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    • 3. 发明申请
    • Active matrix display device and method of producing the same
    • 有源矩阵显示装置及其制造方法
    • US20070146575A1
    • 2007-06-28
    • US10579615
    • 2004-11-17
    • Joost VogelsDirk BroerHjalmar HuitemaStephen KlinkHendrik De KoningRoel Penterman
    • Joost VogelsDirk BroerHjalmar HuitemaStephen KlinkHendrik De KoningRoel Penterman
    • G02F1/1333
    • G02F1/133377G02F1/1341G02F2001/136231
    • A method is provided of producing an active matrix display device having an optical layer comprising a mixture of an electro-optical material and a polymer precursor. An upper layer of the active plate is processed in dependence on a difference between the transmission or reflection characteristics of the row and column conductors and of the pixel electrodes, thereby to process the upper layer in dependence on the row and column pattern or the pixel electrode pattern. The optical layer is then exposed from above the substrate to a stimulus for polymerizing the polymer precursor into a discrete polymer surface layer, thereby enclosing the electro-optical material between the polymerized material and the active plate to define display pixels. Enclosed bodies of electro-optical material defining display pixels are defined in a pattern defined by the processing of the upper layer. This method uses the existing row and column pattern or pixel electrode pattern to define in a self-aligned manner the partitions between liquid crystal cell pockets.
    • 提供了一种制造具有包括电光材料和聚合物前体的混合物的光学层的有源矩阵显示装置的方法。 根据行列导体和像素电极的透射或反射特性之间的差异来处理有源板的上层,从而根据行和列图案或像素电极处理上层 模式。 然后将光学层从衬底上方暴露于用于将聚合物前体聚合成分立的聚合物表面层的刺激,从而将聚合材料和活性板之间的电光材料封闭以限定显示像素。 限定显示像素的电光材料的封闭体被限定为由上层的处理限定的图案。 该方法使用现有的行和列图案或像素电极图案以自对准的方式限定液晶单元袋之间的分隔。
    • 6. 发明申请
    • Active matrix display device and method of producing the same
    • 有源矩阵显示装置及其制造方法
    • US20070081107A1
    • 2007-04-12
    • US10578061
    • 2004-11-01
    • Hjalmar HuitemaRoel PentermanJoost VogelsStephen KlinkHendrik De KoningDirk Broer
    • Hjalmar HuitemaRoel PentermanJoost VogelsStephen KlinkHendrik De KoningDirk Broer
    • G02F1/136
    • G02F1/133377G02F1/13394G02F1/1341
    • An active matrix display device has an optical layer (7,9,11) comprising a mixture of an electro-optical material and a polymer precursor. An upper surface of the active plate comprises an array of wells (70) such that the upper surface has higher (72) and lower regions, and the optical layer mixture is provided over the active plate. The optical layer is exposed to a stimulus for polymerizing the polymer precursor into a polymer layer constituted by a top surface (9) and by side walls (11), thereby enclosing the electro-optical material between the polymerized material and the active plate to define display pixels. Enclosed bodies of electro-optical material defining display pixels are thus provided over the lower regions. This method uses the processing of the active plate to define wells (70) which provide a height difference which can be used to provide alignment of enclosed display pixels cells. This avoids the need for an alignment mask during the deposition and exposure of the optical layer. In an embodiment of the invention,a layer (74) having affinity to the polymer precursor is provided on the higher regions in a stamping step before exposing the otical layer to the stilus.
