DEVELOPMENT OF ELECTRIC CHARGE GENERATOR BY APPLIED PULSE HIGH INTENSITY ELECTRIC FIELD
This research was presented the development of electric charge generator by applied pulse high intensity electric field. The power supply based on fly back converter comprises of a pulse generator using IC#MB3579 on the output high voltage adjustment by switching frequency adjustment at 50 Hz by usi...
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Format: | Article |
Language: | English |
Published: |
Politehnium Publishing House
2019-09-01
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Series: | European Journal of Materials Science and Engineering |
Subjects: | |
Online Access: | http://ejmse.tuiasi.ro/articles/EJMSE_04_03_02_Ketkaew.pdf |
Summary: | This research was presented the development of electric charge generator by applied pulse high intensity electric field. The power supply based on fly back converter comprises of a pulse generator using IC#MB3579 on the output high voltage adjustment by switching frequency adjustment at 50 Hz by using IC#TLP250 for ground isolator and signal expanding to Power MOSFET#IRFP450 driving to control high voltage transformer to generate 1 kV, 2 kV and 3 kV by using electrode cell (high intensity non-uniform electric field cell) for generate electric charge. The results showed that, when the adjustable high voltage increases the intensity of electric field, resulting in increased production of electric charge and increased respectively. The testing of electric charge quantity measuring will observation at high voltage 1 kV electric field intensity equal 5 kV/cm enables generate electric charge +1.25 kV and -1.19 kV, high voltage 2 kV electric field intensity equal 10 kV/cm enables generate electric charge +2.17 kV and -2.33 kV and high voltage 3 kV electric field intensity equal 15 kV/cm enables generate electric charge +3.37 kV and -3.15 kV. The developed in this research are design and develop of circuit generate pulse high voltage can produce positive and negative high voltage waveforms. By the power to the electric field cell by the principle of high non-uniform electric field (high intensity electric field) for application. The guidelines of this development will make the quantity of electric charge can produce both positive and negative electric charge are more quantity than the original. Therefore, this research can develop an applied research industry and innovation for commercial in the future. |
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ISSN: | 2537-4338 2537-4346 |