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    • 1. 发明申请
    • ILLUMINATION SYSTEM COMPRISING BEAM SHAPING ELEMENT
    • 包含光束形状元件的照明系统
    • WO2010122507A1
    • 2010-10-28
    • PCT/IB2010/051749
    • 2010-04-21
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VERSCHUREN, Coen, A.ZIJP, Ferry
    • VERSCHUREN, Coen, A.ZIJP, Ferry
    • H01L51/52F21V5/00
    • H01L51/5268B82Y20/00B82Y30/00F21Y2105/00F21Y2115/15G02F1/133603G02F1/133606G02F2001/133607G02F2203/023H01L51/5275H01L2251/5361H01L2251/5369
    • The invention relates to an illumination system (10) comprising a light emitting device (20) and a beam shaping element (30) for generating an angular distribution (φ) of the light emitted from the illumination system. The beam shaping element is configured for recycling at least a part of the light emitted from a light emitting surface (26) of the light emitting device via reflection back towards the light emitting surface. The illumination system further comprises a diffuser (40, 42) arranged substantially parallel to the light emitting surface for diffusing at least part of the recycled light. The diffuser is constituted of a translucent diffuser (40) and/or a diffusely reflective electrode layer (42) of the light emitting device. Limiting the angular distribution by recycling light, using the beam shaping element for recycling light via reflection, reduces glare when the illumination system is used in general lighting applications. The diffuser avoids that the recycled light is confined between the beam shaping element and the light emitting surface of the light emitting element. The recycling is preferably done via total internal reflection at the beam shaping element. The presence of the diffuser improves the efficiency of the illumination system.
    • 本发明涉及一种包括发光器件(20)和用于产生从照明系统发射的光的角分布(f)的光束整形元件(30)的照明系统(10)。 光束成形元件被配置为将从发光器件的发光表面(26)发射的光的至少一部分经由反射回到发光表面。 照明系统还包括基本上平行于发光表面布置的扩散器(40,42),用于扩散至少部分再循环光。 扩散器由发光器件的透光漫射器(40)和/或漫反射电极层(42)构成。 通过使用光束成形元件通过反射回收光来回收光来限制角度分布,当照明系统用于一般照明应用时,减少了眩光。 扩散器避免了再生光被束缚在光束成形元件和发光元件的发光表面之间。 回收优选通过在光束整形元件处的全内反射进行。 扩散器的存在提高了照明系统的效率。
    • 2. 发明申请
    • SENSOR DEVICE FOR TARGET PARTICLES IN A SAMPLE
    • 传感器装置在样品中的目标颗粒
    • WO2009053902A3
    • 2009-12-10
    • PCT/IB2008054329
    • 2008-10-21
    • KONINKL PHILIPS ELECTRONICS NVVERSCHUREN COEN AKAHLMAN JOSEPHUS A H MIMMINK ALBERT H JMEGENS MISCHAVEEN JEROENDE BOER BART MJANSEN THEODORUS P H G
    • VERSCHUREN COEN AKAHLMAN JOSEPHUS A H MIMMINK ALBERT H JMEGENS MISCHAVEEN JEROENDE BOER BART MJANSEN THEODORUS P H G
    • G01N15/06
    • G01N15/06G01N15/0656G01N2015/0693G01R33/1269
    • The invention relates to a sensor device(100) and a method for the determination of the amount of target particles(1) at a contact surface(112) adjacent to a sample chamber(2). Target particles(1) in the sample chamber are detected by a sensor element(SE) and at least one corresponding sensor-signal (s, s') is provided. An evaluation unit(EU) then determines the amount of target particles(1) in a first zone(Z1) immediately at the contracts surface(112) and a second zone(Z2) a distance(z) away from the contact surface based on this sensor-signal. In an optical measurement approach, frustrated total internal reflection taking place under different operating conditions (e.g. wavelength, angle of incidenceq) may be used to extract information about the first and second zones(Z1, Z2). In a magnetic measurement approach, different magnetic excitation fields may be used to excite magnetic target particles differently inthe first and second zone(Z2). Moreover, the temporalcourse of a sensor-signal(s, s') can be evaluated, particularly with respect to stochastic movements ofthe target particles(1).
