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    • 6. 发明申请
    • SEGMENT ELECTROPHORETIC DISPLAYS AND METHODS FOR THEIR MANUFACTURE
    • 部分电泳显示器及其制造方法
    • WO03091787A2
    • 2003-11-06
    • PCT/US0312428
    • 2003-04-22
    • SIPIX IMAGING INC
    • HOU JACKTSENG SCOTT C-JWU ZARNG-ARH GEORGELIANG RONG-CHANG
    • B29C59/02G02F1/167G02F
    • G02F1/167B29C59/022
    • The present invention relates to novel patterned and embossing and patterned filling methods. Both methods are simple, reliable and cost effective ways for manufacturing the segment of signage electrophoretic displays. The displays prepared by the present invention requires only one patterned electrode layer. The undesired visible line traces are eliminated and the manufacture of the present displays does not involve the costly precision registration step used in the previously known assembly processes dealing with two patterned electrodes. Moreover, the electrophoretic fluid is present only in the patterned and switchable area of the display. This not only significantly reduces the matrerial cost, but also improves the overall display quality by reducing defects and non-uniformity.
    • 本发明涉及新颖的图案化和压花和图案化填充方法。 这两种方法都是简单,可靠和具有成本效益的制造标牌电泳显示屏部分的方法。 由本发明制备的显示器仅需要一个图案化的电极层。 消除了不期望的可见线迹线,并且本显示器的制造不涉及在先前已知的处理两个图案化电极的组装过程中使用的昂贵的精密配准步骤。 此外,电泳流体仅存在于显示器的图案化和可切换区域中。 这不仅显着降低了基质成本,而且通过减少缺陷和不均匀性来提高整体显示质量。
    • 9. 发明申请
    • IMPROVED PASSIVE MATRIX ELECTROPHORETIC DISPLAY DRIVING SCHEME
    • 改进的无源矩阵电泳显示驱动方案
    • WO2004104979A3
    • 2005-04-14
    • PCT/US2004013512
    • 2004-04-30
    • SIPIX IMAGING INC
    • CHUNG JERRYWANG WANHENGHOU JACKLIANG RONG-CHANG
    • C08F2/58G09G3/34
    • G09G3/344G09G2300/06G09G2310/0267G09G2310/061G09G2310/065G09G2320/0209
    • A system and method are disclosed for mitigating the effect of induced reverse bias in a passive matrix electrophoretic display. An intermediate biasing phase is performed prior to the driving cycle, the biasing conditions of the intermediate biasing phase being selected so as to break into at least two steps the transition from the bias condition present prior to the driving cycle to the bias condition applied during the driving cycle. Interposing a settle phase subsequent to the driving phase for each scanned row and prior to the driving phase of the next row to be scanned is disclosed. Adding a pre-drive phase prior to scanning to mitigate the effect of induced reverse bias is disclosed. Adding an inline resistor between a driver and an electrode with which the driver is associated is disclosed. Also disclosed is displaying an image in an electrophoretic display by first driving an array of electrophoretic cells to a white displayed state and then driving background areas to a background display state. In addition, interposing a balance phase after each row is scanned to restore display elements in non-scanning rows to the same initial state is disclosed.
    • 公开了一种用于减轻无源矩阵电泳显示中的感应反向偏置的影响的系统和方法。 在驱动周期之前执行中间偏置相位,中间偏置相位的偏置条件被选择以便从至少两个步骤中转移到在驱动周期之间存在的偏置条件到在期间施加的偏置条件 驾驶循环。 公开了在每个扫描行的驱动阶段之后和下一行的驱动阶段之前的待设置阶段的安置阶段。 公开了在扫描之前添加预驱动相以减轻诱发反向偏压的影响。 公开了在驱动器与驱动器所关联的电极之间添加内联电阻器。 还公开了通过首先将电泳单元的阵列驱动到白色显示状态,然后将背景区域驱动到背景显示状态来在电泳显示器中显示图像。 此外,公开了在每行之后插入平衡相位以将非扫描行中的显示元件恢复到相同的初始状态。
    • 10. 发明申请
    • METHODS OF SURFACE MODIFICATION FOR IMPROVING ELECTROPHORETIC DISLAY PERFORMANCE
    • 改善电泳分散性能的表面改性方法
    • WO03102685A9
    • 2004-02-19
    • PCT/US0313603
    • 2003-05-02
    • SIPIX IMAGING INC
    • TSENG SCOTT C-JHOU JACKWU ZARNG-ARH GEORGEWANG XIAOJIALIANG RONG-CHANG
    • G02F1/1333G02F1/167
    • G02F1/167G02F1/133377Y10T428/24479Y10T428/24562
    • The present invention is directed to methods for improving the performance of an electrophoretic display by modifying the display cell surface. More specifically, when the display cells are prepared by the microcup technology utilizing the embossing process, the methods are directed to modification of the microcup surface after the microcups are released from the mold. The microcups which have undergone any of the treatment methods of the invention show significant improvement in their surface properties, such as chemical functionality, surface roughness, surface tension, morphology, surface charge, surface reflectivity, surface conductivity and optical properties, particularly optical density in the visible light region. As a result, an electrophoretic display formed from the treated microcups has many advantages. For example, the display shows a higher contrast ratio, lower electro-optic response time, lower driving voltage, longer shelf life, higher image bistability and higher threshold voltage. In addition, it exhibits an improved image quality by reducing undesirable scum formation or irreversible particle deposition on the microcup surface. The surface modification also considerably improves the coating and/or adhesion quality in the filling and sealing steps. All of these improvements may be achieved without any compromise in mold release.
    • 本发明涉及通过修改显示单元表面来改善电泳显示器的性能的方法。 更具体地说,当通过利用压花工艺的微杯技术制备显示单元时,该方法涉及在微杯从模具释放之后修改微杯表面。 已经经历本发明的任何处理方法的微杯在其表面性质如化学功能性,表面粗糙度,表面张力,形态,表面电荷,表面反射率,表面电导率和光学性质,特别是光学密度 可见光区域。 结果,由处理过的微杯形成的电泳显示器具有许多优点。 例如,显示屏显示更高的对比度,更低的电光响应时间,更低的驱动电压,更长的保质期,更高的图像双稳定性和更高的阈值电压。 另外,它通过减少微杯表面上不需要的浮渣形成或不可逆粒子沉积而显示出改善的图像质量。 表面改性也显着改善了填充和密封步骤中的涂层和/或附着质量。 所有这些改进都可以在不脱离模具释放的情况下实现。