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    • 1. 发明授权
    • Display apparatus
    • 显示装置
    • US08378940B2
    • 2013-02-19
    • US12390640
    • 2009-02-23
    • Kuo-Feng KaoZeng-De ChenTsung-Chin ChengKeh-Long HwuWeng-Bing ChouSeok-Lyul Lee
    • Kuo-Feng KaoZeng-De ChenTsung-Chin ChengKeh-Long HwuWeng-Bing ChouSeok-Lyul Lee
    • G09G3/36
    • G02F1/133526
    • A display apparatus is disclosed, and comprises a display panel and a lens. On the display panel, there are a width-fixed pixel zone, a width-variating pixel zone and a border zone arranged sequentially from the center to the edges of the display panel, wherein there are a plurality of width-fixed pixels disposed in the width-fixed zone, and there are a plurality of width-variating pixel groups disposed in the width-variating pixel zone, and the widths of the width-variating pixel groups are present in a first decreasing sequence. The lens has a focus-length-variating portion and a planar portion, wherein the planar portion is aligned with the width-fixed pixel zone, and the focus-length-variating portion is disposed to correspond to the border zone and the width-variating pixel zone. The focus lengths of the focus-length-variating portion corresponding to the width-variating pixel groups are present in a second decreasing sequence.
    • 公开了显示装置,并且包括显示面板和透镜。 在显示面板上,从显示面板的中心到边缘顺序设置有宽度固定的像素区域,宽度变化像素区域和边界区域,其中,设置有多个宽度固定像素区域 宽度固定区域,并且在宽度变化像素区域中设置多个宽度变化像素组,宽度变化像素组的宽度以第一递减顺序存在。 透镜具有焦距变化部分和平面部分,其中平面部分与宽度固定像素区域对准,并且焦距变化部分设置成对应于边界区域和宽度变化部分 像素区。 对应于宽度变化像素组的焦点长度变化部分的焦距长度以第二递减序列存在。
    • 2. 发明申请
    • TOUCH DISPLAY PANEL
    • 触摸显示面板
    • US20100110022A1
    • 2010-05-06
    • US12345677
    • 2008-12-30
    • Zeng-De ChenTsung-Chin ChengWeng-Bing ChouSeok-Lyul LeeWei-Ming Huang
    • Zeng-De ChenTsung-Chin ChengWeng-Bing ChouSeok-Lyul LeeWei-Ming Huang
    • G06F3/041
    • G06F3/0414G02F1/13394
    • A touch display panel including a first substrate, a second substrate and a liquid crystal layer is provided. The first substrate includes sensing areas and a non-sensing area outside the sensing areas. Each sensing area is provided with a first electrode thereon. The second substrate includes main spacers, sensing protrusions, first sub-spacers and second sub-spacers. The main spacers are connected to the non-sensing area. The sensing protrusions are corresponding to the sensing area and respectively have a second electrode. A sensing gap exists between each second electrode and the corresponding first electrode. The first sub-spacers are corresponding to the non-sensing area and respectively keep a first sub-spacer gap from the first substrate. The second sub-spacers are corresponding to the non-sensing area and respectively keep a second sub-spacer gap from the first substrate. The sensing gap is greater than the first sub-spacer gap and less than the second sub-spacer gap.
    • 提供了包括第一基板,第二基板和液晶层的触摸显示面板。 第一衬底包括感测区域和感测区域之外的非感测区域。 每个感测区域上设置有第一电极。 第二基板包括主间隔件,感测突起,第一子间隔件和第二子间隔件。 主间隔件连接到非感应区域。 感测突起对应于感测区域并且分别具有第二电极。 在每个第二电极和相应的第一电极之间存在感测间隙。 第一子间隔物对应于非感测区域并且分别保持与第一衬底的第一子间隔物间隔。 第二子间隔物对应于非感测区域并且分别保持与第一衬底的第二子间隔物间隔。 感测间隙大于第一子间隔物间隙并且小于第二子间隔物间隙。
    • 3. 发明授权
    • Touch display panel
    • 触摸显示面板
    • US08134537B2
    • 2012-03-13
    • US12345677
    • 2008-12-30
    • Zeng-De ChenTsung-Chin ChengWeng-Bing ChouSeok-Lyul LeeWei-Ming Huang
    • Zeng-De ChenTsung-Chin ChengWeng-Bing ChouSeok-Lyul LeeWei-Ming Huang
    • G06F3/041
    • G06F3/0414G02F1/13394
    • A touch display panel including a first substrate, a second substrate and a liquid crystal layer is provided. The first substrate includes sensing areas and a non-sensing area outside the sensing areas. Each sensing area is provided with a first electrode thereon. The second substrate includes main spacers, sensing protrusions, first sub-spacers and second sub-spacers. The main spacers are connected to the non-sensing area. The sensing protrusions are corresponding to the sensing area and respectively have a second electrode. A sensing gap exists between each second electrode and the corresponding first electrode. The first sub-spacers are corresponding to the non-sensing area and respectively keep a first sub-spacer gap from the first substrate. The second sub-spacers are corresponding to the non-sensing area and respectively keep a second sub-spacer gap from the first substrate. The sensing gap is greater than the first sub-spacer gap and less than the second sub-spacer gap.
