WO2015180193A1 - 一种检测端子的走线装置及液晶显示器 - Google Patents

一种检测端子的走线装置及液晶显示器 Download PDF

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Publication number
WO2015180193A1
WO2015180193A1 PCT/CN2014/079038 CN2014079038W WO2015180193A1 WO 2015180193 A1 WO2015180193 A1 WO 2015180193A1 CN 2014079038 W CN2014079038 W CN 2014079038W WO 2015180193 A1 WO2015180193 A1 WO 2015180193A1
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line
shared
lines
group
terminal
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PCT/CN2014/079038
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English (en)
French (fr)
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高冬子
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深圳市华星光电技术有限公司
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Publication of WO2015180193A1 publication Critical patent/WO2015180193A1/zh

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    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
    • G02F1/00Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
    • G02F1/01Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour 
    • G02F1/13Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour  based on liquid crystals, e.g. single liquid crystal display cells
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/136Liquid crystal cells structurally associated with a semi-conducting layer or substrate, e.g. cells forming part of an integrated circuit
    • G02F1/1362Active matrix addressed cells

Definitions

  • the invention belongs to the technical field of liquid crystal display, and particularly relates to a wiring device for detecting a terminal and a liquid crystal display panel.
  • the liquid crystal curing terminal and the array detecting terminal are located on the outer side of all the lines. Taking the right detecting terminal of the liquid crystal display panel as an example, the liquid crystal curing terminal and the array detecting terminal are located on the same side, and all the lines and the liquid crystal curing terminal and the array are detected. The terminals are located on both sides, that is, all the lines are located on the right side of the liquid crystal display panel, and the liquid crystal curing terminals and the array detection terminals are located on the right side of all the lines.
  • An object of the present invention is to provide a wiring device for detecting a terminal and a liquid crystal display panel, which aims to solve the problem that the liquid crystal curing terminal and the array detecting terminal existing in the prior art are located on the outer side of all the lines, and the design of the wiring is inevitable.
  • the need for cross-line design and the need to cross the line is more, resulting in more crossover between the lines, static discharge often occurs in the line across the line, so this design is likely to cause static discharge phenomenon.
  • the present invention is achieved by the wire routing device for detecting a terminal, wherein the wire routing device of the detecting terminal comprises a common line, a liquid crystal curing terminal, and an array detecting terminal; the shared circuit is equally divided into two groups according to the number of the strips.
  • a common line which is a first group of shared lines and a second group of shared lines; the liquid crystal curing terminal and the array detecting terminal are both disposed between the first group of shared lines and the second group of shared lines;
  • the first group of lines led out by the liquid crystal curing terminal and the second group of lines led by the array detecting terminal share the common line; wherein the first group of shared lines and the second group of shared lines and the first group
  • the line and the second set of lines each include at least two lines, and the first set of lines and the second set of lines are respectively connected to the respective first set of shared lines and the second set of shared lines.
  • Another object of the present invention is to provide a wiring device for detecting a terminal, wherein the wiring device of the detecting terminal includes a shared line, a liquid crystal curing terminal, and an array detecting terminal; the shared line is divided into two groups of shared lines, respectively a first group of shared lines and a second group of shared lines; the liquid crystal curing terminal and the array detecting terminal are both disposed between the first group of shared lines and the second group of shared lines; the liquid crystal curing terminal The first set of lines and the second set of lines led by the array detection terminal share the common line; wherein the first set of shared lines and the second set of shared lines and the first set of lines and the second The group lines each include at least two lines, and the first group line and the second group line are respectively connected to the corresponding first group shared line and the second group shared line.
  • the shared line includes: a first shared line, a second shared line, a third shared line, a fourth shared line, a fifth shared line, and a sixth shared line;
  • the first shared line, the third shared line, and the fifth shared line constitute the first group shared line; the second shared line, the fourth shared line, and the sixth shared line constitute the second group sharing line.
  • Adjacent lines in the first group of lines led out by the liquid crystal curing terminal are respectively connected to the first group shared line and the second group shared line.
  • the first group of lines drawn by the liquid crystal curing terminal includes: a first blue data line, a first green data line, a first red data line, a first odd line, a first even line, and a first common electrode line;
  • the first blue data line is connected to the first shared line
  • the first green data line is connected to the second shared line
  • the first red data line is connected to the third shared line.
  • the first odd line is connected to the fourth shared line
  • the first even line is connected to the fifth shared line
  • the first common electrode line is connected to the sixth shared line.
  • the second group of lines drawn by the array detecting terminal includes: a second blue data line, a second green data line, a second red data line, a second odd line, a second even line, and a second common electrode line;
  • the second blue data line is connected to the first shared line
  • the second green data line is connected to the second shared line
  • the second red data line is connected to the third shared line.
  • the second odd line is connected to the fourth shared line
  • the second even line is connected to the fifth shared line
  • the second common electrode line is connected to the sixth shared line.
