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    • 5. 发明申请
    • CONTRAST RATIO ENHANCEMENT OPTICAL STACK
    • 对比度增强光学堆叠
    • WO2007121064A3
    • 2007-12-27
    • PCT/US2007065433
    • 2007-03-29
    • 3M INNOVATIVE PROPERTIES CO
    • WATSON PHILIP EALLEN RICHARD C
    • G02B5/30G02F1/1335
    • G02F1/13362G02B6/0056G02F2001/133507G02F2001/133545
    • An optical film stack is disclosed that includes a linear absorbing polarizer layer having a first polarizing transmission axis, a linear reflecting polarizer layer having a second polarizing transmission axis substantially parallel to the first polarizing transmission axis, and a retarder layer having an out-of-plane retardance value of 80 nanometers or more, or having an in-plane retardance value of 10 nanometers or greater and an out-of-plane retardance value greater than (0.6 times the in-plane retardance value). The retarder layer is disposed between the linear absorbing polarizer layer and the linear reflecting polarizer layer. A liquid crystal display including this optical film stack and methods of increasing on-axis contrast ratio of a liquid crystal display utilizing this optical film stack are also disclosed.
    • 公开了一种光学膜堆叠,其包括具有第一偏振透射轴的线性吸收偏振器层,具有基本上平行于第一偏振透射轴的第二偏振透射轴的线性反射偏振器层, 平面延迟值为80纳米或更大,或者具有10纳米或更大的面内延迟值和大于(面内延迟值的0.6倍)的平面外延迟值。 延迟层设置在线性吸收型偏振片与线性反射偏振片之间。 还公开了包括该光学膜堆叠的液晶显示器以及利用该光学膜叠层的液晶显示器的提高轴上对比度的方法。
    • 6. 发明申请
    • CONTRAST RATIO ENHANCEMENT OPTICAL STACK
    • 对比度比增强光学堆栈
    • WO2007121064A2
    • 2007-10-25
    • PCT/US2007/065433
    • 2007-03-29
    • 3M INNOVATIVE PROPERTIES COMPANY
    • WATSON, Philip E.ALLEN, Richard C.
    • G02F1/13362G02B6/0056G02F2001/133507G02F2001/133545
    • An optical film stack is disclosed that includes a linear absorbing polarizer layer having a first polarizing transmission axis, a linear reflecting polarizer layer having a second polarizing transmission axis substantially parallel to the first polarizing transmission axis, and a retarder layer having an out-of-plane retardance value of 80 nanometers or more, or having an in-plane retardance value of 10 nanometers or greater and an out-of-plane retardance value greater than (0.6 times the in-plane retardance value). The retarder layer is disposed between the linear absorbing polarizer layer and the linear reflecting polarizer layer. A liquid crystal display including this optical film stack and methods of increasing on-axis contrast ratio of a liquid crystal display utilizing this optical film stack are also disclosed.
    • 公开了一种光学膜叠堆,其包括具有第一偏振透射轴的线性吸收偏振器层,具有基本平行于第一偏振透射轴的第二偏振透射轴的线性反射偏振器层, 具有80纳米或更大的面外延迟值或者具有10纳米或更大的面内延迟值和大于(面内延迟值的0.6倍)的面外延迟值 )。 延迟层设置在线性吸收型偏振器层和线性反射型偏振器层之间。 包括该光学膜叠层的液晶显示器以及利用该光学膜叠层增加液晶显示器的轴上对比率的方法也被公开。
    • 8. 发明申请
    • TRANSMISSIVE AND REFLECTIVE TYPE LIQUID CRYSTAL DISPLAY
    • 透射式和反射式液晶显示器
    • WO2003052724A2
    • 2003-06-26
    • PCT/KR2002/002322
    • 2002-12-10
    • SAMSUNG ELECTRONICS CO., LTD.
    • JANG, Yong-KyuKIM, Hyung-GuelYOON, Jong-SooLEE, Dong-Ho
    • G09G
    • G02F1/133536G02F1/133555G02F1/133615G02F2001/133545G02F2001/133567
    • Disclosed is a transmissive and reflective type LCD. In the LCD, a second substrate faces a first substrate. Liquid crystal layer is formed between the first and second substrate. A first polarizing plate is formed on outer surface of the first substrate. A second polarizing plate is formed on outer surface of the second substrate. A backlight is arranged at a rear side of the first polarizing plate. A transparent transflective film is arranged between the first polarizing plate and the backlight and has a plurality of layers where a first and a second layer each having different refractivity indexes are alternatively stacked. The transparent transflective film partially reflects and transmits incident light. By a restoring process occurring between the transflective film and the backlight, a predetermined amount of the incident light is transmitted through the transflective film repeatedly, so that transmissivity and light efficiency are enhanced.
    • 所公开的是透射型和反射型LCD。 在LCD中,第二基板面向第一基板。 液晶层形成在第一和第二基板之间。 第一偏光板形成在第一基板的外表面上。 第二偏光板形成在第二基板的外表面上。 背光被布置在第一偏光板的后侧。 透明半透半反膜被布置在第一偏振板和背光之间并且具有多个层,其中折射率不同的第一和第二层被交替地堆叠。 透明半透反射膜部分地反射和透射入射光。 通过在透射反射膜和背光之间发生的恢复过程,预定量的入射光重复地透过透反射膜,从而提高透射率和光效率。
    • 10. 发明申请
    • DISPLAY DEVICE AND ELECTRONIC WATCH
    • 显示设备和电子手表
    • WO00042467A1
    • 2000-07-20
    • PCT/JP2000/000138
    • 2000-01-13
    • G04G9/00G02B5/22G02B5/30G02F1/1333G02F1/1335G02F1/13357G04G9/06G09F9/00
    • G02F1/133555G02F1/133536G02F2001/133374G02F2001/133545G02F2203/02
    • A display device for reflection display of high visibility by using external light and by combining a variety of textures and color tones, and an electronic watch comprising the same are disclosed. First polarized light separating member (2) for transmitting a linearly polarized component polarized in a first direction, transmission polarization axis varying means (3) for selecting one of the state in which the transmission polarization axis is varied and the state in which the transmission polarization axis is not varied, second polarization separating member (4) for transmitting a linearly polarized component polarized in a second direction and specularly reflecting a linearly polarized component polarized perpendicularly to the second direction, and reflecting means (5) are arrayed in order of mention. Colored layers (71, 72) and light diffusing layers (91, 92) are formed on the front or back side (41 or 42) of the second polarized light separating member (4).
    • 公开了一种用于通过使用外部光并且通过组合各种纹理和色调的高可见度的反射显示的显示装置,以及包括该显示装置的电子手表。 用于透射沿第一方向偏振的线偏振分量的第一偏振光分离部件(2),用于选择透射偏振轴变化的状态之一的透射偏振轴改变装置(3)和透射偏振光 轴线不变,用于透射沿第二方向偏振的线偏振分量的镜面反射垂直于第二方向偏振的线偏振分量的第二偏振分离部件(4)和反射装置(5)的顺序排列。 彩色层(71,72)和光扩散层(91,92)形成在第二偏振光分离构件(4)的前侧或后侧(41或42)上。