科技报告详细信息
Innovative Development of Next Generation and Energy Efficient Solid State Light Sources for General Illumination
Ferguson, Ian
Georgia Tech Research Corporation
关键词: Wavelengths;    Illuminance;    Phosphors;    Light Emitting Diodes;    32 Energy Conservation, Consumption, And Utilization;   
DOI  :  10.2172/917205
RP-ID  :  None
RP-ID  :  FC26-03NT41954
RP-ID  :  917205
美国|英语
来源: UNT Digital Library
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【 摘 要 】

This two year program resulted in a novel broadband spectrally dynamic solid state illumination source (BSDLED) that uses a dual wavelength light emitting diode (LED) and combinations of phosphors to create a broadband emission that is real-time controllable. Four major focuses of this work were as follows: (1) creation of a two terminal dual wavelength LED with control of the relative intensities of the two emission peaks, (2) bandgap modeling of the two terminal dual LED to explain operation based on the doping profile, (3) novel use of phosphor combinations with dual LEDs to create a broadband spectral power distribution that can be varied to mimic a blackbody radiator over a certain range and (4) investigation of novel doping schemes to create tunnel junctions or equivalent buried current spreading layers in the III-nitrides. Advances were achieved in each of these four areas which could lead to more efficient solid state light sources with greater functionality over existing devices. The two-terminal BSDLED is an important innovation for the solid-state lighting industry as a variable spectrum source. A three-terminal dual emitter was also investigated and appears to be the most viable approach for future spectrally dynamic solid state lighting sources. However, at this time reabsorption of emission between the two active regions limits the usefulness of this device for illumination applications.

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