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    • 1. 发明授权
    • Color filterless display device, optical element, and manufacture
    • 无滤色显示装置,光学元件和制造
    • US08767139B2
    • 2014-07-01
    • US13030208
    • 2011-02-18
    • Hidetoshi NamataShinya OnoYoichi TairaFumiaki Yamada
    • Hidetoshi NamataShinya OnoYoichi TairaFumiaki Yamada
    • G02F1/1335
    • G02B6/0053G02F1/133526G02F1/133621
    • A method of forming an optical element for a color display device includes forming a lens shaped die, coating a low refractive index photo-setting resin on the lens shaped die, pasting the lens shaped die to a substrate, and irradiating the coated low refractive index photo-setting resin so as to set the low refractive index resin and form a low refractive index layer. The lens shaped die is removed from the low refractive index layer set on the substrate, a high refractive index photo-setting resin is coated on the low refractive index layer by use of a planarizing die, and the coated high refractive index photo-setting resin is irradiated so as to set the high refractive index resin and form a high refractive index layer. The planarizing die is then from the high refractive index layer set on the low refractive index layer.
    • 一种形成彩色显示装置的光学元件的方法包括:形成透镜形模,在透镜模上涂覆低折射率光固化树脂,将透镜成形模贴在基板上,照射涂覆的低折射率 光固化树脂,以便设置低折射率树脂并形成低折射率层。 透镜成形的模具从设置在基板上的低折射率层去除,高折射率光固化树脂通过使用平面化模具涂覆在低折射率层上,并且涂覆的高折射率光固化树脂 被照射以设置高折射率树脂并形成高折射率层。 然后,平面化裸片来自设置在低折射率层上的高折射率层。
    • 2. 发明授权
    • Color filterless display device, optical element, and manufacture
    • 无滤色显示装置,光学元件和制造
    • US08879016B2
    • 2014-11-04
    • US13030271
    • 2011-02-18
    • Hidetoshi NamataShinya OnoYoichi TairaFumiaki Yamada
    • Hidetoshi NamataShinya OnoYoichi TairaFumiaki Yamada
    • G02F1/1335F21V8/00
    • G02B6/0053G02F1/133526G02F1/133621
    • A method of forming liquid crystal cell for a color display device includes forming a liquid crystal layer and a prism structure between top and bottom substrates. Forming the prism structure includes forming a lens shaped die, coating a low refractive index resin on the lens shaped die, pasting the lens shaped die to the top substrate, and irradiating the coated low refractive index resin so as to set the low refractive index resin and form a low refractive index layer. The lens shaped die is removed from the low refractive index layer, a high refractive index resin is coated on the low refractive index layer by use of a planarizing die. The coated high refractive index resin is irradiated so as to set the high refractive index resin and form a high refractive index layer, and the planarizing die is removed from the high refractive index layer.
    • 一种形成彩色显示装置的液晶元件的方法包括在顶部和底部基板之间形成液晶层和棱镜结构。 形成棱镜结构包括形成透镜形模,在透镜形模上涂覆低折射率树脂,将透镜成形模贴合到顶基板上,照射涂布的低折射率树脂,以便将低折射率树脂 并形成低折射率层。 从低折射率层去除透镜成形的模具,通过使用平面化模具将高折射率树脂涂覆在低折射率层上。 照射涂覆的高折射率树脂以设置高折射率树脂并形成高折射率层,并且从高折射率层去除平面化模具。
    • 3. 发明申请
    • Color Filterless Display Device, Optical Element, and Manufacture
    • 无滤色显示设备,光学元件和制造
    • US20120045859A1
    • 2012-02-23
    • US13030271
    • 2011-02-18
    • Hidetoshi NamataShinya OnoFumiaki YamadaYoichi Taira
    • Hidetoshi NamataShinya OnoFumiaki YamadaYoichi Taira
    • H01L33/08
    • G02B6/0053G02F1/133526G02F1/133621
    • A method of forming liquid crystal cell for a color display device includes forming a liquid crystal layer and a prism structure between top and bottom substrates. Forming the prism structure includes forming a lens shaped die, coating a low refractive index resin on the lens shaped die, pasting the lens shaped die to the top substrate, and irradiating the coated low refractive index resin so as to set the low refractive index resin and form a low refractive index layer. The lens shaped die is removed from the low refractive index layer, a high refractive index resin is coated on the low refractive index layer by use of a planarizing die. The coated high refractive index resin is irradiated so as to set the high refractive index resin and form a high refractive index layer, and the planarizing die is removed from the high refractive index layer.
