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    • 78. 发明授权
    • UV stable optical element and LED lamp using same
    • 紫外线稳定的光学元件和LED灯使用相同
    • US08604684B2
    • 2013-12-10
    • US13108115
    • 2011-05-16
    • Paul Kenneth Pickard
    • Paul Kenneth Pickard
    • H01J1/62H05K13/00G02B27/00H01J5/48H01K1/26
    • F21V3/12F21K9/232F21K9/64F21Y2115/10H01L33/501H01L33/507Y10T29/49002
    • A UV stable optical element and an LED lamp using such an element are disclosed. Embodiments of the invention include an optical element made at least in part from an inherently UV stable polyester, so that consumable UV-stabilizing additives are not needed. Thus, the substrate of the optical element can maintain transparency and other desirable characteristics over longer periods of time in the face of high ultraviolet light exposure. In some embodiments, the optical element includes the inherently UV stable polyester and a phosphor for remote wavelength conversion. In some embodiments, the UV stable polyester is an aromatic polyester such as polyarylate. The optical element according to example embodiments of the invention can be used in an LED lamp.
    • 公开了使用这种元件的UV稳定光学元件和LED灯。 本发明的实施方案包括至少部分由固有的UV稳定聚酯制成的光学元件,从而不需要消耗性的UV稳定添加剂。 因此,面对高紫外线曝光,光学元件的基板可以在更长的时间段内保持透明度和其它期望的特性。 在一些实施例中,光学元件包括固有的UV稳定聚酯和用于远程波长转换的磷光体。 在一些实施方案中,UV稳定聚酯是芳族聚酯,例如多芳基化合物。 根据本发明的示例性实施例的光学元件可以用在LED灯中。
    • 79. 发明授权
    • High efficiency total internal reflection optic for solid state lighting luminaires
    • 用于固态照明灯具的高效全内反射光学器件
    • US08556469B2
    • 2013-10-15
    • US12961380
    • 2010-12-06
    • Paul Kenneth Pickard
    • Paul Kenneth Pickard
    • F21V33/00
    • 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。
    • 80. 发明授权
    • Reflector system for lighting device
    • 照明装置反光体系
    • US08529102B2
    • 2013-09-10
    • US12418796
    • 2009-04-06
    • Paul Kenneth PickardRyan Kelley
    • Paul Kenneth PickardRyan Kelley
    • F21V7/00
    • F21V13/08F21K9/233F21K9/60F21V3/02F21V7/0033F21V9/08F21Y2113/13F21Y2115/10
    • A reflector system for a lighting device. The system uses two reflective surfaces to redirect the light before it is emitted. The light source/sources are disposed at the base of a secondary reflector. The first reflective surface is provided by a primary reflector which is arranged proximate to the source/sources. The primary reflector initially redirects, and in some cases diffuses, light from the sources such that the different wavelengths of light are mixed as they are redirected toward the secondary reflector. The secondary reflector functions primarily to shape the light into a desired output beam. The primary and secondary reflectors may be specular or diffuse and may comprise faceted surfaces. The reflector arrangement allows the source to be placed at the base of the secondary reflector where it may be thermally coupled to a housing or another structure to provide an outlet for heat generated by the sources.
    • 一种用于照明装置的反射器系统。 该系统使用两个反射表面来重定向发光前的光。 光源/源设置在次级反射器的基部。 第一反射表面由靠近源/源设置的主反射器提供。 初级反射器最初重定向,并且在某些情况下扩散来自光源的光,使得不同波长的光在被重定向到次级反射器时被混合。 次级反射器主要用于将光成形为期望的输出光束。 初级和次级反射器可以是镜面的或漫射的,并且可以包括刻面。 反射器布置允许源放置在次级反射器的基座处,其中它可以热耦合到壳体或另一结构以提供由源产生的热量的出口。