发明名称 LED white light source with remote photoluminescent reflecting converter
摘要 The proposed illuminator relates to white-light lamps based on LEDs with remote photoluminescent converters. The illuminator comprises a heat removing base with a radiation output orifice, and the LEDs secured near the periphery of the orifice, with, arranged in series at a distance from the a concave photoluminescent converter layer and a concave light reflector, wherein the converter layer's and light reflector's concavities are oriented towards the LED's and the opening. White light mix of the LEDs' and converter layer's radiation exits via the orifice. The converter layer and reflector may have the form of a truncated ellipsoid of revolution, in particular a sphere, or a paraboloid, with a main axis perpendicular to the plane of the orifice, or a cylinder truncated by the plane of the orifice. The outside reflector' surface may have ribbed heat radiators associated with the heat removing base.
申请公布号 US9136444(B2) 申请公布日期 2015.09.15
申请号 US201113976101 申请日期 2011.12.20
申请人 发明人 Ulasyuk Vladimir Nikolaevich
分类号 H01L33/00;H01L33/50;F21K99/00;C09K11/77;F21V7/04;F21V7/22;F21V7/00 主分类号 H01L33/00
代理机构 DeFillo & Associates, Inc. 代理人 DeFillo & Associates, Inc. ;DeFillo Evelyn A.
主权项 1. An illuminator comprising: a heat-removing base having a base surface, an aperture on the base surface dividing the base surface on a first end, a second end, a periphery, and angled edges formed near the periphery of the aperture; a primary radiation source including at least one light-emitting diode, the at least one light-emitting diode is located on the angled edge formed near the periphery of the aperture in the heat removing base; a reflector having a light reflective surface facing the at least one light-emitting diode, the light reflective surface having a concave shape; a radiation conversion layer located between the at least one light-emitting diode and the reflector, the radiation conversion layer having a concave surface facing the at least one light-emitting diode and a convex surface facing the reflector, the radiation conversion layer including photoluminescent phosphorous grains, the radiation conversion layer converts a first radiation emitted by the at least one light-emitting diode and into a second radiation; wherein: a first portion of the first radiation emitted by the at least one light-emitting diode reflects from the concave surface of the radiation conversion layer existing through the aperture of the heat-removing base; a second portion of the first radiation emitted by the at least one light-emitting diode is transformed into the second radiation by the photoluminescent phosphorous grains on the radiation conversion layer; a third portion of the first radiation emitted by the at least one light-emitting diode reaches the concave surface of the light reflective surface of the reflector, reflects back to the conversion layer, is partially absorbed by the photoluminescent phosphorous grains on the radiation conversion and exists through the aperture of the heat-removing base and mixing with the second radiation forming a white radiation.
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