PDF Печать E-mail


DOI: https://doi.org/10.15407/techned2016.04.047

THE MAIN TRENDS OF SEMICONDUCTOR MAGNETIC-PULSE GENERATORS

Journal Tekhnichna elektrodynamika
Publisher Institute of Electrodynamics National Academy of Science of Ukraine
ISSN 1607-7970 (print), 2218-1903 (online)
Issue № 4, 2016 (July/August)
Pages 47 – 49

 

Authors
V.I. Zozulev1, D.A. Sholokh1, V.V. Kobylchak1, A.I. Khristo2
1 – Institute of Electrodynamics National Academy of Science of Ukraine,
pr. Peremohy, 56, Kyiv-57, 03680, Ukraine,
e-mail: Этот e-mail адрес защищен от спам-ботов, для его просмотра у Вас должен быть включен Javascript
2 – Institute of Pulses Processes and Technologies of National Academy of Science of Ukraine,
pr. Zhovtnevyi, 43-A, Mykolayiv, 54018, Ukraine

 

Abstract

The results of research and systematization of publications, which summarize the main trends in the further development of modern high-voltage semiconductor magnetic-pulse generators in the nanosecond range are set out. The main new and specific nodes of generators that determine the improved performance was considered. Seven main trends in the development of semiconductor magnetic-pulse generator was formulated. References 10, figures 5.

 

Key words: semiconductor magnetic-pulse generator, impulse-compression node.

 

Received:    03.02.2016
Accepted:     11.04.2016
Published:   21.06.2016

 

References

1. Vexler G.S. Power supply special equipment.  Kyiv: Vyshcha Shkola, 1975.  376 p. (Rus)
2. Volkov I.V., Zozulev V.I., Spirin V.M., Sholokh D.O. Features of formation pulses in matching nodes of magnetic semiconductor generators. Tekhnichna Elektrodynamika.  2012.  No 2.  P. 73-74. (Rus)
3. Volkov I.V., Zozulev V.I., Sholokh D.O. Push-pull magnetic semiconductor pulse generators: principles of construction and basic processes. Pratsi Instytutu Elekrodynamiky Natsionalnoi Akademii Nauk Ukrainy.  2012.  No 32.  P. 76-82. (Rus)
4. Pereverzev A.V., Semenov V.V., Lytvynenko T.G. The high-voltage nanosecond generator with a tripling of voltage in the cell of magnetic compression. Tekhnichna Elektrodynamika. Problemy suchasnoi elektrotekhniky.  2006.  Part. 2.  P. 13-18. (Rus)
5. Khrysto A.I., Zozulev V.I., Sholokh D.O. Numerical simulation of electromagnetic processes in the scheme of magnetic pulse generator. Tekhnichna Elektrodynamika.  2014.  No 2.  P. 76-79. (Rus)
6. Bluhm H. Pulsed Power Systems, Principles and Applications.  Germany: Springer-Verlag, 2006.  326 p.
7. Fedorov K.V., Fedorov V.F., Gubarev F.A., Evtushenko G.S. Long-pulse copper bromide laser. 15th International Conference of Young Specialists on Micro/Nanotechnologies and Electron Devices (EDM). Russian Federation, Altai.  2014.  P. 333-336. DOI:  https://doi.org/10.1109/EDM.2014.6882542
8. Nakhe S.V., Rajanikanth B.S., Bratnagar R. Energy deposition studies in a copper vapor laser under different pulse excitation schemes. Measurement Science and Technology.  2003.  No 14.  P. 608.
9. Pokryvailo A., Wolf M., Yankelevich Y., Wald S., Grabowski L.R., E.M. van Veldhuizen, Rutgers W.R., Reiser M., Glocker B., Eckhardt T., Kempenaers P., Welleman A. High-Power Pulsed Corona for Treatment of Pollutants in Heterogeneous Media. IEEE Transactions on Plasma Science.  2006.  34(5).  P. 1731-1743. DOI: https://doi.org/10.1109/TPS.2006.881281
10. Vasilev P.V., Lyubutin S.K., Pedos M.S., Ponomarev A.V., Rukin S.N., Sabitov A.K., Slovikovskii B.G., Timoshenkov S.P., Tsyranov S.N., Cholakh S.O. A SOS-Generator for technological applications. Electronics And Radio Engineering Instruments and Experimental Techniques.  2011.  Vol. 54.  No 1. P. 54-60. DOI: https://doi.org/10.1134/S0020441211010118

 

PDF