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    • 4. 发明申请
    • Multi-layer optical storage using pre-orientation in a glass matrix
    • 在玻璃基质中使用预取向的多层光学存储
    • US20050254405A1
    • 2005-11-17
    • US10517927
    • 2003-06-04
    • Emiel PeetersDirk BroerChristopher Busch
    • Emiel PeetersDirk BroerChristopher Busch
    • G02F1/13G02F1/1334G11B7/0045G11B7/24G11B7/25G11B7/26G11B7/00
    • G11B7/25
    • The invention relates to producing an optical memory which combines stability of written and non-written data with high writing speed and good sensitivity during writing, such an optical memory as well as a method of writing in such a memory. The optical memory has a liquid crystal (LC) layer with a first type of LC molecules (102) aligned in one direction, forming a polymer network (108), and a second type of LC molecules (104) oriented in a perpendicular direction, in which the orientation of said second type of LC molecules is meta-stable. By making use of a force, exerted on the second type of LC molecules (104), by the network of aligned crosslinked molecules, an increase in relaxation rate for the second type of molecules (104) from a meta-stable state of orientation, is achieved, which makes it possible to use said relaxation for writing data at an increased writing rate.
    • 本发明涉及一种将写入和写入数据的稳定性与写入时的高写入速度和良好的灵敏度以及诸如此类的存储器之间写入的方法相结合的光存储器。 光学存储器具有液晶(LC)层,其具有在一个方向上排列的第一类型的LC分子(102),形成聚合物网络(108)和沿垂直方向取向的第二类型的LC分子(104) 其中所述第二类型的LC分子的取向是元稳定的。 通过利用由对准的交联分子的网络施加在第二类型的LC分子(104)上的力,第二类型的分子(104)从定向取向的松弛率增加, ,这使得可以以增加的写入速率使用所述松弛来写入数据。
    • 8. 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。