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    • 13. 发明申请
    • BACK PANEL FOR FLAT PANEL DISPLAY APPARATUS, FLAT PANEL DISPLAY APPARATUS COMPRISING THE SAME, AND METHOD OF MANUFACTURING THE BACK PANEL
    • 用于平板显示装置的后面板,包括其的平面板显示装置和制造后面板的方法
    • US20120298984A1
    • 2012-11-29
    • US13443457
    • 2012-04-10
    • Sang-Il PARKChaun-Gi CHOITae-Kyung AHN
    • Sang-Il PARKChaun-Gi CHOITae-Kyung AHN
    • H01L51/52H01L51/56
    • H01L27/1288H01L27/1225H01L27/3248H01L27/3251
    • A back panel for a flat panel display apparatus includes: a pixel electrode disposed on a substrate; a first gate electrode layer of a thin-film transistor (TFT) disposed on the substrate; a second gate electrode layer disposed on the first gate electrode layer and including a semiconductor material; a third gate electrode layer disposed on the second gate electrode layer and including a metal material; a first insulating layer disposed on the third gate electrode layer; an active layer disposed on the first insulating layer and including a transparent conductive oxide semiconductor; a second insulating layer disposed on the active layer; source and drain electrodes disposed connected to the active layer through the second insulating layer; and a third insulating layer covering the source and drain electrodes. The first gate electrode layer and the pixel electrode include a transparent conductive oxide.
    • 一种用于平板显示装置的后面板包括:设置在基板上的像素电极; 设置在所述基板上的薄膜晶体管(TFT)的第一栅极电极层; 第二栅极电极层,设置在所述第一栅极电极层上并且包括半导体材料; 第三栅电极层,设置在所述第二栅电极层上并且包括金属材料; 设置在所述第三栅电极层上的第一绝缘层; 设置在所述第一绝缘层上并包括透明导电氧化物半导体的有源层; 设置在所述有源层上的第二绝缘层; 通过第二绝缘层连接到有源层的源极和漏极; 以及覆盖源极和漏极的第三绝缘层。 第一栅电极层和像素电极包括透明导电氧化物。
    • 14. 发明申请
    • ORGANIC ELECTROLUMINESCENCE DISPLAY AND MANUFACTURING METHOD THEREOF
    • 有机电致发光显示及其制造方法
    • US20120292645A1
    • 2012-11-22
    • US13443485
    • 2012-04-10
    • Sang-Il PARKTae-Kyung AHN
    • Sang-Il PARKTae-Kyung AHN
    • H01L51/52H01L51/56
    • H01L27/1225H01L27/3248H01L27/3262H01L27/3265H01L27/3276H01L2227/323
    • An organic electroluminescence display including: a gate line disposed on a substrate; a data line crossing the gate line; a TFT connected to the gate and data lines; a capacitor connected to the TFT; and an OLED connected to the TFT. A gate electrode of the TFT and a lower electrode of the capacitor are patterned from a first layer. A gate insulating layer disposed on the gate electrode and an insulating island disposed on the gate line are patterned from a second layer. A semiconductor island disposed on the insulating island and an active layer disposed on the gate insulating layer are patterned from a third layer. An insulating layer is disposed on the TFTs, the capacitor, and between the semiconductor island and the data line. An upper electrode of the capacitor, source/drain electrodes of the TFT, and the data line are patterned from a fourth layer.
    • 一种有机电致发光显示器,包括:设置在基板上的栅极线; 跨越栅极线的数据线; 连接到门和数据线的TFT; 连接到TFT的电容器; 和连接到TFT的OLED。 TFT的栅电极和电容器的下电极从第一层图案化。 设置在栅电极上的栅极绝缘层和设置在栅极线上的绝缘岛从第二层图案化。 设置在绝缘岛上的半导体岛和设置在栅绝缘层上的有源层从第三层图案化。 在TFT,电容器和半导体岛与数据线之间设置绝缘层。 电容器的上电极,TFT的源/漏极和数据线从第四层图案化。
    • 15. 发明申请
    • SCANNING PROBE MICROSCOPE WITH DRIFT COMPENSATION
    • 扫描探针显微镜与DRIFT补偿
    • US20110277192A1
    • 2011-11-10
    • US12773587
    • 2010-05-04
    • Sang-Il PARKHanaul Noh
    • Sang-Il PARKHanaul Noh
    • G01Q10/00
    • G01Q10/065
    • A scanning probe microscope compensates for relative drift between its upper structure that includes a probe and a scanner that scans the probe in a straight line and a lower structure that includes a sample stage and a scanner that scans the sample stage in a plane. A light beam from the upper structure is initially aligned with a center of a position sensitive photo detector (PSPD) disposed on the lower structure at a predetermined position of the sample stage and any subsequent misalignments of the light beam with the center of the PSPD at the predetermined position of the sample stage are determined to be caused by drift and compensated by the scanning probe microscope.
    • 扫描探针显微镜补偿其上部结构之间的相对漂移,其包括探针和扫描仪,扫描仪以直线扫描探针,下部结构包括扫描样品台和平面扫描仪的扫描仪。 来自上部结构的光束最初与设置在样品台的预定位置处的下部结构上的位置敏感光电检测器(PSPD)的中心对准,并且光束与PSPD的中心的任何随后的未对准 确定样品台的预定位置是由漂移引起的并由扫描探针显微镜进行补偿。
    • 19. 发明申请
    • FLAT PANEL DISPLAY
    • 平板显示
    • US20080191969A1
    • 2008-08-14
    • US12104749
    • 2008-04-17
    • Jae-Bon KooJi-Yong PARKSang-Il PARKKi-Yong LEEUl-Ho LEE
    • Jae-Bon KooJi-Yong PARKSang-Il PARKKi-Yong LEEUl-Ho LEE
    • G09G3/00
    • G09G3/3275H01L27/1214H01L29/78621H01L29/78624H01L29/78645H01L29/78672H01L29/78696
    • A high-speed flat panel display has thin film transistors in a pixel array portion in which a plurality of pixels are arranged and a driving circuit portion for driving the pixels of the pixel array portion, which have different resistance values than each other or have different geometric structures than each other. The flat panel display comprises a pixel array portion where a plurality of pixels are arranged, and a driving circuit portion for driving the pixels of the pixel array portion. The thin film transistors in the pixel array portion and the driving circuit portion have different resistance values in their gate regions or drain regions than each other, or have different geometric structures than each other. One thin film transistor has a zigzag shape in its gate region or drain region or has an offset region.
    • 高速平板显示器在其中排列有多个像素的像素阵列部分中具有薄膜晶体管,以及用于驱动像素阵列部分的像素的驱动电路部分,其具有彼此不同的电阻值或具有不同的像素阵列部分 几何结构比彼此。 平板显示器包括其中布置有多个像素的像素阵列部分和用于驱动像素阵列部分的像素的驱动电路部分。 像素阵列部分和驱动电路部分中的薄膜晶体管在其栅极区域或漏极区域中具有彼此不同的电阻值,或者具有彼此不同的几何结构。 一个薄膜晶体管在其栅极区域或漏极区域中具有锯齿形状或具有偏移区域。