20132013 Abstracts IEEE International Conference on Plasma Science (ICOPS)Requires access

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

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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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What this paper is about

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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Available 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.

Key concepts: Nanosecond, Pulse generator, Picosecond, Spark gap, Rise time, Pulse (music), Generator (circuit theory), Materials science

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