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    • 14. 发明申请
    • ILLUMINATION SYSTEM AND DISPLAY DEVICE
    • 照明系统和显示设备
    • US20100053992A1
    • 2010-03-04
    • US12515032
    • 2007-11-20
    • Marcellinus Petrus Carolus Michael KrijnMartin Jacobus Johan JakRamon Pascal Van GorkomHugo Johan CornelissenDirk Kornelis Gerhardus De Boer
    • Marcellinus Petrus Carolus Michael KrijnMartin Jacobus Johan JakRamon Pascal Van GorkomHugo Johan CornelissenDirk Kornelis Gerhardus De Boer
    • F21V7/04
    • G02B6/0038G02B6/0055G02B6/0068G02F1/133526G02F1/133615G02F1/133621G02F2001/133623
    • The invention relates to an illumination system (10) for illuminating a display device, and to the display device. The illumination system comprises a light distribution element (20 for distributing light across the display device. The light distribution element comprises a light output window (40), a rear wall (42) situated opposite the light output window, and edge walls (44, 46) extending between the light output window and the rear wall, at least one of the edge walls comprising a light input window (48) for admitting light into the light distribution element. The light distribution element further comprises specularly reflective light-outcoupling means (50) for specularly reflecting light from the light distribution element towards the display device via the light output window. A first light beam (100) comprises light of a first primary color (R) impinging on the light input window for coupling the light of the first primary color into the light distribution element. At least a second light beam (102, 104) comprises light of a second primary color (G, B) impinging on the light input window for coupling the light of the second primary color into the light distribution element, the second light beam being substantially not parallel to the first light beam. Use of specularly reflective outcoupling means yields a difference between an angle of incidence between the first and the second light beam. This difference is substantially preserved, which results in a color separation of the light emitted by the light distribution element towards the display device.
    • 本发明涉及用于照明显示装置的照明系统(10)和显示装置。 所述照明系统包括配光元件(20),用于在所述显示装置上分配光,所述配光元件包括光输出窗(40),与所述光输出窗相对的后壁(42) 46),在所述光输出窗和所述后壁之间延伸,所述边缘壁中的至少一个包括用于将光引入所述配光元件的光输入窗(48),所述光分配元件还包括镜面反射光输出耦合装置 第一光束(100)包括照射在光输入窗口上的第一原色(R)的光,用于将来自光分布元件的光的光反射到显示装置 至少第二光束(102,104)包括入射在光输入窗口fo上的第二原色(G,B)的光 r将第二原色光耦合到配光元件中,第二光束基本上不平行于第一光束。 使用镜面反射输出耦合装置产生第一和第二光束之间的入射角之间的差异。 基本上保留了这种差异,这导致由配光元件发射的光朝向显示装置的颜色分离。
    • 17. 发明授权
    • High spectral resolution color sensor using non-dispersive elements
    • 使用非色散元素的高光谱分辨率色彩传感器
    • US09217671B2
    • 2015-12-22
    • US13391412
    • 2010-08-25
    • Hendrikus Hubertus Petrus GommansMarcellinus Petrus Carolus Michael KrijnHugo Johan Cornelissen
    • Hendrikus Hubertus Petrus GommansMarcellinus Petrus Carolus Michael KrijnHugo Johan Cornelissen
    • H05B37/02G01J3/36G01J1/04G01J1/32G01J1/42G01S3/784G01J3/12
    • G01J3/36G01J1/04G01J1/0411G01J1/0437G01J1/0488G01J1/32G01J1/4228G01J2003/1213G01S3/784
    • The invention describes a light sensor (1) comprising a filter arrangement (11), which filter arrangement (11) comprises a number of spectral filters (F1, F2, . . . , Fn) for filtering incident light (L), wherein a spectral filter (F1, F2, . . . , Fn) is realized to pass a distinct component of the incident light (L), an aperture arrangement (12) for admitting a fraction of the incident light (L), and a sensor arrangement (13) realized to collect the admitted filtered light (L′), which sensor arrangement (13) comprises an array of sensor elements (130) for generating image-related signals (S, S1, S2, . . . , Sn) and which sensor array is sub-divided into a number of regions (R1, R2, . . . , Rn), wherein a region (R1, R2, . . . , Rn) of the sensor array is allocated to a corresponding spectral filter (Fi, F2, . . . , Fn) such that an image-related signal (S) generated by a sensor element (130) of a particular region (R1, R2, . . . , Rn) comprises information pertaining to the direction of origin and/or the spectral composition of the light passed by the corresponding spectral filter (F1, F2, . . . , Fn). The invention further describes a light sensor device (10) for determining the direction of origin and/or the spectral composition of light (L) incident at the light sensor device (10), a method of collecting incident light (L), and a method of determining the direction of origin and/or the spectral composition of incident light (L).
    • 本发明描述了一种包括滤光器装置(11)的光传感器(1),该滤光器装置(11)包括用于滤光入射光(L)的多个光谱滤光器(F1,F2 ...,Fn),其中a 光谱滤波器(F1,F2,...,Fn)被实现为通过入射光(L)的不同分量,用于允许入射光(L)的一部分的孔径布置(12),以及传感器装置 (13),其被实现为收集被允许的过滤光(L'),所述传感器装置(13)包括用于生成图像相关信号(S,S1,S2 ...,Sn)的传感器元件阵列(130)和 该传感器阵列被细分为多个区域(R1,R2,...,Rn),其中传感器阵列的区域(R1,R2,...,Rn)被分配给相应的光谱滤波器 Fi,F2,...,Fn),使得由特定区域(R1,R2,...,Rn)的传感器元件(130)生成的图像相关信号(S)包括关于directio n的原点和/或由相应的光谱滤光器(F1,F2,...)通过的光的光谱组成。 。 。 ,Fn)。 本发明还描述了一种用于确定入射在光传感器装置(10)处的光(L)的原点方向和/或光谱组成的光传感器装置(10),收集入射光(L)的方法和 确定入射光的原点方向和/或光谱组成的方法(L)。