  • the wiring device of the detecting terminal further includes a liquid crystal display panel and a third group of lines, and the third group of lines are respectively connected to the liquid crystal display panel and the shared line.
  • the third group of lines includes: a third blue data line, a third green data line, a third red data line, a third odd line, a third even line, and a third common electrode line;
  • the third blue data line is connected to the first shared line
  • the third green data line is connected to the second shared line
  • the third red data line is connected to the third shared line.
  • the third odd line is connected to the fourth shared line
  • the third even line is connected to the fifth shared line
  • the third common electrode line is connected to the sixth shared line.
  • the shared line is U-shaped; the U-shaped shared line surrounds the liquid crystal display panel.
  • liquid crystal curing terminals and array detecting terminals respectively comprising a first liquid crystal curing terminal and a first array detecting terminal, and a second liquid crystal curing terminal and a second array detecting terminal, wherein the first liquid crystal curing terminal and the first array detecting The terminal is located between the first group of shared lines and the second group of shared lines on the left side of the U-type shared line, and the second liquid crystal curing terminal and the second array detection terminal are located on the right side of the U-type shared line and the first group of shared lines and the second Groups are shared between lines.
  • the adjacent ones of the second group of lines led out by the array detecting terminal are respectively connected to the first group shared line and the second group shared line.
  • Another object of the present invention is to provide a liquid crystal display panel including a wiring device of the above-described detecting terminal.
  • the liquid crystal curing terminal and the array detecting terminal are both placed in the first group by dividing all the shared lines into two groups of shared lines, which are respectively the first group shared line and the second group shared line. Between the line and the second set of shared lines, the line crossing can be reduced, and the electrostatic discharge phenomenon can be reduced in a certain procedure.
  • the adjacent lines in the first group of lines led out by the liquid crystal curing terminal are respectively connected to the first group shared line and the second group shared line, and the adjacent lines in the second group line led out by the array detecting terminal are respectively associated with the first group
  • the shared line and the second set of shared lines are connected, thereby increasing the spacing of the adjacent lines, thereby further reducing the probability of occurrence of the electrostatic discharge phenomenon.
  • FIG. 1 is a schematic structural view of a circuit design for detecting a terminal provided by the prior art
  • FIG. 2 is a schematic structural diagram of a wiring device for detecting a terminal according to an embodiment of the present invention.
  • FIG. 3 is a schematic structural diagram of a wiring device for detecting a terminal according to an embodiment of the present invention.
  • the liquid crystal curing terminal and the array detecting terminal are respectively placed in the first group by dividing the average number of the common lines into two groups of shared lines, which are respectively the first group shared line and the second group shared line. Between the group shared line and the second group of shared lines, the line crossing can be reduced, and the electrostatic discharge phenomenon can be reduced in a certain procedure.
  • FIG. 2 is a schematic structural diagram of a wiring device for detecting a terminal according to an embodiment of the present invention.
  • the wiring device of the detecting terminal includes a shared line, a liquid crystal curing terminal, and an array detecting terminal.
  • the shared line is divided into two groups of shared lines, which are the first group of shared lines and the second group of shared lines.
  • the liquid crystal curing terminal and the array detecting terminal are both disposed between the first group of shared lines and the second group of shared lines; the first group of lines drawn by the liquid crystal curing terminals and the second group of lines led by the array detecting terminals share the shared line.
  • the first group of lines led out by the liquid crystal curing terminal are connected to the common line
  • the second group of lines led out by the array detecting terminal are connected to the shared line
  • the first group of shared lines and the second group of shared lines and the first The group line and the second group line each include at least two lines, and the first group line and the second group line are respectively connected to the corresponding first group shared line and the second group shared line.
  • the shared line is equally divided into two groups of shared lines according to the number of strips, which are respectively a first group of shared lines and a second group of shared lines.
  • the liquid crystal curing terminal and the array detecting terminal are disposed between the first group of shared lines and the second group of shared lines. Specifically, the liquid crystal curing terminal and the array detecting terminal are disposed in parallel in the first group. Between the line and the second set of shared lines.
  • the liquid crystal curing terminal and the array detecting terminal are disposed between the first group of shared lines and the second group of shared lines, specifically: the liquid crystal curing terminal and the array detecting terminal are vertically disposed in parallel with each other. Between the group shared line and the second set of shared lines.
  • the shared line includes: a first shared line, a second shared line, a third shared line, a fourth shared line, a fifth shared line, and a sixth shared line.
  • the first shared line, the third shared line, and the fifth shared line constitute a first set of shared lines.
  • the second shared line, the fourth shared line, and the sixth shared line form a second set of shared lines.
  • the first group of lines drawn by the liquid crystal curing terminal includes: a first blue data line, a first green data line, a first red data line, a first odd line, a first even line, and The first common electrode line.
  • adjacent lines in the first group of lines led out by the liquid crystal curing terminal are respectively connected to the first group of shared lines and the second group of shared lines.
  • the first blue data line is connected to the first shared line
  • the first green data line is connected to the second shared line
  • the first red data line is connected to the third shared line
  • the first odd line is shared with the fourth common line.
