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    • 51. 发明申请
    • RESCUE CIRCUIT OF DISPLAY PANEL AND RESCUE METHOD THEREOF
    • 显示面板的恢复电路及其恢复方法
    • US20120147311A1
    • 2012-06-14
    • US13216741
    • 2011-08-24
    • Chenghung ChenChengming He
    • Chenghung ChenChengming He
    • G02F1/1345
    • G02F1/136259G02F2001/136263G09G3/20G09G2300/0426G09G2320/0223G09G2330/08
    • The present invention discloses a rescue circuit of display panel and a rescue method thereof. The rescue circuit includes an amplifier, a first conductive line, a second conductive line, and a third conductive line. The amplifier has an input end and an output end. The first conductive line and the second conductive line intersect and are isolated from signal input terminals of the plurality of signal lines. The first conductive line is electrically connected to the input end and the second conductive line is electrically connected through an electrical resistor to the output end. The third conductive line intersects and is isolated from signal distal ends of the signal lines and is electrically connected to the output end. The rescue method includes performing a welding operation and performing a cutting operation. With such a rescue, a broken signal line may effectively overcome the problem of weak line with the electrical resistor connected to the second conductive line.
    • 本发明公开了一种显示面板的救援电路及其救援方法。 抢救电路包括放大器,第一导线,第二导线和第三导线。 放大器有一个输入端和一个输出端。 第一导线和第二导线相交并与多条信号线的信号输入端隔离。 第一导电线电连接到输入端,第二导线通过电阻器电连接到输出端。 第三导线与信号线的信号远端相交并隔离,并与输出端电连接。 救援方法包括执行焊接操作并执行切割操作。 通过这样的救援,断开的信号线可以有效地克服连接到第二导线的电阻器的弱线的问题。
    • 52. 发明申请
    • LIQUID CRYSTAL DISPLAY PANEL
    • 液晶显示面板
    • US20120146888A1
    • 2012-06-14
    • US13217612
    • 2011-08-25
    • Chenghung ChenChengming He
    • Chenghung ChenChengming He
    • G09G3/36
    • G02F1/136286G09G3/36G09G2310/0205G09G2310/0218G09G2310/0243
    • A liquid crystal display (LCD) panel includes a plurality of subpixels arranged in a m×n matrix, and n is a multiple of 2. The LCD panel includes n/2 scan lines and 2m data lines. Each scan line is used for controlling two neighboring row subpixels. Every two data lines are used for controlling a column subpixels. When a first scan line turns on first row subpixels and second row subpixels, the 2m data lines output data signal to the first row subpixels and the second row subpixels simultaneously. Because a pixel includes three neighboring subpixels aligning in a column, a number of source driver chips is reduced as well as cost. In addition, the present inventive LCD utilizes two data lines to drive subpixels in a column, so the driving time period is sufficient and upgrading disaply quality.
    • 液晶显示器(LCD)面板包括以m×n矩阵排列的多个子像素,n为2的倍数.LCD面板包括n / 2条扫描线和2m条数据线。 每个扫描线用于控制两个相邻的行子像素。 每两条数据线用于控制列子像素。 当第一扫描线接通第一行子像素和第二行子像素时,2m数据线同时将数据信号输出到第一行子像素和第二行子像素。 由于像素包括在列中对齐的三个相邻子像素,因此许多源驱动器芯片以及成本降低。 此外,本发明的LCD利用两条数据线来驱动列中的子像素,因此驱动时间段足够并且质量不佳。
    • 54. 发明申请
    • END POINT DETECTING METHOD OF METAL ETCHING AND DEVICE THEREOF
    • 金属蚀刻的端点检测方法及其装置
    • US20120138572A1
    • 2012-06-07
    • US13219700
    • 2011-08-28
    • CHIN-WEN WANGChengming He
    • CHIN-WEN WANGChengming He
    • C23F1/00C23F1/08
    • H01L21/6708G01N21/5911H01L21/67253H01L22/12H01L22/26
    • Disclosed is an end point detecting method of metal etching and a device thereof. The end point detecting method of metal etching comprises: performing scan to a metal film to acquire a proportion of a transparency area of the metal film in a scanned area; judging whether the proportion of the transparency area reaches a predetermined value or not; and confirming a current etching time of the metal film as an etching end point time when the predetermined value is reached. The device comprises an acquirement module, a judgment module and a confirmation module. The acquirement module performs scan to the metal film to acquire the proportion of the transparency area. The judgment module judges whether the proportion reaches the predetermined value or not. The confirmation module confirms the current etching time of the metal film as the etching end point time when the proportion reaches the predetermined value.
