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    • 1. 发明申请
    • STEREOSCOPIC 3D DISPLAY DEVICE
    • 立体3D显示设备
    • US20100007716A1
    • 2010-01-14
    • US12340005
    • 2008-12-19
    • Seung-Chul LeeHoon KangSung-Min Jung
    • Seung-Chul LeeHoon KangSung-Min Jung
    • H04N13/00G09G3/36
    • G02B27/26H04N13/337H04N13/341
    • A stereoscopic image display device including: a main display panel operable to alternately display a left image and a right image; an auxiliary display panel including first and second substrates having a pixel part corresponding to that of the main display panel and a sub-liquid crystal layer formed between the first and second substrates, and positioned in front of the main display panel to change polarization information of an incident left or right image; a plurality of first electrodes patterned on the first substrate along the rows of pixels formed on the main display panel; a second electrode formed on a front surface of the pixel part of the second substrate; and a light source to supply light to the rear side of the main display panel. Both a 3D vertical viewing angle and 2D luminance in a glass-type 2D display can be improved.
    • 一种立体图像显示装置,包括:可操作以交替显示左图像和右图像的主显示面板; 辅助显示面板包括具有对应于主显示面板的像素部分的第一和第二基板以及形成在第一和第二基板之间的副液晶层,并且位于主显示面板的前面,以改变主显示面板的偏振信息 事件左图或右图; 沿着形成在主显示面板上的像素行,在第一基板上图案化的多个第一电极; 形成在所述第二基板的像素部分的前表面上的第二电极; 以及向主显示面板的后侧供给光的光源。 可以提高玻璃型2D显示器中的3D垂直视角和2D亮度。
    • 10. 发明授权
    • Method for manufacturing a thin film transistor array panel
    • 薄膜晶体管阵列面板的制造方法
    • US08324003B2
    • 2012-12-04
    • US12767667
    • 2010-04-26
    • Hoon KangJin-Ho JuYang-Ho JungJae-Sung Kim
    • Hoon KangJin-Ho JuYang-Ho JungJae-Sung Kim
    • H01L21/311H01L33/44
    • H01L21/76816H01L27/124H01L27/1288
    • A thin film transistor display panel includes gate wiring formed on an insulation substrate and including gate lines, and gate electrodes and gate pads connected to the gate lines; a gate insulation layer covering the gate wiring; a semiconductor pattern formed over the gate insulation layer; data wiring formed over the gate insulation layer or the semiconductor pattern and including source electrodes, drain electrodes, and data pads; a protection layer including a Nega-PR type of organic insulating layer formed all over the semiconductor pattern and the data wiring, wherein the thickness of the Nega-PR type of organic insulating layer in both the gate and data pad regions is smaller than in the other regions; and a pixel electrode connected to the drain electrode. When exposing the Nega-PR type of passivation layer in the pad region during a photolithography process, a photomask having a lattice pattern made of a metal such as Cr that has a line width of less than the resolution of a light exposer is used. Thus, the resulting post-etch height of the passivation layer can be selectively controlled so as to provide reduced effective thickness in the pad regions.
    • 薄膜晶体管显示面板包括形成在绝缘基板上并包括栅极线的栅极布线,以及连接到栅极线的栅电极和栅极焊盘; 覆盖栅极布线的栅极绝缘层; 形成在所述栅极绝缘层上的半导体图案; 数据线形成在栅极绝缘层或半导体图案上,并且包括源电极,漏电极和数据焊盘; 包括形成在整个半导体图案上的Nega-PR型有机绝缘层和数据布线的保护层,其中栅极和数据焊盘区域中的Nega-PR类型的有机绝缘层的厚度小于 其他地区; 以及连接到漏电极的像素电极。 在光刻工艺中,当在焊盘区域中曝光Nega-PR类型的钝化层时,使用具有由诸如Cr之类的金属制成的格子图案的光掩模,该栅极图案的线宽小于曝光器的分辨率。 因此,可以选择性地控制所得到的钝化层的蚀刻后高度,以便在焊盘区域中提供减小的有效厚度。