Progress in Development and Applications of Pulsed Power Devices at the University of Texas at Dallas
F. Davanloo, C. B. Collins, F.J. Agee
Abstract
F. Davanloo, C. B. Collins, F.J. Agee
Abstract
The generic concept for ultra-fast pulsers at the University of Texas at Dallas (UTD) employs a Blumlein based pulse forming system commutated by a fast switching device. Characterization studies of these pulsers have been extensively performed. They are capable of producing high power waveforms with risetimes and repetition rates in the range of 0.1-20 ns and 1-1000 Hz, respectively, using a conventional thyratron, spark gap, or photoconductive switch. In this report we have explored the pulser characteristics and impedance parameter space in our modulator pulse forming lines in order to develop a reliable pulser capable of generating intense ultra- wideband (UWB) electric fields with nanosecond durations for applications in the field of Bioelectrics.
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The generic concept for ultra-fast pulsers at the University of Texas at Dallas (UTD) employs a Blumlein based pulse forming system commutated by a fast switching device. Characterization studies of these pulsers have been extensively performed. They are capable of producing high power waveforms with risetimes and repetition rates in the range of 0.1-20 ns and 1-1000 Hz, respectively, using a conventional thyratron, spark gap, or photoconductive switch. In this report we have explored the pulser characteristics and impedance parameter space in our modulator pulse forming lines in order to develop a reliable pulser capable of generating intense ultra- wideband (UWB) electric fields with nanosecond durations for applications in the field of Bioelectrics.
Key concepts: Blumlein Pair, Thyratron, Electrical engineering, Pulsed power, Pulse generator, Nanosecond, Spark gap, Waveform