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    • 31. 发明申请
    • ILLUMINATION SYSTEM
    • 照明系统
    • US20100142182A1
    • 2010-06-10
    • US12595055
    • 2008-04-11
    • Roel Van WoudenbergChristoph Gerard August Hoelen
    • Roel Van WoudenbergChristoph Gerard August Hoelen
    • F21V9/16F21V9/00
    • G02F1/133603G02F2001/133614H01L33/507
    • The invention provides an illumination system comprising a light-emitting device which excites a first luminescent element, which forms part of the light-emitting device. The light emitted from the first luminescent element and/or the light emitted by the light-emitting device excite a second luminescent element, physically separated from the light-emitting device. By employing two luminescent elements, the first element in the light-emitting device, and the second element physically separated from the light-emitting device, such as on a cover plate, the conversion of light produced by the light-emitting device is performed at both a “local” and a “remote” location, respectively, and the amount of luminescent material required at the remote location may be reduced compared to the situation of the prior art where the light conversion was only performed at a remote location.
    • 本发明提供了一种照明系统,其包括激发形成发光装置的一部分的第一发光元件的发光装置。 从第一发光元件发射的光和/或由发光器件发射的光激发与发光器件物理分离的第二发光元件。 通过采用两个发光元件,发光器件中的第一元件和与发光器件物理分离的第二元件,例如在盖板上,由发光器件产生的光的转换是在 分别是“本地”和“远程”位置,并且与仅在远程位置进行光转换的现有技术的情况相比,远程位置所需的发光材料的量可能会减少。
    • 32. 发明申请
    • ILLUMINATION SYSTEM
    • 照明系统
    • US20090283780A1
    • 2009-11-19
    • US11721169
    • 2005-12-05
    • Johannes Petrus Maria AnsemsChristoph Gerard August Hoelen
    • Johannes Petrus Maria AnsemsChristoph Gerard August Hoelen
    • H01L33/00
    • H01L25/0753H01L33/60H01L2224/48091H01L2224/73265H01L2924/09701H01L2924/3011H05B33/0821H05B33/0857H01L2924/00014H01L2924/00
    • An illumination system has a mounting substrate (4) for mounting and electrically contacting a plurality of light-emitting diodes (R, A, G, B). A first category of the light-emitting diodes (G, B) comprises a first translucent substrate (11) provided with an active layer (1) on an outer surface (13) of the first translucent substrate facing the mounting substrate (4); electrical contacts are provided at a side facing the mounting substrate. A second category of the light-emitting diodes (R, A) comprises an active layer (2) arranged on a second translucent substrate (12); at least one electrical contact is provided at a side facing away from the mounting substrate. Each light-emitting diode of the first category is provided on a first sub mount (21). Each light-emitting diode of the second category is provided on a second sub mount (22). The first and second sub mount are provided on the mounting substrate.
    • 照明系统具有用于安装和电接触多个发光二极管(R,A,G,B)的安装基板(4)。 发光二极管(G,B)的第一类包括在面向安装基板(4)的第一透光性基板的外表面(13)上设置有有源层(1)的第一透光性基板(11)。 电接点设置在面向安装基板的一侧。 第二类发光二极管(R,A)包括布置在第二透光性基板(12)上的有源层(2)。 在背离安装基板的一侧设置至少一个电触点。 第一类别的每个发光二极管设置在第一子安装座(21)上。 第二类别的每个发光二极管设置在第二子安装座(22)上。 第一和第二子安装件设置在安装基板上。
    • 34. 发明申请
    • ILLUMINATION SYSTEM
    • 照明系统
    • US20090225400A1
    • 2009-09-10
    • US11721091
    • 2005-12-02
    • Johannes Petrus Maria AnsemsChristoph Gerard August Hoelen
    • Johannes Petrus Maria AnsemsChristoph Gerard August Hoelen
    • G02F1/29
    • F21V14/003F21Y2115/10G02B1/06G02B5/0215G02B5/0278G02B26/004
    • An illumination system has a plurality of light emitters (R, G, B) and a light-collimator (1) for collimating light emitted by the light emitters. The light-collimator is arranged around a longitudinal axis (25) of the illumination system. A light-exit window (5) of the light-collimator at a side facing away from the light-emitters is provided with a translucent cover plate (11) provided with a switchable optical element (15) based on electro wetting. The light-exit window of the light-collimator or the translucent cover plate is provided with a light-dispersing structure (7) for broadening an angular distribution of the light emitted by the illumination system. The optical element (15) being switchable in a mode of operation reducing the effect of the light-dispersing structure (7). Preferably, the effect of the light-dispersing structure is substantially counteracted when the switchable optical element operates in the mode of operation reducing the effect of the light-dispersing structure.
