WO2020107793A1 - 一种柔性显示面板 - Google Patents
一种柔性显示面板 Download PDFInfo
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- WO2020107793A1 WO2020107793A1 PCT/CN2019/084331 CN2019084331W WO2020107793A1 WO 2020107793 A1 WO2020107793 A1 WO 2020107793A1 CN 2019084331 W CN2019084331 W CN 2019084331W WO 2020107793 A1 WO2020107793 A1 WO 2020107793A1
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Classifications
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09F—DISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
- G09F9/00—Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
- G09F9/30—Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements
- G09F9/301—Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character or characters are formed by combining individual elements flexible foldable or roll-able electronic displays, e.g. thin LCD, OLED
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09G—ARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
- G09G3/00—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes
- G09G3/20—Control arrangements or circuits, of interest only in connection with visual indicators other than cathode-ray tubes for presentation of an assembly of a number of characters, e.g. a page, by composing the assembly by combination of individual elements arranged in a matrix no fixed position being assigned to or needed to be assigned to the individual characters or partial characters
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10D—INORGANIC ELECTRIC SEMICONDUCTOR DEVICES
- H10D86/00—Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates
- H10D86/40—Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates characterised by multiple TFTs
- H10D86/411—Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates characterised by multiple TFTs characterised by materials, geometry or structure of the substrates
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10D—INORGANIC ELECTRIC SEMICONDUCTOR DEVICES
- H10D86/00—Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates
- H10D86/40—Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates characterised by multiple TFTs
- H10D86/441—Interconnections, e.g. scanning lines
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10D—INORGANIC ELECTRIC SEMICONDUCTOR DEVICES
- H10D86/00—Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates
- H10D86/40—Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates characterised by multiple TFTs
- H10D86/60—Integrated devices formed in or on insulating or conducting substrates, e.g. formed in silicon-on-insulator [SOI] substrates or on stainless steel or glass substrates characterised by multiple TFTs wherein the TFTs are in active matrices
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10W—GENERIC PACKAGES, INTERCONNECTIONS, CONNECTORS OR OTHER CONSTRUCTIONAL DETAILS OF DEVICES COVERED BY CLASS H10
- H10W70/00—Package substrates; Interposers; Redistribution layers [RDL]
- H10W70/60—Insulating or insulated package substrates; Interposers; Redistribution layers
- H10W70/67—Insulating or insulated package substrates; Interposers; Redistribution layers characterised by their insulating layers or insulating parts
- H10W70/688—Flexible insulating substrates
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- H—ELECTRICITY
- H10—SEMICONDUCTOR DEVICES; ELECTRIC SOLID-STATE DEVICES NOT OTHERWISE PROVIDED FOR
- H10W—GENERIC PACKAGES, INTERCONNECTIONS, CONNECTORS OR OTHER CONSTRUCTIONAL DETAILS OF DEVICES COVERED BY CLASS H10
- H10W70/00—Package substrates; Interposers; Redistribution layers [RDL]
- H10W70/60—Insulating or insulated package substrates; Interposers; Redistribution layers
- H10W70/67—Insulating or insulated package substrates; Interposers; Redistribution layers characterised by their insulating layers or insulating parts
- H10W70/68—Shapes or dispositions thereof
Definitions
- the invention relates to the technical field of display panels, in particular to a flexible display panel.
- NMOS has a lower cost than CMOS
- GOA circuit devices of NMOS products are too large.
- Most products are driven bilaterally, and the scanning line is used in the notch area.
- flexible The display panel is defined with a special-shaped digging area 4 and a display area 5.
- the flexible display panel further includes a plurality of pixel structures 1, a plurality of scanning lines 2 and a plurality of data lines 3, and the pixel structure 1 includes a plurality of sub-pixels 11
- the scan line 2 drawing method is used, which results in the boundary area of the special-shaped digging area being too large to achieve a narrow border, and the deeper the special-shaped digging area, the more scanning lines are drawn, and the more difficult it is to achieve a narrow border.
