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    • 13. 发明申请
    • BACKLIGHTING SYSTEM
    • 背光系统
    • WO2006114748A1
    • 2006-11-02
    • PCT/IB2006/051250
    • 2006-04-21
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VAN AS, MarcoJACOBS, Jean, P.DUINE, Peter, A.DEKKER, Jan, P.
    • VAN AS, MarcoJACOBS, Jean, P.DUINE, Peter, A.DEKKER, Jan, P.
    • G02B6/00
    • G02B6/0068G02B6/0071G02B6/0073
    • The invention relates to a backlighting system (Bl) combining a low-pressure mercury vapor discharge lamp (TLl) with a plurality of Light Emitting Diodes (LEDs) (Ll) via an optical waveguide (LG). The light emitted by the LEDs is mixed inside the optical waveguide. In a first embodiment, the low-pressure mercury vapor discharge lamp is arranged between the optical waveguide and the light exit window (EW). In a second embodiment, the optical waveguide is arranged between the low-pressure mercury vapor discharge lamp and the light exit window. In a further, preferred embodiment, the optical waveguide comprises an arrangement of light out-coupling elements (OC2, OC3, OC4) which couple the mixed light from the optical waveguide out towards the light exit window via the low-pressure mercury vapor discharge lamp. In another preferred embodiment, the low-pressure mercury vapor discharge lamp comprises apertures in a diffuser coating for admitting the light emitted by the optical waveguide into a discharge vessel (V)of the low- pressure mercury vapor discharge lamp, thus providing a further mixing of the light emitted by the optical waveguide inside the discharge vessel. The low-pressure mercury vapor discharge lamp typically provides a first and a second primary color, and the plurality of LEDs typically provide a third primary color such that the combination of the three primary colors achieves an improved compliance with the EBU color standard.
    • 本发明涉及经由光波导(LG)将低压汞蒸气放电灯(TL1)与多个发光二极管(LED)(L1)组合的背光系统(B1)。 由LED发射的光在光波导内部混合。 在第一实施例中,低压汞蒸汽放电灯布置在光波导和光出射窗(EW)之间。 在第二实施例中,光波导布置在低压汞蒸气放电灯和光出射窗之间。 在另一个优选实施例中,光波导包括光输出耦合元件(OC2,OC3,OC4)的布置,其将来自光波导的混合光经由低压水银蒸气放电灯向出光出射窗 。 在另一个优选实施例中,低压汞蒸气放电灯包括用于将由光波导发射的光引入低压汞蒸气放电灯的放电容器(V)的扩散器涂层中的孔,从而提供进一步的混合 由放电容器内的光波导发出的光。 低压汞蒸汽放电灯通常提供第一和第二原色,并且多个LED通常提供第三原色,使得三原色的组合实现了对EBU颜色标准的改进的符合性。
    • 16. 发明申请
    • LIGHT GUIDE
    • 光指导
    • WO2013005142A1
    • 2013-01-10
    • PCT/IB2012/053273
    • 2012-06-28
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.KESER, MerijnVAN AS, MarcoVAN KEMPEN, Frank Walterus Franciscus Marie
    • KESER, MerijnVAN AS, MarcoVAN KEMPEN, Frank Walterus Franciscus Marie
    • F21V7/00
    • F21V7/041F21V7/0025F21Y2115/10
    • The disclosed embodiments relate to a light guide (100a) and a luminaire (700) including such a light guide (100a). The light guide (100a) guides light emitted in a first direction (500) from a light source (200) comprising at least one light emitting diode (210). The light guide (100) directs a major part of the light in a second direction (600), wherein the first direction (500) is not equal to the second direction (600). The light guide (100a) comprises a cone part (110a) having a shape of a cone, and a center axis (120) of the cone part (110a) is in the first direction (500). The light guide (100a) can be used with reflectors (800) that have originally been manufactured for use with high intensity discharge lamps or halogen lamps but because of the light guide (100a), the reflectors (800) can be used together with light sources (200) in the form of at least one light emitting diode (210).
    • 所公开的实施例涉及包括这种导光体(100a)的光导(100a)和照明器(700)。 光导(100a)引导从包括至少一个发光二极管(210)的光源(200)沿第一方向(500)发射的光。 导光体(100)沿第二方向(600)引导光的大部分,其中第一方向(500)不等于第二方向(600)。 光导(100a)包括具有锥体形状的锥形部分(110a),并且锥形部分(110a)的中心轴线(120)处于第一方向(500)。 光导(100a)可以与最初制造用于高强度放电灯或卤素灯的反射器(800)一起使用,但是由于导光体(100a),反射器(800)可以与光一起使用 源(200)为至少一个发光二极管(210)的形式。
    • 20. 发明申请
    • ILLUMINATION DEVICE FOR PIXELATED ILLUMINATION
    • 用于像素照明的照明装置
    • WO2009034521A1
    • 2009-03-19
    • PCT/IB2008/053631
    • 2008-09-09
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VAN AS, Marco
    • VAN AS, Marco
    • H04N9/31F21S8/00
    • H04N9/3138
    • An illumination device (1) for pixelated illumination of a target area (3) comprising: an array (4) of light emitting devices; projection optics (5) arranged in between the array (4) of light emitting devices and the target area (3); a reflecting structure (6) having a first opening (9) facing the array (4) of light emitting devices and a second opening (10) facing the projection optics (5), and a reflective surface connecting the first and second opening, the surface enclosing and facing an optical axis (11) of the projection optics (5). The projection optics (5) is adapted to image the array (4) of light emitting devices, and a virtual extension thereof created by the reflecting structure (6), onto the target area (3), thereby generating an extended pixelated illumination pattern (2). By utilizing a reflecting structure to create a virtual extension of the array of light emitting devices, a high degree of pixelation can be achieved in the illumination pattern while minimizing the number of light emitting devices required. Thus, increased efficiency and reduce costs can be achieved.
    • 1.一种用于目标区域(3)的像素化照明的照明装置(1),包括:发光装置的阵列(4) 布置在发光器件的阵列(4)和目标区域(3)之间的投影光学器件(5); 具有面向发光器件的阵列(4)的第一开口(9)和面向投影光学器件(5)的第二开口(10)的反射结构(6)和连接第一和第二开口的反射表面, 表面包围并面向投影光学器件(5)的光轴(11)。 投影光学器件(5)适于将发光器件阵列(4)及其由反射结构(6)产生的虚拟扩展部分成像到目标区域(3)上,从而产生延伸的像素化照明图案( 2)。 通过利用反射结构来产生发光器件阵列的虚拟延伸,可以在照明图案中实现高度像素化,同时最小化所需的发光器件的数量。 因此,可以实现提高效率并降低成本。