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    • 1. 发明申请
    • BEAM DIRECTION CONTROLLING DEVICE AND LIGHT-OUTPUT DEVICE
    • 光束方向控制装置和光输出装置
    • WO2010041182A1
    • 2010-04-15
    • PCT/IB2009/054322
    • 2009-10-02
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VISSENBERG, Michel, C., J., M.PIJLMAN, FetzeKRIJN, Marcellinus, P., C., M.DE ZWART, Siebe, T.IJZERMAN, Willem, L.
    • VISSENBERG, Michel, C., J., M.PIJLMAN, FetzeKRIJN, Marcellinus, P., C., M.DE ZWART, Siebe, T.IJZERMAN, Willem, L.
    • G02B5/04G02B26/10G02B3/00F21S8/00F21V5/02F21V5/04F21V14/06G02B26/08
    • G02B3/0062F21S8/04F21V5/002F21V5/004F21V5/005F21V5/007F21V5/008F21V5/045F21V14/04F21V14/06G02B3/005G02B3/0056G02B5/045G02B19/0009G02B19/0014G02B19/0033G02B26/0883G02B26/108
    • A beam direction controlling device (22; 30; 45; 60; 80), for controlling a direction of a light-beam emitted by a light-source (21) and passing through the beam direction controlling device (22; 30; 45; 60; 80). The beam direction controlling device comprises a first optical element (23, 31; 46; 61) having first (32) and second (33) opposing faces and being configured to change a direction of a plurality of parallel light-rays (40) incident on the beam direction controlling device (22; 30; 45; 60; 80) in an incident direction (r i ) at the first face (32) of the first optical element (23, 31; 46; 61) to a primary direction (r p ), different from the incident direction (r i ), at the second face (33) of the first optical element (23, 31; 46; 61); and a second optical element (24, 32; 47; 62) having first (36) and second (37) opposing faces, the second optical element (24, 32; 47; 62) being arranged with the first face (36) of the second optical element (24, 32; 47; 62) facing the second face (33) of the first optical element (23, 31; 46; 61), the second optical element (24, 32; 47; 62) being configured to change a direction of the plurality of light-rays from the primary direction (r p ) at the first face (36) of the second optical element (24, 32; 47; 62) to a secondary direction (r s ) at the second face (37) of the second optical element (24, 32; 47; 62) depending on points (41) of incidence of the light-rays on the first face (36) of the second optical element (24, 32; 47; 62). The beam direction controlling device is configured to allow relative movement between the first and second optical element for controlling the points of incidence of the light rays on the first face of the second optical element, thereby enabling control of the direction of the light-beam.
    • 用于控制由光源(21)发射并通过光束方向控制装置(22; 30; 45; 45)的光束的方向的光束方向控制装置(22; 30; 45; 60; 80) 60; 80)。 光束方向控制装置包括具有第一(32)和第二(33)相对面的第一光学元件(23,31; 46; 61),并被配置为改变多个平行光线(40)入射的方向 在第一光学元件(23,31; 46; 61)的第一面(32)处的入射方向(ri)上的光束方向控制装置(22; 30; 45; 60; 80) 在第一光学元件(23,31; 46; 61)的第二面(33)处与入射方向(ri)不同的rp); 以及具有第一(36)和第二(37)相对面的第二光学元件(24,32; 47; 62),所述第二光学元件(24,32; 47; 62)与所述第一面(36) 面对第一光学元件(23,31; 46; 61)的第二面(33)的第二光学元件(24,32; 47; 62),第二光学元件(24,32; 47; 62) 将第二光学元件(24,32; 47; 62)的第一面(36)处的主方向(rp)的多个光线的方向改变为第二面的次方向(rs) 根据第二光学元件(24,32; 47; 62)的第一面(36)上的光线的入射点(41),第二光学元件(24,32; 47; 62) )。 光束方向控制装置被配置为允许第一和第二光学元件之间的相对运动,用于控制第二光学元件的第一面上的光线的入射点,从而能够控制光束的方向。
    • 3. 发明申请
    • CONTAINER HAVING A SPACE FOR CONTAINING A LIQUID, COMPRISING MEANS FOR INDICATING THE LEVEL OF THE LIQUID
    • 具有用于容纳液体的空间的容器,包括用于指示液体水平的手段
    • WO2009081308A2
    • 2009-07-02
    • PCT/IB2008/055225
    • 2008-12-11
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.SALTERS, Bart, A.KRIJN, Marcellinus, P., C., M.
    • SALTERS, Bart, A.KRIJN, Marcellinus, P., C., M.
    • A47J27/212A47J31/44
    • A47J31/4457A47J27/212A47J2203/00
    • A container (2) comprises a space (4) for containing a liquid, a wall (5) encompassing the space (4), and means for indicating the level of the liquid in the container (2). At least a portion of the wall (5) of the container (2) is permeable to light, and the liquid level indicating means comprise a light source (10, 40) which is adapted to emit light below the surface (6) of the liquid in order to cause light emitted from below the surface (6) to reflect on the surface (6). The light source (10, 40) may comprise one or more lighting elements (10) arranged inside the space (4) of the container (2). Furthermore, the light source (10, 40) may comprise a light guide (40), wherein one or more lighting elements (10) are arranged at one end (41) of the light guide (40), and wherein at various positions, a surface of the light guide (40) is irregular for the purpose of letting light escape at those positions.