    • 提供了包括第一基板,第二基板和液晶层的触摸显示面板。 第一衬底包括感测区域和感测区域之外的非感测区域。 每个感测区域上设置有第一电极。 第二基板包括主间隔件,感测突起,第一子间隔件和第二子间隔件。 主间隔件连接到非感应区域。 感测突起对应于感测区域并且分别具有第二电极。 在每个第二电极和相应的第一电极之间存在感测间隙。 第一子间隔物对应于非感测区域并且分别保持与第一衬底的第一子间隔物间隔。 第二子间隔物对应于非感测区域并且分别保持与第一衬底的第二子间隔物间隔。 感测间隙大于第一子间隔物间隙并且小于第二子间隔物间隙。
    • 6. 发明授权
    • Method for manufacturing bottom substrate of liquid crystal display device
    • 制造液晶显示装置底基板的方法
    • US07335538B2
    • 2008-02-26
    • US11476158
    • 2006-06-28
    • Weng-Bing ChouKo-Ching Yang
    • Weng-Bing ChouKo-Ching Yang
    • H01L21/00
    • G02F1/1362G02F2001/136236
    • A method for manufacturing liquid crystal display substrates comprises the steps of: (a) providing a substrate having a transparent electrode layer and a metal layer; (b) forming a patterned photoresist layer through half-tone or diffraction; (c) defining signal line area and thin film diode area, or pixel area and conductive electrode-lines by etching; and (d) forming an oxidized layer on partial surface of the metal layer. The disclosure here provides a patterning process of lithography and etching with one photolithography of one single mask in the manufacturing of liquid crystal display substrates. Furthermore, the method disclosed here can effectively increase the yield of manufacturing, and reduce the cost of manufacturing.
    • 制造液晶显示基板的方法包括以下步骤:(a)提供具有透明电极层和金属层的基板; (b)通过半色调或衍射形成图案化的光刻胶层; (c)通过蚀刻定义信号线面积和薄膜二极管面积,或像素面积和导电电极线; 和(d)在金属层的局部表面上形成氧化层。 这里的公开内容提供了在液晶显示器基板的制造中使用一个单一掩模的一次光刻的光刻和蚀刻的图案化工艺。 此外,这里公开的方法可以有效地提高制造成品率,降低制造成本。
    • 7. 发明授权
    • Method for manufacturing a liquid crystal display
    • 液晶显示器的制造方法
    • US07754607B2
    • 2010-07-13
    • US12432254
    • 2009-04-29
    • Weng-Bing Chou
    • Weng-Bing Chou
    • H01L21/00
    • G02F1/13624G02F1/1365G02F2201/40
    • A method for manufacturing a liquid crystal display, the method includes steps of depositing a transparent conductive layer, forming a pixel electrode, and four bottom layers, depositing a semiconductor insulation layer on the pixel electrode and the four bottom layers, defining the semiconductor insulation layer to form two contact openings two of the bottom layers, depositing and defining two top layers and two scanning lines both with an indentation at an edge thereof, and the indentations face the first pixel electrode by an opposite direction, and forming four metal-insulation-metal (MIM) diodes.
