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    • 1. 发明授权
    • Liquid crystal display module
    • 液晶显示模块
    • US08687150B2
    • 2014-04-01
    • US12878600
    • 2010-09-09
    • Jong Sin ParkEung Do KimSe Hong ParkKyung Ha Lee
    • Jong Sin ParkEung Do KimSe Hong ParkKyung Ha Lee
    • G02F1/1335
    • G02F1/133514G02F1/133524G02F1/133528G02F2201/52
    • Disclosed is a liquid crystal display module that improves luminance of a liquid crystal panel by enhancing a light transmittance. The liquid crystal display module comprises a liquid crystal panel with plural unit pixels for converting incident light into colored light, wherein each unit pixel includes red (R), green (G), blue (B), and white (W) sub-pixels; a light source for supplying light to the liquid crystal panel; an optical member for guiding light emitted from the light source toward a frontal direction of the liquid crystal panel; and a polarizing means including a polarization area for polarizing the light outgoing from the liquid crystal panel, and a hole for transmitting the light therethrough.
    • 公开了一种通过提高透光率来提高液晶面板的亮度的液晶显示模块。 液晶显示模块包括具有用于将入射光转换成有色光的多个单位像素的液晶面板,其中每个单位像素包括红色(R),绿色(G),蓝色(B)和白色(W)子像素 ; 用于向液晶面板供给光的光源; 光学构件,用于将从光源发射的光朝向液晶面板的正面方向引导; 以及偏振装置,其包括用于偏振从液晶面板射出的光的偏振区域和用于透射光的孔。
    • 2. 发明申请
    • LIQUID CRYSTAL DISPLAY MODULE
    • 液晶显示模块
    • US20110128476A1
    • 2011-06-02
    • US12941495
    • 2010-11-08
    • Jong Sin ParkEung Do KimSe Hong ParkKyung Ha Lee
    • Jong Sin ParkEung Do KimSe Hong ParkKyung Ha Lee
    • G02F1/1335
    • G02F1/133514G02F1/133528G02F2201/52
    • A liquid crystal display module is disclosed, which facilitates to improve luminance of a liquid crystal panel by enhancing a light transmittance, the liquid crystal display module comprising a liquid crystal panel with plural unit pixels, wherein each unit pixel includes red(R), green(G), blue(B), and white(W) sub-pixels, for converting incident light into colored light; a light source for supplying light to the liquid crystal panel; a light-guiding plate for changing a horizontal direction of incident light from the light source into a vertical direction; and a polarizing plate including a polarization area for polarizing the light outgoing from the liquid crystal panel, and a hole for transmitting the light therethrough.
    • 公开了一种液晶显示模块,其通过提高透光率而有助于提高液晶面板的亮度,该液晶显示模块包括具有多个单位像素的液晶面板,其中每个单位像素包括红色(R),绿色 (G),蓝色(B)和白色(W)子像素,用于将入射光转换成有色光; 用于向液晶面板供给光的光源; 导光板,用于将来自光源的入射光的水平方向改变成垂直方向; 以及偏振板,其具有用于使从液晶面板射出的光偏振的偏振区域和用于透射光的孔。
    • 4. 发明授权
    • Liquid crystal display module
    • 液晶显示模块
    • US08659723B2
    • 2014-02-25
    • US12941495
    • 2010-11-08
    • Jong Sin ParkEung Do KimSe Hong ParkKyung Ha Lee
    • Jong Sin ParkEung Do KimSe Hong ParkKyung Ha Lee
    • G02F1/1335
    • G02F1/133514G02F1/133528G02F2201/52
    • A liquid crystal display module is disclosed, which facilitates to improve luminance of a liquid crystal panel by enhancing a light transmittance, the liquid crystal display module comprising a liquid crystal panel with plural unit pixels, wherein each unit pixel includes red(R), green(G), blue(B), and white(W) sub-pixels, for converting incident light into colored light; a light source for supplying light to the liquid crystal panel; a light-guiding plate for changing a horizontal direction of incident light from the light source into a vertical direction; and a polarizing plate including a polarization area for polarizing the light outgoing from the liquid crystal panel, and a hole for transmitting the light therethrough.