    • 有源矩阵显示装置具有包含电光材料和聚合物前体的混合物的光学层(7,9,11)。 活性板的上表面包括孔阵列(70),使得上表面具有较高(72)和较低的区域,并且光学层混合物设置在活性板上。 将光学层暴露于用于将聚合物前体聚合成由顶表面(9)和侧壁(11)构成的聚合物层的刺激,从而将聚合材料和活性板之间的电光材料包围以限定 显示像素。 因此,限定显示像素的电光材料的封闭体被提供在下部区域上。 该方法使用活性板的处理来定义提供高度差的孔(70),其可用于提供封闭的显示像素单元的对准。 这避免了在光学层的沉积和曝光期间对对准掩模的需要。 在本发明的一个实施方案中,在将所述纤维层暴露于st状物之前,在冲压步骤中的较高区域上提供对聚合物前体具有亲和力的层(74)。
    • 8. 发明申请
    • Stratified-phase-separated composite comprising a polymer and a liquid and method of manufacturing the same
    • 包含聚合物和液体的分层相分离复合物及其制造方法
    • US20060250568A1
    • 2006-11-09
    • US10567231
    • 2004-07-05
    • Roel PentermanStephen KlinkJoost VogelsDirk Broer
    • Roel PentermanStephen KlinkJoost VogelsDirk Broer
    • C09K19/02
    • G02F1/133377G02F1/1334G02F1/13394G02F2202/023
    • A polymeric stratified-phase-separated composite (6) which is mechanically robust and simple to manufacture comprises a film of liquid (7), a layer of polymerized material (9) covering the thin film of liquid and supporting members (11) formed of polymerized material and extending from the layer of polymerized material through the thin film of liquid. The supporting members extend onto selected first regions (5b) of a substrate surface (5). The substrate surface has, laid our in accordance with a predetermined pattern, selected first (5b) and second (5a) regions. The first are functionalized for selective accumulation of the liquid. In one embodiment the first and second regions are regions of high and low affinity for polymerizable material respectively. In another, a difference in rate of polymerization is induced by using for example different concentrations of polymerization inhibitor in the first and second regions.
    • 机械坚固且易于制造的聚合物分层相分离复合材料(6)包括液体膜(7),覆盖液体薄膜的聚合材料层(9)和由 聚合材料并从聚合材料层延伸通过液体薄膜。 支撑构件延伸到衬底表面(5)的选定的第一区域(5b)上。 基板表面已经按照预定的图案放置我们的第一(5b)和第二(5a)区域。 第一个功能化用于液体的选择性积聚。 在一个实施方案中,第一和第二区域分别是对可聚合材料具有高亲和力和低亲和力的区域。 另一方面,通过在第一和第二区域中使用例如不同浓度的阻聚剂来诱导聚合速率的差异。
    • 9. 发明申请
    • Method of producing an electro-optic device and electro-optic device
    • 制造电光器件和电光器件的方法
    • US20070126951A1
    • 2007-06-07
    • US10596670
    • 2004-12-17
    • Joost VogelsDirk BroerHjalmar HuitemaRoel PentermanStephen Klink
    • Joost VogelsDirk BroerHjalmar HuitemaRoel PentermanStephen Klink
    • G02F1/1333
    • G02F1/133377G02F1/133305G02F1/1334G02F1/133528G02F2001/133354G02F2001/133565G02F2001/13613
    • The present invention discloses an electronic device (100) comprising a substrate (10) carrying an electrode structure (12); an electro-optical stack (90) at least partially covering the electrode structure (12), the electro-optical stack comprising a stratified polymer layer (44), a further substrate (20) and an electro-optical material (32) sandwiched between the polymer layer (44) and the further substrate (20); and an adhesive layer (60) between the substrate (10) and the electro-optical stack, as well as a method for producing such an electronic device (100), in which the electro-optical stack (90) and the substrate (10) are prepared in separate processes and combined by an adhesive layer (60). This improves the yield of such an electronic device (100), because a production error in one of the components no longer leads to the loss of the whole electronic device (100). Also, sensitive components on the substrate (10) such as polymer based TFTs, are protected from exposure to the processing steps of the electro-optical stack (90).
    • 本发明公开了一种电子设备(100),其包括承载电极结构(12)的基板(10)。 至少部分地覆盖所述电极结构(12)的电光学叠层(90),所述电光学叠层包括分层聚合物层(44),另外的基底(20)和夹在其间的电光材料(32) 聚合物层(44)和另外的基底(20); 以及在所述基板(10)和所述电光叠层之间的粘合层(60)以及其中所述电光叠层(90)和所述基板(10)的所述电子器件(100)的制造方法, )在单独的工艺中制备并通过粘合剂层(60)组合。 这样提高了这种电子设备(100)的产量,因为其中一个部件中的生产误差不再导致整个电子设备(100)的损失。 此外,保护基板(10)上的敏感部件(例如基于聚合物的TFT)免于暴露于电光叠层(90)的处理步骤。