    • 照明系统具有多个发光体(R,G,B)和用于准直由发光体发射的光的光准直器(1)。 光准直器围绕照明系统的纵向轴线(25)布置。 在远离发光体的一侧的光准直器的出光窗(5)设置有基于电润湿设置有可切换光学元件(15)的半透明盖板(11)。 光准直仪或半透明盖板的光出射窗设置有用于使由照明系统发射的光的角度分布变宽的光分散结构(7)。 光学元件(15)可以以减少光分散结构(7)的效果的操作模式切换。 优选地,当可切换光学元件以降低光散射结构的效果的操作模式操作时,光散射结构的效果基本抵消。
    • 35. 发明授权
    • Light panel with enlarged viewing window
    • 灯面板放大观景窗
    • US06988813B2
    • 2006-01-24
    • US10227228
    • 2002-08-23
    • Christoph Gerard August HoelenGerard Harbers
    • Christoph Gerard August HoelenGerard Harbers
    • F21V8/00
    • G02B6/0038G02B6/0068
    • The invention relates to a light panel (12), comprising: a light guide having a front surface defining a viewing window (11), a back surface and sides (3, 4) between the front and back surfaces; and a patterned array of light sources (8, 9, 10) of at least two types, which types are distinguished by the color of light emitted by the light sources of said at least two types, said array being arranged along at least one of the sides. Each light source generates in use a divergent light beam of a color into the panel to, in combination, color the panel. Further, the array comprises complementary sub-arrays (8, 9, 8, 9 & 9, 10, 9, 10) of light sources along at least two of the sides. Since the sub-arrays are complementary, in that by all light sources of the different types the same amount of light is emitted into the light guide as in prior art single array configurations (the same number of light sources), but from two or more sides while maintaining the general light source pitch, the average distance or pitch between light sources of one of the types, can be decreased. Therewith also the required distance or colors for color mixing is lessened and the viewing window is enlarged.
    • 本发明涉及一种光板(12),包括:具有限定观察窗(11)的前表面,前表面和后表面之间的背面和侧面(3,4)的光导; 以及至少两种类型的光源(8,9,10)的图案化阵列,这些类型由所述至少两种类型的光源发出的光的颜色区分,所述阵列沿着至少一种 两边。 每个光源在使用中产生颜色的发散光束到面板中,以组合地对面板进行着色。 此外,阵列包括沿着至少两个侧面的光源的互补子阵列(8,9,8,9和9,10,9,10)。 由于子阵列是互补的,因为通过不同类型的所有光源,与现有技术的单阵列配置(相同数量的光源)一样,将相同量的光发射到光导中,而是从两个或更多个 同时保持一般的光源间距,可以减少其中一种类型的光源之间的平均距离或间距。 因此,还需要所需的颜色混合距离或颜色,并且观察窗口被放大。
    • 36. 发明授权
    • Illumination system
    • 照明系统
    • US08491154B2
    • 2013-07-23
    • US13531661
    • 2012-06-25
    • Roel van WoudenbergChristoph Gerard August Hoelen
    • Roel van WoudenbergChristoph Gerard August Hoelen
    • F21V9/00
    • G02F1/133603G02F2001/133614H01L33/507
    • The invention provides an illumination system comprising a light-emitting device which excites a first luminescent element, which forms part of the light-emitting device. The light emitted from the first luminescent element and/or the light emitted by the light-emitting device excite a second luminescent element, physically separated from the light-emitting device. By employing two luminescent elements, the first element in the light-emitting device, and the second element physically separated from the light-emitting device, such as on a cover plate, the conversion of light produced by the light-emitting device is performed at both a “local” and a “remote” location, respectively, and the amount of luminescent material required at the remote location may be reduced compared to the situation of the prior art where the light conversion was only performed at a remote location.