  • the line is connected, the first even line is connected to the fifth shared line, and the first common electrode line is connected to the sixth shared line.
  • the second group of lines drawn by the array detecting terminal includes: a second blue data line, a second green data line, a second red data line, a second odd line, a second even line, and The second common electrode line.
  • adjacent lines in the second group of lines led out by the array detecting terminal are respectively connected to the first group shared line and the second group shared line.
  • the second blue data line is connected to the first shared line
  • the second green data line is connected to the second shared line
  • the second red data line is connected to the third shared line
  • the second odd line is shared with the fourth shared line.
  • the line is connected, the second even line is connected to the fifth shared line, and the second common electrode line is connected to the sixth shared line.
  • the wiring device of the detecting terminal further includes a liquid crystal display panel and a third group of lines, and the third group of lines are respectively connected to the liquid crystal display panel and the shared line.
  • the third group of lines includes: a third blue data line, a third green data line, a third red data line, a third odd line, a third even line, and a third common electrode line.
  • the third blue data line is connected to the first shared line
  • the third green data line is connected to the second shared line
  • the third red data line is connected to the third shared line
  • the third odd line and the fourth shared line are connected.
  • the third even line is connected to the fifth shared line
  • the third common electrode line is connected to the sixth shared line.
  • the shared line is U-shaped.
  • the U-shaped shared line surrounds the liquid crystal display panel.
  • two embodiments of a liquid crystal curing terminal and an array detecting terminal are provided, which respectively include a first liquid crystal curing terminal and a first array detecting terminal, and a second liquid crystal curing terminal and a second
  • the array detecting terminal, the first liquid crystal curing terminal and the first array detecting terminal are located between the first group of shared lines and the second group of shared lines on the left side of the U-type shared line, and the second liquid crystal curing terminal and the second array detecting terminal are located at the U The first group of shared lines on the right side of the type shared line and the second set of shared lines.
  • the first group of lines led by the first liquid crystal curing terminal and the second group of lines led by the first array detecting terminal share the common line, that is, the first group of lines led by the first liquid crystal curing terminal are connected to the shared line, first The second set of lines led by the array detection terminal are connected to the shared line.
  • the shared line includes: a first shared line, a second shared line, a third shared line, a fourth shared line, a fifth shared line, and a sixth shared line.
  • the first shared line, the third shared line, and the fifth shared line constitute a first set of shared lines.
  • the second shared line, the fourth shared line, and the sixth shared line form a second set of shared lines.
  • the first group of lines drawn by the first liquid crystal curing terminal includes: a first blue data line, a first green data line, a first red data line, a first odd line, and a first even line. And a first common electrode line.
  • the first blue data line is connected to the first shared line
  • the first green data line is connected to the second shared line
  • the first red data line is connected to the third shared line, the first odd line and the fourth shared line.
  • the first even line is connected to the fifth shared line
  • the first common electrode line is connected to the sixth shared line.
  • the second group of lines drawn by the first array detecting terminal includes: a second blue data line, a second green data line, a second red data line, a second odd line, and a second even line. And a second common electrode line.
  • the second blue data line is connected to the first shared line
  • the second green data line is connected to the second shared line
  • the second red data line is connected to the third shared line
  • the second odd line and the fourth shared line are connected.
  • the second even line is connected to the fifth shared line
  • the second common electrode line is connected to the sixth shared line.
  • the wiring device of the detecting terminal further includes a liquid crystal display panel and a third group of lines, and the third group of lines are respectively connected to the liquid crystal display panel and the shared line.
  • the third group of lines includes: a third blue data line, a third green data line, a third red data line, a third odd line, a third even line, and a third common electrode line.
  • the third blue data line is connected to the first shared line
  • the third green data line is connected to the second shared line
  • the third red data line is connected to the third shared line
  • the third odd line and the fourth shared line are connected.
  • the third even line is connected to the fifth shared line
  • the third common electrode line is connected to the sixth shared line.
  • the fourth group of lines drawn by the second liquid crystal curing terminal and the fifth group of lines led by the second array detecting terminal share the common line, that is, the fourth group of lines led by the second liquid crystal curing terminal Connected to the shared line, the fifth group of lines led out by the second array detecting terminal are connected to the shared line.
  • the fourth group of lines drawn by the second liquid crystal curing terminal includes: a fourth blue data line, a fourth green data line, a fourth red data line, a fourth odd number line, and a fourth even number line. And a fourth common electrode line.
  • the fourth blue data line is connected to the first shared line
  • the fourth green data line is connected to the second shared line
  • the fourth red data line is connected to the third shared line
  • the fourth odd line and the fourth shared line are connected.
  • the fourth even line is connected to the fifth shared line
  • the fourth common electrode line is connected to the sixth shared line.
  • the fifth group of lines drawn by the second array detecting terminal includes: a fifth blue data line, a fifth green data line, a fifth red data line, a fifth odd line, and a fifth even line. And a fifth common electrode line.