    • 本发明涉及一种传感器装置(100)和用于确定在与样品室(2)相邻的接触表面(112)处的目标颗粒(1)的量的方法。 通过传感器元件(SE)检测样品室中的目标颗粒(1),并提供至少一个对应的传感器信号(s,s')。 然后,评估单元(EU)基于紧接表面(112)立即确定第一区域(Z1)中的目标颗粒(1)的数量和远离接触表面的距离(z)的第二区域(Z2),基于 这个传感器信号。 在光学测量方法中,可以使用在不同操作条件(例如,波长,入射角q)处发生的沮丧的全内反射来提取关于第一和第二区域(Z1,Z2)的信息。 在磁测量方法中,可以使用不同的磁激励场来在第一和第二区(Z2)中不同地激励磁性目标颗粒。 此外,可以评估传感器信号(s,s')的时间,特别是关于目标颗粒(1)的随机运动。
    • 3. 发明申请
    • REELABLE OLED CURTAIN
    • 可折叠OLED幕
    • WO2009136305A1
    • 2009-11-12
    • PCT/IB2009/051687
    • 2009-04-24
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VAN DE WEIJER, PeterLIFKA, HerbertTANASE, CristinaVERSCHUREN, Coen, A.
    • VAN DE WEIJER, PeterLIFKA, HerbertTANASE, CristinaVERSCHUREN, Coen, A.
    • H01L51/52
    • H01L51/5253H01L51/448H01L2251/5338H01L2251/5361
    • This invention relates to an organic light-emitting or light-absorbing device (20), comprising a light unit (30), a first flexible protection layer (35), and a second flexible protection layer (25). The light unit comprises a flexible bottom layer (24) having at least one first barrier layer (27). A bottom electrode (22) is provided on the flexible bottom layer, and an organic layer stack (21) is deposited on top of the bottom electrode. Furthermore, the organic layer stack is designed to emit or absorb light. The light unit has a top electrode (23) arranged on top of the organic layer stack and at least one second barrier (28) layer provided on top of the top electrode. The first flexible protection layer and the second flexible protection layer are arranged to encase the light unit, such that a large-area support structure is provided for the device. The large-area support structure provides a reelable organic light-emitting or light- absorbing device. The invention applies to flexibility and a method of adjusting this flexibility to the specific demands of specific large-area applications, such as space partition devices and roller blinds.
    • 本发明涉及一种有机发光或光吸收装置(20),其包括光单元(30),第一柔性保护层(35)和第二柔性保护层(25)。 光单元包括具有至少一个第一阻挡层(27)的柔性底层(24)。 底部电极(22)设置在柔性底层上,并且有机层叠层(21)沉积在底部电极的顶部上。 此外,有机层堆叠被设计成发射或吸收光。 光单元具有设置在有机层堆叠的顶部上的顶部电极(23)和设置在顶部电极的顶部上的至少一个第二屏障(28)层。 第一柔性保护层和第二柔性保护层被布置成包围光单元,使得为该装置提供大面积的支撑结构。 大面积支撑结构提供了可卷绕的有机发光或吸光装置。 本发明适用于灵活性以及根据特定大面积应用(如空间分隔装置和卷帘)的具体要求调整这种灵活性的方法。
    • 5. 发明申请
    • OPTICAL SCANNING DEVICE, OPTICAL PLAYER AND METHOD FOR ADJUSTING AN OPTICAL SCANNING DEVICE
    • 光学扫描装置,光学平台和调整光学扫描装置的方法
    • WO2006061757A1
    • 2006-06-15
    • PCT/IB2005/054033
    • 2005-12-02
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VERSCHUREN, Coen, A.ZIJP, Ferry
    • VERSCHUREN, Coen, A.ZIJP, Ferry
    • G11B7/00G02B13/00
    • G11B7/1387G11B7/0956G11B7/1372
    • An optical scanning device (12) for scanning an optical record carrier (14) comprises an optical system (20) having at least a focusing lens (32) and a solid immersion lens (34), an optical radiation source (16) for emitting a scanning optical beam 18 passing through the focusing lens (32) and the solid immersion lens (34), a detector (56) for detecting a reflected optical beam (44) reflective from an optical exit face (38) of the solid immersion lens (34) and for generating a control signal the magnitude of which is representative of the amount of reflective radiation reflected from the optical exit face (38) of the solid immersion lens (34), and an adjuster (60, 62) for adjusting the solid immersion lens (34). The adjuster (62) uses the said control signal to adjust the solid immersion lens (34) with respect to the scanning optical beam (18). Further, an optical recording apparatus comprising the optical scanning device (12) and a method for adjusting an optical scanning device are described.