    • 本发明提供了一种照明系统,其包括激发形成发光装置的一部分的第一发光元件的发光装置。 从第一发光元件发射的光和/或由发光器件发射的光激发与发光器件物理分离的第二发光元件。 通过采用两个发光元件,发光器件中的第一元件和与发光器件物理分离的第二元件,例如在盖板上,由发光器件产生的光的转换是在 分别是“本地”和“远程”位置,并且与仅在远程位置进行光转换的现有技术的情况相比,远程位置所需的发光材料的量可能会减少。
    • 38. 发明授权
    • Color-tunable illumination system
    • 可调色照明系统
    • US08172415B2
    • 2012-05-08
    • US12600511
    • 2008-05-20
    • Rene Theodorus WeghChristoph Gerard August HoelenChantal SweegersRene Jan HendriksMartijn Henri Richard Lankhorst
    • Rene Theodorus WeghChristoph Gerard August HoelenChantal SweegersRene Jan HendriksMartijn Henri Richard Lankhorst
    • F21V9/16
    • F21S10/02F21K9/62F21K9/64F21V7/0008F21Y2113/13F21Y2115/10
    • The invention relates to a color-tunable illumination system (10; 12; 14) and a luminaire. The color-tunable illumination system comprises a first light source comprising a first set of light emitting diodes (21, 24), and a second light source comprising a second set of light emitting diodes (31, 37, 34). Both the first and second light source emit light of substantially a first predefined color into a light mixing chamber (60). The light mixing chamber further comprises a first luminescent material (50) converting light of the first predefined color into light of a second predefined color. The first light source is positioned with respect to the first luminescent material for illuminating the first luminescent material with a first flux of light being part of the light emitted by the first light source into the light mixing chamber. The second light source is positioned with respect to the first luminescent material for illuminating the first luminescent material with a second flux of light being part of the light emitted by the second light source into the light mixing chamber. The first flux is different from the second flux. The effect of the measures according to the invention is that a change in the intensity of the light emitted by the first light source relative to the intensity of the light emitted by the second light source results in a change of the color emitted by the color-tunable illumination system.
    • 本发明涉及一种可调色照明系统(10; 12; 14)和照明装置。 颜色可调照明系统包括包括第一组发光二极管(21,24)的第一光源和包括第二组发光二极管(31,37,34)的第二光源。 第一和第二光源都将基本上第一预定颜色的光发射到光混合室(60)中。 光混合室还包括将第一预定颜色的光转换成第二预定颜色的光的第一发光材料(50)。 第一光源相对于第一发光材料定位,用于照射第一发光材料,第一光束是由第一光源发射到光混合室中的光的一部分。 第二光源相对于第一发光材料定位,用于用作为由第二光源发射到光混合室中的光的一部分的第二光束照射第一发光材料。 第一通量与第二通量不同。 根据本发明的措施的效果是,由第一光源发射的光的强度相对于由第二光源发射的光的强度的变化导致颜色发射的颜色的变化, 可调照明系统。
    • 39. 发明申请
    • LIGHTING DEVICE
    • 照明设备
    • US20110063834A1
    • 2011-03-17
    • US12671946
    • 2008-08-04
    • Ramon Pascal Van GorkomChristoph Gerard August HoelenMarco Van AsCornelis Adrianus Henricus Antonius MutsaersHuib Cooijmans
    • Ramon Pascal Van GorkomChristoph Gerard August HoelenMarco Van AsCornelis Adrianus Henricus Antonius MutsaersHuib Cooijmans
    • F21V9/00
    • G02B27/1006G02B19/0019G02B19/0066G02B27/145G02B27/149
    • A lighting device (100, 200, 300, 400) is disclosed. The device comprises a plurality of light sources (111, 119, 120, 211, 219, 220) providing light in different wavelengths, a collimating means (104, 204) having a receiving end (103, 203, 407) and an output end (114, 214, 409), wherein said light sources are arranged at said receiving end. The collimating means comprises a set of wavelength selective filters (109, 110, 115, 116, 117, 118, 215, 217) arranged as sub-collimators (106, 107, 108, 206, 207, 208) to each of said plurality of light sources such that, for each light source, said sub-collimator collimates the light from its light source, and said wavelength selective filter of said each light source is translucent for light from adjacent light sources of different wavelength, and a second set of wavelength selective filters comprising compensation filters (222, 224, 226, 228, 230, 232) wherein each compensation filter is arranged symmetrically with respect to corresponding part of the wavelength selective filter of said first set around a general light direction of the corresponding light source.