- An object of the present invention is to provide a flexible display panel, which can solve the problem that the frame is too large due to excessive scanning lines drawn in the special-shaped digging area in the panel in the prior art.
- An object of the present invention is to provide a flexible display panel, which can solve the problem that the frame is too large due to excessive scanning lines drawn in the special-shaped digging area in the panel in the prior art.
- the present invention provides a flexible display panel which defines a special-shaped digging area and a display area, including a substrate and a pixel structure, a scanning line layer and a data line layer provided on the substrate, each of which The pixel structure includes 3 sub-pixels, the scan line layer includes multiple scan lines, and the data line layer includes multiple data lines.
- the sub-pixels are arranged in an array on the substrate, and the scan lines and data lines are distributed in the sub-pixel array.
- one scan line is provided between each two rows of the sub-pixels, and two data lines are provided between each column of the sub-pixels, and the sub-pixels are connected to their adjacent scans Line, the sub-pixels of the odd rows are connected to the data line on the left thereof, and the sub-pixels of the even rows are connected to the data line on the right thereof.
- such an arrangement can reduce the number of scanning lines in the special-shaped digging area, and can reduce the border of the special-shaped digging area.
- the distance between two rows of sub-pixels provided with scan lines is a first distance
- the distance between two rows of sub-pixels without scan lines is a second distance
- the second The length of the distance is less than the length of the first distance
- the length of the second distance is 50% to 80% of the length of the first distance, preferably the length of the second distance is 50 of the length of the first distance %.
- the length of the second distance may be determined according to needs, and is not limited, as long as the length of the second distance is less than the length of the first distance.
- the scan lines are made of the same metal material.
- the metal material used for the scan line includes metallic molybdenum.
- the scan line in the first scan line layer and the second scan line layer are made of different metal materials.
- the metal material used for the scan lines in the first scan line layer includes metal molybdenum
- the metal material used for the scan lines in the second scan line layer includes aluminum metal.
- the data lines are made of the same metal material.
- the metal material used for the data line includes metallic molybdenum.
- the data line in the first data line layer and the second data line layer are made of different metal materials.
- the metal material used for the data lines in the first data line layer includes metal molybdenum
- the metal material used for the data lines in the second scan line layer includes aluminum metal. This arrangement reduces the number of data lines in the special-shaped digging area, and can reduce the border of the special-shaped digging area.
- one scan line is provided between the sub-pixels in every two rows, and two data lines are provided between the sub-pixels in each column.
- a scan line is provided between every two rows of the sub-pixels in the improved area, and each column between the sub-pixels Two data lines are provided, one scan line is provided between each row of sub-pixels in the normal area, and one data line is provided between each column of the sub-pixels.
- the area of the improved area is 10% to 90% of the area of the display area. In other embodiments, the area of the improved area may be determined as needed, and is not limited, as long as the area of the improved area is smaller than the area of the display area.
- the beneficial effect of the present invention is that the present invention provides a flexible display panel, by providing a scan line between the sub-pixels in every two rows, and two pieces of data between the sub-pixels in each column The line can reduce the border of the special-shaped digging area and realize the narrow border of the special-shaped digging area.
- Figure 1 is a schematic top view of a flexible panel in the prior art
- FIG. 2 is a schematic cross-sectional view of a flexible display panel provided by Embodiment 1 of the present invention.
- Embodiment 3 is a partial enlarged view of the pixel structure in the flexible display panel provided by Embodiment 1 of the present invention.
- first and second may explicitly or implicitly include one or more of the features.
- plural means two or more.
- comprising and any variations thereof are intended to cover non-exclusive inclusions.
- connection should be understood in a broad sense, for example, it can be a fixed connection or a detachable Connected, or connected integrally; either mechanically or electrically; directly connected, or indirectly connected through an intermediary, or internally connected between two components.
