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    • 1. 发明授权
    • Adjustable light pipe fixture
    • 可调光管夹具
    • US07163329B2
    • 2007-01-16
    • US10793049
    • 2004-03-04
    • Dave BinaJohn M. DavenportRoger F. Buelow, IIGregory P. Frankiewicz
    • Dave BinaJohn M. DavenportRoger F. Buelow, IIGregory P. Frankiewicz
    • E04D13/00
    • F21V19/02E04B9/006F21S8/02F21V14/02F21V21/04G02B6/0008
    • A light pipe fixture with adjustable beam spreads comprises a bayonet assembly having a generally tubular coupling for receiving a light-dispensing end of a light pipe, and a receiver assembly. The receiver assembly has a generally tubular coupling for receiving therewithin the bayonet assembly coupling at adjustable levels of penetration of the bayonet assembly coupling within the receiver assembly coupling. The receiver assembly further comprises an optical lens and a hollow portion for focusing a light beam from the end of the light pipe through the lens. The radial interior surface of the receiver assembly coupling and the radial exterior surface of the bayonet assembly coupling may be configured so the receiver assembly coupling slidably and lockingly receives the bayonet assembly coupling in any of a plurality of positions along the length of the receiver assembly coupling.
    • 具有可调节光束扩展的光管夹具包括具有用于接收光管的光分配端的大致管状联接器的卡口组件和接收器组件。 接收器组件具有大体上的管状联接件,用于在卡接头组件联接器内的卡口组件联接器的可调节穿透水平处接收卡口组件联接件。 接收器组件还包括光学透镜和用于将来自光管的端部的光束聚焦通过透镜的中空部分。 接收器组件联接器的径向内表面和卡口组件联接器的径向外表面可以被配置成使得接收器组件联接器可沿着接收器组件联接件的长度在多个位置中的任一个位置中滑动地并且锁定地接收卡口组件联接 。
    • 8. 发明授权
    • Elongated LED lighting arrangement
    • 延长的LED照明布置
    • US08870428B2
    • 2014-10-28
    • US13528584
    • 2012-06-20
    • Blair L. UngerGregory P. FrankiewiczJoseph G. KaveskiRoger F. Buelow, IIJohn M. Davenport
    • Blair L. UngerGregory P. FrankiewiczJoseph G. KaveskiRoger F. Buelow, IIJohn M. Davenport
    • F21V7/04
    • F21V13/04F21K9/61F21K9/64F21V5/002F21V7/0091F21V9/30F21V2200/15F21Y2103/00F21Y2115/10
    • An elongated LED lighting arrangement comprises an elongated fiberoptic light pipe having an exteriorly facing sidewall between its ends. The light pipe is constructed to promote TIR of light between the ends. A first LED light source is tuned to efficiently provide light within a wavelength range to the pipe. Light-extracting means are applied along the light pipe along the main path of TIR light propagation, and comprise down-converting means tuned to efficiently convert light rays from the LED light source within the wavelength range to lower-energy light rays at respectively longer wavelengths and light-scattering means for extracting from the pipe some light rays within the wavelength range without changing the wavelengths of the foregoing light. The light emitted by the down-converting means and the light-scattering means intermix to produce light, the majority of which has a composite color determined by the foregoing light emitted and the foregoing light extracted.
    • 细长的LED照明装置包括细长的光纤光管,其在其端部之间具有面向外部的侧壁。 光管被构造成促进两端之间的光的TIR。 调整第一LED光源以有效地向管道提供波长范围内的光。 沿着光管沿着TIR光传播的主路径沿着光管施加光提取装置,并且包括被调整以将波长范围内的来自LED光源的光线有效地转换成分别更长波长的较低能量光的下变换装置 以及光散射装置,用于从管道中提取波长范围内的一些光线,而不改变上述光的波长。 由下变换装置和光散射装置发射的光混合产生光,其中大部分具有由所发射的前述光确定的复合色,并提取前述光。
    • 9. 发明授权
    • Light collection system converting ultraviolet energy to visible light
    • 光收集系统将紫外线能量转换成可见光
    • US07008071B2
    • 2006-03-07
    • US10793059
    • 2004-03-04
    • Roger F. Buelow, IIJohn M. DavenportGregory P. Frankiewicz
    • Roger F. Buelow, IIJohn M. DavenportGregory P. Frankiewicz
    • F21V9/16
    • G02B6/4298
    • A light collection system comprises a light source with a bulbous section for emitting radiant energy in the direction of first and second portions of the bulbous section. A reflecting surface directs visible light from the light source to the first portion. Another reflecting surface directs UV energy from the light source to the second portion. A first angle-to-area converter receives visible light in the first portion and decreases the angle of the visible light to a desired angle. A second angle-to-area converter receives UV energy in the second portion and decreases the angle of the UV energy to a desired angle. A phosphor layer receives UV energy downstream of the second angle-to-area converter and converts the UV energy to visible light. A third angle-to-area converter receives visible light from the phosphor and reducing the angle of such light to an angle optimized for entering a fiber optic cable.
    • 光收集系统包括具有球形部分的光源,用于沿球形部分的第一和第二部分的方向发射辐射能。 反射表面将来自光源的可见光引导到第一部分。 另一个反射表面将UV能量从光源引导到第二部分。 第一角 - 面转换器接收第一部分中的可见光,并将可见光的角度减小到期望的角度。 第二角度 - 区域转换器在第二部分中接收UV能量并将UV能量的角度减小到期望的角度。 磷光体层在第二角度 - 区域转换器的下游接收UV能量,并将UV能量转换成可见光。 第三角度 - 面积转换器接收来自荧光体的可见光,并将这种光的角度减小到为进入光纤电缆而优化的角度。