会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Polymer dispersed liquid crystal display device
    • 聚合物分散液晶显示装置
    • US6093344A
    • 2000-07-25
    • US104689
    • 1998-06-25
    • In Cheol ParkSeung Hee LeeJae Geon YouBong Gyu RhoSoon Ho Baek
    • In Cheol ParkSeung Hee LeeJae Geon YouBong Gyu RhoSoon Ho Baek
    • G02F1/1333C09K19/38C09K19/54G02F1/1334G02F1/137G09F9/35C09K19/52C09K19/12C09K19/20
    • C09K19/3852C09K19/544G02F1/1334Y10T428/10
    • A polymer dispersed liquid crystal display device is disclosed. A polymer dispersed liquid crystal display device of the present invention includes a pair of substrates inside which electrodes are formed, respectively. The substrates are disposed to be opposite to each other and to be spaced to a cell gap. A liquid crystal polymer network and liquid crystal droplets which are phase separated from each other, are interposed between the substrates. The liquid crystal polymer network is perpendicularly arranged to the planes of the substrates regardless of presence or absence of electrical field. The liquid crystal droplets includes a plurality of liquid crystal molecules and are dispersed in the liquid crystal polymer network. The liquid crystal polymer network has a birefringe index which is similar to that of the liquid crystal. The liquid crystal polymer network is that a liquid crystal polymer having a higher glass transition temperature than an operation temperature of the liquid crystal is perpendicularly arranged to the planes of the substrate by a voltage of 1 to 100 V and hardened as it is. Preferably, the liquid crystal polymer network is that a liquid crystal monomer having UV hardening property is perpendicularly arranged to the planes of the substrates and harden as it is.
    • 公开了一种聚合物分散液晶显示装置。 本发明的聚合物分散液晶显示装置包括分别形成有电极的一对基板。 基板被设置成彼此相对并且与单元间隙间隔开。 相互分离的液晶聚合物网络和液晶微滴被插入在基板之间。 液晶聚合物网络垂直地布置在基板的平面上,而不管电场是否存在。 液晶微滴包括多个液晶分子并分散在液晶聚合物网络中。 液晶聚合物网络具有类似于液晶的双折射指数。 液晶聚合物网络是具有比液晶的操作温度更高的玻璃化转变温度的液晶聚合物以1至100V的电压垂直地布置在基板的平面上并且硬化。 优选地,液晶聚合物网络是具有UV硬化性质的液晶单体垂直地布置在基板的平面上并且原样硬化。
    • 5. 发明授权
    • Homogeneous electric field liquid crystal display
    • 均质电场液晶显示
    • US06713784B2
    • 2004-03-30
    • US09783243
    • 2001-02-12
    • Hyang Yul KimIn Cheol ParkSeung Hee Lee
    • Hyang Yul KimIn Cheol ParkSeung Hee Lee
    • H01L2904
    • G02F1/134363G02F1/133345G02F1/136204
    • Disclosed is an in-plane switching(IPS) mode liquid crystal display(LCD) to prevent generating parasitic electric field due to residual DC components and static electricity. The IPS mode LCD according to the present invention comprises a first substrate; counter electrodes formed on the first substrate; pixel electrodes formed on the first substrate and spaced apart from the counter electrodes; a first high dielectric layer formed between the counter and pixel electrodes on the first substrate in which the counter and pixel electrodes are formed; a second substrate opposed to the first substrate; and a second high dielectric layer disposed at an inner surface of the second substrate.
    • 公开了一种面内切换(IPS)模式液晶显示器(LCD),以防止由于残余DC分量和静电产生寄生电场。 根据本发明的IPS模式LCD包括第一基板; 形成在第一基板上的对置电极; 形成在第一基板上并与对置电极间隔开的像素电极; 第一高电介质层,形成在第一基板上的计数器和像素电极之间,其中形成反相和像素电极; 与第一基板相对的第二基板; 以及设置在所述第二基板的内表面处的第二高介电层。
    • 6. 发明授权
    • Homeotropic alignment liquid crystal display having multi-domain
    • 具有多畴的垂直取向液晶显示器
    • US06512565B1
    • 2003-01-28
    • US09320086
    • 1999-05-26
    • Seung Hee LeeYun Hee LeeIn Cheol Park
    • Seung Hee LeeYun Hee LeeIn Cheol Park
    • G02F11337
    • G02F1/134363G02F2001/133742
    • The present invention provide a homeotropic alignment liquid crystal display having a multi-domain which is capable of obtaining symmetrical viewing angles and simultaneously preventing color shift. An upper substrate and a lower substrate are opposed each other to be spaced apart and a liquid crystal layer interposed between inner surfaces of the upper and lower substrates. A first electrode and a second electrode are formed on the inner surface of the lower substrate, wherein the first electrode and the second electrode form an electric field for driving liquid crystal molecules. Further, homeotropic alignment layers are interposed between the lower substrate and the liquid crystal layer and between the upper substrate and the liquid crystal layer respectively. After a selected voltage is applied to the first and second electrodes, there are formed simultaneously a first electric field having a selected angle with a first direction and a second electric field making a symmetry with the first electric field with respect to the first electric field and the first direction. Therefore, the liquid crystal molecules are tilted in their left side and right side with respect to the center lines of electric fields thereby forming four symmetric liquid crystal domains within one pixel region.
