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Correlated Color Temperature Tunable Multi-chip Light Emitting Diodes Light Source Design

Correlated Color Temperature Tunable Multi-chip Light Emitting Diodes Light Source Design
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摘要 One of the methods to derive white light from light emitting diodes(LEDs)is the multi-chip white LED technology,which mixes the light from red,green and blue LEDs.Introduced is an optimal algorithm for the spectrum design of the multi-chip white LEDs in this paper.It optimizes the selection of single color LEDs and drive current controlling,so that the multi-chip white LED achieves the target correlated color temperature(CCT),as well as high luminous efficacy and good color rendering.A CCT tunable LED light source with four high-power LEDs is realized based on the above optimal design.Test results show that it maintains satisfactory color rendering and stable luminous efficacy across the whole CCT tuning range.Finally,discussed are the design improvement and the prospect of the future applications of the CCT tunable LED light source. One of the methods to derive white light from light emitting diodes(LEDs) is the multi-chip white LED technology, which mixes the light from red, green and blue LEDs. Introduced is an optimal algorithm for the spectrum design of the multi-chip white LEDs in this paper. It optimizes the selection of single color LEDs and drive current controlling, so that the multi-chip white LED achieves the target correlated color temperature (CCT), as well as high luminous efficacy and good color rendering. A CCT tunable LED light source with four high-power LEDs is realized based on the above optimal design. Test results show that it maintains satisfactory color rendering and stable luminous efficacy across the whole CCT tuning range. Finally, discussed are the design improvement and the prospect of the future applications of the CCT tunable LED light source.
出处 《Semiconductor Photonics and Technology》 CAS 2008年第1期1-7,共7页 半导体光子学与技术(英文版)
基金 National High Technology Research and Development(863) Programof China(2006AA03A173)
关键词 LED light source CCT tunable luminous efficacy color rendering optimal design LED 光源 发光效率 颜色渲染 优化设计
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参考文献11

  • 1Nakamura S,Mukai T,Senoh M.Candela-class high-brightness InGaN/AlGaN double-heterostructure blue-light-emitting diodes[J].Appl.Phys.Lett.,1994,64(13):1 687-1 689.
  • 2Mueller-Mach R,Mueller G O.White light emitting diodes for illumination[A].Light-Emitting Diodes:Research,Manufacturing,and Applications IV[C].San Jose:SPIE,2000.30-41.
  • 3Steigerwald D A,Bhat J C,Collins D,et al.Illumination with solid state lighting technology[J].IEEE J.Sel.Top.Quantum Electron.,2002,8(2):310-320.
  • 4Tsao J.Solid-state lighting:opportunities and challenges[A].The 2nd China International Forum on Solid State Lighting[C].Xiamen,2005.
  • 5Ohno Y.Simulation analysis of white LED spectra and color rendering[A].LED Light Sources:Physical Measurement and Visual and Photobiological Assessment[C].Tokyo:CIE CB,2004.28-32.
  • 6Fryc I,Brown S W,Eppeldauer G P,et al.A spectrally tunable solid-state source for radiometric,photometric and colorimetric applications[A].Fourth International Conference on Solid State Lighting[C].Denver:SPIE,2004.150-159.
  • 7CIE.CIE No.15.2,Colorimetry,Second Edition[M].Vienna:CIE CB,1986.
  • 8CIE.CIE No.13.3,Method of Measuring and Specifying Colour Rendering of Light Sources,New edition[M].Vienna:CIE CB,1995.
  • 9Metz S,Maly R.Local correlation of current density,radiant emittance and temperature within GaAsP light-emitting diodes[J].Opt.Quant.Electron.,1974,6(2):141-151.
  • 10Mueller-Mach R,Mueller G O,Krames M R.High-power phosphor-converted light-emitting diodes based on III-Nitrides[J].IEEE J.Sel.Top.Quantum Electron.,2002,8(2):339-345.

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