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    • 3. 发明授权
    • Light emitting device including a filter
    • 包括滤光器的发光器件
    • US08704254B2
    • 2014-04-22
    • US11615291
    • 2006-12-22
    • Troy A. TrottierMatthijs H. Keuper
    • Troy A. TrottierMatthijs H. Keuper
    • H01L33/00
    • H01L33/44H01L33/50H01L2924/0002H01L2924/00
    • A semiconductor structure includes a light emitting region disposed between an n-type region and a p-type region. A wavelength converting material configured to absorb a portion of the first light emitted by the light emitting region and emit second light is disposed in a path of the first light. A filter is disposed in a path of the first and second light. In some embodiments, the filter absorbs or reflects a fraction of first light at an intensity greater than a predetermined intensity. In some embodiments, the filter absorbs or reflects a portion of the second light. In some embodiments, a quantity of filter material is disposed in the path of the first and second light, then the CCT of the first and second light passing through the filter is detected. Filter material may be removed to correct the detected CCT to a predetermined CCT.
    • 半导体结构包括设置在n型区域和p型区域之间的发光区域。 配置成吸收由发光区域发射的第一光的一部分并发射第二光的波长转换材料设置在第一光的路径中。 滤光器设置在第一和第二光的路径中。 在一些实施例中,过滤器以大于预定强度的强度吸收或反射第一光的一部分。 在一些实施例中,过滤器吸收或反射第二光的一部分。 在一些实施例中,一定量的过滤材料设置在第一和第二光的路径中,然后检测穿过过滤器的第一和第二光的CCT。 可以去除过滤材料以将检测到的CCT校正到预定的CCT。
    • 4. 发明授权
    • Enhanced brightness light emitting device spot emitter
    • 增强型亮度发光器件点发射器
    • US06969946B2
    • 2005-11-29
    • US10669789
    • 2003-09-23
    • Frank M. SterankaDaniel A. SteigerwaldMatthijs H. Keuper
    • Frank M. SterankaDaniel A. SteigerwaldMatthijs H. Keuper
    • H01L33/46H01L33/58H01L33/60H01J5/16H05B33/00H05B33/22
    • H01L33/58H01L33/46H01L33/60
    • The amount of usefully captured light in an optical system may be increased by concentrating light in a region where it can be collected by the optical system. A light emitting device may include a substrate and a plurality of semiconductor layers. In some embodiments, a reflective material overlies a portion of the substrate and has an opening through which light exits the device. In some embodiments, reflective material overlies a portion of a surface of the semiconductor layers and has an opening through which light exits the device. In some embodiments, a light emitting device includes a transparent member with a first surface and an exit surface. At least one light emitting diode is disposed on the first surface. The transparent member is shaped such that light emitted from the light emitting diode is directed toward the exit surface.
    • 光学系统中有效捕获的光的量可以通过将光集中在可由光学系统收集的区域中来增加。 发光器件可以包括衬底和多个半导体层。 在一些实施例中,反射材料覆盖在衬底的一部分上并且具有光从该器件离开的开口。 在一些实施例中,反射材料覆盖在半导体层的表面的一部分上并且具有光从该器件离开的开口。 在一些实施例中,发光器件包括具有第一表面和出射表面的透明构件。 至少一个发光二极管设置在第一表面上。 透明构件被成形为使得从发光二极管发射的光朝向出射表面。
    • 7. 发明申请
    • Polarized Semiconductor Light Emitting Device
    • 极化半导体发光器件
    • US20080265263A1
    • 2008-10-30
    • US12171718
    • 2008-07-11
    • Matthijs H. KeuperMichael R. KramesGerd O. Mueller
    • Matthijs H. KeuperMichael R. KramesGerd O. Mueller
    • H01L33/00
    • H04N9/3152H01L33/0004H01L33/16H01L33/18H01L33/32H01L33/44H01L33/507H01L33/60
    • A light emitting device includes a light emitting diode (LED), a concentrator element, such as a compound parabolic concentrator, and a wavelength converting material, such as a phosphor. The concentrator element receives light from the LED and emits the light from an exit surface, which is smaller than the entrance surface. The wavelength converting material is, e.g., disposed over the exit surface. The radiance of the light emitting diode is preserved or increased despite the isotropic re-emitted light by the wavelength converting material. In one embodiment, the polarized light from a polarized LED is provided to a polarized optical system, such as a microdisplay. In another embodiment, the orthogonally polarized light from two polarized LEDs is combined, e.g., via a polarizing beamsplitter, and is provided to non-polarized optical system, such as a microdisplay. If desired, a concentrator element may be disposed between the beamsplitter and the microdisplay.
