CN105911783A - 阵列基板及液晶显示面板 - Google Patents
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Abstract
本发明提供一种阵列基板及液晶显示面板,所述阵列基板包括数个平行间隔设置的栅极线、数个平行间隔设置的数据线,所述数个栅极线与数个数据线垂直正交设置形成数个像素区域;所述数个栅极线与数个数据线为绝缘正交,所述每个像素区域内设有TFT开关、像素电极,所述TFT开关与其所在的像素区域的栅极线及数据线连接,所述像素电极内设有过孔,所述过孔与所述TFT开关相邻设置,所述像素电极通过设于其内的所述过孔与TFT开关电连接。
Description
技术领域
本发明涉及液晶显示面板技术领域,特别涉及一种阵列基板及液晶显示面板。
背景技术
随着电子技术的不断发展,液晶显示器已广泛的应用于各个显示领域。薄膜晶体管(Thin Film Transistor,TFT)阵列基板是液晶显示器的重要组成部分,其可以达到高速度、高亮度、高对比度的显示效果,目前已经成为众多平板显示技术的主流。其中,阵列基板主要包括栅线、数据线、像素电极和薄膜晶体管等。随着人们对显示效果要求的提高,对像素要求越来越高,显示器单位面积上的像素单元越来越多,每一个像素单元也就越来越小。由于连接像素电极的过孔位于像素区域内像素电极外侧,需要占用一定的像素区域的面积,减小该区域内透光面积,这些必不可少的组件会降低着每一个像素单元的开口率,并且随着像素越高,对像素开口率的影响越大。
发明内容
本发明的目的在于提供一种提高开口率的阵列基板及液晶显示面板。
本申请提供一种阵列基板,所述阵列基板包括数个平行间隔设置的栅极线、数个平行间隔设置的数据线,所述数个栅极线与数个数据线垂直正交设置形成数个像素区域;所述数个栅极线与数个数据线为绝缘正交,
所述每个像素区域内设有TFT开关、像素电极,所述TFT开关与其所在的像素区域的栅极线及数据线连接,所述像素电极内设有过孔,所述过孔与所述TFT开关相邻设置,所述像素电极通过设于其内的所述过孔与TFT开关电连接。
其中,所述像素电极设有延伸区域,所述TFT开关位于所述延伸区域一侧,所述过孔开设于所述延伸区域内贯穿阵列基板的数据线所在层。
其中,所述TFT开关包括源极及漏极,所述过孔与所述源极电连接,所述漏极连接所述数据线。
其中,所述数个栅极线沿着第一方向间隔排布,并沿着第二方向延伸;所述数个数据线沿着第二方向间隔排布,并沿着第一方向延伸;每两个数据线与两个栅极线交叉围成所述子像素区域。
其中,所述TFT开关包括栅极,所述栅极电连接所述栅极线。
本申请的液晶显示面板,包括阵列基板、液晶层和彩膜基板,所述阵列基板包括数个平行间隔设置的栅极线、数个平行间隔设置的数据线,所述数个栅极线与数个数据线垂直正交设置形成数个像素区域;所述数个栅极线与数个数据线为绝缘正交,所述每个像素区域内设有TFT开关、像素电极,所述TFT开关与其所在的像素区域的栅极线及数据线连接,所述像素电极内设有过孔,所述过孔与所述TFT开关相邻设置,所述像素电极通过设于其内的所述过孔与TFT开关电连接,所述液晶层位于所述阵列基板和彩膜基板之间。
其中,所述像素电极设有延伸区域,所述TFT开关位于所述延伸区域一侧,所述过孔开设于所述延伸区域内。
其中,所述TFT开关包括栅极、源极及漏极,所述过孔与所述源极电连接,所述栅极电连接所述栅极线。
其中,所述数个栅极线沿着第一方向间隔排布,并沿着第二方向延伸;所述数个数据线沿着第二方向间隔排布,并沿着第一方向延伸;每两个数据线与两个栅极线交叉围成所述子像素区域。
本申请提供一种显示装置,所述显示装置包括所述的液晶显示面板及背光模组,所述液晶显示面板设于所述背光模组上通过背光模组提供光源。
本发明所述的阵列基板将连接TFT开关与所述像素电极的过孔开设于像素电极区域内,避免占用像素区域其它部位的区域而增加遮光面积,避免减小像素区域的开口率,提升像素区域的透光率。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本发明提供的阵列基板的部分区域的平面透视图。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
请参阅图1,本发明佳实施方式提供一种阵列基板及液晶显示面板,液晶显示面板包括阵列基板11、彩膜基板及夹持于所述阵列基板11与所述彩膜基板之间的液晶层。所述阵列基板10包括数个平行间隔设置的栅极线11、数个平行间隔设置的数据线12,所述数个栅极线11与数个数据线12垂直正交设置形成数个像素区域13;所述数个栅极线11与数个数据线12为绝缘正交。所述数个像素区域13呈矩阵排列。
所述每个像素区域13内设有TFT开关14、像素电极15。所述TFT开关14与其所在的像素区域13的栅极线11及数据线12连接。所述像素电极15内设有过孔16。所述过孔16与所述TFT开关14相邻设置,所述像素电极15通过设于其内的所述过孔16与TFT开关14电连接。
