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    • 1. 发明授权
    • Manufacturing method of liquid crystal display having high aperture ratio and high transmittance
    • 具有高开口率和高透射率的液晶显示器的制造方法
    • US06319760B1
    • 2001-11-20
    • US09428274
    • 1999-10-27
    • Seung Hee LeeSeok Lyul LeeKyu Chang Park
    • Seung Hee LeeSeok Lyul LeeKyu Chang Park
    • H01L2100
    • G02F1/136209G02F1/134363
    • The present invention is directed to provide a manufacturing method of a liquid crystal display having high transmittance and high aperture ratio, wherein the method is capable of decreasing process time and cost by reducing numbers of photolithography process steps. The manufacturing method of the liquid crystal display according to comprises the steps of: providing a transparent insulating substrate having a displaying area and a non-displaying area; forming a light shielding pattern and a common signal line, with an opaque metal layer on the non-displaying area of the transparent insulating substrate; forming a counter electrode with a transparent metal layer on the displaying area of the transparent insulating substrate; depositing an insulating layer over the transparent insulating substrate so as to cover the light shielding pattern and the common signal line, and the counter electrode; forming source and drain electrodes to be overlapped with the light shielding pattern respectively on the insulating layer portions of both sides of the light shielding pattern and a data bus line connected to the source electrode; forming a pixel electrode with a transparent metal layer on the insulating layer portion of the displaying area; forming a channel layer on the light shielding pattern and on the source and drain electrode portion overlapped with the light shielding pattern; and forming a gate bus line having a gate insulating layer on the channel layer.
    • 本发明旨在提供具有高透射率和高开口率的液晶显示器的制造方法,其中该方法能够通过减少光刻工艺步骤的数量来减少处理时间和成本。 根据本发明的液晶显示器的制造方法包括以下步骤:提供具有显示区域和非显示区域的透明绝缘基板; 在所述透明绝缘基板的非显示区域上形成具有不透明金属层的遮光图案和公共信号线; 在所述透明绝缘基板的显示区域上形成具有透明金属层的对电极; 在透明绝缘基板上沉积绝缘层以覆盖遮光图案和公共信号线;以及对电极; 在所述遮光图案的两侧的绝缘层部分上分别形成与所述遮光图案重叠的源电极和漏电极以及连接到所述源电极的数据总线; 在所述显示区域的绝缘层部分上形成具有透明金属层的像素电极; 在所述遮光图案上形成沟道层,并且在与所述遮光图案重叠的所述源极和漏极电极部分上形成沟道层; 以及在沟道层上形成具有栅极绝缘层的栅极总线。
    • 2. 发明授权
    • Liquid crystal display device performing both image display mode and fingerprint recognition mode
    • 执行图像显示模式和指纹识别模式的液晶显示装置
    • US07418117B2
    • 2008-08-26
    • US10331530
    • 2002-12-30
    • Choong Hoo KimKyu Chang ParkMin Soo Shim
    • Choong Hoo KimKyu Chang ParkMin Soo Shim
    • G05B19/00G06K9/22G06K9/00G02F1/133G02F1/136
    • G06K9/0004G02F1/13338G02F2001/13312G06F1/1601G06F3/0412G06F2203/0339G09G3/3648G09G2300/0809
    • Disclosed is a liquid crystal display device of novel construction, in which a fingerprint recognition device is integrally formed with the liquid crystal display device, thereby minimizing the increase in the price and size of a final product. The liquid crystal display device comprises an image display panel and a fingerprint recognition panel which are integrally formed, wherein the image display panel comprises a scan drive unit which sequentially turns on rows formed in the image display panel for each frame in order to display images, and a data drive unit which outputs data signals to a turned-on row provided in the image display panel, and wherein the fingerprint recognition panel comprises a switch control unit which sequentially turns on rows formed in the fingerprint recognition panel for each frame in order to perform fingerprint recognition, and a reading unit, to which fingerprint information recognized from a turned-on row is outputted.
    • 公开了一种新颖结构的液晶显示装置,其中指纹识别装置与液晶显示装置整体形成,从而最小化最终产品的价格和尺寸的增加。 液晶显示装置包括一体形成的图像显示面板和指纹识别面板,其中,图像显示面板包括扫描驱动单元,该扫描驱动单元依次打开每帧的图像显示面板中形成的行以便显示图像, 以及数据驱动单元,其将数据信号输出到设置在图像显示面板中的开启行,并且其中指纹识别面板包括切换控制单元,其顺序地打开每个帧的指纹识别面板中形成的行,以便 执行指纹识别,以及读取单元,从被打开的行被识别的指纹信息被输出。
    • 3. 发明授权
    • Liquid crystal display device performing both image display mode and fingerprint recognition mode
    • 执行图像显示模式和指纹识别模式的液晶显示装置
    • US08723806B2
    • 2014-05-13
    • US11857508
    • 2007-09-19
    • Choong Hoo KimKyu Chang ParkMin Soo Shim
    • Choong Hoo KimKyu Chang ParkMin Soo Shim
    • G06F3/041G09G3/36
    • G06K9/0004G02F1/13338G02F2001/13312G06F1/1601G06F3/0412G06F2203/0339G09G3/3648G09G2300/0809
    • Disclosed is a liquid crystal display device of novel construction, in which a fingerprint recognition device is integrally formed with the liquid crystal display device, thereby minimizing the increase in the price and size of a final product. The liquid crystal display device comprises an image display panel and a fingerprint recognition panel which are integrally formed, wherein the image display panel comprises a scan drive unit which sequentially turns on rows formed in the image display panel for each frame in order to display images, and a data drive unit which outputs data signals to a turned-on row provided in the image display panel, and wherein the fingerprint recognition panel comprises a switch control unit which sequentially turns on rows formed in the fingerprint recognition panel for each frame in order to perform fingerprint recognition, and a reading unit, to which fingerprint information recognized from a turned-on row is outputted.