    • 一种形成彩色显示装置的液晶元件的方法包括在顶部和底部基板之间形成液晶层和棱镜结构。 形成棱镜结构包括形成透镜形模,在透镜形模上涂覆低折射率树脂,将透镜成形模贴合到顶基板上,照射涂布的低折射率树脂,以便将低折射率树脂 并形成低折射率层。 从低折射率层去除透镜成形的模具,通过使用平面化模具将高折射率树脂涂覆在低折射率层上。 照射涂覆的高折射率树脂以设置高折射率树脂并形成高折射率层,并且从高折射率层去除平面化模具。
    • 4. 发明申请
    • Color Filterless Display Device, Optical Element, and Manufacture
    • 无滤色显示设备,光学元件和制造
    • US20120043678A1
    • 2012-02-23
    • US13030208
    • 2011-02-18
    • Hidetoshi NumataShinya OnoFumiaki YamadaYoichi Taira
    • Hidetoshi NumataShinya OnoFumiaki YamadaYoichi Taira
    • G02B1/12
    • G02B6/0053G02F1/133526G02F1/133621
    • A method of forming an optical element for a color display device includes forming a lens shaped die, coating a low refractive index photo-setting resin on the lens shaped die, pasting the lens shaped die to a substrate, and irradiating the coated low refractive index photo-setting resin so as to set the low refractive index resin and form a low refractive index layer. The lens shaped die is removed from the low refractive index layer set on the substrate, a high refractive index photo-setting resin is coated on the low refractive index layer by use of a planarizing die, and the coated high refractive index photo-setting resin is irradiated so as to set the high refractive index resin and form a high refractive index layer. The planarizing die is then from the high refractive index layer set on the low refractive index layer.
    • 一种形成彩色显示装置的光学元件的方法包括:形成透镜形模,在透镜模上涂覆低折射率光固化树脂,将透镜成形模贴在基板上,照射涂覆的低折射率 光固化树脂,以便设置低折射率树脂并形成低折射率层。 透镜成形的模具从设置在基板上的低折射率层去除,高折射率光固化树脂通过使用平面化模具涂覆在低折射率层上,并且涂覆的高折射率光固化树脂 被照射以设置高折射率树脂并形成高折射率层。 然后,平面化裸片来自设置在低折射率层上的高折射率层。
    • 6. 发明授权
    • Color filterless display device, optical element, and manufacture
    • 无滤色显示装置,光学元件和制造
    • US07936412B2
    • 2011-05-03
    • US11621559
    • 2007-01-09
    • Hidetoshi NumataShinya OnoFumiaki YamadaYoichi Taira
    • Hidetoshi NumataShinya OnoFumiaki YamadaYoichi Taira
    • G02F1/1335
    • G02B6/0053G02F1/133526G02F1/133621
    • A color filterless display device performing color display for expressing one pixel by three RGB sub-pixels includes: a light source; a diffraction grating for separating a light irradiated from this light source into lights of a plurality of wavelength regions; a cylindrical lens array for receiving the separated light and condensing the light while corresponding to each of the sub-pixels; and a liquid crystal cell including a structure portion for correcting an angle of the condensed light for all sub-pixels, wherein, in the structure portion of this liquid crystal cell, a side onto which a light from the cylindrical lens array is made incident is made of a high refractive index layer, an emitting side from which the light is emitted is made of a low refractive index layer, and a Fresnel-type microprism structure is formed by the high refractive index layer and the low refractive index layer.
    • 执行用于表示一个像素乘以三个RGB子像素的彩色显示的无滤色器显示装置包括:光源; 用于将从该光源照射的光分离成多个波长区域的光的衍射光栅; 柱面透镜阵列,用于接收分离的光并在对应于每个子像素的同时会聚光; 以及液晶单元,其包括用于校正所有子像素的聚光的角度的结构部分,其中在该液晶单元的结构部分中入射来自柱面透镜阵列的光的一侧是 由高折射率层制成,发射光的发射侧由低折射率层制成,并且通过高折射率层和低折射率层形成菲涅耳型微棱镜结构。
    • 7. 发明授权
    • Color filterless display device, optical element, and manufacture
    • 无滤色显示装置,光学元件和制造
    • US07164454B2
    • 2007-01-16
    • US10912756
    • 2004-08-05
    • Hidetoshi NumataShinya OnoFumiaki YamadaYoichi Taira
    • Hidetoshi NumataShinya OnoFumiaki YamadaYoichi Taira
    • G02F1/1335
    • G02B6/0053G02F1/133526G02F1/133621
    • A color filterless display device performing color display for expressing one pixel by three RGB sub-pixels includes: a light source; a diffraction grating for separating a light irradiated from this light source into lights of a plurality of wavelength regions; a cylindrical lens array for receiving the separated light and condensing the light while corresponding to each of the sub-pixels; and a liquid crystal cell including a structure portion for correcting an angle of the condensed light for all sub-pixels, wherein, in the structure portion of this liquid crystal cell, a side onto which a light from the cylindrical lens array is made incident is made of a high refractive index layer, an emitting side from which the light is emitted is made of a low refractive index layer, and a Fresnel-type microprism structure is formed by the high refractive index layer and the low refractive index layer.
