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    • 1. 发明申请
    • ELECTROCHROMIC DISPLAY PANEL WITH ELECTRODES FOR ADJUSTING CROSSTALK
    • 电磁显示面板,用于调节CROSSTALK的电极
    • WO2004001496A1
    • 2003-12-31
    • PCT/IB2003/002628
    • 2003-06-12
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.JOHNSON, Mark, T.YOUNG, Nigel, D.
    • JOHNSON, Mark, T.YOUNG, Nigel, D.
    • G02F1/155
    • G02F1/155G02F1/1523
    • The display panel (1) has multiple picture elements (2), each picture element (2) having respective neighboring picture elements (2'). The picture elements (2) have a first electrode (3) and a second electrode (4) for the application of a potential difference between the first and the second electrode (3,4), and electrochromic material (5), which is present between the first and the second electrode (3,4). Electrical charge contained by the electrochromic material (5), induced by the potential difference, determines the color of the picture element (2). Color changes are provided by varying the electrical charge. Crosstalk, being coloration of neighboring picture elements (2') when a picture element (2) is addressed, is adjustable by third electrodes (6) which adjust electrical currents between the picture element (2) addressed and their respective neighboring picture elements (2').
    • 显示面板(1)具有多个图像元素(2),每个图像元素(2)具有相应的相邻图像元素(2')。 像素(2)具有用于施加第一和第二电极(3,4)之间的电位差的第一电极(3)和第二电极(4)以及存在的电致变色材料(5) 在第一和第二电极(3,4)之间。 由电位差引起的电致变色材料(5)所含的电荷决定了像素(2)的颜色。 通过改变电荷来提供颜色变化。 当图像元素(2)被寻址时,相邻图像元素(2')的着色可由第三电极(6)调节,第三电极(6)调整寻址的图像元素(2)和它们各自的相邻图像元素(2)之间的电流 “)。
    • 2. 发明申请
    • METHOD OF MANUFACTURING AN ELECTROPHORETIC DISPLAY DEVICE AND AN ELECTROPHORETIC DISPLAY DEVICE
    • 制造电泳显示器件和电泳显示器件的方法
    • WO2006103605A1
    • 2006-10-05
    • PCT/IB2006/050899
    • 2006-03-23
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.JOHNSON, Mark, T.YOUNG, Nigel, D.
    • JOHNSON, Mark, T.YOUNG, Nigel, D.
    • G02F1/167
    • G02F1/167G02F1/134363G02F2201/124
    • An electrophoretic display device has a first substrate (1) and a second substrate (2). The first substrate is provided with a plurality of pixels. Each pixel encapsulates between pixel walls (5) an electrophoretic medium comprising a fluid (11) and a plurality of charged electrophoretic particles (12) dispersed in the fluid (11). Each pixel is divided into a plurality of imaginary sub-pixels (10). The method of manufacturing an electrophoretic display device comprises the following steps. A plurality of electrophoretic pixels is provided on the first substrate in a substantially regular two-dimensional manner. A plurality of common electrodes (16) and of pixel electrodes (15) is provided on the second substrate. The first substrate and the second substrate are laminated. A pitch d ce of the common electrodes and a characteristic dimension d p of the pixels meet the relation (Formula I): and a pitch d pe of the pixel electrodes and the characteristic dimension d p meet the relation (Formula II).
    • 电泳显示装置具有第一基板(1)和第二基板(2)。 第一基板设置有多个像素。 每个像素封装在像素壁(5)之间,包括分散在流体(11)中的流体(11)和多个带电电泳颗粒(12)的电泳介质。 每个像素被分成多个虚拟子像素(10)。 制造电泳显示装置的方法包括以下步骤。 多个电泳像素以基本上规则的二维方式设置在第一基板上。 多个公共电极(16)和像素电极(15)设置在第二基板上。 层叠第一基板和第二基板。 公共电极的间距d和像素的特征尺寸d