    • 本发明提供一种具有多域的垂直取向液晶显示器,其能够获得对称的视角并同时防止色移。上基板和下基板彼此相对地间隔开,并且液晶层插入 在上下基板的内表面之间。 第一电极和第二电极形成在下基板的内表面上,其中第一电极和第二电极形成用于驱动液晶分子的电场。 此外,垂直取向层分别插入在下基板和液晶层之间以及上基板和液晶层之间。 在将选择的电压施加到第一和第二电极之后,同时形成具有与第一方向成一定角度的第一电场和相对于第一电场与第一电场对称的第二电场,以及 第一个方向。 因此,液晶分子相对于电场的中心线在其左侧和右侧倾斜,从而在一个像素区域内形成四个对称的液晶畴。
    • 7. 发明授权
    • Vertical alignment mode liquid crystal display having enhanced response time
    • 具有增强的响应时间的垂直对准模式液晶显示器
    • US06177973B1
    • 2001-01-23
    • US09198829
    • 1998-11-24
    • Seung Hee LeeIn Cheol ParkHyang Yul KimYun Hee Lee
    • Seung Hee LeeIn Cheol ParkHyang Yul KimYun Hee Lee
    • G02F11337
    • G02F1/134363G02F1/13378G02F1/133784G02F2001/133742
    • A liquid crystal display(LCD) comprise a first substrate, a first electrode formed on a front surface of the first substrate, a second electrode spaced from the first electrode on the front surface of the first substrate, a first vertical alignment film formed on a surface of a resultant in which the first electrode and the second electrode are formed and rubbed in a length direction of the second electrode, a first polarization film disposed on a back surface of the first substrate opposite to the front surface of the first substrate, a second substrate having a surface opposite to the first substrate, a second vertical alignment film formed on the opposite surface of the second substrate and rubbed in a length direction of the second electrode, a liquid crystal layer interposed between the first vertical alignment film and the second vertical alignment film so that all the liquid crystal molecules in the liquid crystal layer have a single uniform tilt angle with respect to the first substrate when no voltage is applied, and a second polarization film formed on a back surface of the second substrate opposite to the opposite surface of the second substrate.
    • 液晶显示器(LCD)包括第一基板,形成在第一基板的前表面上的第一电极,与第一基板的前表面上的第一电极间隔开的第二电极,形成在第一基板上的第一垂直取向膜 其中第一电极和第二电极在第二电极的长度方向上形成和摩擦的结果的表面,设置在与第一基板的前表面相对的第一基板的背面上的第一偏振膜, 第二基板,具有与第一基板相反的表面;第二垂直取向膜,形成在第二基板的相对表面上并在第二电极的长度方向上摩擦;液晶层,介于第一垂直取向膜和第二基板之间; 使得液晶层中的所有液晶分子相对于第一液晶分子具有单一均匀的倾斜角 基板,以及形成在与第二基板的相反表面相反的第二基板的背面上的第二偏光膜。
    • 8. 发明授权
    • Liquid crystal display
    • 液晶显示器
    • US06476900B1
    • 2002-11-05
    • US09199001
    • 1998-11-24
    • Seung Hee LeeIn Cheol ParkHyang Yul KimYun Hee Lee
    • Seung Hee LeeIn Cheol ParkHyang Yul KimYun Hee Lee
    • G02F11343
    • G02F1/134363
    • Is disclosed a liquid crystal display having a gate bus line arranged in a first direction on a substrate, a data bus line arranged in a second direction substantially perpendicular to the first direction on the substrate, the data bus line defining a space for an unit pixel of the LCD together with the gate bus line, a counter electrode formed in the unit pixel space of the LCD and having at least three first part extended in the second direction, and a pixel electrode having at least two second parts, the second part extended between the first parts of the counter electrode and disposed in the second direction, the second part slanting to one side of adjacent first parts thereto, so that an intensity of an electric field at one portion of the unit pixel space is different at another portion of the unit pixel space. Accordingly, a color shift of the LCD is prevented.
