DocumentCode
26299
Title
Design of Optical Module With High Stability, High Angular Color Uniformity, and Adjustable Light Distribution for Standard Lamps
Author
Yu-Yu Chang ; Zi-Yan Ting ; Ching-Yi Chen ; Tsung-Hsun Yang ; Ching-Cherng Sun
Author_Institution
Dept. of Opt. & Photonics, Nat. Central Univ., Jhongli, Taiwan
Volume
10
Issue
3
fYear
2014
fDate
Mar-14
Firstpage
223
Lastpage
227
Abstract
In the paper, an optical design for a standard light source is proposed and demonstrated to perform high stability, high angular CCT (correlated color temperature) uniformity, and adjustable light pattern from a Lambertian-like pattern to a narrow light pattern with a full-width at half-maximum (FWHM) angle of 60 °. The optical module contains a color-mixing cylinder, a diffuser, and an absorbed cylinder. The simulation well predicts the corresponding measurements and the angular CCT deviation can be kept a certain low level, which is much lower than a general phosphor converted white LED. In addition, we apply a pcW-LED of CREE XML as the light source to the optical module to show the general adoptability of the optical module. The measurement shows that the similar behavior, with adjustable light pattern from 120 ° to 60 °. In addition, the angular correlated color temperature deviation (ACCTD) is always kept an extremely low level.
Keywords
LED lamps; optical design techniques; stability; CREE XML; Lambertian-like pattern; absorbed cylinder; adjustable light distribution; color-mixing cylinder; correlated color temperature; diffuser; high angular color uniformity; high stability; narrow light pattern; optical module design; pcW-LED; standard lamps; standard light source; Color; Light emitting diodes; Light sources; Optical design; Stability analysis; Standards; Thermal stability; Fluorescent and luminescent materials; light-emitting diodes (LEDs); wavelength conversion devices;
fLanguage
English
Journal_Title
Display Technology, Journal of
Publisher
ieee
ISSN
1551-319X
Type
jour
DOI
10.1109/JDT.2013.2294962
Filename
6684299
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