuit, the switching frequency must be high. This intensifies the negative impact of parasitic inductance and results in high voltage spikes that can drive a switching device into breakdown, followed by rapid destruction. To study the device performance under unclamped inductive switching (UIS) conditions, a normally-ON 1200 V/13-A SiC junction field-effect transistor (JFET) is driven into punch through breakdown using a single pulse. The testing is performed using an UIS setup, in which energy initially stored in an inductor is discharged through the JFET. The testing comprises of 90 single pulses each at 25 ^{\\circ}{\\rm C} and 100 ^{\\circ}{\\rm C} case temperatures for different gate voltages and drain current values. The peak energy and power dissipated in the JFET are 621 mJ and 16 kW, respectively, at the rated 1200 V blocking voltage and 13-A drain current. The JFET triode breakdown characteristics are unchanged after 180 single-pulse switching events indicating the robust nature of the device under extreme breakdown conditions. In addition, the 621 mJ peak UIS energy and its corresponding 8871 {\\rm mJ/cm}^{2} density dissipated in the JFET are the highest reported for any SiC power device.
  • Keywords
    Breakdown voltage; Electric breakdown; JFETs; Logic gates; Silicon carbide; Temperature; Testing; 1200 V; high temperature; junction field-effect transistor (JFET); pulsed testing; silicon carbide (SiC); triode breakdown; unclamped inductive switching (UIS);
  • fLanguage
    English
  • Journal_Title
    Electron Device Letters, IEEE
  • Publisher
    ieee
  • ISSN
    0741-3106
  • Type

    jour

  • DOI
    10.1109/LED.2013.2247020
  • Filename
    6472803