    • 公开了一种新颖结构的液晶显示装置,其中指纹识别装置与液晶显示装置整体形成,从而最小化最终产品的价格和尺寸的增加。 液晶显示装置包括一体形成的图像显示面板和指纹识别面板,其中,图像显示面板包括扫描驱动单元,该扫描驱动单元依次打开每帧的图像显示面板中形成的行以便显示图像, 以及数据驱动单元,其将数据信号输出到设置在图像显示面板中的开启行,并且其中指纹识别面板包括切换控制单元,其顺序地打开每个帧的指纹识别面板中形成的行,以便 执行指纹识别,以及读取单元,从被打开的行被识别的指纹信息被输出。
    • 4. 发明授权
    • Method of manufacturing a gas panel assembly
    • 制造气体面板组件的方法
    • US4083614A
    • 1978-04-11
    • US736802
    • 1976-10-29
    • M. Osama AboelfotohKyu Chang Park
    • M. Osama AboelfotohKyu Chang Park
    • H01J11/02H01J9/26H01J9/02
    • H01J9/261
    • A method is disclosed for the fabrication of a gas panel assembly with improved static and dynamic operating margins which includes depositing arrays of parallel lines as electrical conductors on a pair of glass plates, providing a dielectric layer over the parallel lines, baking out the respective glass plates in vacuum to eliminate residual gasses or impurities, depositing a layer of electron emissive refactory material over the dielectric of the glass plate assemblies at a prescribed elevated temperature range, and spacing the glass plates a specified distance apart with their arrays substantially orthogonal. This assembly is subsequently fired in an oven to seal the glass plates about their periphery while providing a chamber therebetween, the chamber evacuated and filled with an illuminable gas, the parallel lines at one end of each glass plate exposed for electrical contact and the electrical characteristics of the panel tested after fabrication.
    • 公开了一种用于制造具有改进的静态和动态运行裕度的气体面板组件的方法,其包括将平行线阵列作为电导体沉积在一对玻璃板上,在平行线上提供电介质层,烘烤相应的玻璃 在真空中排除板以消除残余气体或杂质,在规定的高温范围内在玻璃板组件的电介质上沉积电子发射重构材料层,并且将玻璃板与其阵列基本上正交地间隔规定距离。 随后将该组件在烘箱中烧制以围绕其周边密封玻璃板,同时在其间提供腔室,腔室被抽空并填充有可照明气体,每个玻璃板的一端的平行线暴露于电接触,并且电特性 的面板在制造后进行测试。
    • 6. 发明授权
    • Gas discharge display panel fabrication
    • 气体放电显示面板制造
    • US4018490A
    • 1977-04-19
    • US593618
    • 1975-07-07
    • Melvin BerkenblitRobert O. LussowKyu Chang ParkArnold Reisman
    • Melvin BerkenblitRobert O. LussowKyu Chang ParkArnold Reisman
    • H01J9/385H01J9/26H01J9/395H01J9/40H01J17/16H01J9/38
    • H01J9/261
    • An in situ process is disclosed for fabricating gas discharge display panels in a sequential seal, bake-out and backfill mode of operation. The single thermal cycle process involves placing unassembled panel parts in a controlled gas ambient furnace system with required seal frame, evacuating said furnace and backfilling with an appropriate ambient atmosphere to an appropriate pressure while heating the furnace. During the heating, the furnace is repeatedly evacuated to moderate vacuum and refilled to some predetermined pressure. The furnace is heated to just above the glass transition temperature of the seal frame in this evacuate-refill mode, then held for some time to achieve outgassing of both panel parts and furnace chamber. Thereafter, the furnace chamber is refilled to one atmosphere and further heated to complete the sealing of the panel. The panel is then cooled to approximately 300.degree. C, still under one atmosphere, after which the evacuate-refill cycle is continuously repeated as the temperature is lowered down to the temperature of tip-off using the refill gas for the pressurization. The panel is refilled to an appropriate pressure at elevated temperature such that at room temperature the pressure is the desired pressure and the panel is tipped off. The process of successive evacuations and backfillings at the appropriate portions of the cycle are highly desirable for cleaning of the panel parts via contaminant dilution.
    • 公开了一种在顺序密封,烘烤和回填操作模式下制造气体放电显示面板的原位工艺。 单个热循环过程包括将未组装的面板部件放置在具有所需密封框架的受控气体环境炉系统中,在加热炉的同时将适当的环境气氛排出所述炉并回填至适当的压力。 在加热期间,将炉子反复抽空至中等真空度并再填充至一定的压力。 在这种抽空 - 再充填模式下,将炉子加热到刚好高于密封框架的玻璃化转变温度,然后保持一段时间以实现面板部件和炉室的除气。 此后,将炉室重新填充至一个大气压并进一步加热以完成面板的密封。 然后将面板冷却至约300℃,仍然在一个大气压下,随后使用再填充气体进行加压,随着温度降低到脱落温度,连续重复抽空循环。 面板在升高的温度下重新填充到适当的压力,使得在室温下,压力是期望的压力并且面板被翻倒。 在循环的适当部分进行连续排空和回填的过程非常需要通过污染物稀释来清洁面板部件。