| Peer-Reviewed

Coil-EEFL Tubes as Unrivaled Light Source with Small Wcoil Over Solid Light Sources

Received: 16 July 2015     Accepted: 23 July 2015     Published: 6 August 2015
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Abstract

It has found that the active power consumption, Wcoil, of the single coil-EEFL tube that is not related with the energy for the generation of the lights, reduces to below 0.1 Wact of the commercial CCFL tube with the same brightness of the original CCFL tube. The coil-EEFL tubes allow the parallel connection with the single external AC driving circuit. ΣWcoil of 10 coil-EEFL tubes goes down to 0.03 ΣWact. The figure of the merit of the lighting devices is quantum efficiency ηq. The ηq of the FL tubes is the astronomical number that is 1013 visible photons per unit volume (m3) of Ar gas space per unit time (s) by one moving electron in the superconductive vacuum. The coil-EEFL tubes hold the unrivaled advantage with the power consumption and illuminance (lm m-2) over the solid LED lamps that have only ηq ≈ 0.5. A half of the injected electrons inevitably lose the energy by the Joule Heat.

Published in Science Research (Volume 3, Issue 4)
DOI 10.11648/j.sr.20150304.21
Page(s) 230-239
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2015. Published by Science Publishing Group

Keywords

Green Energy, Power Consumption, Light Source, FL Tube, PDP

References
[1] L. Ozawa and Y. Tian, “Coexistence of disparities of external AC driving circuit and internal DC electron circuit in operation of fluorescence tube”, J. China Ill. Engs. Soc., 6, 19-30, 2011
[2] L. Ozawa, “Development of prototype of coil-EEFL tubes”, Science Research, 3(4), pp 220-229, 2015
[3] F. M. Penning, “ Electrical discharges in gases, The Macmillan Company, New York, 1957
[4] J. F. Waymouth, “Electric Discharge Lamp”, MIT Press, 1971
[5] Handbook of “Electric Discharge lamps”, Japanese Institute of Electric Engineers, 1973
[6] American Vacuum society Classics, (1) The fundamental data on electrical discharge gases, (2) Field emission and field ionization, (3) Vacuum technology and space simulation, (4) The physical basics of ultrahigh vacuum, (5) Handbook of electron tube and vacuum techniques, (6) Vacuum sealing techniques, and (7) Ionized gases, American Institute of Physics, 1993
[7] L. Ozawa and Y. Tian, “A new 4G electron source for Fluorescent tubes, J. China Illu. Eng. Soc., 7, pp 58-65, 2012
[8] L. Ozawa and Y. Tian, “calculation of quantum efficiency of phosphor screens in CRTs and FL tubes, Korean J. Information display, 11, pp 128-133, 2010
[9] L. Ozawa, “Illuminance (lm m2) of compact 20W-HCFL tube”, Science Research, 3(4), pp 170-179, 2015.
[10] L. Ozawa, “illuminance of FL tubes controlled by depth of gap between positive column and phosphor screen”, Science Research, 3(2), pp 93-104, 2015
[11] L. Ozawa and T. Yakui, [Restriction of solid lighting sources in practical use], J. China Illu. Eng. Soc., 6, pp57-64, 2011
[12] L. Ozawa, “Figure 3-2 and Table 3-1 in Cathodoluminescence and Photoluminescence, theory and practical application”, CRC Press, Taylor & Francis, Group, Boca Raton, 2007
[13] L. Ozawa, “Cathodoluminescence”, Kodansha, Tokyo, Japan, 1990
[14] L. Ozawa and K. Oki, “307,200 pixels cm-2 resolution phosphor screen in monochrome CRT”, Materials chemistry and Physics, 60, 274-281, 1999
[15] L. Ozawa and M. Kato, “Coil-EEFL tube”, China Pat. 102,067,276, May 18, 2011; and Japan Pat. 4,923,110, Feb. 10, 2012
[16] L. Ozawa and Y. Tian, “Remarkable enhancement of luminance of coil-EEFL tubes setting in vacuum-sealed sheath tube”, J. China Ill. Engs. Soc., 8, 105-113, 2013.
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  • APA Style

