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    • 5. 发明申请
    • Multi-domain liquid crystal display device
    • 多域液晶显示装置
    • US20050105030A1
    • 2005-05-19
    • US10938854
    • 2004-09-13
    • Jeom KimDoo KoJoun LeeJong KimJong KimYoung ChoMi Chu
    • Jeom KimDoo KoJoun LeeJong KimJong KimYoung ChoMi Chu
    • G02F1/1362G02F1/1337
    • G02F1/136213G02F1/136286G02F2001/136218
    • A multi-domain liquid crystal display device comprises first and second substrates facing each other; a liquid crystal layer between the first and second substrates; a plurality of gate bus lines arranged in a first direction on the first substrate and a plurality of data bus lines arranged in a second direction on the first substrate to define a plurality of pixel region; a thin film transistor positioned at a crossing area of the data bus line and the gate bus line, the thin film transistor comprising a gate electrode, a semiconductor layer, and source/drain electrodes; a common-auxiliary electrode comprising at least one electrode in the each pixel region; a plurality of pixel electrodes electrically charged through the thin film transistor; and an alignment layer on at least one substrate between the first and second substrates.
    • 多域液晶显示装置包括彼此面对的第一和第二基板; 第一和第二基板之间的液晶层; 在第一基板上沿第一方向排列的多个栅极总线和在第一基板上沿第二方向布置的多个数据总线,以限定多个像素区域; 位于数据总线和栅极总线的交叉区域的薄膜晶体管,薄膜晶体管包括栅极,半导体层和源极/漏极; 在每个像素区域中包括至少一个电极的公共辅助电极; 通过薄膜晶体管充电的多个像素电极; 以及在所述第一和第二基板之间的至少一个基板上的取向层。
    • 7. 发明授权
    • Methods and apparatuses for providing DRM interoperability
    • 提供DRM互操作性的方法和设备
    • US08386799B2
    • 2013-02-26
    • US12630646
    • 2009-12-03
    • Jong KimSangho LeeHeejin Park
    • Jong KimSangho LeeHeejin Park
    • G06F21/00
    • G06F21/10G06F2221/0728
    • Methods and apparatuses for providing DRM interoperability are provided. Proxy re-encryption technique using bilinear map is used, and the same content can be used in different devices. According to the method of providing DRM interoperability includes in proxy agent with respect to digital rights management (DRM) service providers and device which supports predetermined DRM, first DRM service provider, second DRM service provider, the proxy agent, and the device identify each other, and proxy re-encrypt an interoperable content (IC) and provide the IC to the device. The IC is second-level encrypted by using a key of the first DRM service provider, and the proxy re-encryption is performed by using a proxy key generated from proxy key information provided from the first DRM service provider and the second DRM service provider. Therefore, a problem in which interoperability cannot be guaranteed since a DRM technique depends on a service provider is resolved.
    • 提供了提供DRM互操作性的方法和设备。 使用双线性映射的代理重新加密技术,相同的内容可以在不同的设备中使用。 根据提供DRM互操作性的方法,其包括关于数字权限管理(DRM)服务提供商的代理代理和支持预定DRM的设备,第一DRM服务提供商,第二DRM服务提供商,代理代理和设备彼此识别 ,并且代理重新加密可互操作的内容(IC)并将IC提供给设备。 IC通过使用第一DRM服务提供商的密钥进行二级加密,并且通过使用从第一DRM服务提供商和第二DRM服务提供商提供的代理密钥信息生成的代理密钥来执行代理重新加密。 因此,解决了DRM技术取决于服务提供商的互操作性不能保证的问题。
    • 8. 发明申请
    • Liquid crystal display and driving method thereof
    • 液晶显示及其驱动方法
    • US20080012814A1
    • 2008-01-17
    • US11819487
    • 2007-06-27
    • Jong Kim
    • Jong Kim
    • G09G3/36
    • G09G3/3614G09G2320/0247
    • A liquid crystal display for recognizing a flicker with the naked eyes in a step of inspecting a flicker in the case where a liquid crystal display is driven with a frame frequency of 120 Hz is disclosed. In the liquid crystal display, a timing controller supplies a first frame inversion polarity signal which is used at a first frame inversion and, at the same time supplies a gate start pulse which indicates a supply of a scanning pulse. A frame polarity signal converting means converts a first frame inversion polarity signal into a second frame inversion polarity signal in response to the gate start pulse. And a data driver changes the inputted frame into a second frame inversion in response to the second frame inversion polarity signal.
    • 公开了一种液晶显示器,用于在以120Hz的帧频率驱动液晶显示器的情况下,在检查闪烁的步骤中用肉眼识别闪烁。 在液晶显示器中,定时控制器提供在第一帧反转中使用的第一帧反转极性信号,并且同时提供指示扫描脉冲的提供的栅极起始脉冲。 帧极性信号转换装置响应于门起始脉冲将第一帧反转极性信号转换为第二帧反转极性信号。 并且数据驱动器响应于第二帧反转极性信号将输入的帧改变为第二帧反转。