  • the fifth blue data line is connected to the first shared line
  • the fifth green data line is connected to the second shared line
  • the fifth red data line is connected to the third shared line
  • the fifth odd line and the fourth shared line are connected.
  • the fifth even line is connected to the fifth shared line
  • the fifth common electrode line is connected to the sixth shared line.
  • Embodiments of the present invention also provide a liquid crystal display including a wiring device for detecting terminals as described above.
  • the liquid crystal display may be a thin film transistor liquid crystal display.
  • the liquid crystal curing terminal and the array detecting terminal are all placed in the first group sharing. Between the line and the second set of shared lines, the line crossing can be reduced, and the electrostatic discharge phenomenon can be reduced in a certain procedure.
  • the adjacent lines in the first group of lines led out by the liquid crystal curing terminal are respectively connected to the first group shared line and the second group shared line, and the adjacent lines in the second group line led out by the array detecting terminal are respectively associated with the first group
  • the shared line and the second set of shared lines are connected, thereby increasing the spacing of the adjacent lines, thereby further reducing the probability of occurrence of the electrostatic discharge phenomenon.

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Abstract

提供一种检测端子的走线装置,包括共用线路、液晶固化端子、以及阵列检测端子;共用线路分为第一组共用线路和第二组共用线路;液晶固化端子和阵列检测端子均设置于第一组共用线路和第二组共用线路之间;液晶固化端子引出的第一组线路和阵列检测端子引出的第二组线路均共用共用线路。该走线装置减少线路交叉,减少静电释放现象。

Description

一种检测端子的走线装置及液晶显示器 技术领域
本发明属于液晶显示技术领域,尤其涉及一种检测端子的走线装置及液晶显示面板。
背景技术
目前的TFT-LCD(Thin Film Transistor Liquid Crystal Display,薄膜晶体管液晶显示器)的Test Pad(检测端子)线路设计,如图1所示。液晶固化端子和阵列检测端子均位于所有线路的外侧,以液晶显示面板的右侧检测端子走线为例,液晶固化端子和阵列检测端子位于同一侧,所有线路与所述液晶固化端子和阵列检测端子位于两侧,即所有线路位于液晶显示面板的右侧,液晶固化端子以及阵列检测端子均位于所有线路的右侧,然而这种走线设计,不可避免的需要跨线设计且需要跨线的地方较多,导致线路之间交叉较多。ESD(Electro-Static discharge,静电释放)往往发生在跨线的地方,因此这种设计容易引起静电释放现象。
技术问题
