LED LAMP WITH REMOTE PHOSPHOR AND DIFFUSER CONFIGURATION
    3.
    发明申请
    LED LAMP WITH REMOTE PHOSPHOR AND DIFFUSER CONFIGURATION 有权
    带有远端磷光体和发光二极管配置的LED灯

    公开(公告)号:US20110267800A1

    公开(公告)日:2011-11-03

    申请号:US13018245

    申请日:2011-01-31

    IPC分类号: F21V9/16 F21V11/00 F21V9/00

    摘要: An LED lamp or bulb is disclosed that comprises a light source, a heat sink structure and an optical cavity. The optical cavity comprises a phosphor carrier having a conversions material and arranged over an opening to the cavity. The phosphor carrier comprises a thermally conductive transparent material and is thermally coupled to the heat sink structure. An LED based light source is mounted in the optical cavity remote to the phosphor carrier with light from the light source passing through the phosphor carrier. A diffuser dome is included that is mounted over the optical cavity, with light from the optical cavity passing through the diffuser dome. The diffuser dome can disperse the light passing through it into the desired emission pattern, such as omnidirection. In one embodiment, the light source can be blue emitting LED and the phosphor carrier can include a yellow phosphor, with the LED lamp or bulb emitting a white light combination of LED and phosphor light.

    摘要翻译: 公开了一种LED灯或灯泡,其包括光源,散热结构和光学腔。 光学腔包括具有转换材料的荧光体载体并且布置在通向空腔的开口上。 荧光体载体包括导热透明材料并且热耦合到散热器结构。 基于LED的光源通过来自光源的光穿过荧光体载体而安装在远离荧光体载体的光学腔中。 包括安装在光学腔上的扩散器圆顶,来自光学腔的光通过扩散器圆顶。 扩散器圆顶可以将通过它的光分散成所需的发射图案,例如全方向。 在一个实施例中,光源可以是蓝色LED,并且荧光体载体可以包括黄色磷光体,LED灯或灯泡发出LED和磷光体的白光组合。

    LED LAMP OR BULB WITH REMOTE PHOSPHOR AND DIFFUSER CONFIGURATION WITH ENHANCED SCATTERING PROPERTIES
    4.
    发明申请
    LED LAMP OR BULB WITH REMOTE PHOSPHOR AND DIFFUSER CONFIGURATION WITH ENHANCED SCATTERING PROPERTIES 有权
    带有远程磷光体的LED灯或灯泡和具有增强散射特性的差分配置

    公开(公告)号:US20110267801A1

    公开(公告)日:2011-11-03

    申请号:US13018291

    申请日:2011-01-31

    IPC分类号: F21V9/16 F21V9/00

    摘要: An LED lamp or bulb is disclosed that comprises a light source, a heat sink structure and an optical cavity. The optical cavity comprises a phosphor carrier having a conversions material and arranged over an opening to the cavity. The phosphor carrier comprises a thermally conductive transparent material and is thermally coupled to the heat sink structure. An LED based light source is mounted in the optical cavity remote to the phosphor carrier with light from the light source passing through the phosphor carrier. A diffuser dome is included that is mounted over the optical cavity, with light from the optical cavity passing through the diffuser dome. The properties of the diffuser, such as geometry, scattering properties of the scattering layer, surface roughness or smoothness, and spatial distribution of the scattering layer properties may be used to control various lamp properties such as color uniformity and light intensity distribution as a function of viewing angle.

    摘要翻译: 公开了一种LED灯或灯泡,其包括光源,散热结构和光学腔。 光学腔包括具有转换材料的荧光体载体并且布置在通向空腔的开口上。 荧光体载体包括导热透明材料并且热耦合到散热器结构。 基于LED的光源通过来自光源的光穿过荧光体载体而安装在远离荧光体载体的光学腔中。 包括安装在光学腔上的扩散器圆顶,来自光学腔的光通过扩散器圆顶。 扩散器的性质,如几何形状,散射层的散射特性,表面粗糙度或平滑度以及散射层性质的空间分布可用于控制各种灯具性能,如颜色均匀性和光强度分布,作为 可视角度。

    HIGH REFLECTIVE SUBSTRATE OF LIGHT EMITTING DEVICES WITH IMPROVED LIGHT OUTPPUT
    6.
    发明申请
    HIGH REFLECTIVE SUBSTRATE OF LIGHT EMITTING DEVICES WITH IMPROVED LIGHT OUTPPUT 有权
    具有改进的光输出的发光装置的高反射基板

    公开(公告)号:US20110248287A1

    公开(公告)日:2011-10-13

    申请号:US12757179

    申请日:2010-04-09

    IPC分类号: H01L33/48 H01L33/60

    摘要: Apparatuses and methods for producing light emitting devices maximizing luminous flux output are disclosed. In one possible embodiment, a light emitting device comprises a substrate and a reflective layer at least partially covering the substrate. The reflective layer is non-yellowing, and may be substantially light transparent. One or more light emitting diode (LED) chips are disposed on the substrate. The light emitting device may emit white light. The reflective layer may comprise a silicone carrier with light reflective particles dispersed in the silicone carrier. A light diffusion lens may also be disposed on the substrate and surrounding the LED chips. Furthermore, one or more microspheres, light scattering particles, and/or phosphor particles may be dispersed in the lens. In one possible method for producing a light emitting device, a substrate is provided. One or more LED chips are coupled with the substrate, and a high reflective, non-yellowing coating is applied on at least a portion of the top surface of the substrate. The coating comprises a carrier with reflective particles dispersed throughout.