      P 满足关系式(式I):间距d 的像素电极和特征尺寸d

      满足关系式(式II)。

    • 3. 发明申请
    • METHOD OF MANUFACTURING AN ELECTROPHORETIC DISPLAY DEVICE AND AN ELECTROPHORETIC DISPLAY DEVICE
    • 制造电子显示装置和电泳显示装置的方法
    • WO2006103604A1
    • 2006-10-05
    • PCT/IB2006/050897
    • 2006-03-23
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.VERSCHUEREN, Alwin, R., M.JOHNSON, Mark, T.YOUNG, Nigel, D.
    • VERSCHUEREN, Alwin, R., M.JOHNSON, Mark, T.YOUNG, Nigel, D.
    • G02F1/167
    • G02F1/167
    • The method of manufacturing an electrophoretic display device comprises: arranging a plurality of microcapsules (10) on a first substrate (1) in a substantially regular two-dimensional manner; providing a pixel electrode (15) and a common electrode (16) on top of each microcapsule; providing a plurality of contact pads (17) on a second substrate (2) in a substantially similar regular two-dimensional manner; contacting the first substrate with the second substrate providing electrical contact between the pixel electrode of each microcapsule and a particular one of the plurality of contact pads on the second substrate while orienting the pixel electrodes the contact pads substantially perpendicular with respect to each other. Preferably, an isolating layer (26) is provided on the common electrode at a side lacing away form the first substrate. A relatively high alignment tolerance between the contact pads on the second substrate and the pixel electrode on the first substrate is achieved.
    • 制造电泳显示装置的方法包括:以基本上规则的二维方式将多个微胶囊(10)布置在第一基板(1)上; 在每个微胶囊的顶部提供像素电极(15)和公共电极(16); 以基本相似的规则二维方式在第二基板(2)上提供多个接触焊盘(17); 使第一衬底与第二衬底接触,在每个微胶囊的像素电极和第二衬底上的多个接触焊盘中的特定一个之间提供电接触,​​同时使像素电极的接触垫相对于彼此基本垂直。 优选地,在公共电极上设置隔离层(26),所述隔离层在从第一基板离开的一侧。 实现了第二基板上的接触焊盘与第一基板上的像素电极之间相对高的对准公差。
    • 4. 发明申请
    • BIOSENSOR WITH EVANESCENT WAVEGUIDE AND INTEGRATED SENSOR
    • 生物传感器与历史波形和集成传感器
    • WO2008096296A1
    • 2008-08-14
    • PCT/IB2008/050355
    • 2008-01-31
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.WIMBERGER- FRIEDL, ReinholdYOUNG, Nigel, D.VAN DER ZAAG, Pieter, J.
    • WIMBERGER- FRIEDL, ReinholdYOUNG, Nigel, D.VAN DER ZAAG, Pieter, J.
    • G01N21/64
    • G01N21/648G01N21/6454G01N21/7703
    • the present invention is directed to a waveguide sensor as well as to an evanescent field induced evanescent field induced sensor systemfor use in diagnostic applications that comprises a housingand an integrated waveguide sensor comprising: a waveguide layer, -capture compounds applied on the upper surface of said waveguide layer for 5 specific bonding to target substances, -a cladding layer contacting arranged on the lower surface of said waveguide layer, -a filter which is transmitting for luminescent radiation while absorbs and/or reflects radiation of excitation radiation, wherein the filter is arranged below the lower 10 surface of said cladding layer, at least one detector for sensing luminescent radiation, wherein the detector is arranged below the lower surface of said filter, a substrate that is connected with the detector and comprises the electrical interface of said detector; wherein 15 between the upper surface of the waveguide layerand along at least a lower surface section of the housing a channel is formed for receiving a fluidic probe; and the luminescent radiation is generated by luminescent tag bound to target substances as a result oftheir excitation by the evanescent field. This provides an improved sensitivity of the evanescent field induced sensor 20 system.
    • 本发明涉及一种波导传感器以及用于包括壳体和集成波导传感器的诊断应用中的用于诊断应用中的消逝场诱发的瞬逝场感应传感器系统,包括:波导层, - 施加在所述波导传感器的上表面上的捕获化合物 用于对目标物质进行5特异性结合的波导层, - 布置在所述波导层的下表面上的包层接触, - 在吸收和/或反射激发辐射的辐射的同时透射发光辐射的滤光器,其中所述滤光器被布置 在所述包覆层的下部10表面下方的至少一个用于感测发光辐射的检测器,其中所述检测器布置在所述滤光器的下表面下方,与所述检测器连接并包括所述检测器的电接口的基板; 其中在所述波导层的上表面和沿着所述壳体的至少下表面部分之间形成有15个用于接收流体探针的通道; 并且发光辐射是由作为其消逝场激发的结果的与目标物质结合的发光标签产生的。 这提供了渐逝场感应传感器20系统的改进的灵敏度。
    • 5. 发明申请
    • MANUFACTURE OF ELECTRONIC DEVICES COMPRISING THIN-FILM CIRCUIT ELEMENTS
    • 包含薄膜电路元件的电子器件的制造
    • WO2004019123A1
    • 2004-03-04
    • PCT/IB2003/003484
    • 2003-08-06
    • KONINKLIJKE PHILIPS ELECTRONICS N.V.YOUNG, Nigel, D.
    • YOUNG, Nigel, D.
    • G02F1/1362
    • H01L27/1214H01L27/3269H01L2227/323
    • In the manufacture of an electronic device such as an active matrix display, a vertical amorphous PIN photodiode or similar thin-film diode (D) is advantageously integrated with a polysilicon TFT (TFT1, TFT2) in a manner that permits a good degree of optimisation of the respective TFT and diode properties while being compatible with the complex pixel context of the display. High temperature processes for making the active semiconductor film (10) of the TFT more crystalline than an active semiconductor film (40) of the diode and for forming the source and drain doped regions (s1,s2, d1,d2) of the TFT are carried out before depositing the active semiconductor film (40) of the diode. Thereafter. the lateral extent of the diode is defined by etching while protecting with an etch-stop film (30) an interconnection film (20) that can provide a doped bottom electrode region (41) of the diode as well as one of the doped regions (s2, g1) of the TFT.
    • 在诸如有源矩阵显示器的电子设备的制造中,垂直非晶PIN光电二极管或类似的薄膜二极管(D)有利地与多晶硅TFT(TFT1,TFT2)集成,以允许良好的优化程度 的TFT和二极管特性,同时与显示器的复杂像素上下文兼容。 用于使TFT的有源半导体膜(10)比二极管的有源半导体膜(40)更加结晶并且用于形成TFT的源极和漏极掺杂区域(s1,s2,d1,d2)的高温处理是 在淀积二极管的有源半导体膜(40)之前进行。 其后。 通过蚀刻限定二极管的横向范围,同时用蚀刻停止膜(30)保护互连膜(20),互连膜(20)可以提供二极管的掺杂底部电极区域(41)以及掺杂区域之一 s2,g1)。