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    • 1. 发明申请
    • ELECTROPHORETIC DISPLAY PANEL
    • 电子显示面板
    • US20070206271A1
    • 2007-09-06
    • US10599007
    • 2005-03-11
    • Alwin VerschuerenPeter DuineMark JohnsonPatrick BaesjouLucas SchlangenEduard Niessen
    • Alwin VerschuerenPeter DuineMark JohnsonPatrick BaesjouLucas SchlangenEduard Niessen
    • G02F1/167
    • G02F1/167
    • The electrophoretic display panel (1) for displaying a picture has a pixel (2) having an electrophoretic medium (5) having first and second charged particles (6,7), the first charged particles (6) having a first optical property, the second charged particles (7) having a second optical property different from the first optical property, and an optical state depending on positions of the particles (6,7). Furthermore, particle movement means (10,11,100) are arranged to enable a picture movement of the first and the second particles (6,7) to their respective position for displaying the picture, and particles movement decoupling means are arranged to provide unequal abilities of the first and the second particles (6,7) to move for substantially decoupling the picture movement of the first particles (6) from the picture movement of the second particles (7). For the display panel (1) to be able to have an attainable optical state for displaying the picture which is unequal to the optical state determined by the mixture of the first and the second particles (6,7), even if the particles (6,7) have substantially equal intrinsic electrophoretic mobilities, the particles movement decoupling means (24,25) are arranged to provide unequal interactions of the first and the second particles (6,7) with their respective surroundings for providing the unequal abilities of the first and the second particles (6,7) to move.
    • 用于显示图像的电泳显示面板(1)具有具有具有第一和第二带电粒子(6,7)的电泳介质(5)的像素(2),第一带电粒子(6)具有第一光学特性, 具有与第一光学特性不同的第二光学特性的第二带电粒子(7)和取决于粒子(6,7)的位置的光学状态。 此外,颗粒运动装置(10,11,100)被布置成使得第一和第二颗粒(6,7)的图像移动到其用于显示图像的相应位置,并且颗粒运动解耦装置被布置成提供不均匀的能力 移动第一和第二颗粒(6,7)以使第一颗粒(6)的图像移动与第二颗粒(7)的图像移动基本上分离。 为了使显示面板(1)能够具有用于显示不同于由第一和第二颗粒(6,7)的混合物确定的光学状态的图像的可获得的光学状态,即使颗粒(6) ,7)具有基本上相等的固有电泳迁移率,颗粒运动解耦装置(24,25)被布置成提供第一和第二颗粒(6,7)与它们各自的环境的不相等的相互作用,以提供第一和第二颗粒 并且第二颗粒(6,7)移动。
    • 2. 发明申请
    • Transflective liquid crystal display with reduced flicker
    • 反射液晶显示屏,闪烁减少
    • US20060007194A1
    • 2006-01-12
    • US10527431
    • 2003-08-05
    • Alwin VerschuerenMark Johnson
    • Alwin VerschuerenMark Johnson
    • G09G5/00
    • G09G3/3611G09G3/2074G09G3/3406G09G3/3655G09G2300/0456G09G2320/0247G09G2320/029G09G2320/0626G09G2340/0435G09G2360/144
    • A method of reducing visible flicker in a transflective display device, having a plurality of pixels, each pixel comprising a transmissive sub-pixel and a reflective sub-pixel, is disclosed. The method comprises the steps of: driving the pixels with an alternating voltage; determining a first desired compensation voltage for the transmissive sub-pixels and a second desired compensation voltage for the reflective sub-pixels; deriving a common compensation voltage from said first desired compensation voltage and said second desired compensation voltage; and applying said common compensation voltage to both the transmissive and the reflective sub-pixels. Thus, the flicker resulting from a DC bias of the driving voltage is substantially reduced. In a preferred embodiment, the method further comprises the steps of: determining a lowest available frame frequency setting for which any remaining flicker is invisible; and setting a frame frequency at which the display is driven to said lowest available frame frequency. According to another embodiment, a backlight is manually controlled and the common compensation voltage is derived as a function of a mode of operation of the backlight. A transflective display device implementing the above methods is also disclosed.
    • 公开了一种减少具有多个像素的透反式显示装置中的可见闪烁的方法,每个像素包括透射子像素和反射子像素。 该方法包括以下步骤:用交流电压驱动像素; 确定所述透射子像素的第一期望补偿电压和所述反射子像素的第二期望补偿电压; 从所述第一期望补偿电压和所述第二期望补偿电压得出公共补偿电压; 以及将所述公共补偿电压施加到透射和反射子像素。 因此,由驱动电压的直流偏压引起的闪烁显着降低。 在优选实施例中,该方法还包括以下步骤:确定任何剩余闪烁不可见的最低可用帧频设置; 以及将显示器被驱动到所述最低可用帧频率的帧频。 根据另一实施例,手动控制背光,并且根据背光的操作模式导出公共补偿电压。 还公开了实现上述方法的透反式显示装置。
    • 7. 发明申请
    • Elongated Electro-Optic Device
    • 延长电光装置
    • US20080013309A1
    • 2008-01-17
    • US11575141
    • 2005-09-15
    • Alwin Verschueren
    • Alwin Verschueren
    • F21S4/00B05D5/06H01L21/00H05B41/16
    • D02G3/441
    • An electro-optic device having a first end and an opposite second end comprising an electro-optically active part; a first electrode having a first end and an opposite second end; a second electrode having a first end and an opposite second end; the electro-optically active part being positioned at least partially between the first and second electrodes; the electro-optic device further comprising control means for controlling the optical state of a predetermined region of the electro-optically active part, such that the position of the predetermined region within the electro-optic device is controllable.
    • 一种具有第一端和相对的第二端的电光装置,包括电光活性部分; 第一电极,其具有第一端和相对的第二端; 具有第一端和相对的第二端的第二电极; 所述电光活性部分至少部分地位于所述第一和第二电极之间; 电光装置还包括用于控制电光活性部分的预定区域的光学状态的控制装置,使得电光装置内的预定区域的位置是可控的。