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    • 1. 发明申请
    • SOLID STATE LIGHTING DEVICE WITH IMPROVED HEATSINK
    • 具有改进的HEATSINK的固态照明装置
    • WO2011016929A1
    • 2011-02-10
    • PCT/US2010/040479
    • 2010-06-29
    • CREE, INC.PICKARD, Paul, KennethMEDENDORP, Nicholas, W.
    • PICKARD, Paul, KennethMEDENDORP, Nicholas, W.
    • F21V29/00F21V17/00
    • F21V29/004F21K9/23F21V7/0025F21V23/006F21V29/505F21V29/677F21V29/70F21V29/83F21V29/85F21Y2115/10
    • A solid state lighting device includes a device-scale stamped heatsink with a base portion and multiple segments or sidewalls projecting outward from the base portion, and dissipates all steady state thermal load of a solid state emitter to an ambient air environment. The heatsink is in thermal communication with one or more solid state emitters, and may define a cup-like cavity containing a reflector. At least a portion of each one sidewall portion or segment extends in a direction non-parallel to the base portion. A dielectric layer and at least one electrical trace may be deposited over a metallic sheet to form a composite sheet, and the composite sheet may be processed by stamping and/or progressive die shaping to form a heatsink with integral circuitry. At least some segments of a heatsink may be arranged to structurally support a lens and/or reflector associated with a solid state lighting device.
    • 固态照明装置包括具有基部的装置级冲压散热器和从基部向外突出的多个段或侧壁,并且将固态发射器的所有稳态热负载耗散到环境空气环境中。 散热器与一个或多个固态发射器热连通,并且可以限定包含反射器的杯状空腔。 每个侧壁部分或部分的至少一部分在不平行于基部的方向上延伸。 电介质层和至少一个电迹线可以沉积在金属片上以形成复合片材,并且复合片材可以通过冲压和/或渐进的模具成型来加工,以形成具有集成电路的散热器。 散热器的至少一些段可以布置成在结构上支撑与固态照明装置相关联的透镜和/或反射器。
    • 3. 发明申请
    • OPTICAL ELEMENT FOR A LIGHT SOURCE AND LIGHTING SYSTEM USING SAME
    • 使用相同光源和照明系统的光学元件
    • WO2011143086A1
    • 2011-11-17
    • PCT/US2011/035690
    • 2011-05-09
    • CREE, INC.PICKARD, Paul, Kenneth
    • PICKARD, Paul, Kenneth
    • F21V5/04
    • F21V5/04F21K9/00F21K9/23F21K9/68F21V7/0091F21Y2115/10G02B19/0028G02B19/0061G02B19/0066
    • An optical element (100, 400, 500, 610) for a light source and a lighting system using the optical element (100, 400, 500, 610) are disclosed. In example embodiments, the optical element (100, 400, 500, 610) includes an entry surface (104, 404) and an exit surface (106, 406) opposite the entry surface (104, 404). The entry surface (104, 404) includes at least thee subsurfaces (120, 123, 124, 550, 552, 556), wherein each subsurface (120, 123, 124, 550, 552, 556) is disposed to receive light rays (130, 132, 136) leaving light source. Each of the three subsurfaces (120, 123, 124, 550, 552, 556), is geometrically shaped and positioned to receive light rays (130, 132, 136) entering the optical element (100, 400, 500, 610) through that subsurface (120, 123, 124, 550, 552, 556) in order to direct the light passing through the optical element (100, 400, 500, 610). In some embodiments the optical element (100, 400, 500, 610) includes a concentrator lens (110, 412) disposed in the exit surface. The optical element (100, 400, 500, 610) can also include a mixing treatment. A lighting system (600) can include multiple optical elements (100, 400, 500, 610), each paired with a light source such as an LED or LED package.