本发明的目的在于提供一种检测端子的走线装置及液晶显示面板,旨在解决现有技术中存在的液晶固化端子和阵列检测端子均位于所有线路的外侧,这种走线设计,不可避免的需要跨线设计且需要跨线的地方较多,导致线路之间交叉较多,静电释放往往发生在跨线的地方,因此这种设计容易引起静电释放现象的问题。
技术解决方案
本发明是这样实现的,一种检测端子的走线装置,其中所述检测端子的走线装置包括共用线路、液晶固化端子、以及阵列检测端子;所述共用线路按条数平均分为二组共用线路,分别为第一组共用线路和第二组共用线路;所述液晶固化端子和所述阵列检测端子均设置于所述第一组共用线路和所述第二组共用线路之间;所述液晶固化端子引出的第一组线路和所述阵列检测端子引出的第二组线路均共用所述共用线路;其中,所述第一组共用线路和第二组共用线路以及所述第一组线路和第二组线路均包括至少二条线路,所述第一组线路和第二组线路分别与相应的第一组共用线路和第二组共用线路连接。
本发明的另一目的在于提供一种检测端子的走线装置,所述检测端子的走线装置包括共用线路、液晶固化端子、以及阵列检测端子;所述共用线路分为二组共用线路,分别为第一组共用线路和第二组共用线路;所述液晶固化端子和所述阵列检测端子均设置于所述第一组共用线路和所述第二组共用线路之间;所述液晶固化端子引出的第一组线路和所述阵列检测端子引出的第二组线路均共用所述共用线路;其中,所述第一组共用线路和第二组共用线路以及所述第一组线路和第二组线路均包括至少二条线路,所述第一组线路和第二组线路分别与相应的第一组共用线路和第二组共用线路连接。
所述共用线路包括:第一共用线路、第二共用线路、第三共用线路、第四共用线路、第五共用线路、第六共用线路;
所述第一共用线路、第三共用线路、以及第五共用线路组成所述第一组共用线路;所述第二共用线路、第四共用线路、以及第六共用线路组成所述第二组共用线路。
所述液晶固化端子引出的第一组线路中的相邻线路分别与所述第一组共用线路和所述第二组共用线路连接。
所述液晶固化端子引出的第一组线路包括:第一蓝色数据线、第一绿色数据线、第一红色数据线、第一奇数线、第一偶数线、以及第一共用电极线;
所述第一蓝色数据线与所述第一共用线路连接,所述第一绿色数据线与所述第二共用线路连接,所述第一红色数据线与所述第三共用线路连接,所述第一奇数线与所述第四共用线路连接,所述第一偶数线与所述第五共用线路连接,所述第一共用电极线与所述第六共用线路连接。
所述阵列检测端子引出的第二组线路包括:第二蓝色数据线、第二绿色数据线、第二红色数据线、第二奇数线、第二偶数线、以及第二共用电极线;
所述第二蓝色数据线与所述第一共用线路连接,所述第二绿色数据线与所述第二共用线路连接,所述第二红色数据线与所述第三共用线路连接,所述第二奇数线与所述第四共用线路连接,所述第二偶数线与所述第五共用线路连接,所述第二共用电极线与所述第六共用线路连接。
所述检测端子的走线装置还包括液晶显示面板、以及第三组线路,所述第三组线路分别与所述液晶显示面板和所述共用线路连接。
所述第三组线路包括:第三蓝色数据线、第三绿色数据线、第三红色数据线、第三奇数线、第三偶数线、以及第三共用电极线;
所述第三蓝色数据线与所述第一共用线路连接,所述第三绿色数据线与所述第二共用线路连接,所述第三红色数据线与所述第三共用线路连接,所述第三奇数线与所述第四共用线路连接,所述第三偶数线与所述第五共用线路连接,所述第三共用电极线与所述第六共用线路连接。
所述共用线路呈U型;所述U型共用线路包围所述液晶显示面板。
设置二组液晶固化端子和阵列检测端子,分别包括第一液晶固化端子和第一阵列检测端子,以及第二液晶固化端子和第二阵列检测端子,所述第一液晶固化端子和第一阵列检测端子位于U型共用线路左侧的第一组共用线路和第二组共用线路之间,第二液晶固化端子和第二阵列检测端子位于U型共用线路右侧的第一组共用线路和第二组共用线路之间。
其中所述阵列检测端子引出的第二组线路中的相邻线路分别与所述第一组共用线路和所述第二组共用线路连接。
本发明的另一目的在于提供一种包括上面所述的检测端子的走线装置的液晶显示面板。
有益效果
在本发明中,通过将所有共用线路按条数平均分为二组共用线路,分别为第一组共用线路和第二组共用线路,将液晶固化端子和阵列检测端子均放置于第一组共用线路和第二组共用线路之间,从而可以减少线路交叉,在一定程序上减少静电释放现象。另外,液晶固化端子引出的第一组线路中的相邻线路分别与第一组共用线路和第二组共用线路连接,阵列检测端子引出的第二组线路中的相邻线路分别与第一组共用线路和第二组共用线路连接,从而增大相邻线路的间距,从而更进一步的降低静电释放现象的发生概率。
附图说明
图1是现有技术提供的检测端子线路设计的结构示意图;
图2是本发明实施例提供的检测端子的走线装置的结构示意图。
图3是本发明实施例提供的检测端子的走线装置的结构示意图。
本发明的最佳实施方式
为了使本发明的目的、技术方案及有益效果更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
在本发明实施例中,通过将所有共用线路按条数平均分为二组共用线路,分别为第一组共用线路和第二组共用线路,将液晶固化端子和阵列检测端子均放置于第一组共用线路和第二组共用线路之间,从而可以减少线路交叉,在一定程序上减少静电释放现象。
