Design of Mazzilli’s Zero Voltage Switching (ZVS) Circuit as Plasma Glow Discharge Generator

Purification water has several methods; one of them is the plasma generation. The circuit used to generate plasma is Zero Voltage Switching (ZVS), where its use uses the resonance circuit concept. The main category to generate plasma glow discharge is the circuit should generate high voltage output...

Full description

Bibliographic Details
Main Authors: Anisah Muthi’ah, Amien Rahardjo, Faiz Husnayain, Chairul Hudaya
Format: Article
Language:Indonesian
Published: Department of Electrical Engineering, Faculty of Engineering, Tanjungpura University 2020-10-01
Series:Elkha: Jurnal Teknik Elektro
Subjects:
Online Access:https://jurnal.untan.ac.id/index.php/Elkha/article/view/41769
_version_ 1818974166049619968
author Anisah Muthi’ah
Amien Rahardjo
Faiz Husnayain
Chairul Hudaya
author_facet Anisah Muthi’ah
Amien Rahardjo
Faiz Husnayain
Chairul Hudaya
author_sort Anisah Muthi’ah
collection DOAJ
description Purification water has several methods; one of them is the plasma generation. The circuit used to generate plasma is Zero Voltage Switching (ZVS), where its use uses the resonance circuit concept. The main category to generate plasma glow discharge is the circuit should generate high voltage output with a current range from 10-6 A to 1 A. In this study, when ZVS connected to the flyback converter with an input voltage of 12 V, the output values of 11 kV and 11 μA were obtained. In comparison, if ZVS was not connected to the flyback converter, the circuit is less stable, and the output value is weak because the output values only reach 8.97 kV and 8.97 μA. For maximum output, the ZVS circuit should be connected to the converter circuit due to the flyback converter can repair and strengthen the voltage. The flyback converter circuit is affected by the diode and capacitance effects. The effect of using capacitors in a flyback converter circuit is when the capacitance is too low, the ripple will form. Then when capacitance reaches a specific value, the ripple will decrease, and the voltage graph will approach a straight line. Hence the use of components in the ZVS and the flyback converter need to be considered because it affects how the release of plasma glow discharge will form.
first_indexed 2024-12-20T15:35:44Z
format Article
id doaj.art-aecbb0dd55a64bffa2b0c56b917c128b
institution Directory Open Access Journal
issn 1858-1463
2580-6807
language Indonesian
last_indexed 2024-12-20T15:35:44Z
publishDate 2020-10-01
publisher Department of Electrical Engineering, Faculty of Engineering, Tanjungpura University
record_format Article
series Elkha: Jurnal Teknik Elektro
spelling doaj.art-aecbb0dd55a64bffa2b0c56b917c128b2022-12-21T19:35:26ZindDepartment of Electrical Engineering, Faculty of Engineering, Tanjungpura UniversityElkha: Jurnal Teknik Elektro1858-14632580-68072020-10-0112211211810.26418/elkha.v12i2.4176930328Design of Mazzilli’s Zero Voltage Switching (ZVS) Circuit as Plasma Glow Discharge GeneratorAnisah Muthi’ah0Amien Rahardjo1Faiz Husnayain2Chairul Hudaya3Universitas IndonesiaUniversitas IndonesiaUniversitas IndonesiaUniversitas IndonesiaPurification water has several methods; one of them is the plasma generation. The circuit used to generate plasma is Zero Voltage Switching (ZVS), where its use uses the resonance circuit concept. The main category to generate plasma glow discharge is the circuit should generate high voltage output with a current range from 10-6 A to 1 A. In this study, when ZVS connected to the flyback converter with an input voltage of 12 V, the output values of 11 kV and 11 μA were obtained. In comparison, if ZVS was not connected to the flyback converter, the circuit is less stable, and the output value is weak because the output values only reach 8.97 kV and 8.97 μA. For maximum output, the ZVS circuit should be connected to the converter circuit due to the flyback converter can repair and strengthen the voltage. The flyback converter circuit is affected by the diode and capacitance effects. The effect of using capacitors in a flyback converter circuit is when the capacitance is too low, the ripple will form. Then when capacitance reaches a specific value, the ripple will decrease, and the voltage graph will approach a straight line. Hence the use of components in the ZVS and the flyback converter need to be considered because it affects how the release of plasma glow discharge will form.https://jurnal.untan.ac.id/index.php/Elkha/article/view/41769flyback converter, glow discharges, zvs
spellingShingle Anisah Muthi’ah
Amien Rahardjo
Faiz Husnayain
Chairul Hudaya
Design of Mazzilli’s Zero Voltage Switching (ZVS) Circuit as Plasma Glow Discharge Generator
Elkha: Jurnal Teknik Elektro
flyback converter, glow discharges, zvs
title Design of Mazzilli’s Zero Voltage Switching (ZVS) Circuit as Plasma Glow Discharge Generator
title_full Design of Mazzilli’s Zero Voltage Switching (ZVS) Circuit as Plasma Glow Discharge Generator
title_fullStr Design of Mazzilli’s Zero Voltage Switching (ZVS) Circuit as Plasma Glow Discharge Generator
title_full_unstemmed Design of Mazzilli’s Zero Voltage Switching (ZVS) Circuit as Plasma Glow Discharge Generator
title_short Design of Mazzilli’s Zero Voltage Switching (ZVS) Circuit as Plasma Glow Discharge Generator
title_sort design of mazzilli s zero voltage switching zvs circuit as plasma glow discharge generator
topic flyback converter, glow discharges, zvs
url https://jurnal.untan.ac.id/index.php/Elkha/article/view/41769
work_keys_str_mv AT anisahmuthiah designofmazzilliszerovoltageswitchingzvscircuitasplasmaglowdischargegenerator
AT amienrahardjo designofmazzilliszerovoltageswitchingzvscircuitasplasmaglowdischargegenerator
AT faizhusnayain designofmazzilliszerovoltageswitchingzvscircuitasplasmaglowdischargegenerator
AT chairulhudaya designofmazzilliszerovoltageswitchingzvscircuitasplasmaglowdischargegenerator