• DocumentCode
    1377702
  • Title

    A 10- \\Omega High-Voltage Nanosecond Pulse Generator

  • Author

    Merla, Caterina ; El Amari, Saad ; Kenaan, Mohamad ; Liberti, Micaela ; Apollonio, Francesca ; Arnaud-Cormos, Delia ; Couderc, Vincent ; Leveque, Philippe

  • Author_Institution
    XLIM Res. Inst., CNRS-Univ. of Limoges, Limoges, France
  • Volume
    58
  • Issue
    12
  • fYear
    2010
  • Firstpage
    4079
  • Lastpage
    4085
  • Abstract
    Devices used for biological experiments on cell cultures can present a low impedance. In this paper, a numerical and experimental characterization of a high-voltage, nanosecond-pulse, 10-Ω generator is proposed. The generator makes use of a combination of microstrip-line technology and laser-triggered photoconductive semiconductor switches that operate in the linear regime. A standard electroporation cuvette is used to load the generator. SPICE and finite-difference time-domain (FDTD) models of the whole setup (i.e., the generator and the cuvette) are developed. Numerical characterization is performed comparing SPICE analysis and FDTD simulations. Experimental characterization on a built prototype is carried out by means of a wideband frequency voltage sensor. A good level of consistency is obtained between the numerical and the experimental voltage intensities measured across the cuvette electrodes.
  • Keywords
    finite difference time-domain analysis; microstrip lines; photoconducting switches; pulse generators; FDTD models; SPICE analysis; cuvette electrodes; experimental voltage intensity; finite-difference time-domain model; high-voltage nanosecond pulse generator; laser-triggered photoconductive semiconductor switches; microstrip-line technology; resistance 10 ohm; standard electroporation cuvette; wideband frequency voltage sensor; Biology; Finite difference methods; Generators; Impedance; Integrated circuit modeling; SPICE; Time domain analysis; Electroporation cuvette; finite-difference time-domain (FDTD); high voltage; nanosecond generator; optical switches;
  • fLanguage
    English
  • Journal_Title
    Microwave Theory and Techniques, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9480
  • Type

    jour

  • DOI
    10.1109/TMTT.2010.2086470
  • Filename
    5634146