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Journal Radioengineering №6 for 2017 г.
Article in number:
Modeling of energy dissipation in thin-film electroluminescent indicator
Type of article: scientific article
UDC: 621.396.6.011.712
Authors:

M.K. Samokhvalov – Dr. Sc. (Phys.-Math.), Professor, Head of Department «Electronic Instrumentation Design and Technology», Ulyanovsk State Technical University E-mail: sam@ulstu.ru

M.O. Takhtenkova – Ph. D. (Eng.), Senior Research Scientist, Research Division, Ulyanovsk Institute of Civil Aviation named after B.P. Bugaev

E-mail: pites@ulstu.ru 

Abstract:

A study of the processes of scattering power in the thin-film electro-luminescent capacitor with series resistor, when exposed to alternating pulse voltage, was performed. Mathematical calculation of active power dissipation, the average electrical power dissipation in thin-film electroluminescent capacitor and series resistor in one period and the efficiency of power consumption in the condenser in the composition of the indicator control circuit was produced on the basis of obtained by the authors of the ratios. Use of estimates the power consumption of surface and volume charts helped to define requirements for the parameter values of the circuit elements of the control indicators based on thin-film electroluminescent capacitor for different modes of excitation.

References
  1. Samoxvalov M.K. E'lementy' i ustrojstva optoe'lektroniki. Izd. 2-e, pererab. i dop. Ul'yanovsk: UlGTU. 2015. 223 s.
  2. Technology. Thin Film Electroluminescent Displays // Beneq Products Oy. Finland. 2013. URL=http://lumineq.com/en/technology.
  3. King C.N. Electroluminescent displays // Journal of the SID. Planar Systems, Inc., Beaverton. USA. 2003. P. 33−44.
  4. EL-Tonkoplenochny'e e'lektrolyuminesczentny'e displei // ZAO «Favorit – e'lektronnaya kompaniya».  2010. URL = http://www.favoritec.ru/files/catalog/lcd/EL_Catallogue.pdf.
  5. Green P.,      Trover T.            Transparent         Electroluminescent (EL)       Displays //          Planar     Systems, Inc. URL = http://www.planarembedded.com/whitepapers/assets/TFEL-Comparison 12-07.pdf.
  6. Samoxvalov M.K. E'lektricheskoe modelirovanie tonkoplenochny'x e'lektrolyuminesczentny'x izluchatelej // Mikroe'lektronika. 1994. T. 23. № 1. S. 70−75.
  7. Samoxvalov M.K. Tonkoplenochny'e e'lektrolyuminesczentny'e istochniki izlucheniya. Ul'yanovsk: UlGTU. 1999. 117 s.
  8. Mishin A.I., Samoxvalov M.K. Matematicheskoe modelirovanie proczessov rasseyaniya e'nergii v tonkoplenochny'x e'lektrolyuminesczentny'x kondensatorax / Pod nauch. red. M.K. Samoxvalova. Ul'yanovsk: UlGTU. 2008. 85 s.
  9. Samokhvalov M.K., Ryabinov E.B. Energy dissipation in thin-film electroluminescent structure // Journal of Applied Spectroscopy. 1994. T. 58. № 5−6. P. 381−384.
  10. Samoxvalov M.K., Taxtenkova M.O. Vol't-yarkostny'e xarakteristiki e'lektrolyuminesczentny'x plenok ZnS:Mn // Izvestiya VUZov. Ser. E'lektronika. 2009. № 5. S. 3−6.
  11. Samoxvalov M.K., Mishin A.I. Rasseyanie tepla pri impul'snom vozbuzhdenii tonkoplenochny'x e'lektrolyuminesczentny'x kondensatorov // Proektirovanie i texnologiya e'lektronny'x sredstv. 2009. № 1. S. 62−64.
  12. Samoxvalov M.K., Taxtenkova M.O. Matematicheskoe modelirovanie perexodny'x e'lektricheskix proczessov v TPE'LK s posledovatel'ny'm rezistorom czepi v sxemax upravleniya indikatorami // Izvestiya VUZov. Povolzhskij region. Ser. Texnicheskie nauki. 2011. № 1(17). S. 175−186.
  13. Lapchik M.P., Ragulina M.I., Xenner E.K. Chislenny'e metody' / Pod redakcziej M.P. Lapchika. M.: Izdatel'skij czentr «Akademiya». 2004. 384 s.
Date of receipt: 17 мая 2017 г.