2012Unpublished venueRequires access

Generators and applicators for nanosecond pulsed electric field

Philippe Lévêque, Delia Arnaud‐Cormos

Open publisher page 6 citations

Abstract

This paper describes nanosecond electric pulse generator and applicator for biological experiment. For the generator, an optoelectronic switching embedded in a frozen wave generator is obtained in the linear regime. In this way, square electrical pulses with adjustable duration and monocycle nanosecond pulses with balanced or unbalanced positive and negative components are obtained. In biological experiments, these nsPEF generators are frequently coupled with a standard electroporation cuvette, 50-Ω matched, containing the biological sample. A numerical and experimental characterization of a 50-Ω applicator is presented.

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What this paper is about

This paper describes nanosecond electric pulse generator and applicator for biological experiment. For the generator, an optoelectronic switching embedded in a frozen wave generator is obtained in the linear regime. In this way, square electrical pulses with adjustable duration and monocycle nanosecond pulses with balanced or unbalanced positive and negative components are obtained. In biological experiments, these nsPEF generators are frequently coupled with a standard electroporation cuvette, 50-Ω matched, containing the biological sample. A numerical and experimental characterization of a 50-Ω applicator is presented.

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OpenAlex reports 6 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This paper describes nanosecond electric pulse generator and applicator for biological experiment. For the generator, an optoelectronic switching embedded in a frozen wave generator is obtained in the linear regime. In this way, square electrical pulses with adjustable duration and monocycle nanosecond pulses with balanced or unbalanced positive and negative components are obtained. In biological experiments, these nsPEF generators are frequently coupled with a standard electroporation cuvette, 50-Ω matched, containing the biological sample. A numerical and experimental characterization of a 50-Ω applicator is presented.

Key concepts: Nanosecond, Pulse generator, Cuvette, Electric field, Generator (circuit theory), Electroporation, Square wave, Materials science

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