COMPACT HIGH EFFICIENCY REMOTE LED MODULE
    1.
    发明申请
    COMPACT HIGH EFFICIENCY REMOTE LED MODULE 审中-公开
    紧凑高效远程LED模块

    公开(公告)号:US20130003346A1

    公开(公告)日:2013-01-03

    申请号:US13536707

    申请日:2012-06-28

    IPC分类号: F21V9/16 F21V29/00 F21V13/02

    摘要: Solid state modules and fixtures comprising different combinations and arrangements of a light source, one or more wavelength conversion materials, thermally conductive connection adapters allowing dissipation of heat outside of the module, and a remote power supply unit. This arrangement allows for greater thermal efficiency and reliability while employing solid state lighting and providing emission patterns that are equivalent with ENERGY STAR® standards. Some embodiments additionally place compensation circuits, previously included with power supply units, on the optical element itself, remote from the power supply unit. Various embodiments of the invention may be used to address many of the difficulties associated with utilizing efficient solid state light sources such as LEDs in the fabrication of lamps or bulbs suitable for direct replacement of traditional incandescent bulbs or fixtures using bulbs.

    摘要翻译: 固体模块和固定装置包括光源,一个或多个波长转换材料的不同组合和布置,允许在模块外部散热的导热连接适配器以及远程电源单元。 这种布置允许在采用固态照明并提供与ENERGYSTAR®标准相当的发射模式时具有更高的热效率和可靠性。 一些实施例另外将以前包括在电源单元中的补偿电路放置在远离电源单元的光学元件本身上。 可以使用本发明的各种实施例来解决与在制造适合于使用灯泡直接替代传统白炽灯泡或固定装置的灯泡或灯泡中使用有效的固态光源(例如LED)有关的许多困难。

    METAL-CONTAINING ENCAPSULANT COMPOSITIONS AND METHODS
    3.
    发明申请
    METAL-CONTAINING ENCAPSULANT COMPOSITIONS AND METHODS 审中-公开
    含金属的包封组合物和方法

    公开(公告)号:US20130241390A1

    公开(公告)日:2013-09-19

    申请号:US13419585

    申请日:2012-03-14

    申请人: PETER GUSCHL

    发明人: PETER GUSCHL

    摘要: The present disclosure relates generally to optical media precursors and/or encapsulants, the optical media and encapsulants configurable for use in lighting devices. Specifically, the optical media and/or encapsulant material comprises at least one silsesquioxane moiety and at least one transition metal and/or lanthanide metal. Methods of reducing degradation of the optical media and/or encapsulant from heat and/or optical flux exposure using same are disclosed. Methods of increasing refractive index of an optical media and/or encapsulant using silsesquioxane and transition metal and/or lanthanide metal are disclosed.

    摘要翻译: 本公开一般涉及光学介质前体和/或密封剂,光学介质和可配置用于照明装置的密封剂。 具体地说,光学介质和/或密封剂材料包括至少一种倍半硅氧烷部分和至少一种过渡金属和/或镧系金属。 公开了减少光学介质和/或密封剂从使用其的热和/或光通量暴露降解的方法。 公开了使用倍半硅氧烷和过渡金属和/或镧系元素金属来提高光学介质和/或密封剂的折射率的方法。

    ENCAPSULANT COMPOSITIONS AND METHODS FOR LIGHTING DEVICES
    4.
    发明申请
    ENCAPSULANT COMPOSITIONS AND METHODS FOR LIGHTING DEVICES 审中-公开
    ENCAPSULANT组合物和照明设备的方法

    公开(公告)号:US20130241404A1

    公开(公告)日:2013-09-19

    申请号:US13419590

    申请日:2012-03-14

    IPC分类号: H05B33/04 H05B33/10

    CPC分类号: H01L33/56 H01L2224/97

    摘要: The present disclosure relates generally to optical media and/or encapsulant precursors and optical media encapsulants produced therefrom, the optical media and/or encapsulants configurable for use in lighting devices. Specifically, the optical media and/or encapsulant precursors comprises at least one chemically functionalized silsesquioxane moiety. Methods of reducing degradation from heat and/or optical flux exposure using the optical media and/or encapsulant comprising chemically functionalized silsesquioxane are disclosed.

    摘要翻译: 本公开一般涉及由其制造的光学介质和/或密封剂前体和光学介质密封剂,可配置用于照明装置的光学介质和/或密封剂。 具体地,光学介质和/或密封剂前体包含至少一种化学官能化的倍半硅氧烷部分。 公开了使用包含化学官能化的倍半硅氧烷的光学介质和/或密封剂来降低来自热和/或光通量暴露的降解的方法。