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    • 52. 发明申请
    • OPTICAL ELEMENT HAVING AT LEAST ONE EMBEDDED REFLECTOR
    • 具有最小一个嵌入式反射器的光学元件
    • US20100053976A1
    • 2010-03-04
    • US12522725
    • 2008-01-10
    • Hugo Johan CornelissenHendrik Johannes Boudewijn JagtWillem Lubertus Ijzerman
    • Hugo Johan CornelissenHendrik Johannes Boudewijn JagtWillem Lubertus Ijzerman
    • F21V7/00G02B7/182G02B1/12
    • B29D11/00596G02B5/124
    • An optical element (50; 72a-d; 80; 90), which has a first optical member (1; 51; 86; 93; 101) with at least one indentation (2a-f; 20; 25; 30; 35; 40; 57a-c; 100) at a first surface (3) thereof, and a second optical member (5; 52; 87a-c; 94; 104) attached to the first surface (3) of the first optical member (1; 51; 86; 93; 101), this second optical member (5; 52; 87a-c; 94; 104) essentially conforming to the at least one indentation (2a-f; 20; 25; 30; 35; 40; 57a-c; 100) in the first optical member. The optical element further comprises at least one reflector (9-10; 55a-c; 85a-c; 92a-e) at an interface between the first and second optical members, the at least one reflector being located at the at least one indentation. The reflector (9-10; 55a-c; 85a-c; 92a-e) is formed by an interface between a cavity (8) formed between the first and second optical members and one of the first and second optical members.
    • 一个光学元件(50; 72a-d; 80; 90),它具有一个具有至少一个凹槽(2a-f; 20; 25; 30; 35; 35)的第一光学元件(1; 51; 86; 40; 57a-c; 100)和第一光学构件(1)的第一表面(3)上的第二光学构件(5; 52; 87a-c; 94; 104) ;所述第二光学构件(5; 52; 87a-c; 94; 104)基本上符合所述至少一个凹陷(2a-f; 20; 25; 30; 35; 40; 57a-c; 100)。 所述光学元件还包括在所述第一和第二光学构件之间的界面处的至少一个反射器(9-10; 55a-c; 85a-c; 92a-e),所述至少一个反射器位于所述至少一个凹陷处 。 反射器(9-10; 55a-c; 85a-c; 92a-e)由形成在第一和第二光学构件之间的空腔(8)与第一和第二光学构件中的一个之间的界面形成。
    • 56. 发明申请
    • LIGHTING SYSTEM
    • 照明系统
    • US20110013389A1
    • 2011-01-20
    • US12934679
    • 2009-03-24
    • Oscar Hendrikus WillemsenWillem Lubertus Ijzerman
    • Oscar Hendrikus WillemsenWillem Lubertus Ijzerman
    • F21V9/00F21S4/00F21V11/00F21V7/00
    • F21V7/0016F21S8/04F21V7/0008F21V11/08F21Y2115/10
    • This invention relates to a lighting system (100) which provides front side lighting, where a main portion of the light is outputted in the front direction of the lighting system, and back side lighting, where a sub portion of the light is outputted in a back side direction of the lighting system. The lighting system is arranged such that light from a light unit (103) is mixed in a mixing chamber (105). The mixing chamber has a first light exit portion (106) which is arranged for outputting a main portion of the mixed light for front side lighting. The mixing chamber is further arranged with a second light exit portion (101) arranged in association with the mixing chamber for outputting a sub portion of the mixed light for back side lighting from the lighting system. The invention is based on an insight that by utilizing the mixing chamber in the lighting system, back side lighting is achieved and thereby hardly affecting the beam shape of the front side lighting from the lighting system.
    • 本发明涉及一种提供正面照明的照明系统(100),其中光的主要部分在照明系统的前方向上被输出,以及背面照明,其中光的一部分被输出 照明系统的背面方向。 照明系统被布置成使得来自光单元(103)的光在混合室(105)中混合。 混合室具有第一出光部(106),该第一光出射部(106)被布置成输出用于前侧照明的混合光的主要部分。 混合室还配置有与混合室相关联地布置的第二光出射部分(101),用于从照明系统输出用于背面照明的混合光的一部分。 本发明基于通过利用照明系统中的混合室的观点,实现背面照明,从而几乎不影响来自照明系统的前侧照明的光束形状。
    • 57. 发明授权
    • Lighting device
    • 照明装置
    • US07789536B2
    • 2010-09-07
    • US12093722
    • 2006-11-09
    • Willem Lubertus Ijzerman
    • Willem Lubertus Ijzerman
    • F21F3/00
    • F21V7/0091F21V5/04F21Y2115/10G02B19/0028G02B19/0066
    • The present invention relates to a lighting device in the form of a matrix illumination system, comprising a transparent carrier plate (11) provided with a plurality of LEDs (3, 5), arranged thereon. The LEDs may be arranged in a pattern with rows and columns and each LED may be optically connected to a collimating optical component (13, 15) in the form of an optical transparent body which collimates light generated by the respective light emitting diode by means of total internal reflection. In order to make the overall system transparent, so that objects behind the system may be visible therethrough, the space between the optical elements of the individual LEDs is filled with a filling material (29) that has a refractive index which is higher than the refractive index of air. A gap is maintained between the filling material and the surfaces of the optical components in order to maintain the TIR lens property.
    • 本发明涉及一种矩阵照明系统形式的照明装置,其包括设置有布置在其上的多个LED(3,5)的透明载体板(11)。 LED可以布置成具有行和列的图案,并且每个LED可以光学连接到光学透明体形式的准直光学部件(13,15),该准直光学部件以相应的发光二极管产生的光通过 全内反射。 为了使整个系统变得透明,使得系统后面的物体可以通过其看到,各个LED的光学元件之间的空间用填充材料(29)填充,该填充材料的折射率高于折射率 空气指数 为了保持TIR透镜性能,在填充材料和光学部件的表面之间保持间隙。
    • 60. 发明申请
    • Switchable Display Device
    • 可切换显示设备
    • US20080252639A1
    • 2008-10-16
    • US12067964
    • 2006-08-31
    • Willem Lubertus IjzermanMarcellinus Petrus Carolus Michael Krijn
    • Willem Lubertus IjzermanMarcellinus Petrus Carolus Michael Krijn
    • H04N13/04
    • H04N13/398H04N13/305H04N13/31H04N13/359H04N13/361
    • A switchable display device (100) which is arranged to switch between a two-dimensional view mode and a three-dimensional view mode is disclosed. The switchable display device (100) comprises: a structure (104) of light generating elements (105-108) for generating light on basis of respective driving values; and optical directory means (110) for directing the generated light in dependence of an actual view mode, the actual view mode being either the two-dimensional view mode or the three-dimensional view mode. The switchable display device (100) is arranged to alternately display two-dimensional image data and three-dimensional image data, while the optical directory means (110) are switched synchronously; the 2D/3D switching is performed at a predetermined frequency, sufficiently high so that the observer can perceive a 2D window and a 3D window simultaneously.
    • 公开了一种被设置为在二维视图模式和三维视图模式之间切换的可切换显示装置(100)。 可切换显示装置(100)包括:用于基于相应的驱动值产生光的发光元件(105-108)的结构(104); 以及光学目录装置(110),用于根据实际观看模式来指示生成的光,实际观看模式是二维视图模式或三维视图模式。 可切换显示装置(100)被布置成在光目录装置(110)同步切换的同时交替地显示二维图像数据和三维图像数据; 以预定的频率执行2D / 3D切换,足够高,使得观察者可以同时感知2D窗口和3D窗口。