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    • 3. 发明授权
    • Liquid crystal display device operated with an in-plane switching system and manufacturing method thereof
    • 具有面内切换系统的液晶显示装置及其制造方法
    • US08045109B2
    • 2011-10-25
    • US12375894
    • 2007-07-17
    • Yoshikazu KondoYoshiro TodaWataru Mizuno
    • Yoshikazu KondoYoshiro TodaWataru Mizuno
    • G02F1/1333G02F1/1343
    • G02F1/134363G02F2202/22
    • Provided are a method of manufacturing liquid crystal display device possessing transparent conductive layer exhibiting excellent optical transparency, resistance characteristic, evenness, adhesion to substrate, and hardness, and liquid crystal display device thereof. The liquid crystal display device possessing liquid crystal display panel and backlight unit, wherein liquid crystal display panel has a structure in which display electrode and reference electrode are provided on surface of region corresponding to unit pixel on liquid crystal layer side of one transparent substrate or each of both transparent substrates provided facing to each other via liquid crystal layer, and light transmitting liquid crystal layer is modulated by electric field generated parallel to transparent substrate between reference electrode and display electrode, wherein the method of manufacturing liquid crystal display device possesses the step of forming transparent conductive layer in pixel region by atmospheric pressure plasma method employing nitrogen gas as thin film forming gas.
    • 本发明提供一种液晶显示装置的制造方法,该液晶显示装置具有优异的透光性,电阻特性,均匀性,与基板的粘附性和硬度的透明导电层及其液晶显示装置。 具有液晶显示面板和背光单元的液晶显示装置,其中液晶显示面板具有将显示电极和参考电极设置在与一个透明基板或每个透明基板的液晶层侧的单位像素对应的区域的表面上的结构 通过液晶层彼此面对的两个透明基板,透光性液晶层通过与参照电极和显示电极之间的透明基板平行地产生的电场来调制,其中液晶显示装置的制造方法具有以下步骤: 通过使用氮气作为薄膜形成气体的大气压等离子体法在像素区域中形成透明导电层。
    • 4. 发明申请
    • METHOD OF MANUFACTURING LIQUID CRYSTAL DISPLAY DEVICE, AND LIQUID CRYSTAL DISPLAY DEVICE
    • 制造液晶显示装置的方法和液晶显示装置
    • US20100002176A1
    • 2010-01-07
    • US12375894
    • 2007-07-17
    • Yoshikazu KondoYoshiro TodaWataru Mizuno
    • Yoshikazu KondoYoshiro TodaWataru Mizuno
    • G02F1/1333G02F1/13
    • G02F1/134363G02F2202/22
    • Provided are a method of manufacturing liquid crystal display device possessing transparent conductive layer exhibiting excellent optical transparency, resistance characteristic, evenness, adhesion to substrate, and hardness, and liquid crystal display device thereof. The liquid crystal display device possessing liquid crystal display panel and backlight unit, wherein liquid crystal display panel has a structure in which display electrode and reference electrode are provided on surface of region corresponding to unit pixel on liquid crystal layer side of one transparent substrate or each of both transparent substrates provided facing to each other via liquid crystal layer, and light transmitting liquid crystal layer is modulated by electric field generated parallel to transparent substrate between reference electrode and display electrode, wherein the method of manufacturing liquid crystal display device possesses the step of forming transparent conductive layer in pixel region by atmospheric pressure plasma method employing nitrogen gas as thin film forming gas.
    • 本发明提供一种液晶显示装置的制造方法,该液晶显示装置具有优异的透光性,电阻特性,均匀性,与基板的粘附性和硬度的透明导电层及其液晶显示装置。 具有液晶显示面板和背光单元的液晶显示装置,其中液晶显示面板具有将显示电极和参考电极设置在与一个透明基板或每个透明基板的液晶层侧的单位像素对应的区域的表面上的结构 通过液晶层彼此面对的两个透明基板,透光性液晶层通过与参照电极和显示电极之间的透明基板平行地产生的电场来调制,其中液晶显示装置的制造方法具有以下步骤: 通过使用氮气作为薄膜形成气体的大气压等离子体法在像素区域中形成透明导电层。
    • 6. 发明授权
    • Display front plane, display lenticular lens, and display fresnel lens
    • 显示前平面,显示双凸透镜和显示菲涅尔透镜
    • US07239444B2
    • 2007-07-03
    • US10945761
    • 2004-09-21
    • Wataru MizunoAtsushi SaitoIchiro Kudo
    • Wataru MizunoAtsushi SaitoIchiro Kudo
    • G03B21/56G03B21/60G02B1/10G02B27/00B05D3/04H05C1/00C23C16/00
    • G03B21/56Y10T428/12694
    • A display front plane having an anti-reflection film in thickness uniformity and good adhesion between the anti-reflection film and the base material is supplied. Each of a display lenticular lens and a display fresnel lens having a sophisticated anti-reflection function with a high total light transmittance is also to be provided. As for the display front plane, lenticular lens, fresnel lens relating to the present invention, gas containing a gas for thin film formation is introduced into a discharge space under the atmospheric pressure or the pressure close to it and the gas is activated by applying a high frequency electric field in the discharge space mentioned above. And then, anti-reflection film at least on one side of the surface of the base material is formed by exposing the base material in the aforementioned activated gas.
    • 提供具有抗反射膜的显示面,其厚度均匀性和防反射膜与基材之间的良好粘附性。 还提供具有高总透光率的复杂的防反射功能的显示双凸透镜和显示器菲涅尔透镜。 对于显示器正面,本发明的双凸透镜,菲涅尔透镜,将含有薄膜形成用气体的气体在大气压或靠近其的压力下导入放电空间,通过施加 上述放电空间内的高频电场。 然后,通过使上述活性气体中的基材曝光,形成至少在基材表面一侧的抗反射膜。
    • 7. 发明申请
    • Display front plane, display linticular lens, and display fresnel lens
    • 显示前面,显示瞳孔透镜和显示菲涅尔透镜
    • US20050068617A1
    • 2005-03-31
    • US10945761
    • 2004-09-21
    • Wataru MizunoAtsushi SaitoIchiro Kudo
    • Wataru MizunoAtsushi SaitoIchiro Kudo
    • C23C26/00G02B1/10G03B21/56
    • G03B21/56Y10T428/12694
    • A display front plane having an anti-reflection film in thickness uniformity and good adhesion between the anti-reflection film and the base material is supplied. Each of a display lenticular lens and a display fresnel lens having a sophisticated anti-reflection function with a high total light transmittance is also to be provided. As for the display front plane, lenticular lens, fresnel lens relating to the present invention, gas containing a gas for thin film formation is introduced into a discharge space under the atmospheric pressure or the pressure close to it and the gas is activated by applying a high frequency electric field in the discharge space mentioned above. And then, anti-reflection film at least on one side of the surface of the base material is formed by exposing the base material in the aforementioned activated gas.
    • 提供具有抗反射膜的显示面,其厚度均匀性和防反射膜与基材之间的良好粘附性。 还提供具有高总透光率的复杂的防反射功能的显示双凸透镜和显示器菲涅尔透镜。 对于显示器正面,本发明的双凸透镜,菲涅尔透镜,将含有薄膜形成用气体的气体在大气压或靠近其的压力下导入放电空间,通过施加 上述放电空间内的高频电场。 然后,通过使上述活性气体中的基材曝光,形成至少在基材表面一侧的抗反射膜。