Loss of the Emission Power in LEDs

Cover Page

Cite item

Full Text

Open Access Open Access
Restricted Access Access granted
Restricted Access Subscription Access

Abstract

A classification of the radiation power losses of the LED active layer is proposed based on the analysis of the known literature data and the structure of structurally designed LEDs. Active and passive power losses are distinguished. Passive radiation power losses do not affect changes in the quantum yield of the active (working) layer of an LED and/or the forward branch of the volt–ampere characteristic, but they can be detected as anomalies in the LED lighting characteristics. A method for determining the passive power losses of radiation from the active layer of LEDs is proposed. Using the example of IR LEDs fabricated on the basis of AlGaAs heterostructures, the effectiveness of controlling passive losses of the LED emission power in the study of their operational properties is shown.

About the authors

A. V. Gradoboev

Tomsk National Research Polytechnic University

Email: gava@tpu.ru
634050, Tomsk, Russia

K. N. Orlova

National Research Nuclear University MEPhI

Email: KNOrlova@mephi.ru
115409, Moscow, Russia

F. F. Zhamaldinov

Tomsk National Research Polytechnic University

Author for correspondence.
Email: KNOrlova@mephi.ru
634050, Tomsk, Russia

References

  1. Bergh A.A., Dean P.J. Light-emitting diodes. Oxford: Clarendon Press, 1976.
  2. Коган Л.М. Полупроводниковые светоизлучающие диоды. М.: Энергоатомиздат, 1983.
  3. Шуберт Ф. Светодиоды. М.: Физматлит, 2008.
  4. Eliashevich I., Dcbray J., Tran C.A., Venugopalan H., Karlicck Jr. F.R. // Proc. ot SPIE Light-Emitting Diodes: Research. Manufacturing, and Applications IV. 2000. V. 3938. https://doi.org/10.1117/12.382815
  5. Stockman S.A., Walter Yao H., Schubert E.F. // Proc. of SPIE Light-Emitting Diodes: Research, Manufacturing, and Applications VIII. 2004. V. 5366. https://doi.org/10.1117/12.528938
  6. Холгер Проcc (Holger Pross) // Современная светотехника. 2010. № 5. С. 47.
  7. Gradoboev A.V., Simonova A.V., Orlova K.N. // Physica Status Solidi (C). 2016. V. 13. № 10–12. P. 895. https://doi.org/10.1002/pssc.201600035
  8. Shailesh K.R., Ciji P.K., Savitha G.K. // International Journal of Semiconductor Science & Technology. 2012. V. 3. № 1. P. 43. https://doi.org/10.1109/ICETEEEM.2012.6494509
  9. Orlova K., Gradoboev A.V., Simonova A. // International Journal of Emerging Technology and Advanced Engineering. 2022. V. 12. P. 100. https://doi.org/10.46338/ijetae0222_12
  10. Gradoboev A.V., Orlova K.N. // IOP Conference Series: Materials Science and Engineering. 2015. V. 81. № 1. P. 012008. https://doi.org/10.1088/1757-899X/81/1/012008
  11. Aliyu Y.H., Morgan D.V., Thomas H., Bland S.W. // Electronics Letters. 1995. V. 31. Issue19. P. 1691. https://doi.org/10.1049/el:19951132
  12. Chin A.K., Zydzik G., Singh S., van Uitert L.G., Minneci G. // Journal of Vacuum Science & Technology B: Microelectronics Processing and Phenomena. 1983. V. 1. Issue 1. P. 72.
  13. Gessmann T., Schubert E.R., Graff J.W., Streubel K., Kamutsch C. // IEEE Electron Device Letters. 2003. V. 24. Issue 11. P. 683. https://doi.org/10.1109/LED.2003.817386
  14. Lee Y.C., Lee C.E., Kuo H.C., Lu T.C., Wang S.C. // IEEE Photonics Technology Letters. 2008. V. 20. Issue 5. P. 369. https://doi.org/10.1109/LPT.2008.2010903
  15. Suzuki T., Matsumoto Y. // Applied Physics Letters. 1975. V. 26. № 8. P. 431. https://doi.org/0.1063/1.88226
  16. Ishida K., Kamejima T., Matsui J. // Applied Physics Letters. 1977. V. 31. № 6. P. 397.
  17. Chin A.K., Zipfel C.L., Chin B.H., DiGiuseppe M.A. // Applied Physics Letters. 1983. V. 42. № 12. P. 1031. https://doi.org/10.1063/1.93831
  18. Chand N., Chu S.N.G. // Applied Physics Letters. 1991. V. 58. № 1. P. 74.
  19. Lester S.D., Ponce R.A., Craford M.G., Steigerwald D.A. // Applied Physics Letters. 1995. V. 66. № 10. P. 1249. https://doi.org/10.1063/1.113252
  20. Hino T., Tomiya S., Miyajima T., Yanashima K., Hashimoto S., Ikeda M. // Applied Physics Letters. 2000. V. 76. № 23. P. 3421. https://doi.org/10.1063/1.126666
  21. Градобоев А.В., Орлова К.Н., Симонова А.В., Сед-нев В.В. // ПТЭ. 2021. № 5. С. 90. https://doi.org/10.31857/S0032816221040157

Supplementary files

Supplementary Files
Action
1. JATS XML
2.

Download (35KB)
3.

Download (34KB)
4.

Download (40KB)
5.

Download (69KB)
6.

Download (26KB)
7.

Download (73KB)
8.

Download (33KB)

Copyright (c) 2022 А.В. Градобоев, К.Н. Орлова, Ф.Ф. Жамалдинов