    • 公开了金属蚀刻的终点检测方法及其装置。 金属蚀刻的终点检测方法包括:对金属膜进行扫描以获得扫描区域中的金属膜的透明度区域的比例; 判断透明度区域的比例是否达到预定值; 并确认金属膜的当前蚀刻时间为达到预定值的蚀刻终点时间。 该装置包括获取模块,判断模块和确认模块。 获取模块对金属膜执行扫描以获得透明度区域的比例。 判断模块判断比例是否达到预定值。 确认模块确认当比例达到预定值时的蚀刻终点时刻的金属膜的当前蚀刻时间。
    • 55. 发明申请
    • DUAL-ARM TYPE ROBOTIC ARM AND ITS METHOD OF TRANSPORTING PANELS
    • 双臂类型机器人及其运输方法
    • US20120136472A1
    • 2012-05-31
    • US13000585
    • 2010-12-06
    • Yan-ze LiChengming He
    • Yan-ze LiChengming He
    • B25J9/02B25J15/06
    • B25J9/043H01L21/67748
    • The present invention provides a dual-arm type robotic arm and its method of transporting panels, and mainly has a first robotic arm and a second robotic arm which simultaneously extend into a processing equipment. When the second robotic arm takes out a second panel from the processing equipment, the first robotic arm simultaneously executes a stabilization operation and executes a fastening-suction release operation of a carried first panel. Then, the first robotic arm is lowered for placing the first panel in the processing equipment. Thus, the present invention can prevent from occurring a breakage risk of the first panel during being placed, and save the operation time during the first robotic arm waits to be stable and then release the fastening-suction.
    • 本发明提供了一种双臂式机器臂及其传送面板的方法,主要具有同时延伸到处理设备中的第一机器臂和第二机器手臂。 当第二机器人臂从处理设备取出第二面板时,第一机器人手臂同时执行稳定操作并执行承载的第一面板的紧固 - 抽吸释放操作。 然后,降低第一机器人手臂以将第一面板放置在处理设备中。 因此,本发明能够防止在放置时第一面板发生破损风险,并且在第一机器人臂等待稳定时保存操作时间,然后释放紧固抽吸。
    • 58. 发明申请
    • METHOD FOR MANUFACTURING LIQUID CRYSTAL DISPLAY PIXEL ARRAY
    • 制造液晶显示像素阵列的方法
    • US20120129284A1
    • 2012-05-24
    • US13217633
    • 2011-08-25
    • Chengming HEMing-shi LEE
    • Chengming HEMing-shi LEE
    • H01L33/08
    • H01L27/1288G02F1/1368H01L29/66765
    • This invention discloses a method for manufacturing liquid crystal display pixel array, which is capable of promoting an aperture ratio. The method of this invention includes forming a gate metal layer on a glass substrate; forming a gate insulation layer; forming a semiconductor layer; forming a second metal layer on the semiconductor layer; forming a switch region photoresist layer and a data line region photoresist layer on the second metal layer; etching the second metal layer; etching the semiconductor layer; etching the switch region photoresist layer and the data line region photoresist layer; and etching edge portions of the semiconductor in the switch region and the data line region by using fluoride-bearing gas. To etch off more edge portions of the semiconductor in the data line region, according to this invention, the thickness of the data line region photoresist layer is made thinner when forming the photoresist layer.
    • 本发明公开了一种能够提高开口率的液晶显示像素阵列的制造方法。 本发明的方法包括在玻璃基板上形成栅极金属层; 形成栅绝缘层; 形成半导体层; 在所述半导体层上形成第二金属层; 在所述第二金属层上形成开关区域光致抗蚀剂层和数据线区域光致抗蚀剂层; 蚀刻第二金属层; 蚀刻半导体层; 蚀刻开关区光致抗蚀剂层和数据线区域光致抗蚀剂层; 以及通过使用含氟气体来蚀刻开关区域和数据线区域中的半导体的边缘部分。 为了蚀刻数据线区域中半导体的更多边缘部分,根据本发明,当形成光致抗蚀剂层时,数据线区域光致抗蚀剂层的厚度变薄。
    • 59. 发明申请
    • PIXEL UNIT, LCD PANEL, AND METHOD FOR FORMING THE SAME
    • 像素单元,LCD面板及其形成方法
    • US20120127411A1
    • 2012-05-24
    • US13000376
    • 2010-12-07
    • Pei LinChengming He
    • Pei LinChengming He
    • G02F1/1343H01L33/00H01L33/08
    • G02F1/136213G02F2001/136231
    • The present invention discloses a pixel unit, a liquid crystal display panel and method for forming the same. The liquid crystal display panel comprises a common line, a first shading line, and a second shading line, all of which are under the pixel electrode and are formed by a metallic layer. A lateral side of the first or second shading line, which is not covered by the pixel electrode is a curve edge. The curve first or second shading line expands an area of the common line, resulting in an increase of a storage capacitor. Even if a G/D overlay tolerance exists during the process of forming an LCD panel, a problem of uneven display brightness occurring in the LCD panel is still being improved.
    • 本发明公开了一种像素单元,液晶显示面板及其形成方法。 液晶显示面板包括公共线,第一遮蔽线和第二遮蔽线,它们全部在像素电极下方并且由金属层形成。 未被像素电极覆盖的第一或第二阴影线的侧面是曲线边缘。 曲线第一或第二阴影线扩大公共线的面积,导致存储电容器的增加。 即使在形成LCD面板的过程中存在G / D覆盖容限,LCD面板中出现的不均匀显示亮度的问题仍在改善。