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    • 4. 发明申请
    • RESISTIVE TOUCH SCREEN
    • 电阻触屏
    • US20120105359A1
    • 2012-05-03
    • US13020993
    • 2011-02-04
    • Youn Soo KimYong Hyun JinJi Soo Lee
    • Youn Soo KimYong Hyun JinJi Soo Lee
    • G06F3/045
    • G06F3/045G06F3/0412
    • Disclosed herein is a resistive touch screen, including: a lower substrate formed with a lower electrode pattern unit made of a conductive polymer and a lower electrode wiring unit connected to the lower electrode pattern unit; an upper substrate disposed on the upper side of the lower substrate and formed with an upper electrode pattern unit made of a conductive polymer and an upper electrode wiring unit connected to the upper electrode pattern unit, formed on an opposite surface thereto; a spacer disposed between the lower substrate and the upper substrate and provided with an opening formed therein; and a surface modifying layer covering at least any one of the lower electrode pattern unit and the upper electrode pattern unit and made of a material having a work function smaller than the conductive polymer.
    • 本发明公开了一种电阻式触摸屏,包括:下部基板,形成有由导电聚合物制成的下部电极图案单元和连接到下部电极图案单元的下部电极布线单元; 上基板,设置在下基板的上侧,形成有由导电性聚合物构成的上部电极图案单元和与上部电极图案单元连接的上部电极布线单元,该上部电极图案单元形成在其相反的表面上; 设置在下基板和上基板之间并具有形成在其中的开口的间隔件; 以及表面修饰层,其覆盖下电极图案单元和上电极图案单元中的至少任一个,并且由具有小于导电聚合物的功函数的材料制成。
    • 5. 发明申请
    • APPARATUS FOR MANUFACTURING TRANSPARENT CONDUCTIVE LAYER
    • 制造透明导电层的装置
    • US20120017828A1
    • 2012-01-26
    • US13183546
    • 2011-07-15
    • Youn Soo KimYong Hyun JinJong Young LeeJi Soo LeeSang Hwa Kim
    • Youn Soo KimYong Hyun JinJong Young LeeJi Soo LeeSang Hwa Kim
    • B05B5/10B05B5/00
    • G06F3/041G06F3/044G06F3/045G06F2203/04103
    • Disclosed herein is an apparatus for manufacturing a transparent conductive layer. The apparatus includes a transparent substrate, a longitudinal direction of which is arranged in an X axis direction. Jetting means jets a conductive polymer solution, containing ions, onto a first surface of the transparent substrate in a Y axis direction. A wire is spaced apart from a second surface of the transparent substrate by a predetermined distance and arranged in a Z axis direction. Voltage application means generates electric attractive force between the wire and the conductive polymer solution by applying a potential having polarity opposite to that of the ions to the wire. The apparatus adds ions to the conductive polymer solution, and employs a wire to which a potential having polarity opposite to that of the ions is applied, thus obtaining the advantage that the target substrate can be uniformly coated with the conductive polymer solution.
    • 本文公开了一种用于制造透明导电层的装置。 该装置包括其纵向被设置在X轴方向上的透明基板。 喷射是指将含有离子的导电聚合物溶液在Y轴方向上喷射到透明基板的第一表面上。 导线与透明基板的第二表面间隔开预定的距离并且沿Z轴方向布置。 电压施加装置通过将具有与离子的极性相反的极性的电位施加到导线而在导线和导电聚合物溶液之间产生电吸引力。 该装置将离子添加到导电性聚合物溶液中,并且使用具有与离子的极性相反的极性的电位的导线,由此获得可以使导电聚合物溶液均匀地涂覆的优点。
    • 8. 发明授权
    • Scene illumination adaptive lens shading correction for imaging devices
    • 用于成像装置的场景照明自适应透镜阴影校正
    • US08130292B2
    • 2012-03-06
    • US12347515
    • 2008-12-31
    • Ji Soo Lee
    • Ji Soo Lee
    • H04N9/64
    • H04N5/2354H04N5/3572H04N5/772
    • Methods, apparatuses, and systems for scene adaptive lens shading correction. One or more gain adjustment surfaces calibrated to a reference illuminant type is stored. At least one scene adjustment surface, which varies as a function of the illuminant type, is stored for each additional illuminant type for which lens shading correction is desired. Additionally, an imaging device with a color image sensor may define a gain adjustment surface and a scene adjustment surface for each of the color channels of the image sensor. Scene adaptive lens shading correction entails determining an illuminant type for a captured image, selecting a scene adjustment surface based on the determined illuminant type, and processing the image using a gain adjustment surface modified by the scene adjustment surface.
    • 用于场景自适应透镜阴影校正的方法,装置和系统。 存储一个或多个校正为参照光源类型的增益调整面。 对于期望进行透镜阴影校正的每种附加光源类型存储至少一个作为光源类型的函数变化的场景调整表面。 此外,具有彩色图像传感器的成像装置可以为图像传感器的每个颜色通道定义增益调整表面和场景调整表面。 场景自适应透镜阴影校正需要确定拍摄图像的光源类型,基于所确定的光源类型选择场景调整表面,以及使用由场景调整表面修改的增益调整表面来处理图像。