    • 公开了一种液晶显示模块,其通过提高透光率而有助于提高液晶面板的亮度,该液晶显示模块包括具有多个单位像素的液晶面板,其中每个单位像素包括红色(R),绿色 (G),蓝色(B)和白色(W)子像素,用于将入射光转换成有色光; 用于向液晶面板供给光的光源; 导光板,用于将来自光源的入射光的水平方向改变成垂直方向; 以及偏振板,其具有用于使从液晶面板射出的光偏振的偏振区域和用于透射光的孔。
    • 9. 发明授权
    • Method for manufacturing fringe field switching mode liquid crystal display device
    • 制造边缘场开关模式液晶显示装置的方法
    • US06485997B2
    • 2002-11-26
    • US09737670
    • 2000-12-15
    • Kyung Ha LeeSung Hyun Cho
    • Kyung Ha LeeSung Hyun Cho
    • H01L2166
    • H01L27/124G02F1/134363H01L27/1288
    • The present invention discloses a method for manufacturing a fringe field switching mode liquid crystal display device. Here, a counter electrode, gate bus line and common electrode line are formed by one photolithography process including: a first process for coating a resist film on the MoW film; a second process for forming a resist pattern consisting of first and second patterns respectively covering gate bus line and common electrode line formation regions and maintaining a coating thickness, and a third pattern covering a counter electrode formation region and partially maintaining the coating thickness, by exposing/developing the resist film; a third process for forming the gate bus line and the common electrode line by dry-etching the MoW film using the resist pattern as an etch barrier, the first and second patterns being partially removed, the third pattern being completely removed, the MoW film on the counter electrode formation region being partially removed; a fourth process for forming the counter electrode by wet-etching the ITO film using the remained resist pattern and MoW film as an etch barrier; and a fifth process for removing the remained resist pattern and MoW film.
    • 本发明公开了一种边缘场开关模式液晶显示装置的制造方法。 这里,通过一个光刻工艺形成对电极,栅极总线和公共电极线,包括:在MoW膜上涂覆抗蚀剂膜的第一工艺; 用于形成由分别覆盖栅极总线和公共电极线形成区域并保持涂层厚度的第一和第二图案组成的抗蚀剂图案的第二工艺,以及通过暴露来覆盖相对电极形成区域并部分地保持涂层厚度的第三图案 /开发抗蚀膜; 通过使用抗蚀剂图案作为蚀刻阻挡层干法蚀刻MoW膜来形成栅极总线和公共电极线的第三工艺,第一和第二图案被部分去除,第三图案被完全去除,MoW膜在 部分去除对置电极形成区域; 通过使用剩余的抗蚀剂图案和MoW膜作为蚀刻屏障对ITO膜进行湿法蚀刻来形成对电极的第四工艺; 以及用于去除残留的抗蚀图案和MoW膜的第五工艺。
    • 10. 发明授权
    • Method of manufacturing thin film transistor
    • 制造薄膜晶体管的方法
    • US06200837B1
    • 2001-03-13
    • US09340010
    • 1999-06-25
    • Tae Hyung IhnKyung Ha LeeChang Yong Jeong
    • Tae Hyung IhnKyung Ha LeeChang Yong Jeong
    • H01L2100
    • H01L29/66757H01L29/78636
    • A method of manufacturing a TFT which can improve realibility by planarizing the surface of a polysilicon layer as a channel layer, is disclosed. According to the present invention, an amorphous silicon layer is formed on an insulating layer substrate and crystallized by excimer layer annealing process, to form a polysilicon layer. Next, the surface of the polysilicon layer is oxidized to form an oxide layer. At this time the sufrace of the polsyilicon under the oxide layer become smooth. Preferably, the oxide layer is formed by oxiation process using ECR (Electron Cyclon Resonator) plasma or using one selected from the group consisting of O2, O2N2, O2N2O, O2NH3 and NO. Thereafter, the oxide layer is removed to expose the polysilicon layer and then a gate insulating layer is formed on the exposed polysilicon layer. Preferably, the gate insulating layer is formed to one selected from the group consisting of a SiO2 layer, a SiN layer, a SiON layer and a TEOS oxide layer. The gate insulating layer is formed by ECR plasma oxidiation process or ECR PECVD.
    • 公开了一种通过平坦化作为沟道层的多晶硅层的表面来提高可实现性的TFT的制造方法。根据本发明,在绝缘层基板上形成非晶硅层,并通过准分子层退火工艺 ,以形成多晶硅层。 接着,将多晶硅层的表面氧化形成氧化物层。 此时,硅酸盐在氧化物层下的光泽变得平滑。 优选地,通过使用ECR(Electron Cyclon Resonator)等离子体或使用选自O 2,O 2 N 2,O 2 N 2 O,O 2 NH 3和NO的一种氧化法形成氧化物层。 此后,去除氧化物层以暴露多晶硅层,然后在暴露的多晶硅层上形成栅极绝缘层。 优选地,栅极绝缘层形成为从由SiO 2层,SiN层,SiON层和TEOS氧化物层组成的组中选择的一个。 栅极绝缘层通过ECR等离子体氧化过程或ECR PECVD形成。