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    • 4. 发明申请
    • EFFICIENT LIGHT EMITTING DEVICE AND METHOD FOR MANUFACTURING SUCH A DEVICE
    • 有效的发光装置及其制造方法
    • US20120087106A1
    • 2012-04-12
    • US13375673
    • 2010-05-27
    • Erno FancsaliWillem Hendrik SmitsPascal Jean Henri Bloemen
    • Erno FancsaliWillem Hendrik SmitsPascal Jean Henri Bloemen
    • F21V9/16F21V13/08B23P11/00F21V9/00
    • F21K9/64F21V5/04F21Y2115/10H01L33/505H01L33/507H01L33/60H01L2924/0002Y10T29/49826H01L2924/00
    • The invention relates to a light emitting device (2) comprising a primary light source (10), a light converting medium (14) and an optical structure (16). The primary light source is disposed on a substrate (11). The light converting medium comprising phosphors (14) is arranged for converting at least a part of the primary light to secondary light (II) of a different wavelength. The light converting medium is in a remote phosphor configuration. The optical structure is arranged for receiving a part of the secondary light (II) from the light converting medium and is configured for redirecting the part of the secondary light in a direction towards the first plane but away for the primary light source (10). By providing an optical structure redirecting the secondary light away from the primary light source, absorption of the secondary light by the primary light source can be substantially reduced or eliminated. The luminous efficacy is improved by redirecting this secondary light in a direction such that it is transmitted from the light emitting device.
    • 本发明涉及包括初级光源(10),光转换介质(14)和光学结构(16)的发光器件(2)。 主光源设置在基板(11)上。 包括磷光体(14)的光转换介质被布置成将至少一部分初级光转换成不同波长的次级光(II)。 光转换介质处于远程荧光体配置。 光学结构被布置成用于从光转换介质接收二次光(II)的一部分,并且被配置为在朝向第一平面但朝向初级光源(10)的方向上重定向二次光的一部分。 通过提供使次级光远离主光源的光学结构,可以显着地减少或消除由初级光源吸收的次级光。 通过使该次级光沿着从发光装置传输的方向重新定向来提高发光效率。
    • 5. 发明授权
    • Efficient light emitting device and method for manufacturing such a device
    • 高效发光装置及其制造方法
    • US08690395B2
    • 2014-04-08
    • US13375673
    • 2010-05-27
    • Erno FancsaliWillem Hendrik SmitsPascal Jean Henri Bloemen
    • Erno FancsaliWillem Hendrik SmitsPascal Jean Henri Bloemen
    • F21V3/00
    • F21K9/64F21V5/04F21Y2115/10H01L33/505H01L33/507H01L33/60H01L2924/0002Y10T29/49826H01L2924/00
    • The invention relates to a light emitting device (2) comprising a primary light source (10), a light converting medium (14) and an optical structure (16). The primary light source is disposed on a substrate (11). The light converting medium comprising phosphors (14) is arranged for converting at least a part of the primary light to secondary light (II) of a different wavelength. The light converting medium is in a remote phosphor configuration. The optical structure is arranged for receiving a part of the secondary light (II) from the light converting medium and is configured for redirecting the part of the secondary light in a direction towards the first plane but away for the primary light source (10). By providing an optical structure redirecting the secondary light away from the primary light source, absorption of the secondary light by the primary light source can be substantially reduced or eliminated. The luminous efficacy is improved by redirecting this secondary light in a direction such that it is transmitted from the light emitting device.
    • 本发明涉及包括初级光源(10),光转换介质(14)和光学结构(16)的发光器件(2)。 主光源设置在基板(11)上。 包括磷光体(14)的光转换介质被布置成将至少一部分初级光转换成不同波长的次级光(II)。 光转换介质处于远程荧光体配置。 光学结构被布置成用于从光转换介质接收二次光(II)的一部分,并且被配置为在朝向第一平面但朝向初级光源(10)的方向上重定向二次光的一部分。 通过提供使次级光远离主光源的光学结构,可以显着地减少或消除由初级光源吸收的次级光。 通过使该次级光沿着从发光装置传输的方向重新定向来提高发光效率。