    • 公开了一种照明装置(100,200,300,400)。 该装置包括提供不同波长的光的多个光源(111,119,120,211,219,220),具有接收端(103,203,407)的准直装置(104,204)和输出端 (114,214,409),其中所述光源被布置在所述接收端。 准直装置包括一组波长选择滤波器(109,110,115,116,117,118,215,217),其被布置为每个所述多个子载波的子准直器(106,107,108,206,207,208) 的光源,使得对于每个光源,所述副准直仪准直来自其光源的光,并且所述每个光源的所述波长选择滤光器对于来自不同波长的相邻光源的光是半透明的,而第二组 包括补偿滤波器(222,224,226,228,230,232)的波长选择滤波器,其中每个补偿滤波器相对于所述第一组的波长选择滤波器的对应部分围绕相应光源的一般光方向对称地布置 。
    • 40. 发明申请
    • COLOR-TUNABLE ILLUMINATION SYSTEM
    • 彩色照明系统
    • US20100172120A1
    • 2010-07-08
    • US12600511
    • 2008-05-20
    • Rene Theodorus WeghChristoph Gerard August HoelenChantal SweegersRene Jan HendriksMartijn Henri Richard Lankhorst
    • Rene Theodorus WeghChristoph Gerard August HoelenChantal SweegersRene Jan HendriksMartijn Henri Richard Lankhorst
    • F21V9/16
    • F21S10/02F21K9/62F21K9/64F21V7/0008F21Y2113/13F21Y2115/10
    • The invention relates to a color-tunable illumination system (10; 12; 14) and a luminaire. The color-tunable illumination system comprises a first light source comprising a first set of light emitting diodes (21, 24), and a second light source comprising a second set of light emitting diodes (31, 37, 34). Both the first and second light source emit light of substantially a first predefined color into a light mixing chamber (60). The light mixing chamber further comprises a first luminescent material (50) converting light of the first predefined color into light of a second predefined color. The first light source is positioned with respect to the first luminescent material for illuminating the first luminescent material with a first flux of light being part of the light emitted by the first light source into the light mixing chamber. The second light source is positioned with respect to the first luminescent material for illuminating the first luminescent material with a second flux of light being part of the light emitted by the second light source into the light mixing chamber. The first flux is different from the second flux. The effect of the measures according to the invention is that a change in the intensity of the light emitted by the first light source relative to the intensity of the light emitted by the second light source results in a change of the color emitted by the color-tunable illumination system.
    • 本发明涉及一种可调色照明系统(10; 12; 14)和照明装置。 颜色可调照明系统包括包括第一组发光二极管(21,24)的第一光源和包括第二组发光二极管(31,37,34)的第二光源。 第一和第二光源都将基本上第一预定颜色的光发射到光混合室(60)中。 光混合室还包括将第一预定颜色的光转换成第二预定颜色的光的第一发光材料(50)。 第一光源相对于第一发光材料定位,用于照射第一发光材料,第一光束是由第一光源发射到光混合室中的光的一部分。 第二光源相对于第一发光材料定位,用于用作为由第二光源发射到光混合室中的光的一部分的第二光束照射第一发光材料。 第一通量与第二通量不同。 根据本发明的措施的效果是,由第一光源发射的光的强度相对于由第二光源发射的光的强度的变化导致颜色发射的颜色的变化, 可调照明系统。