- installation should be understood in a broad sense, for example, it can be a fixed connection or a detachable Connected, or connected integrally; either mechanically or electrically; directly connected, or indirectly connected through an intermediary, or internally connected between two components.
- connection should be understood in a broad sense, for example, it can be a fixed connection or a detachable Connected, or connected integrally; either mechanically or electrically; directly connected, or indirectly connected through an intermediary, or internally connected between two components.
- the present invention provides a flexible display panel, which defines a special-shaped digging area 4 and a display area 5, including a substrate and a plurality of pixel structures 1, a scanning line layer and a data line layer provided on the substrate, wherein
- the scan line layer includes multiple scan lines 2
- the data line layer includes multiple data lines 3
- the pixel structure 1 includes three sub-pixels 11.
- the sub-pixels 11 are arranged in an array on the substrate, and a plurality of scan lines 2 and a plurality of data lines 3 are distributed in the sub-pixel array.
- One scanning line 2 is provided between each two rows of sub-pixels 11, and two data lines 3 are provided between each column of sub-pixels 11.
- the distance between the two rows of sub-pixels 11 with scan lines is the first distance 61
- the distance between the two rows of sub-pixels 11 without scan lines is the second distance 62
- the length of the second distance 62 is less than the first distance The length of 61.
- the length of the second distance 62 is 50% to 80% of the length of the first distance 61
- the length of the second distance is preferably 50% of the length of the first distance.
- the length of the second distance may be determined according to need, and is not limited, as long as the length of the second distance is less than the length of the first distance.
- the scan line 2 is made of the same metal material
- the data line 3 is made of the same metal material
- the scan line 2 and the data line 3 are made of metal molybdenum.
- the scan line layer includes a first scan line layer and a second scan line layer
- the scan line 2 in the first scan line layer and the scan line 2 in the second scan line layer are made of different metal materials.
- the metal material used for the scan lines in the first scan line layer includes metal molybdenum
- the metal material used for the scan lines in the second scan line layer includes aluminum metal.
- the data line 3 in the first data line layer and the data line 3 in the second data line layer are made of different metal materials.
- the metal material used for the data lines in the first data line layer includes metal molybdenum
- the metal material used for the data lines in the second scan line layer includes aluminum metal. This arrangement reduces the number of data lines in the special-shaped digging area, and can reduce the border of the special-shaped digging area.
- FIG. 3 is a partial enlarged view of a pixel structure in a flexible display panel provided by an embodiment of the present invention.
- the pixel structure 1 includes a plurality of sub-pixels 11, and the sub-pixels 11 are connected to adjacent scan lines 2, odd rows
- the sub-pixels 11 are connected to the data line 3 on its left side, and the sub-pixels 11 in the even rows are connected to the data line 3 on its right side.
- the structure of the flexible display panel in Example 2 also defines a special-shaped digging area and a display area, which are substantially the same as the corresponding structure in Example 1, and the same structure can be referred to the corresponding description in Example 1, not here Repeat again.
- the main difference between the two is that in the display area in this embodiment, one scan line is provided between each row of sub-pixels, and one data line is provided between each column of sub-pixels.
- the structure of the flexible display panel in Example 3 also defines a special-shaped digging area and a display area, which are roughly the same as the corresponding structure in Example 1, and the same structure can be referred to the corresponding description in Example 1, not here Repeat again.
- the display area in this embodiment includes a normal area and an improved area.
- a scan line is provided between every two rows of the sub-pixels.
- the area of the improved area is smaller than the area of the display area.
- the area of the improved area is 10% to 90% of the area of the display area
- the area of the improved area is preferably 50% of the area of the display area.
- the area of the improved area may be determined as needed, and is not limited, as long as the area of the improved area is smaller than the area of the display area.