本实施例中,所述数个栅极线11沿着第一方向间隔排布,并沿着第二方向延伸;所述第一方向为纵向,所述第二方向为横向。所述数个数据线12沿着第二方向间隔排布,并沿着第一方向延伸;每两个数据线12与两个栅极线11交叉围成所述像素区域13。所述第一方向水平垂直垂直的方向。
本实施例中,所述像素电极15设有延伸区域151,所述TFT开关14位于所述延伸区域151一侧,所述过孔16开设于所述延伸区域151内。具体的,所述延伸区域131与所述数据线之间形成空位区,所述TFT设于空位区内,所述过孔16开设于所述延伸区域151内贯穿所述绝缘层,用以连接像素电极15与源漏极。
进一步的,所述TFT开关14包括源极141及漏极142,所述过孔16与所述漏极142电连接,所述源极141连接所述数据线12。
进一步的,所述TFT开关14包括栅极(图未示),所述栅极电连接所述栅极线11。
本发明所述的阵列基板中,连接TFT开关14与所述像素电极15的过孔16开设于像素电极15区域内,避免占用像素区域13其它部位的区域而增加遮光面积,避免影响像素区域的开口率,提升像素区域的透光率。
本发明提供一种显示装置,所述显示装置包括所述的液晶显示面板及背光模组,所述液晶显示面板设于所述背光模组上通过背光模组提供光源。
以上所揭露的仅为本发明较佳实施例而已,当然不能以此来限定本发明之权利范围,本领域普通技术人员可以理解实现上述实施例的全部或部分流程,并依本发明权利要求所作的等同变化,仍属于发明所涵盖的范围。
Claims (10)
1.一种阵列基板,其特征在于,所述阵列基板包括数个平行间隔设置的栅极线、数个平行间隔设置的数据线,所述数个栅极线与数个数据线垂直正交设置形成数个像素区域;所述数个栅极线与数个数据线为绝缘正交,
所述每个像素区域内设有TFT开关、像素电极,所述TFT开关与其所在的像素区域的栅极线及数据线连接,所述像素电极内设有过孔,所述过孔与所述TFT开关相邻设置,所述像素电极通过设于其内的所述过孔与TFT开关电连接。
2.如权利要求1所述的阵列基板,其特征在于,所述像素电极设有延伸区域,所述TFT开关位于所述延伸区域一侧,所述过孔开设于所述延伸区域内贯穿阵列基板的数据线所在层。
3.如权利要求1所述的阵列基板,其特征在于,所述TFT开关包括源极及漏极,所述过孔与所述漏极电连接,所述源极连接所述数据线。
4.如权利要求1所述的阵列基板,其特征在于,所述数个栅极线沿着第一方向间隔排布,并沿着第二方向延伸;所述数个数据线沿着第二方向间隔排布,并沿着第一方向延伸;每两个数据线与两个栅极线交叉围成所述子像素区域。
5.如权利要求1所述的阵列基板,其特征在于,所述TFT开关包括栅极,所述栅极电连接所述栅极线。
6.一种液晶显示面板,包括阵列基板、液晶层和彩膜基板,其特征在于,所述阵列基板包括数个平行间隔设置的栅极线、数个平行间隔设置的数据线,所述数个栅极线与数个数据线垂直正交设置形成数个像素区域;所述数个栅极线与数个数据线为绝缘正交,所述每个像素区域内设有TFT开关、像素电极,所述TFT开关与其所在的像素区域的栅极线及数据线连接,所述像素电极内设有过孔,所述过孔与所述TFT开关相邻设置,所述像素电极通过设于其内的所述过孔与TFT开关电连接,所述液晶层位于所述阵列基板和彩膜基板之间。
7.如权利要求6所述的液晶显示面板,其特征在于,所述像素电极设有延伸区域,所述TFT开关位于所述延伸区域一侧,所述过孔开设于所述延伸区域内。
8.如权利要求6所述的液晶显示面板,其特征在于,所述TFT开关包括栅极、源极及漏极,所述过孔与所述源极电连接,所述栅极电连接所述栅极线。
9.如权利要求6所述的液晶显示面板,其特征在于,所述数个栅极线沿着第一方向间隔排布,并沿着第二方向延伸;所述数个数据线沿着第二方向间隔排布,并沿着第一方向延伸;每两个数据线与两个栅极线交叉围成所述子像素区域。
10.一种显示装置,其特征在于,所述显示装置包括权利要求6-9任一项所述的液晶显示面板及背光模组,所述液晶显示面板设于所述背光模组上通过背光模组提供光源。
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CN101556417B (zh) * | 2008-04-11 | 2010-12-01 | 北京京东方光电科技有限公司 | Ffs型tft-lcd阵列基板结构及其制造方法 |
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WO2020082543A1 (zh) * | 2018-10-23 | 2020-04-30 | 深圳市华星光电技术有限公司 | 阵列基板及液晶显示面板 |
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