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Light fixture using near UV solid state device and remote semiconductor nanophosphors to produce white light

机译:使用近紫外固态器件和远程半导体纳米荧光粉产生白光的灯具

摘要

For general lighting applications, a semiconductor chip produces near ultraviolet (UV) electromagnetic energy in a range of 380-420 nm, e.g. 405 nm. Semiconductor nanophosphors, typically doped semiconductor nanophosphors, are remotely positioned in an optic of a light fixture. Each phosphor is of a type or configuration that when excited by energy in the 380-420 nm range, emits light of a different spectral characteristic. The nanophosphors together produce light in the fixture output that is at least substantially white and has a color rendering index (CRI) of 75 or higher. In some examples, the fixture optic includes an optical integrating cavity. In the examples using doped semiconductor nanophosphors, the visible white light output exhibits a color temperature in one of the following ranges along the black body curve: 2,725±145° Kelvin; 3,045±175° Kelvin; 3,465±245° Kelvin; and 3,985±275° Kelvin.
机译:对于一般的照明应用,半导体芯片产生在380-420nm范围内的近紫外(UV)电磁能,例如。 405纳米半导体纳米磷光体,通常是掺杂的半导体纳米磷光体,被远程地定位在灯具的光学器件中。每种磷光体的类型或构型在被380-420 nm范围内的能量激发时,会发出具有不同光谱特征的光。纳米磷光体一起在灯具输出中产生至少基本上为白色的光,并且显色指数(CRI)为75或更高。在一些示例中,固定光学器件包括光学集成腔。在使用掺杂的半导体纳米磷光体的示例中,可见白光输出沿黑体曲线显示的色温为以下范围之一:2,725±145°开尔文; 3,045±175°开氏度; 3,465±245°开氏度;和3,985±275°开尔文。

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