- the beneficial effect of the present invention is that the present invention provides a flexible display panel, by providing a scan line between the sub-pixels in every two rows, and two pieces of data between the sub-pixels in each column The line can reduce the border of the special-shaped digging area and realize the narrow border of the special-shaped digging area.
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- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- General Physics & Mathematics (AREA)
- Theoretical Computer Science (AREA)
- Computer Hardware Design (AREA)
- Devices For Indicating Variable Information By Combining Individual Elements (AREA)
Abstract
一种柔性显示面板,定义有异型挖孔区(4)和显示区(5),包括基板和设置在基板上的像素结构(1)、扫描线层和数据线层,其中每一像素结构(1)包括3个子像素(11),扫描线层包括多条扫描线(2),数据线层包括多条数据线(3);其中这些子像素(11)在基板上阵列排布,扫描线(2)和数据线(3)分布设置在子像素(11)阵列之中;其中在异型挖孔区(4),每两行子像素(11)之间设置有一条扫描线(2),每一列子像素(11)之间设置有两条数据线(3)。通过在每两行子像素(11)之间设置一条扫描线(2),每一列子像素(11)之间设置两条数据线(3),能够减小异型挖孔区(4)的边框,实现异型挖孔区(4)的窄边框。
Description
本发明涉及显示面板技术领域,特别涉及一种柔性显示面板。
目前市场上全面屏已成为一种趋势,特别是随着小米mix2以及iPhone
X的发布,全面屏受到了市场广泛关注,各手机厂商纷纷推出全面屏手机。要在机身上放置前置摄像头、感应器等电子元器件,屏幕与手机边缘就会有一定距离。因此,为了放置前置摄像头、感应器、受话器等电子元器件,需要在屏幕上做U型切割。
目前市场上全面屏手机主要分为两种,其一为小米mix2为代表的18:9屏幕,将手机上下未显示区域压缩,扩大屏占比;其二为iPhone X代表的“刘海”设计。其中iPhone
X设计慢慢成为全面屏主流设计,“刘海”设计行业也叫notch屏,即异型屏。
同时,由于NMOS较CMOS成本更低,现在很多产品均采用NMOS设计,NMOS产品的GOA电路器件太大,大多产品在采用双边驱动,在notch区域采用扫描线拉线方式,如图1所示,柔性显示面板上定义有异型挖孔区4和显示区5,柔性显示面板还包括多个像素结构1、多个扫描线2和多个数据线3,像素结构1包括多个子像素11,在异型挖孔区4中采用扫描线2拉线方式,导致异型挖孔区域的边界区域太大,无法实现窄边框,且异型挖孔区域越深,扫描线拉线越多,越难实现窄边框。
因此,确有必要来开发一种新型的柔性显示面板,以克服现有技术的缺陷。
本发明的一个目的是提供一种柔性显示面板,其能够解决现有技术中面板中异型挖孔区域扫描线拉线过多带来的其边框过大的问题。
本发明的一个目的是提供一种柔性显示面板,其能够解决现有技术中面板中异型挖孔区域扫描线拉线过多带来的其边框过大的问题。