请参阅图2,为本发明实施例提供的检测端子的走线装置的结构示意图。为了便于说明,仅示出了与本发明实施例相关的部分。所述检测端子的走线装置包括共用线路、液晶固化端子、以及阵列检测端子。共用线路分为二组共用线路,分别为第一组共用线路和第二组共用线路。液晶固化端子和阵列检测端子均设置于第一组共用线路和第二组共用线路之间;液晶固化端子引出的第一组线路和阵列检测端子引出的第二组线路均共用所述共用线路,即:液晶固化端子引出的第一组线路与共用线路连接,阵列检测端子引出的第二组线路与共用线路连接;其中,所述第一组共用线路和第二组共用线路以及所述第一组线路和第二组线路均包括至少二条线路,所述第一组线路和第二组线路分别与相应的第一组共用线路和第二组共用线路连接。
优选地,共用线路按条数平均分为二组共用线路,分别为第一组共用线路和第二组共用线路。
作为本发明一优选实施例,液晶固化端子和阵列检测端子均设置于第一组共用线路和第二组共用线路之间,具体为:液晶固化端子和阵列检测端子横向平行设置于第一组共用线路和第二组共用线路之间。
作为本发明另一优选实施例,液晶固化端子和阵列检测端子均设置于第一组共用线路和第二组共用线路之间,具体为:液晶固化端子和阵列检测端子竖向平行设置于第一组共用线路和第二组共用线路之间。
在本发明实施例中,所述共用线路包括:第一共用线路、第二共用线路、第三共用线路、第四共用线路、第五共用线路、第六共用线路。
优选地,所述第一共用线路、第三共用线路、以及第五共用线路组成第一组共用线路。所述第二共用线路、第四共用线路、以及第六共用线路组成第二组共用线路。
在本发明实施例中,所述液晶固化端子引出的第一组线路包括:第一蓝色数据线、第一绿色数据线、第一红色数据线、第一奇数线、第一偶数线、以及第一共用电极线。
在本发明实施例中,液晶固化端子引出的第一组线路中的相邻线路分别与第一组共用线路和第二组共用线路连接。其好处是:增大相邻线路的间距,从而更进一步的降低静电释放现象的发生概率。
优选地,所述第一蓝色数据线与第一共用线路连接,第一绿色数据线与第二共用线路连接,第一红色数据线与第三共用线路连接,第一奇数线与第四共用线路连接,第一偶数线与第五共用线路连接,第一共用电极线与第六共用线路连接。
在本发明实施例中,所述阵列检测端子引出的第二组线路包括:第二蓝色数据线、第二绿色数据线、第二红色数据线、第二奇数线、第二偶数线、以及第二共用电极线。
在本发明实施例中,阵列检测端子引出的第二组线路中的相邻线路分别与第一组共用线路和第二组共用线路连接。其好处是:增大相邻线路的间距,从而更进一步的降低静电释放现象的发生概率。
优选地,所述第二蓝色数据线与第一共用线路连接,第二绿色数据线与第二共用线路连接,第二红色数据线与第三共用线路连接,第二奇数线与第四共用线路连接,第二偶数线与第五共用线路连接,第二共用电极线与第六共用线路连接。
作为本发明一实施例,所述检测端子的走线装置还包括液晶显示面板、以及第三组线路,所述第三组线路分别与所述液晶显示面板和共用线路连接。
在本发明实施例中,第三组线路包括:第三蓝色数据线、第三绿色数据线、第三红色数据线、第三奇数线、第三偶数线、以及第三共用电极线。
其中,所述第三蓝色数据线与第一共用线路连接,第三绿色数据线与第二共用线路连接,第三红色数据线与第三共用线路连接,第三奇数线与第四共用线路连接,第三偶数线与第五共用线路连接,第三共用电极线与第六共用线路连接。
优选地,所述共用线路呈U型。所述U型共用线路包围所述液晶显示面板。
请参阅图3,作为本发明优选实施例,本发明实施例设置二组液晶固化端子和阵列检测端子,分别包括第一液晶固化端子和第一阵列检测端子,以及第二液晶固化端子和第二阵列检测端子,第一液晶固化端子和第一阵列检测端子位于U型共用线路左侧的第一组共用线路和第二组共用线路之间,第二液晶固化端子和第二阵列检测端子位于U型共用线路右侧的第一组共用线路和第二组共用线路之间。
第一液晶固化端子引出的第一组线路和第一阵列检测端子引出的第二组线路均共用所述共用线路,即:第一液晶固化端子引出的第一组线路与共用线路连接,第一阵列检测端子引出的第二组线路与共用线路连接。
在本发明实施例中,所述共用线路包括:第一共用线路、第二共用线路、第三共用线路、第四共用线路、第五共用线路、第六共用线路。
优选地,所述第一共用线路、第三共用线路、以及第五共用线路组成第一组共用线路。所述第二共用线路、第四共用线路、以及第六共用线路组成第二组共用线路。
在本发明实施例中,所述第一液晶固化端子引出的第一组线路包括:第一蓝色数据线、第一绿色数据线、第一红色数据线、第一奇数线、第一偶数线、以及第一共用电极线。
其中,所述第一蓝色数据线与第一共用线路连接,第一绿色数据线与第二共用线路连接,第一红色数据线与第三共用线路连接,第一奇数线与第四共用线路连接,第一偶数线与第五共用线路连接,第一共用电极线与第六共用线路连接。
在本发明实施例中,所述第一阵列检测端子引出的第二组线路包括:第二蓝色数据线、第二绿色数据线、第二红色数据线、第二奇数线、第二偶数线、以及第二共用电极线。