    • 公开了一种液晶显示器,其具有在基板上沿第一方向布置的栅极总线,在基板上沿与第一方向基本垂直的第二方向布置的数据总线,数据总线线限定单位像素的空间 与栅极总线一起形成在LCD的单位像素空间中并且具有沿第二方向延伸的至少三个第一部分的对电极和具有至少两个第二部分的像素电极,第二部分延伸 在相对电极的第一部分之间并且沿第二方向布置,第二部分倾斜到相邻的第一部分的一侧,使得单位像素空间的一部分处的电场的强度在另一部分 单位像素空间。 因此,防止了LCD的色移。
    • 9. 发明授权
    • Fringe field switching liquid crystal display and method for manufacturing the same
    • 边缘场开关液晶显示器及其制造方法
    • US06449026B1
    • 2002-09-10
    • US09599372
    • 2000-06-22
    • Tae Yup MinSeung Jun YiSeung Hee LeeIn Cheol ParkYoun Hak Jeong
    • Tae Yup MinSeung Jun YiSeung Hee LeeIn Cheol ParkYoun Hak Jeong
    • G02F1136
    • G02F1/134363G02F2001/134372
    • Disclosed is a fringe field switching liquid crystal display (FFS-LCD) and a method for manufacturing the same. The FFS-LCD comprises: a lower substrate; a plurality of gate bus lines extending along a selected direction on the lower substrate; a plurality of data bus lines disposed on the lower substrate in a manner such that they are crossed with the plurality of gate bus lines, for defining a unit pixel; a gate insulating film for insulating the gate bus lines and the data bus lines from each other; a thin film transistor located at a place where the gate bus lines and the data bus lines are crossed with each other; a pixel electrode formed on the gate insulating film, brought into contact with the thin film transistor and disposed in a space of the unit pixel; a counter electrode overlapped on the pixel electrode, the counter electrode cooperating with the pixel electrode for forming a fringe field which actuates all liquid crystal molecules existing on the pixel electrode and the counter electrode; and a passivation layer intervened between the pixel electrode and the counter electrode, wherein the pixel electrode and the counter electrode are made from a transparent conductive material and the plurality of gate bus lines are made as a metal film including aluminum.
    • 公开了一种边缘场切换液晶显示器(FFS-LCD)及其制造方法。 FFS-LCD包括:下基板; 沿着所述下基板上的选定方向延伸的多个栅极总线; 多个数据总线,以与所述多个栅极总线交叉的方式设置在所述下基板上,用于限定单位像素; 栅极绝缘膜,用于使栅极总线和数据总线彼此绝缘; 位于栅极总线和数据总线彼此交叉的位置处的薄膜晶体管; 形成在所述栅极绝缘膜上的像素电极,与所述薄膜晶体管接触并设置在所述单位像素的空间中; 对置电极,重叠在像素电极上,对置电极与像素电极配合,形成用于激活存在于像素电极和对电极上的所有液晶分子的条纹场; 以及介于像素电极和对电极之间的钝化层,其中像素电极和对电极由透明导电材料制成,并且多个栅极总线线制成包括铝的金属膜。
    • 10. 发明授权
    • Reflective LCD having high transmittance and method for manufacturing the same
    • 透射率高的反射型液晶显示器及其制造方法
    • US06351300B1
    • 2002-02-26
    • US09379452
    • 1999-08-23
    • In Cheol ParkSeung Hee LeeWon Geon Lee
    • In Cheol ParkSeung Hee LeeWon Geon Lee
    • G02F1136
    • G02F1/133504G02F1/134363G02F2203/02
    • Disclosed is a reflective liquid crystal display having high transmittance and a method for manufacturing the same. The method comprises the steps of: forming a gate bus line and a common signal line by depositing a metal layer on a lower substrate and by patterning a selected portion of the metal layer; forming a gate insulating layer on the lower substrate in which the gate bus line is formed; forming a channel layer on a selected portion of the gate insulating layer having the gate bus line; forming a source electrode overlapped with one side of the channel layer, a drain electrode overlapped with the other side of the channel layer, and a data bus line being contacted to the source electrode and crossed with the gate bus line, by depositing a metal layer on the gate insulating layer in which the channel layer is formed, and by patterning a selected portion of the metal layer; forming an intermetal insulating layer having a uniform topology on a surface of the gate insulating layer; etching selected portions of the intermetal insulating layer and the gate insulating layer so as to expose selected portions of the common signal line and the drain electrode; and forming a counter electrode contacted with the common signal line and a pixel electrode contacted with the drain electrode by depositing a transparent metal layer on the intermetal insulating layer and by patterning a selected portion of the transparent metal layer.
    • 公开了具有高透射率的反射型液晶显示器及其制造方法。 该方法包括以下步骤:通过在下基板上沉积金属层并通过图案化金属层的选定部分来形成栅极总线和公共信号线; 在形成栅极总线的下基板上形成栅极绝缘层; 在具有栅极总线的栅极绝缘层的选定部分上形成沟道层; 形成与所述沟道层的一侧重叠的源电极,与所述沟道层的另一侧重叠的漏电极,以及与所述源极电极接触并与所述栅极总线交叉的数据总线,通过沉积金属层 在其上形成沟道层的栅极绝缘层上,并且通过图案化金属层的选定部分; 在所述栅绝缘层的表面上形成具有均匀拓扑的金属间绝缘层; 蚀刻金属间绝缘层和栅极绝缘层的选定部分,以暴露公共信号线和漏电极的选定部分; 以及通过在金属间绝缘层上沉积透明金属层并且通过对透明金属层的选定部分进行图案化而形成与公共信号线接触的对电极和与漏电极接触的像素电极。