为实现上述目的,本发明提供一种柔性显示面板,其定义有异型挖孔区和显示区,包括基板和设置在所述基板上的像素结构、扫描线层和数据线层,其中每一所述像素结构包括3个子像素,所述扫描线层包括多条扫描线,所述数据线层包括多条数据线。其中这些子像素在所述基板上阵列排布,所述扫描线和数据线分布设置在所述子像素阵列之中。其中在所述异型挖孔区,每两行所述子像素之间设置有一条扫描线,每一列所述子像素之间设置有两条数据线,所述子像素连接至其相邻的扫描线,所述奇数行的子像素连接至其左侧的数据线,所述偶数行的子像素连接至其右侧的数据线。
其中,这样的设置方式可以减少所述异型挖孔区内扫描线的条数,能够减小异型挖孔区的边框。
进一步的,在其他实施方式中,其中设置有扫描线的两行子像素之间的距离为第一距离,未设置扫描线的两行子像素之间的距离为第二距离,所述第二距离的长度小于所述第一距离的长度。
进一步的,在其他实施方式中,其中所述第二距离的长度为所述第一距离的长度的50%~80%,优选所述第二距离的长度为所述第一距离的长度的50%。其中在其他实施方式中,所述第二距离的长度可随需要而定,并无限定,只要能保证所述第二距离的长度小于所述第一距离的长度即可。
进一步的,在其他实施方式中,其中所述扫描线为相同的金属材质。在其他实施方式中,所述扫描线采用的金属材质包括金属钼。
进一步的,在其他实施方式中,其中所述扫描线层包括第一扫描线层和第二扫描线层,所述第一扫描线层中的所述扫描线和所述第二扫描线层中的扫描线为不同的金属材质。在其他实施方式中,其中所述第一扫描线层中的扫描线采用的金属材质包括金属钼,所述第二扫描线层中的扫描线采用的金属材质包括金属铝。这样的设置方式进一步减少了所述异型挖孔区内扫描线的条数,能够减小异型挖孔区的边框。
进一步的,在其他实施方式中,其中所述数据线为相同的金属材质。在其他实施方式中,所述数据线采用的金属材质包括金属钼。
进一步的,在其他实施方式中,其中所述数据线层包括第一数据线层和第二数据线层,所述第一数据线层中的所述数据线和所述第二数据线层中的数据线为不同的金属材质。在其他实施方式中,其中所述第一数据线层中的数据线采用的金属材质包括金属钼,所述第二扫描线层中的数据线采用的金属材质包括金属铝。这样的设置方式减少了所述异型挖孔区内数据线的条数,能够减小异型挖孔区的边框。
进一步的,在其他实施方式中,其中在所述显示区内,每两行所述子像素之间设置有一条扫描线,每一列所述子像素之间设置有两条数据线。
进一步的,在其他实施方式中,其中所述显示区包括正常区和改进区,在所述改进区中每两行所述子像素之间设置有一条扫描线,每一列所述子像素之间设置有两条数据线,在所述正常区内每一行所述子像素之间设置有一条扫描线,每一列所述子像素之间设置有一条数据线。
进一步的,在其他实施方式中,其中所述改进区的面积小于所述显示区的面积。
进一步的,在其他实施方式中,其中所述改进区的面积是所述显示区的面积的10%~90%。其中在其他实施方式中,所述改进区的面积可随需要而定,并无限定,只要能保证所述改进区的面积小于所述显示区的面积即可。
相对于现有技术,本发明的有益效果在于:本发明提供一种柔性显示面板,通过在每两行所述子像素之间设置一条扫描线,每一列所述子像素之间设置两条数据线,能够减小异型挖孔区的边框,实现异型挖孔区的窄边框。
为了更清楚地说明本发明实施例中的技术方案,下面将对实施例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为现有技术中柔性面板的俯视示意图;
图2为本发明实施例1提供的柔性显示面板的剖视示意图;
图3为本发明实施例1提供的柔性显示面板中像素结构的局部放大图。
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做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。
这里所公开的具体结构和功能细节仅仅是代表性的,并且是用于描述本发明的示例性实施例的目的。但是本发明可以通过许多替换形式来具体实现,并且不应当被解释成仅仅受限于这里所阐述的实施例。