    • 执行用于表示一个像素乘以三个RGB子像素的彩色显示的无滤色器显示装置包括:光源; 用于将从该光源照射的光分离成多个波长区域的光的衍射光栅; 柱面透镜阵列,用于接收分离的光并在对应于每个子像素的同时会聚光; 以及液晶单元,其包括用于校正所有子像素的聚光的角度的结构部分,其中在该液晶单元的结构部分中入射来自柱面透镜阵列的光的一侧是 由高折射率层制成,发射光的发射侧由低折射率层制成,并且通过高折射率层和低折射率层形成菲涅耳型微棱镜结构。
    • 8. 发明申请
    • COLOR FILTERLESS DISPLAY DEVICE, OPTICAL ELEMENT, AND MANUFACTURE
    • 彩色无线显示设备,光学元件和制造
    • US20070139582A1
    • 2007-06-21
    • US11621559
    • 2007-01-09
    • Hidetoshi NumataShinya OnoFumiaki YamadaYoichi Taira
    • Hidetoshi NumataShinya OnoFumiaki YamadaYoichi Taira
    • G02F1/1335
    • G02B6/0053G02F1/133526G02F1/133621
    • A color filterless display device performing color display for expressing one pixel by three RGB sub-pixels includes: a light source; a diffraction grating for separating a light irradiated from this light source into lights of a plurality of wavelength regions; a cylindrical lens array for receiving the separated light and condensing the light while corresponding to each of the sub-pixels; and a liquid crystal cell including a structure portion for correcting an angle of the condensed light for all sub-pixels, wherein, in the structure portion of this liquid crystal cell, a side onto which a light from the cylindrical lens array is made incident is made of a high refractive index layer, an emitting side from which the light is emitted is made of a low refractive index layer, and a Fresnel-type microprism structure is formed by the high refractive index layer and the low refractive index layer.
    • 执行用于表示一个像素乘以三个RGB子像素的彩色显示的无滤色器显示装置包括:光源; 用于将从该光源照射的光分离成多个波长区域的光的衍射光栅; 柱面透镜阵列,用于接收分离的光并在对应于每个子像素的同时会聚光; 以及液晶单元,其包括用于校正所有子像素的聚光的角度的结构部分,其中在该液晶单元的结构部分中入射来自柱面透镜阵列的光的一侧是 由高折射率层制成,发射光的发射侧由低折射率层制成,并且通过高折射率层和低折射率层形成菲涅耳型微棱镜结构。
    • 10. 发明授权
    • Display device and control method thereof
    • 显示装置及其控制方法
    • US09299290B2
    • 2016-03-29
    • US14359940
    • 2011-11-24
    • Shinya Ono
    • Shinya Ono
    • G09G3/30G09G3/32H01L27/32
    • G09G3/3258G09G3/3233G09G2300/0819G09G2300/0852G09G2300/0861G09G2320/0223H01L27/3244
    • Plural pixel circuits of a display device each include: a drive transistor having drain or source connected to a first power source voltage; a first capacitive element having a first electrode connected to a gate of the drive transistor and a second electrode connected to the source of the drive transistor; a second capacitive element having a first electrode connected to the second electrode of the first capacitive element and a second electrode directly connected to a data line that transmits a voltage corresponding to a light-emitting luminance; a first switching element that switches between conduction and non-conduction between the gate of the drive transistor and a fixed reference voltage; and a light-emitting device having a first electrode connected to source or drain of the drive transistor and a second electrode connected to a second power source voltage.
    • 显示装置的多个像素电路各自包括:具有连接到第一电源电压的漏极或源极的驱动晶体管; 第一电容元件,具有连接到驱动晶体管的栅极的第一电极和连接到驱动晶体管的源极的第二电极; 第二电容元件,具有连接到第一电容元件的第二电极的第一电极和直接连接到透射与发光亮度对应的电压的数据线的第二电极; 第一开关元件,其在驱动晶体管的栅极和固定参考电压之间切换导通和非导通; 以及具有连接到驱动晶体管的源极或漏极的第一电极和连接到第二电源电压的第二电极的发光器件。