    • 容器(2)包括用于容纳液体的空间(4),包围空间(4)的壁(5),以及用于指示容器(2)中的液体的液位的装置 )。 容器(2)的壁(5)的至少一部分是可透光的,并且液位指示装置包括光源(10,40),该光源适于在光源(10,40)的表面 液体,以便使从表面(6)下面发射的光在表面(6)上反射。 光源(10,40)可以包括布置在容器(2)的空间(4)内部的一个或多个照明元件(10)。 此外,光源(10,40)可以包括光导(40),其中一个或多个照明元件(10)布置在光导(40)的一个端部(41)处,并且其中在各个位置处, 为了让光在这些位置逸出,光导(40)的表面是不规则的。
    • 5. 发明申请
    • AUTOSTEREOSCOPIC DISPLAY DEVICE
    • 自动显示设备
    • WO2009057030A1
    • 2009-05-07
    • PCT/IB2008/054420
    • 2008-10-27
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.REDERT, Peter-AndreKRIJN, Marcellinus, P., C., M.
    • REDERT, Peter-AndreKRIJN, Marcellinus, P., C., M.
    • H04N13/00
    • H04N13/32H04N13/305H04N13/349
    • A multi-view autostereoscopic display device comprises: a backlight having a plurality of backlight areas arranged in a width direction of the display device; a spatial light modulator arranged over and in registration with the backlight, the spatial light modulator having an array of display forming elements arranged in rows and columns for modulating light received from the backlight; and a view forming layer arranged over and in registration with the spatial light modulator, the view forming layer having a plurality of view forming elements arranged in the width direction of the display device, each view forming element being configured to focus modulated light from adjacent groups of the display forming elements into a plurality of views for projection towards a user in different directions. The backlight is switchable to activate different ones of the backlight areas in different portions of a driving cycle of the display device so that, in the different portions of the driving cycle, modulated light from the active backlight areas is incident on each view forming element with respective different angles of incidence. In this way, the overall viewing angle or the effective three dimensional display resolution may be increased.
    • 多视点自动立体显示装置包括:具有沿显示装置的宽度方向布置的多个背光区域的背光源; 布置在背光并与其对准的空间光调制器,空间光调制器具有排列成行和列的显示形成元件阵列,用于调制从背光接收的光; 以及与所述空间光调制器配置并对齐的视图形成层,所述视图形成层具有沿所述显示装置的宽度方向布置的多个视图形成元件,每个视图形成元件被配置为聚焦来自相邻组的调制光 的显示形成元件分成用于在不同方向上向用户突出的多个视图。 背光源可切换以在显示装置的驱动周期的不同部分中激活不同的背光区域,使得在驱动周期的不同部分中,来自主动背光区域的调制光入射到每个视图形成元件上, 各自的不同入射角。 以这种方式,可以增加整体视角或有效的三维显示分辨率。
    • 6. 发明申请
    • SYMMETRICAL LIGHT GUIDE STRUCTURE FOR LED BASED AMBILIGHT
    • LED基于平光的对称导光结构
    • WO2008007254A3
    • 2008-06-19
    • PCT/IB2007052285
    • 2007-06-15
    • KONINKL PHILIPS ELECTRONICS NVSALTERS BART AKRIJN MARCELLINUS P C M
    • SALTERS BART AKRIJN MARCELLINUS P C M
    • G02B6/00
    • G02B6/0068G02B6/0038G02B6/0076
    • A device (100) for diffusing light comprising a light guide (101), light input means (102), and light output means (103). The light input (102) and light output (103) means are connected to the light guide (101), and the device (100) is arranged to allow light of at least two separate frequencies from a light source (108, 109, 110) to enter the light guide (101) through the light input means (102), propagate through said light guide (101) and exit at the light output means (103). The light guide (101) is circumferential, such that light is allowed to propagate for a distance greater than the external dimensions of said light guide (101) before reaching the output means (103), and hence, producing a mix of the light from said at least two frequencies. A display apparatus in which the invention is implemented is also disclosed.
    • 一种用于漫射光的装置(100),包括光导(101),光输入装置(102)和光输出装置(103)。 光输入(102)和光输出(103)装置连接到光导(101),并且设备(100)被设置为允许来自光源(108,109,110)的至少两个单独频率的光 )通过光输入装置(102)进入光导(101),通过所述光导(101)传播并在光输出装置(103)处出射。 光导(101)是周向的,使得光在到达输出装置(103)之前被允许传播比所述光导(101)的外部尺寸更大的距离,并且因此产生光的混合 说至少两个频率。 还公开了实现本发明的显示设备。