在本发明的描述中,需要理解的是,术语“中心”、“横向”、“上”、“下”、“左”、“右”、“竖直”、“水平”、“顶”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。此外,属于“第一”“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定由“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个该特征。本发明的描述中,除非另有说明,“多个”的含义是两个或两个以上。另外,术语“包括”及其任何变形,意图在于覆盖不排他的包含。
在本发明的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本发明中的具体含义。
这里所使用的术语仅仅是为了描述具体实施例而不意图限制示例性实施例。除非上下文明确地另有所指,否则这里所使用的单数形式“一个”、“一项”还意图包括复数。还应当理解的是,这里所使用的术语“包括”和/或“包含”规定所述的特征、整数、步骤、操作、单元和/或组件的存在,而不排除存在或添加一个或更多其他特征、整数、步骤、操作、单元、组件和/或其组合。
实施例1
请参阅图2,本发明提供一种柔性显示面板,其定义有异型挖孔区4和显示区5,包括基板和设置在基板上的多个像素结构1、扫描线层和数据线层,其中扫描线层包括多条扫描线2,数据线层包括多条数据线3,像素结构1包括3个子像素11。
其中这些子像素11在基板上阵列排布,多条扫描线2及多条数据线3分布设置在子像素阵列之中。每两行子像素11之间设置有一条扫描线2,每一列子像素11之间设置有两条数据线3。
设置有扫描线的两行子像素11之间的距离为第一距离61,未设置扫描线的两行子像素11之间的距离为第二距离62,第二距离62的长度小于第一距离61的长度。这样的设置方式能够弥补双数据线方式带来的开口损失。
在其他实施方式中,其中第二距离62的长度为第一距离61的长度的50%~80%,本实施例中优选为第二距离的长度为所述第一距离的长度的50%。其中在其他实施方式中,所述第二距离的长度可随需要而定,并无限定,只要能保证第二距离的长度小于第一距离的长度即可。
在本实施例中,其中扫描线2为相同的金属材质,数据线3为相同的金属材质,扫描线2和数据线3采用的金属材质为金属钼。
在其他实施方式中,其中扫描线层包括第一扫描线层和第二扫描线层,第一扫描线层中的扫描线2和第二扫描线层中的扫描线2为不同的金属材质。在其他实施方式中,其中所述第一扫描线层中的扫描线采用的金属材质包括金属钼,所述第二扫描线层中的扫描线采用的金属材质包括金属铝。这样的设置方式进一步减少了所述异型挖孔区内扫描线的条数,能够减小异型挖孔区的边框。
在其他实施方式中,其中数据线层包括第一数据线层和第二数据线层,第一数据线层中的数据线3和第二数据线层中的数据线3为不同的金属材质。在其他实施方式中,其中所述第一数据线层中的数据线采用的金属材质包括金属钼,所述第二扫描线层中的数据线采用的金属材质包括金属铝。这样的设置方式减少了所述异型挖孔区内数据线的条数,能够减小异型挖孔区的边框。
如图3所示,图3为本发明实施例提供的柔性显示面板中像素结构的局部放大图,像素结构1包括多个子像素11,子像素11连接至其相邻的扫描线2,奇数行的子像素11连接至其左侧的数据线3,偶数行的子像素11连接至其右侧的数据线3。
实施例2
实施例2中的柔性显示面板结构,也定义有异型挖孔区和显示区,其与实施例1中的对应结构大致相同,其相同的结构可参照实施例1中的对应描述,此处不再赘述。其中两者的主要不同之处在于,本实施例中的显示区中,每一行子像素之间设置有一条扫描线,每一列子像素之间设置有一条数据线。
实施例3
实施例3中的柔性显示面板结构,也定义有异型挖孔区和显示区,其与实施例1中的对应结构大致相同,其相同的结构可参照实施例1中的对应描述,此处不再赘述。其中两者的主要不同之处在于,本实施例中的显示区包括正常区和改进区,在改进区中每两行所述子像素之间设置有一条扫描线,每一列所述子像素之间设置有两条数据线,在正常区内每一行所述子像素之间设置有一条扫描线,每一列所述子像素之间设置有一条数据线。
在其他实施方式中,其中改进区的面积小于显示区的面积。
在其他实施方式中,其中改进区的面积是显示区的面积的10%~90%,在本实施例中优选为改进区的面积是显示区的面积的50%。其中在其他实施方式中,改进区的面积可随需要而定,并无限定,只要能保证改进区的面积小于显示区的面积即可。