    Lyuji Ozawa. (2015). Coil-EEFL Tubes as Unrivaled Light Source with Small Wcoil Over Solid Light Sources. Science Research, 3(4), 230-239. https://doi.org/10.11648/j.sr.20150304.21

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    ACS Style

    Lyuji Ozawa. Coil-EEFL Tubes as Unrivaled Light Source with Small Wcoil Over Solid Light Sources. Sci. Res. 2015, 3(4), 230-239. doi: 10.11648/j.sr.20150304.21

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    AMA Style

    Lyuji Ozawa. Coil-EEFL Tubes as Unrivaled Light Source with Small Wcoil Over Solid Light Sources. Sci Res. 2015;3(4):230-239. doi: 10.11648/j.sr.20150304.21

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  • @article{10.11648/j.sr.20150304.21,
      author = {Lyuji Ozawa},
      title = {Coil-EEFL Tubes as Unrivaled Light Source with Small Wcoil Over Solid Light Sources},
      journal = {Science Research},
      volume = {3},
      number = {4},
      pages = {230-239},
      doi = {10.11648/j.sr.20150304.21},
      url = {https://doi.org/10.11648/j.sr.20150304.21},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.sr.20150304.21},
      abstract = {It has found that the active power consumption, Wcoil, of the single coil-EEFL tube that is not related with the energy for the generation of the lights, reduces to below 0.1 Wact of the commercial CCFL tube with the same brightness of the original CCFL tube. The coil-EEFL tubes allow the parallel connection with the single external AC driving circuit. ΣWcoil of 10 coil-EEFL tubes goes down to 0.03 ΣWact. The figure of the merit of the lighting devices is quantum efficiency ηq. The ηq of the FL tubes is the astronomical number that is 1013 visible photons per unit volume (m3) of Ar gas space per unit time (s) by one moving electron in the superconductive vacuum. The coil-EEFL tubes hold the unrivaled advantage with the power consumption and illuminance (lm m-2) over the solid LED lamps that have only ηq ≈ 0.5. A half of the injected electrons inevitably lose the energy by the Joule Heat.},
     year = {2015}
    }
    

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  • TY  - JOUR
    T1  - Coil-EEFL Tubes as Unrivaled Light Source with Small Wcoil Over Solid Light Sources
    AU  - Lyuji Ozawa
    Y1  - 2015/08/06
    PY  - 2015
    N1  - https://doi.org/10.11648/j.sr.20150304.21
    DO  - 10.11648/j.sr.20150304.21
    T2  - Science Research
    JF  - Science Research
    JO  - Science Research
    SP  - 230
    EP  - 239
    PB  - Science Publishing Group
    SN  - 2329-0927
    UR  - https://doi.org/10.11648/j.sr.20150304.21
    AB  - It has found that the active power consumption, Wcoil, of the single coil-EEFL tube that is not related with the energy for the generation of the lights, reduces to below 0.1 Wact of the commercial CCFL tube with the same brightness of the original CCFL tube. The coil-EEFL tubes allow the parallel connection with the single external AC driving circuit. ΣWcoil of 10 coil-EEFL tubes goes down to 0.03 ΣWact. The figure of the merit of the lighting devices is quantum efficiency ηq. The ηq of the FL tubes is the astronomical number that is 1013 visible photons per unit volume (m3) of Ar gas space per unit time (s) by one moving electron in the superconductive vacuum. The coil-EEFL tubes hold the unrivaled advantage with the power consumption and illuminance (lm m-2) over the solid LED lamps that have only ηq ≈ 0.5. A half of the injected electrons inevitably lose the energy by the Joule Heat.
    VL  - 3
    IS  - 4
    ER  - 

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Author Information
  • Japanese Government licensed Consultant in Science, Changping Qu, Beijing, China

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