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    • 51. 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。
    • 57. 发明申请
    • LED-BASED LUMINAIRE WITH ADJUSTABLE BEAM SHAPE
    • 基于LED的LED可调节光束形状
    • US20100165618A1
    • 2010-07-01
    • US12663522
    • 2008-06-09
    • Michel Cornelis Josephus Marie VissenbergWillem Lubertus Ijzerman
    • Michel Cornelis Josephus Marie VissenbergWillem Lubertus Ijzerman
    • F21V9/10F21V1/00
    • G02B6/0068F21K9/00F21K9/61F21K9/65F21V5/007F21Y2105/00F21Y2105/10F21Y2105/12F21Y2115/10G02B6/0016G02B6/0021G02B6/0031G02B6/0036
    • Proposed is a luminaire (1), comprising light sources (10) and optical elements (20). The light sources (10) are arranged in a first (11) and a second array (12), while the optical elements (20) are arranged in a first (21) and a second section (22). The first ‘light sources’ array (11) and the first Optical element’ section (21) form a first group (31), and the second array (12) and the section (22) form a second group (32). The luminaire (1) is characterized in that the optical elements (20) of each group are arranged to have different beam shaping characteristics, and the arrays (11,12) are arranged to be individually addressable. This is especially advantageous in illumination applications where the control of the beam shape is required or desired. Advantageously, the invention provides a luminaire (1) capable of adjusting the beam shape without using an adjustable optical system. Moreover, the control bandwidth of the light sources limits the speed with which the beam shape can be adjusted.
    • 提出了一种包括光源(10)和光学元件(20)的照明器(1)。 光源(10)布置在第一(11)和第二阵列(12)中,而光学元件(20)被布置在第一部分(21)和第二部分(22)中。 第一“光源”阵列(11)和第一光学元件部分(21)形成第一组(31),第二阵列(12)和部分(22)形成第二组(32)。 照明器(1)的特征在于,每组的光学元件(20)布置成具有不同的光束整形特性,并且阵列(11,12)被布置为可单独寻址。 这在需要或期望的波束形状的控制的照明应用中是特别有利的。 有利地,本发明提供一种能够调节光束形状而不使用可调光学系统的照明器(1)。 此外,光源的控制带宽限制了可以调节光束形状的速度。