相对于现有技术,本发明的有益效果在于:本发明提供一种柔性显示面板,通过在每两行所述子像素之间设置一条扫描线,每一列所述子像素之间设置两条数据线,能够减小异型挖孔区的边框,实现异型挖孔区的窄边框。
以上所述仅是本发明的优选实施方式,应当指出,对于本技术领域的普通技术人员,在不脱离本发明原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也应视为本发明的保护范围。
Claims (10)
- 一种柔性显示面板,其中,其定义有异型挖孔区和显示区,包括基板和设置在所述基板上的像素结构、扫描线层和数据线层,其中每一所述像素结构包括3个子像素,所述扫描线层包括多条扫描线,所述数据线层包括多条数据线;其中这些子像素在所述基板上阵列排布,所述扫描线和数据线分布设置在所述子像素阵列之中;其中在所述异型挖孔区,每两行所述子像素之间设置有一条扫描线,每一列所述子像素之间设置有两条数据线,所述子像素连接至其相邻的扫描线,所述奇数行的子像素连接至其左侧的数据线,所述偶数行的子像素连接至其右侧的数据线。
- 根据权利要求1所述的一种柔性显示面板,其中,设置有扫描线的两行子像素之间的距离为第一距离,未设置扫描线的两行子像素之间的距离为第二距离,所述第二距离的长度小于所述第一距离的长度。
- 根据权利要求2所述的一种柔性显示面板,其中,所述第二距离的长度为所述第一距离的长度的50%~80%。
- 根据权利要求1所述的一种柔性显示面板,其中,所述扫描线为相同的金属材质,所述扫描线采用的金属材质包括金属钼。
- 根据权利要求1所述的一种柔性显示面板,其中,所述扫描线层包括第一扫描线层和第二扫描线层,所述第一扫描线层中的所述扫描线和所述第二扫描线层中的扫描线为不同的金属材质,所述第一扫描线层中的扫描线采用的金属材质包括金属钼,所述第二扫描线层中的扫描线采用的金属材质包括金属铝。
- 根据权利要求1所述的一种柔性显示面板,其中,所述子像素包括开关元件,所述开关元件分别与所述子像素对应的扫描线及数据线连接。
- 根据权利要求1所述的一种柔性显示面板,其中,在所述显示区内,每两行所述子像素之间设置有一条扫描线,每一列所述子像素之间设置有两条数据线。
- 根据权利要求1所述的一种柔性显示面板,其中,所述显示区包括正常区和改进区,在所述改进区中每两行所述子像素之间设置有一条扫描线,每一列所述子像素之间设置有两条数据线,在所述正常区内每一行所述子像素之间设置有一条扫描线,每一列所述子像素之间设置有一条数据线。
- 根据权利要求8所述的一种柔性显示面板,其中,所述改进区的面积小于所述显示区的面积。
- 根据权利要求8所述的一种柔性显示面板,其中,所述改进区的面积是所述显示区的面积的10%~90%。
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| CN110164869B (zh) | 2019-04-12 | 2021-07-30 | 上海中航光电子有限公司 | 显示面板和显示装置 |
| CN112185315B (zh) * | 2020-10-19 | 2022-04-26 | Tcl华星光电技术有限公司 | 液晶显示面板的驱动方法、液晶显示面板及液晶显示装置 |
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| CN115116332B (zh) * | 2022-06-30 | 2023-09-01 | 武汉华星光电半导体显示技术有限公司 | 显示面板和显示装置 |
| CN116259634A (zh) * | 2023-03-31 | 2023-06-13 | 武汉天马微电子有限公司 | 一种阵列基板、显示面板及显示装置 |
| CN119763464A (zh) * | 2024-12-16 | 2025-04-04 | 厦门天马显示科技有限公司 | 显示面板以及显示装置 |
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