Programmable resonant and forced mode high-voltage RF generator for dielectric barrier discharge and quadrupole mass filter

Author:

Flaxer Eli12ORCID

Affiliation:

1. AFEKA–Tel-Aviv Academic College of Engineering , 69107 Tel-Aviv, Israel and , 69978 Tel-Aviv, Israel

2. School of Chemistry, Tel-Aviv University , 69107 Tel-Aviv, Israel and , 69978 Tel-Aviv, Israel

Abstract

Dielectric barrier discharge, originally called silent discharge, is the electrical discharge between two electrodes separated by an insulating dielectric barrier. A high-voltage alternating current is required to generate the discharge process. There are two major principles of operation to implement a high-voltage generator: resonant mode and forced mode. While operating in forced mode, the working frequency is forced by the user using internal electronic devices. On the other hand, in resonant mode, the operating frequency is determined by the resonant circuit, which includes the external capacitance, inductance, and resistance of the load. This work shows a flexible circuit based on a real-time digital signal processor and a full H-bridge that combines the two topologies and can be used as a controller for dielectric barrier discharge and a quadrupole mass filter with varying capacitance.

Publisher

AIP Publishing

Subject

General Physics and Astronomy

Reference30 articles.

1. Ueber die elektrostatische Induction und die Verzögerung des Stroms in Flaschendrähten

2. Dielectric-barrier discharges: Their history, discharge physics, and industrial applications;Plasma Chem. Plasma Process.,2003

3. A low-cost cold plasma generator circuits designed for laboratory applications,2022

4. Synthesized high-frequency thyristor for dielectric barrier discharge excimer lamps;IEEE Trans. Ind. Electron.,2012

5. Transformer-less current controlled driver for a dielectric barrier discharge lamp using HV silicon carbide (SiC) switching devices,2011

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