其中,所述第二蓝色数据线与第一共用线路连接,第二绿色数据线与第二共用线路连接,第二红色数据线与第三共用线路连接,第二奇数线与第四共用线路连接,第二偶数线与第五共用线路连接,第二共用电极线与第六共用线路连接。
作为本发明一实施例,所述检测端子的走线装置还包括液晶显示面板、以及第三组线路,所述第三组线路分别与所述液晶显示面板和共用线路连接。
在本发明实施例中,第三组线路包括:第三蓝色数据线、第三绿色数据线、第三红色数据线、第三奇数线、第三偶数线、以及第三共用电极线。
其中,所述第三蓝色数据线与第一共用线路连接,第三绿色数据线与第二共用线路连接,第三红色数据线与第三共用线路连接,第三奇数线与第四共用线路连接,第三偶数线与第五共用线路连接,第三共用电极线与第六共用线路连接。
在本发明实施例中,第二液晶固化端子引出的第四组线路和第二阵列检测端子引出的第五组线路均共用所述共用线路,即:第二液晶固化端子引出的第四组线路与共用线路连接,第二阵列检测端子引出的第五组线路与共用线路连接。
在本发明实施例中,所述第二液晶固化端子引出的第四组线路包括:第四蓝色数据线、第四绿色数据线、第四红色数据线、第四奇数线、第四偶数线、以及第四共用电极线。
其中,所述第四蓝色数据线与第一共用线路连接,第四绿色数据线与第二共用线路连接,第四红色数据线与第三共用线路连接,第四奇数线与第四共用线路连接,第四偶数线与第五共用线路连接,第四共用电极线与第六共用线路连接。
在本发明实施例中,所述第二阵列检测端子引出的第五组线路包括:第五蓝色数据线、第五绿色数据线、第五红色数据线、第五奇数线、第五偶数线、以及第五共用电极线。
其中,所述第五蓝色数据线与第一共用线路连接,第五绿色数据线与第二共用线路连接,第五红色数据线与第三共用线路连接,第五奇数线与第四共用线路连接,第五偶数线与第五共用线路连接,第五共用电极线与第六共用线路连接。
本发明实施例还提供了一种包括上面所述的检测端子的走线装置的液晶显示器。然而,可以理解的是,所述液晶显示器可以是薄膜晶体管液晶显示器。
综上所述,通过将所有共用线路按条数平均分为二组共用线路,分别为第一组共用线路和第二组共用线路,将液晶固化端子和阵列检测端子均放置于第一组共用线路和第二组共用线路之间,从而可以减少线路交叉,在一定程序上减少静电释放现象。另外,液晶固化端子引出的第一组线路中的相邻线路分别与第一组共用线路和第二组共用线路连接,阵列检测端子引出的第二组线路中的相邻线路分别与第一组共用线路和第二组共用线路连接,从而增大相邻线路的间距,从而更进一步的降低静电释放现象的发生概率。
以上所述仅为本发明的较佳实施例而已,并不用以限制本发明,凡在本发明的精神和原则之内所作的任何修改、等同替换和改进等,均应包含在本发明的保护范围之内。

Claims (20)

  1. 一种检测端子的走线装置,其中所述检测端子的走线装置包括共用线路、液晶固化端子、以及阵列检测端子;所述共用线路按条数平均分为二组共用线路,分别为第一组共用线路和第二组共用线路;所述液晶固化端子和所述阵列检测端子均设置于所述第一组共用线路和所述第二组共用线路之间;所述液晶固化端子引出的第一组线路和所述阵列检测端子引出的第二组线路均共用所述共用线路;其中,所述第一组共用线路和第二组共用线路以及所述第一组线路和第二组线路均包括至少二条线路,所述第一组线路和第二组线路分别与相应的第一组共用线路和第二组共用线路连接。
  2. 如权利要求1所述的检测端子的走线装置,其中所述共用线路包括:第一共用线路、第二共用线路、第三共用线路、第四共用线路、第五共用线路、第六共用线路;
    所述第一共用线路、第三共用线路、以及第五共用线路组成所述第一组共用线路;所述第二共用线路、第四共用线路、以及第六共用线路组成所述第二组共用线路。
  3. 如权利要求1所述的检测端子的走线装置,其中所述液晶固化端子引出的第一组线路中的相邻线路分别与所述第一组共用线路和所述第二组共用线路连接。
  4. 如权利要求2所述的检测端子的走线装置,其中所述液晶固化端子引出的第一组线路包括:第一蓝色数据线、第一绿色数据线、第一红色数据线、第一奇数线、第一偶数线、以及第一共用电极线;
    所述第一蓝色数据线与所述第一共用线路连接,所述第一绿色数据线与所述第二共用线路连接,所述第一红色数据线与所述第三共用线路连接,所述第一奇数线与所述第四共用线路连接,所述第一偶数线与所述第五共用线路连接,所述第一共用电极线与所述第六共用线路连接。
  5. 如权利要求2所述的检测端子的走线装置,其中所述阵列检测端子引出的第二组线路包括:第二蓝色数据线、第二绿色数据线、第二红色数据线、第二奇数线、第二偶数线、以及第二共用电极线;
    所述第二蓝色数据线与所述第一共用线路连接,所述第二绿色数据线与所述第二共用线路连接,所述第二红色数据线与所述第三共用线路连接,所述第二奇数线与所述第四共用线路连接,所述第二偶数线与所述第五共用线路连接,所述第二共用电极线与所述第六共用线路连接。