    • 发光器件包括发光二极管(LED),诸如复合抛物面聚光器的聚光元件,以及诸如荧光体的波长转换材料。 集中器元件从LED接收光,并从出射表面发射光,该出射表面小于入射面。 波长转换材料例如设置在出射表面上。 即使波长转换材料具有各向同性的再发射光,发光二极管的辐射也被保留或增加。 在一个实施例中,来自偏振LED的偏振光被提供给诸如微显示器的偏振光学系统。 在另一个实施例中,来自两个偏振LED的正交偏振光例如经由偏振分束器组合,并被提供给诸如微显示器之类的非偏振光学系统。 如果需要,可以在分束器和微显示器之间设置集中器元件。
    • 8. 发明授权
    • Polarized semiconductor light emitting device
    • 极化半导体发光器件
    • US07408201B2
    • 2008-08-05
    • US10804314
    • 2004-03-19
    • Matthijs H. KeuperMichael R. KramesGerd O. Mueller
    • Matthijs H. KeuperMichael R. KramesGerd O. Mueller
    • G02F1/133
    • H04N9/3152H01L33/0004H01L33/16H01L33/18H01L33/32H01L33/44H01L33/507H01L33/60
    • A light emitting device includes a light emitting diode (LED), a concentrator element, such as a compound parabolic concentrator, and a wavelength converting material, such as a phosphor. The concentrator element receives light from the LED and emits the light from an exit surface, which is smaller than the entrance surface. The wavelength converting material is, e.g., disposed over the exit surface. The radiance of the light emitting diode is preserved or increased despite the isotropic re-emitted light by the wavelength converting material. In one embodiment, the polarized light from a polarized LED is provided to a polarized optical system, such as a microdisplay. In another embodiment, the orthogonally polarized light from two polarized LEDs is combined, e.g., via a polarizing beamsplitter, and is provided to non-polarized optical system, such as a microdisplay. If desired, a concentrator element may be disposed between the beamsplitter and the microdisplay.
    • 发光器件包括发光二极管(LED),诸如复合抛物面聚光器的聚光元件,以及诸如荧光体的波长转换材料。 集中器元件从LED接收光,并从出射表面发射光,该出射表面小于入射面。 波长转换材料例如设置在出射表面上。 即使波长转换材料具有各向同性的再发射光,发光二极管的辐射也被保留或增加。 在一个实施例中,来自偏振LED的偏振光被提供给诸如微显示器的偏振光学系统。 在另一个实施例中,来自两个偏振LED的正交偏振光例如经由偏振分束器组合,并被提供给诸如微显示器之类的非偏振光学系统。 如果需要,可以在分束器和微显示器之间设置集中器元件。
    • 9. 发明申请
    • Light emitting device including a filter
    • 包括滤光器的发光器件
    • US20080179609A1
    • 2008-07-31
    • US11615291
    • 2006-12-22
    • Troy A. TrottierMatthijs H. Keuper
    • Troy A. TrottierMatthijs H. Keuper
    • H01L33/00F21V9/08G02B5/22
    • H01L33/44H01L33/50H01L2924/0002H01L2924/00
    • A semiconductor structure includes a light emitting region disposed between an n-type region and a p-type region. A wavelength converting material configured to absorb a portion of the first light emitted by the light emitting region and emit second light is disposed in a path of the first light. A filter is disposed in a path of the first and second light. In some embodiments, the filter absorbs or reflects a fraction of first light at an intensity greater than a predetermined intensity. In some embodiments, the filter absorbs or reflects a portion of the second light. In some embodiments, a quantity of filter material is disposed in the path of the first and second light, then the CCT of the first and second light passing through the filter is detected. Filter material may be removed to correct the detected CCT to a predetermined CCT.
    • 半导体结构包括设置在n型区域和p型区域之间的发光区域。 配置成吸收由发光区域发射的第一光的一部分并发射第二光的波长转换材料设置在第一光的路径中。 滤光器设置在第一和第二光的路径中。 在一些实施例中,过滤器以大于预定强度的强度吸收或反射第一光的一部分。 在一些实施例中,过滤器吸收或反射第二光的一部分。 在一些实施例中,一定量的过滤材料设置在第一和第二光的路径中,然后检测穿过过滤器的第一和第二光的CCT。 可以去除过滤材料以将检测到的CCT校正到预定的CCT。
    • 10. 发明授权
    • LED with an optical system to increase luminance by recycling emitted light
    • LED与光学系统通过再循环发光来增加亮度
    • US07080932B2
    • 2006-07-25
    • US10765312
    • 2004-01-26
    • Matthijs H. Keuper
    • Matthijs H. Keuper
    • F21V7/04
    • H01L33/58H01L33/507
    • The amount of usefully captured light in an optical system is increased by concentrating light in a region where it can be collected by the optical system. In one embodiment, a light emitting diode is disposed on a first surface of a transparent member, which includes an exit surface. The transparent member includes a reflective element on a second surface and is shaped such that light emitted from the light emitting diode is directed toward the exit surface. A portion of the first surface of the transparent member between the first light emitting diode and the exit surface of the transparent member first surface is coated with a reflective coating. The portion of the first surface with the reflective coating may be larger than the width of the light emitting diode. In one embodiment, the transparent member is formed from two separate transparent elements.
    • 光学系统中有用的捕获光的量通过将光聚集在可由光学系统收集的区域中而增加。 在一个实施例中,发光二极管设置在包括出射表面的透明构件的第一表面上。 透明构件包括在第二表面上的反射元件,其形状使得从发光二极管发出的光指向出射表面。 透明构件的第一表面在第一发光二极管和透明构件第一表面的出射表面之间的一部分涂覆有反射涂层。 具有反射涂层的第一表面的部分可以大于发光二极管的宽度。 在一个实施例中,透明构件由两个分离的透明元件形成。