Secondary Optical Design of LED Stage Lamps

Article Preview

Abstract:

High brightness and high power light emitting diode (LED) based lamps have been identified as one of the solutions for energy saving light sources in illumination. Owing to its high energy efficiency, high color rendering and long life, LED lamps are promising. However, it is important to design a secondary optical lens for the LED lamps to obtain good output efficiency and a good light distribution pattern. In this paper, we proposed and developed a secondary optical lens design blueprint for LED stage lamps. A cone lens for stage lamps was designed and the desired illumination was achieved. The design procedure of the cone lens is presented. The simulation of the stage lamps is carried out in Tracepro 7.0. The results show that the cone lens can rearrange the luminous flux accurately and reasonably. A stage lamp with a uniform and circular luminous flux distribution is obtained.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 756-759)

Pages:

4545-4548

Citation:

Online since:

September 2013

Authors:

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] Li Jian, Wang Kun, Wang Shiqing, Research in luminous efficacy of the mercury free plasma flat panel lamps, Nuclear Fusion and Plasma Physics, vol. 32, no. 1, 2012(3): 92-96.

Google Scholar

[2] Li Jian, Wang Kun, Wang Shiqing, Influence of He-Ar Penning process on the power SWP column, Vacuum, vol. 48, no. 5, 2011(9): 25-28.

Google Scholar

[3] Li Jian, Wang kun, Wang Shiqing, Flat Panel Ultrovilet Lamps by vehicle of Porous Alumina and ITO glass, 2nd International Conference on Electronic & Mechanical Engineering and Information Technology(EMEIT-2012): 1026-1029.

DOI: 10.2991/emeit.2012.223

Google Scholar

[4] Wang Kun, Li Jian, Wang Shiqing. Penning Effects on Characteristics of Surface Wave Sustained Plasma, Chinese Journal of Vacuum Science and Technology, vol. 29, no. 3, 2009(5): 264-267.

Google Scholar

[5] Wang kun, Li jian, Wang Shiqing, Optimization of Xenon Gas Discharge Flat Panel Lamps, Advanced Materials Research, vol. 571, 2012: 256-260.

DOI: 10.4028/www.scientific.net/amr.571.256

Google Scholar

[6] Wang Kun, Li Jian, Wang Shiqing. Research on the luminous efficiency of gas discharge flat panel lamps, Vacuum, vol. 49, no. 6, 2012(11): 85-88.

Google Scholar

[7] K Bando, K Sakano, Y Noguchi, Development of high-bright and pure-white LED lamps [J], Journal of Light & Visual Environment, 2008, 22(1): 2-5.

DOI: 10.2150/jlve.22.1_2

Google Scholar

[8] Koike. M, Shibata. N, Kato. H, Takahashi. Y, Development of high efficiency GaN-based multi-quantum-well light-emitting diodes and their applications [J], IEEE Photonics Society, 2002, 8(2): 271-277.

DOI: 10.1109/2944.999180

Google Scholar

[9] Ries H R, WINSTON R. Tailored edge-ray reflectors for illumination [J]. Journal of the Optical Society of America A, 1994, 11(4): 1260-1264.

DOI: 10.1364/josaa.11.001260

Google Scholar

[10] Ries H R. Tailoring freeform lenses for illumination [J]. SPIE, 2001, 4442: 43-50.

Google Scholar

[11] Guirao A, Manuel R, Artal P. Optical aberrations of the human cornea as a function of age [J]. Journal of the Optical Society of America A, 2000, 17(10): 1697-1702.

DOI: 10.1364/josaa.17.001697

Google Scholar

[12] Born M, Wolf E. Principles of optics [M]. 6th ed. Oxford: Pergamon Press, (1993).

Google Scholar

[13] Chen, Chen; Xianhui, Zhang, Design Secondary Optical System Applied in White-LED General Illumination, Journal of Physics: Conference Series, 2011, Volume 276, Issue 1: 012159-012166.

DOI: 10.1088/1742-6596/276/1/012159

Google Scholar

[14] Winston R. Nonimaging optics[J]. Scientific American, 1991, 264(3): 76-81.

Google Scholar