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    • 1. 发明申请
    • HIGH REFLECTIVE SUBSTRATE OF LIGHT EMITTING DEVICES WITH IMPROVED LIGHT OUTPPUT
    • 具有改进的光输出的发光装置的高反射基板
    • US20110248287A1
    • 2011-10-13
    • US12757179
    • 2010-04-09
    • Thomas Cheng-Hsin YuanBernd KellerRonan Le ToquinTheodore Lowes
    • Thomas Cheng-Hsin YuanBernd KellerRonan Le ToquinTheodore Lowes
    • H01L33/48H01L33/60
    • H01L33/60H01L25/0753H01L2924/0002H01L2924/00
    • 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.
    • 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。
    • 2. 发明授权
    • High reflective substrate of light emitting devices with improved light output
    • 具有改善的光输出的发光器件的高反射衬底
    • US09012938B2
    • 2015-04-21
    • US12757179
    • 2010-04-09
    • Thomas Cheng-Hsin YuanBernd KellerRonan Le ToquinTheodore Lowes
    • Thomas Cheng-Hsin YuanBernd KellerRonan Le ToquinTheodore Lowes
    • H01L33/00H01L33/60H01L25/075
    • H01L33/60H01L25/0753H01L2924/0002H01L2924/00
    • 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.
    • 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。