    摘要翻译: 公开了用于产生最大化光通量输出的发光器件的装置和方法。 在一个可能的实施例中,发光器件包括至少部分地覆盖衬底的衬底和反射层。 反射层是不发黄的,并且可以是基本上透明的。 一个或多个发光二极管(LED)芯片设置在基板上。 发光装置可以发出白光。 反射层可以包括具有分散在硅氧烷载体中的光反射颗粒的硅氧烷载体。 光扩散透镜也可以设置在基板上并围绕LED芯片。 此外,一个或多个微球,光散射颗粒和/或磷光体颗粒可以分散在透镜中。 在制造发光器件的一种可能的方法中,提供了一种衬底。 一个或多个LED芯片与衬底耦合,并且高反射,不发黄的涂层施加在衬底顶表面的至少一部分上。 该涂层包括具有分散在其中的反射颗粒的载体。

    High reflective substrate of light emitting devices with improved light output
    7.
    发明授权
    High reflective substrate of light emitting devices with improved light output 有权
    具有改善的光输出的发光器件的高反射衬底

    公开(公告)号:US09012938B2

    公开(公告)日:2015-04-21

    申请号:US12757179

    申请日:2010-04-09

    摘要: Apparatuses and methods for producing light emitting devices maximizing luminous flux output are disclosed. In one possible embodiment, a light emitting device comprises a substrate and a reflective layer at least partially covering the substrate. The reflective layer is non-yellowing, and may be substantially light transparent. One or more light emitting diode (LED) chips are disposed on the substrate. The light emitting device may emit white light. The reflective layer may comprise a silicone carrier with light reflective particles dispersed in the silicone carrier. A light diffusion lens may also be disposed on the substrate and surrounding the LED chips. Furthermore, one or more microspheres, light scattering particles, and/or phosphor particles may be dispersed in the lens. In one possible method for producing a light emitting device, a substrate is provided. One or more LED chips are coupled with the substrate, and a high reflective, non-yellowing coating is applied on at least a portion of the top surface of the substrate. The coating comprises a carrier with reflective particles dispersed throughout.

    摘要翻译: 公开了用于产生最大化光通量输出的发光器件的装置和方法。 在一个可能的实施例中,发光器件包括至少部分地覆盖衬底的衬底和反射层。 反射层是不发黄的,并且可以是基本上透明的。 一个或多个发光二极管(LED)芯片设置在基板上。 发光装置可以发出白光。 反射层可以包括具有分散在硅氧烷载体中的光反射颗粒的硅氧烷载体。 光扩散透镜也可以设置在基板上并围绕LED芯片。 此外,一个或多个微球,光散射颗粒和/或磷光体颗粒可以分散在透镜中。 在制造发光器件的一种可能的方法中,提供了一种衬底。 一个或多个LED芯片与衬底耦合,并且高反射,不发黄的涂层施加在衬底顶表面的至少一部分上。 该涂层包括具有分散在其中的反射颗粒的载体。

    LED packages with scattering particle regions
    9.
    发明授权
    LED packages with scattering particle regions 有权
    具有散射粒子区域的LED封装

    公开(公告)号:US08415692B2

    公开(公告)日:2013-04-09

    申请号:US12498253

    申请日:2009-07-06

    申请人: Ronan Le Toquin

    发明人: Ronan Le Toquin

    摘要: An LED package comprises at least one LED that emits LED light in an LED emission profile. The LED package includes regions of scattering particles with the different regions scattering light primarily at a target wavelength or primarily within a target wavelength range. The location of the regions and scattering properties are based at least partially on the LED emission profile. The regions scatter their target wavelength of LED light to improve the uniformity of the LED emission profile so that the LED package emits a more uniform profile compared to the LED emission profile. By targeting particular wavelengths for scattering, the emission efficiency losses are reduced.

    摘要翻译: LED封装包括至少一个LED,其发射LED发光轮廓中的LED光。 LED封装包括具有不同区域的散射颗粒的区域主要在目标波长或主要在目标波长范围内散射光。 区域的位置和散射性质至少部分地基于LED发射谱。 这些区域散射其LED光的目标波长,以提高LED发射谱的均匀性,使得LED封装与LED发射谱相比发射更均匀的分布。 通过瞄准特定波长进行散射,减少了发射效率损失。