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    • 4. 发明申请
    • POSTER HOLDER AND METHOD FOR CONTROLLING A POSTER HOLDER
    • 海盗持有人及其控制方法
    • WO2011055263A1
    • 2011-05-12
    • PCT/IB2010/054817
    • 2010-10-25
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.TUKKER, Teunis, Willem
    • TUKKER, Teunis, Willem
    • G09F13/22G09F27/00
    • G09F13/22G09F13/005G09F27/00G09F2013/222
    • The present invention relates to a poster holder (100), comprising a frame structure (102) configured to receive a poster (104), a plurality of light sources (110), and a control unit (116) for controlling the plurality of light sources (110), wherein the poster holder (100) further comprises a bar code reader (114) connected to the control unit (116) and configured to detect a bar code (120) of the poster (104), and wherein the control unit (116) is further adapted to control the plurality of light sources (110) according to a predetermined illumination pattern based on information corresponding to the detected bar code (120). Advantages with the invention include the possibility to keep the manufacturing process of the poster as simple as possible, as there is only necessary to provide a bar code with the poster. Additionally, the use of a bar code reader is simple and quick when installing a poster with the poster holder.
    • 本发明涉及一种海报保持器(100),包括:框架结构(102),其被配置为接收海报(104),多个光源(110)和控制单元(116),用于控制多个光 (110),其中所述海报保持器(100)还包括连接到所述控制单元(116)并被配置为检测所述海报(104)的条形码(120)的条形码阅读器(114),并且其中所述控件 单元(116)还适于基于与检测到的条形码(120)相对应的信息,根据预定照明模式来控制多个光源(110)。 本发明的优点包括保持海报的制造过程尽可能简单的可能性,因为只需要提供海报的条形码。 另外,使用海报持有人安装海报时,使用条形码阅读器是简单而快速的。
    • 7. 发明申请
    • SPOT ILLUMINATION SYSTEM WITH IMPROVED LIGHT MIXING
    • 具有改进的光混合的SPOT照明系统
    • WO2011117815A1
    • 2011-09-29
    • PCT/IB2011/051197
    • 2011-03-22
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.KURT, RalphTUKKER, Teunis, Willem
    • KURT, RalphTUKKER, Teunis, Willem
    • F21K99/00F21V7/00
    • F21V7/0083F21K9/00F21Y2115/10
    • A spot illumination system (10) comprising a collimating element (2) formed by a set of N funnel shaped reflectors (11) and a set of N light source arrays(1), each comprising a plurality of light sources (12). The reflectors each have a reflecting inner surface, an entrance aperture and an exit aperture, and are arranged in a bundle with all entrance apertures in one end and all exit apertures in an opposite end. The funnel shaped reflectors are further truncated so that a side (12) of a reflector facing an adjacent reflector terminates before the opposite end, such that the collimating element has N entrance apertures (7) leading into N funnel shaped reflectors (11), which funnel shaped reflectors merge into one single exit aperture(8). The N light source arrays(1) and arranged to emit light into one of the entrance apertures(7), respectively. The light from each light array is initially guided and mixed by a separate funnel shaped reflector, and then mixed with light from the other light arrays. As a result, an improved mixing and collimation is achieved compared to arranging N funnel shaped reflectors next to each other, and emitting light from N exit apertures.
    • 一种点照明系统(10),包括由一组N个漏斗形反射器(11)和一组N个光源阵列(1)形成的准直元件(2),每组包括多个光源(12)。 反射器各自具有反射内表面,入口孔和出口孔,并且布置成具有一端中的所有入口孔和相对端中的所有出口孔的束。 漏斗形反射器被进一步截顶,使得面向相邻反射器的反射器的侧面(12)在相对端之前终止,使得准直元件具有N个通向N个漏斗形反射器(11)的入口孔(7),其中 漏斗形反射器合并成一个单个出口孔(8)。 N个光源阵列(1)并且被布置成分别将光发射到一个入口孔(7)中。 来自每个光阵列的光首先由单独的漏斗状反射器引导并混合,然后与来自其它光阵列的光混合。 结果,与将N个漏斗形反射器相邻放置并从N个出射孔发射光的情况相比,实现了改进的混合和准直。
    • 8. 发明申请
    • DIFFRACTIVE PART
    • 偏差部分
    • WO2006013526A2
    • 2006-02-09
    • PCT/IB2005/052460
    • 2005-07-21
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.HENDRIKS, BernardusTUKKER, Teunis, Willem
    • HENDRIKS, BernardusTUKKER, Teunis, Willem
    • G11B7/00
    • G11B7/1353G11B7/0903G11B2007/0006
    • A diffractive part for an optical scanning device is described. The device is for scanning a first information layer by means of a first radiation beam having a first wavelength and a first polarisation, a second information layer by means of a second radiation beam having a second wavelength and a second polarisation, and a third information layer by means of a third radiation beam having a third wavelength and a third polarisation. The first, second and third wavelengths differ from each other. The device includes a radiation source for supplying the first, second and third radiation beams, an objective lens system for converging the radiation beams on the respective information layer, and a diffractive part arranged in the optical path of the radiation beams. The diffractive part includes a first diffractive grating structure having a series of steps of predetermined height to introduce a phase change that is an integral multiple of 27E for both the second and third wavelengths but not the first wavelength, and a second diffractive grating structure having a series of steps of predetermined height to introduce a phase change that is an integral multiple of 2π for the first and third wavelengths but not the second wavelength.
    • 描述光学扫描装置的衍射部分。 该装置用于借助于具有第一波长和第一偏振的第一辐射束扫描第一信息层,借助于具有第二波长和第二偏振的第二辐射束和第三信息层扫描第二信息层 借助于具有第三波长和第三偏振的第三辐射束。 第一,第二和第三波长彼此不同。 该装置包括用于提供第一,第二和第三辐射束的辐射源,用于将辐射束会聚在相应信息层上的物镜系统以及布置在辐射束的光路中的衍射部分。 衍射部分包括具有预定高度的一系列步骤的第一衍射光栅结构,以引入第二和第三波长但不是第一波长的27E的整数倍的相位变化;以及第二衍射光栅结构,其具有 一系列预定高度的步骤,以引入作为第一和第三波长但不是第二波长的2p的整数倍的相位变化。