    • 公开了一种用于光源的光学元件(100,400,500,610)和使用该光学元件(100,400,500,610)的照明系统。 在示例性实施例中,光学元件(100,400,500,610)包括入口表面(104,404)和与入口表面(104,404)相对的出口表面(106,406)。 所述进入表面(104,404)至少包括所述子表面(120,123,124,550,552,556),其中每个次表面(120,123,124,550,552,556)设置成接收光线 130,132,136)离开光源。 三个子表面(120,123,124,550,552,556)中的每一个几何形状并且被定位成接收通过该光学元件(100,400,500,610)进入光学元件(100,400,500,610)的光线(130,132,136) 以便引导通过光学元件(100,400,500,610)的光的表面(120,123,124,550,552,556)。 在一些实施例中,光学元件(100,400,500,610)包括设置在出射表面中的聚光透镜(110,412)。 光学元件(100,400,500,610)还可以包括混合处理。 照明系统(600)可以包括多个光学元件(100,400,500,610),每个光源与诸如LED或LED封装的光源配对。
    • 7. 发明申请
    • OPTICAL ELEMENT EDGE TREATMENT FOR LIGHTING DEVICE
    • 光器件光学元件边缘处理
    • WO2012050983A2
    • 2012-04-19
    • PCT/US2011/054146
    • 2011-09-30
    • CREE, INC.PICKARD, Paul, Kenneth
    • PICKARD, Paul, Kenneth
    • F21V13/12F21V7/00F21V9/10F21Y101/02
    • F21V13/00F21K9/232F21K9/64F21V7/22F21V9/30F21V13/02F21Y2115/10
    • A lighting device includes an electrically activated emitter, a lumiphoric material spatially segregated from the emitter, and an optical element arranged between the emitter and the lumiphoric material and having at least one peripheral edge, wherein a reflective material is disposed proximate to the at least one peripheral edge and/or wherein the at least one peripheral edge is non- perpendicular to a face of the optical element and arranged to reflect light in a direction toward the lumiphoric material. An optical element for use with a lighting device including a lumiphoric material includes a peripheral edge, wherein a reflective material disposed substantially parallel to the peripheral edge and/or wherein the peripheral edge is non-perpendicular to a face of the optical element and arranged to reflect light in a direction toward the lumiphoric material.
    • 照明装置包括电激活的发射器,与发射器空间偏离的发光材料,以及布置在发射器和荧光材料之间并具有至少一个外围边缘的光学元件,其中反射材料邻近于至少一个 外围边缘和/或其中所述至少一个周边边缘不垂直于所述光学元件的表面并且被布置成在朝向所述荧光材料的方向上反射光。 用于与包括发光材料的照明装置一起使用的光学元件包括外围边缘,其中反射材料基本上平行于周边边缘设置和/或其中周边边缘与光学元件的表面非垂直并且布置成 将光反射到朝向液体物质的方向。
    • 9. 发明申请
    • HIGH EFFICIENCY TOTAL INTERNAL REFLECTION OPTIC FOR SOLID STATE LIGHTING LUMINAIRES
    • 高效率固体照明灯具的内部反射光
    • WO2012078412A1
    • 2012-06-14
    • PCT/US2011/062444
    • 2011-11-29
    • CREE, INC.PICKARD, Paul, Kenneth
    • PICKARD, Paul, Kenneth
    • G02B17/08
    • G02B19/0066G02B17/086G02B19/0028
    • Optical elements having components made from high refractive index materials (RI ≥ 1.6) and lamp assemblies incorporating such elements. Various optical elements, such as total internal reflection lenses, can be fabricated from materials having a higher index of refraction than materials typically used in such elements. The compact optical elements have at least one internal reflection surface that directs radiant energy (e.g., light) from a receiving end to a transmitting end. By using a high refractive index material, a lens can be fabricated that directs a greater portion of the light emitted from a source into the lens toward the transmitting end of the lens. Thus, less of the light spills out of the lens at a surface where emission is not intended, reducing the number of lossy bounces needed to direct the light in a particular direction.
    • 具有由高折射率材料(RI = 1.6)制成的元件的光学元件和并入这些元件的灯组件。 诸如全内反射透镜的各种光学元件可以由具有比在这些元件中通常使用的材料更高的折射率的材料制成。 紧凑的光学元件具有至少一个内部反射表面,其将辐射能(例如,光)从接收端引导到发射端。 通过使用高折射率材料,可以制造将来自源的光的更大部分引导到透镜中的透镜朝向透镜的透射端的透镜。 因此,较少的光在不需要发射的表面处从透镜中流出,减少了在特定方向上引导光所需的有损跳跃的数量。