    • 一种制造液晶显示器的方法,该方法包括沉积透明导电层,形成像素电极和四个底层的步骤,在像素电极和四个底层上沉积半导体绝缘层,限定半导体绝缘层 形成两个底层的两个接触开口,沉积和限定两个顶层和两条扫描线,两条扫描线在其边缘处具有凹陷,并且凹痕通过相反的方向面对第一像素电极,并且形成四个金属绝缘层, 金属(MIM)二极管。
    • 8. 发明申请
    • Method for manufacturing a liquid crystal display device
    • 液晶显示装置的制造方法
    • US20080106690A1
    • 2008-05-08
    • US11715427
    • 2007-03-08
    • Wei-Hung KuoKo-Chin YangWeng-Bing Chou
    • Wei-Hung KuoKo-Chin YangWeng-Bing Chou
    • G02F1/13
    • G02F1/1365G02F2001/136231
    • A method for manufacturing a liquid crystal display device is disclosed, comprising the following steps: (a) providing a substrate having a transparent electrode layer and a first metal layer, wherein the transparent electrode layer is sandwiched in between the first metal layer and the substrate; (b) defining a patterned area having a thin film diode area and a pixel area by a first mask; (c) forming a first insulating layer and a second metal layer on the patterned area having the thin film diode area and the pixel area in sequence, wherein the first insulating layer is sandwiched in between the second metal layer and the first metal layer; and (d) defining the thin film diode area and the pixel area by a second mask, and removing the second metal layer, the first insulating layer, and the first metal layer on the pixel area to expose the transparent electrode layer.
    • 公开了一种制造液晶显示装置的方法,包括以下步骤:(a)提供具有透明电极层和第一金属层的基板,其中透明电极层被夹在第一金属层和基板之间 ; (b)通过第一掩模限定具有薄膜二极管区域和像素区域的图案区域; (c)在具有薄膜二极管面积和像素区域的图案化区域上依次形成第一绝缘层和第二金属层,其中第一绝缘层夹在第二金属层和第一金属层之间; 以及(d)通过第二掩模限定薄膜二极管面积和像素面积,以及去除像素区域上的第二金属层,第一绝缘层和第一金属层,以露出透明电极层。
    • 9. 发明申请
    • METHOD FOR MANUFACTURING A LIQUID CRYSTAL DISPLAY
    • 制造液晶显示器的方法
    • US20090209054A1
    • 2009-08-20
    • US12432254
    • 2009-04-29
    • Weng-Bing Chou
    • Weng-Bing Chou
    • H01L21/77
    • G02F1/13624G02F1/1365G02F2201/40
    • A method for manufacturing a liquid crystal display, the method includes steps of depositing a transparent conductive layer, forming a pixel electrode, and four bottom layers, depositing a semiconductor insulation layer on the pixel electrode and the four bottom layers, defining the semiconductor insulation layer to form two contact openings two of the bottom layers, depositing and defining two top layers and two scanning lines both with an indentation at an edge thereof, and the indentations face the first pixel electrode by an opposite direction, and forming four metal-insulation-metal (MIM) diodes.
    • 一种制造液晶显示器的方法,该方法包括沉积透明导电层,形成像素电极和四个底层的步骤,在像素电极和四个底层上沉积半导体绝缘层,限定半导体绝缘层 形成两个底层的两个接触开口,沉积和限定两个顶层和两条扫描线,两条扫描线在其边缘处具有凹陷,并且凹痕通过相反的方向面对第一像素电极,并且形成四个金属绝缘层, 金属(MIM)二极管。
    • 10. 发明申请
    • TFD LCD device with high aperture ratio
    • US20060077312A1
    • 2006-04-13
    • US11235573
    • 2005-09-26
    • Weng-Bing Chou
    • Weng-Bing Chou
    • G02F1/136
    • G02F1/13624G02F1/1365G02F2201/40
    • Metal-Insulator-Metal (MIM) diodes in back-to-back thin film diode (TFD) liquid crystal display (LCD) device are formed on dual selective lines respectively. A transparent conductive layer on a first substrate comprises a pixel electrode, a first bottom layer, a second bottom layer, a third bottom layer, and a fourth bottom layer. A semiconductor insulator layer with a first contact hole on the first bottom layer and a second contact hole on the third bottom layer covers the first substrate and the transparent conductive layer. A metal conductive layer comprises a first selective line, a second selective line, a first top layer, and a second top layer, wherein an overlapped region between the first bottom layer and the first top layer is a first MIM diode, an overlapped region between the second bottom layer and the first top layer is a second MIM diode, an overlapped region between the third bottom layer and the second top layer is a third MIM diode, and an overlapped region between the fourth bottom layer and the second top layer is a fourth MIM diode. The first selective line electrically connects to the first bottom layer via the first contact hole, and the second selective line electrically connects to the third bottom layer via the first contact hole. The first and second top layers respectively isolated to the first and second selective lines are in the conformation of the first and second selective lines respectively.