Evaluation of a 0–60 kV oil-switched picosecond rise-time 5 nanosecond pulse generator
T. Huiskamp, E.J.M. van Heesch, A.J.M. Pemen
Abstract
T. Huiskamp, E.J.M. van Heesch, A.J.M. Pemen
Abstract
Summary form only given. In this paper we present the first implementation of our 0-60 kV picosecond rise-time 1-10 nanosecond pulse generator [1]. The pulse generator will be used in future work to generate a (sub)-nanosecond streamer plasma for air purification research. The first implementation of the pulse generator is a single line pulse generator with an oil spark-gap which generates 5 nanosecond pulses with a 200 picosecond rise-time and can operate at a repetition rate of 1 kHz into a 50 Ohm load. In this paper we evaluate its performance and describe how we measure the very short pulses with an integrated and calibrated D-dot sensor. Furthermore, we present detailed 3D EM simulations of both the 5 nanosecond pulse generator and the future adjustable 1-10 nanosecond pulse duration pulse generator.
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Summary form only given. In this paper we present the first implementation of our 0-60 kV picosecond rise-time 1-10 nanosecond pulse generator [1]. The pulse generator will be used in future work to generate a (sub)-nanosecond streamer plasma for air purification research. The first implementation of the pulse generator is a single line pulse generator with an oil spark-gap which generates 5 nanosecond pulses with a 200 picosecond rise-time and can operate at a repetition rate of 1 kHz into a 50 Ohm load. In this paper we evaluate its performance and describe how we measure the very short pulses with an integrated and calibrated D-dot sensor. Furthermore, we present detailed 3D EM simulations of both the 5 nanosecond pulse generator and the future adjustable 1-10 nanosecond pulse duration pulse generator.
Key concepts: Nanosecond, Pulse generator, Picosecond, Spark gap, Rise time, Pulse (music), Generator (circuit theory), Materials science