  6. 如权利要求2所述的检测端子的走线装置,其中所述检测端子的走线装置还包括液晶显示面板、以及第三组线路,所述第三组线路分别与所述液晶显示面板和所述共用线路连接。
  7. 如权利要求6所述的检测端子的走线装置,其中所述第三组线路包括:第三蓝色数据线、第三绿色数据线、第三红色数据线、第三奇数线、第三偶数线、以及第三共用电极线;
    所述第三蓝色数据线与所述第一共用线路连接,所述第三绿色数据线与所述第二共用线路连接,所述第三红色数据线与所述第三共用线路连接,所述第三奇数线与所述第四共用线路连接,所述第三偶数线与所述第五共用线路连接,所述第三共用电极线与所述第六共用线路连接。
  8. 如权利要求6所述的检测端子的走线装置,其中所述共用线路呈U型;所述U型共用线路包围所述液晶显示面板。
  9. 如权利要求8所述的检测端子的走线装置,其中设置二组液晶固化端子和阵列检测端子,分别包括第一液晶固化端子和第一阵列检测端子,以及第二液晶固化端子和第二阵列检测端子,所述第一液晶固化端子和第一阵列检测端子位于U型共用线路左侧的第一组共用线路和第二组共用线路之间,第二液晶固化端子和第二阵列检测端子位于U型共用线路右侧的第一组共用线路和第二组共用线路之间。
  10. 如权利要求1所述的检测端子的走线装置,其中所述阵列检测端子引出的第二组线路中的相邻线路分别与所述第一组共用线路和所述第二组共用线路连接。
  11. 一种检测端子的走线装置,其中所述检测端子的走线装置包括共用线路、液晶固化端子、以及阵列检测端子;所述共用线路分为二组共用线路,分别为第一组共用线路和第二组共用线路;所述液晶固化端子和所述阵列检测端子均设置于所述第一组共用线路和所述第二组共用线路之间;所述液晶固化端子引出的第一组线路和所述阵列检测端子引出的第二组线路均共用所述共用线路;其中,所述第一组共用线路和第二组共用线路以及所述第一组线路和第二组线路均包括至少二条线路,所述第一组线路和第二组线路分别与相应的第一组共用线路和第二组共用线路连接。
  12. 如权利要求11所述的检测端子的走线装置,其中所述共用线路包括:第一共用线路、第二共用线路、第三共用线路、第四共用线路、第五共用线路、第六共用线路;
    所述第一共用线路、第三共用线路、以及第五共用线路组成所述第一组共用线路;所述第二共用线路、第四共用线路、以及第六共用线路组成所述第二组共用线路。
  13. 如权利要求11所述的检测端子的走线装置,其中所述液晶固化端子引出的第一组线路中的相邻线路分别与所述第一组共用线路和所述第二组共用线路连接。
  14. 如权利要求12所述的检测端子的走线装置,其中所述液晶固化端子引出的第一组线路包括:第一蓝色数据线、第一绿色数据线、第一红色数据线、第一奇数线、第一偶数线、以及第一共用电极线;
    所述第一蓝色数据线与所述第一共用线路连接,所述第一绿色数据线与所述第二共用线路连接,所述第一红色数据线与所述第三共用线路连接,所述第一奇数线与所述第四共用线路连接,所述第一偶数线与所述第五共用线路连接,所述第一共用电极线与所述第六共用线路连接。
  15. 如权利要求12所述的检测端子的走线装置,其中所述阵列检测端子引出的第二组线路包括:第二蓝色数据线、第二绿色数据线、第二红色数据线、第二奇数线、第二偶数线、以及第二共用电极线;
    所述第二蓝色数据线与所述第一共用线路连接,所述第二绿色数据线与所述第二共用线路连接,所述第二红色数据线与所述第三共用线路连接,所述第二奇数线与所述第四共用线路连接,所述第二偶数线与所述第五共用线路连接,所述第二共用电极线与所述第六共用线路连接。
  16. 如权利要求12所述的检测端子的走线装置,其中所述检测端子的走线装置还包括液晶显示面板、以及第三组线路,所述第三组线路分别与所述液晶显示面板和所述共用线路连接。
  17. 如权利要求16所述的检测端子的走线装置,其中所述第三组线路包括:第三蓝色数据线、第三绿色数据线、第三红色数据线、第三奇数线、第三偶数线、以及第三共用电极线;
    所述第三蓝色数据线与所述第一共用线路连接,所述第三绿色数据线与所述第二共用线路连接,所述第三红色数据线与所述第三共用线路连接,所述第三奇数线与所述第四共用线路连接,所述第三偶数线与所述第五共用线路连接,所述第三共用电极线与所述第六共用线路连接。
  18. 如权利要求16所述的检测端子的走线装置,其中所述共用线路呈U型;所述U型共用线路包围所述液晶显示面板。
  19. 如权利要求18所述的检测端子的走线装置,其中设置二组液晶固化端子和阵列检测端子,分别包括第一液晶固化端子和第一阵列检测端子,以及第二液晶固化端子和第二阵列检测端子,所述第一液晶固化端子和第一阵列检测端子位于U型共用线路左侧的第一组共用线路和第二组共用线路之间,第二液晶固化端子和第二阵列检测端子位于U型共用线路右侧的第一组共用线路和第二组共用线路之间。
  20. 一种包括权利要求11至19任一项所述的检测端子的走线装置的液晶显示面板。
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