    • 一种用于扫描光学记录载体(14)的光学扫描装置(12)包括至少具有聚焦透镜(32)和固体浸没透镜(34)的光学系统(20),用于发射的光学辐射源 通过聚焦透镜(32)和固体浸没透镜(34)的扫描光束18,用于检测从固体浸没透镜的光学出射面(38)反射的反射光束(44)的检测器(56) (34),并且用于产生控制信号,其大小代表从固体浸没透镜(34)的光学出射面(38)反射的反射辐射量,以及调节器(60,62) 固体浸没透镜(34)。 调节器(62)使用所述控制信号相对于扫描光束(18)调节固体浸没透镜(34)。 此外,描述了包括光学扫描装置(12)和调整光学扫描装置的方法的光学记录装置。
    • 7. 发明申请
    • READ-OUT CONTROL FOR USE WITH A DOMAIN EXPANSION RECORDING MEDIUM
    • 使用扩展记录介质的读出控制
    • WO2005024815A1
    • 2005-03-17
    • PCT/IB2004/051571
    • 2004-08-26
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VERSCHUREN, Coen, A.
    • VERSCHUREN, Coen, A.
    • G11B11/105
    • G11B11/10584G11B11/10515G11B11/10595G11B20/10009
    • The present invention relates to a reading method and apparatus for reading a magneto-optical recording medium comprising at least one storage layer and a read-out layer, wherein an expanded domain leading to a read-out pulse is generated in the read-out layer by copying of a mark region from the at least one storage layer to the read-out layer through heating by a radiation power and with the help of an external magnetic field. A parameter indicating the presence or strength of a local deviation in the read-out characteristic of the recording medium is determined during a reading operation, and the radiation power is then controlled on the basis of on the determined parameter. The proposed procedure can be used during a read-out operation based on a reflected power, read-out error, or phase error. Hence, a fast and efficient power control mechanism that can be independent of a copy window control mechanism is provided. Moreover, crosstalk between first and second storage layers can be prevented by keeping the read-out temperature close to the compensation temperature of the other storage layer which is not read.
    • 本发明涉及一种用于读取包括至少一个存储层和读出层的磁光记录介质的读取方法和装置,其中在读出层中产生导致读出脉冲的扩展域 通过利用辐射功率加热和借助于外部磁场将标记区域从至少一个存储层复制到读出层。 在读取操作期间确定指示记录介质的读出特性中的局部偏差的存在或强度的参数,然后基于所确定的参数来控制辐射功率。 可以在基于反射功率,读出误差或相位误差的读出操作期间使用所提出的程序。 因此,提供了可以独立于复印窗口控制机构的快速且有效的功率控制机构。 此外,可以通过将读出温度保持在与未读取的另一个存储层的补偿温度接近的方式来防止第一和第二存储层之间的串扰。