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    • 30. 发明申请
    • EFFICIENT LED-BASED ILLUMINATION MODULES WITH HIGH COLOR RENDERING INDEX
    • 高效彩色渲染指标的基于LED的照明模块
    • US20150184813A1
    • 2015-07-02
    • US14582884
    • 2014-12-24
    • Xicato, Inc.
    • Gerard HarbersRaghuram L.V. PetluriHong Luo
    • F21K99/00F21V9/16F21V9/08
    • F21K9/64C09K11/0883C09K11/7728C09K11/7774F21V9/30F21Y2115/10H05B33/14
    • An illumination module emits light from at least one light emitting diode (LED) with a peak wavelength between 380 nanometers and 460 nanometers that is converted to a second colored light by interaction with at least four different photo-luminescent materials in a light conversion sub-assembly. A first photo-luminescent material has a peak emission at a wavelength that is within 55 nanometers of the peak wavelength of the light emitted from the LED. A second photo-luminescent material has a peak emission at a wavelength greater than 650 nanometers. A third photo-luminescent material has a peak emission at a wavelength that is more than 20 nanometers greater than the peak emission wavelength of the first photo-luminescent material. A fourth photo-luminescent material has a peak emission at a wavelength that is at least 20 nanometers less than the second photo-luminescent material.
    • 照明模块从至少一个发光二极管(LED)发射光,其峰值波长在380纳米和460纳米之间,通过与光转换子系统中的至少四种不同的光致发光材料相互作用而转换成第二色光, 部件。 第一光致发光材料在从LED发出的光的峰值波长的55纳米以内的波长处具有峰值发射。 第二光致发光材料在波长大于650纳米时具有峰值发射。 第三光致发光材料在比第一光致发光材料的峰值发射波长大20纳米的波长处具有峰值发射。 第四光致发光材料在比第二光致发光材料小至少20纳米的波长处具有峰值发射。