WO2021232535A1 - 触控面板及显示装置 - Google Patents

触控面板及显示装置 Download PDF

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Publication number
WO2021232535A1
WO2021232535A1 PCT/CN2020/098145 CN2020098145W WO2021232535A1 WO 2021232535 A1 WO2021232535 A1 WO 2021232535A1 CN 2020098145 W CN2020098145 W CN 2020098145W WO 2021232535 A1 WO2021232535 A1 WO 2021232535A1
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WIPO (PCT)
Prior art keywords
touch
module
area
touch panel
display area
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PCT/CN2020/098145
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English (en)
French (fr)
Inventor
方亮
Original Assignee
武汉华星光电半导体显示技术有限公司
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Application filed by 武汉华星光电半导体显示技术有限公司 filed Critical 武汉华星光电半导体显示技术有限公司
Priority to US17/251,748 priority Critical patent/US20210357059A1/en
Publication of WO2021232535A1 publication Critical patent/WO2021232535A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F3/00Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
    • G06F3/01Input arrangements or combined input and output arrangements for interaction between user and computer
    • G06F3/03Arrangements for converting the position or the displacement of a member into a coded form
    • G06F3/041Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
    • G06F3/0412Digitisers structurally integrated in a display

Definitions

  • the present disclosure relates to the field of panel display technology, in particular to a touch panel and a display device.
  • Current display devices mainly include liquid crystal displays, plasma display panels (PDP), organic electroluminescence, and active matrix organic electroluminescence devices.
  • the touch function has become one of the standard configurations of most display devices, and the capacitive touch screen is the most widely used.
  • An important touch technology of common capacitive touch panels is self-capacitive, corresponding to self-capacitive touch panels, where a single touch sensor module is often used and each touch sensor module corresponds to a touch signal line for one day , The touch signal lines merge at the lower periphery of the panel to form a signal line merge area.
  • the present disclosure provides a touch panel and a display device to solve the problem that the width of the lower frame of the existing touch panel is relatively large, and the touch signal line occupies a larger space after being merged at the lower frame. Conducive to problems such as the design of a narrow bezel display panel.
  • a touch panel is provided:
  • the touch panel includes a display area and a non-display area adjacent to the display area, and is characterized in that it includes:
  • a touch module the array of touch modules is arranged in a display area corresponding to the touch panel;
  • Touch signal lines one end of each touch signal line is electrically connected to each touch module, and the other end of the touch signal line extends into the non-display area;
  • the non-display area is provided with a display integration module, at least one touch integration module, and at least one connection module, the connection module is electrically connected to the corresponding touch integration module, and the touch signal line The other end of is correspondingly electrically connected with the connection module;
  • the touch integration module includes a first touch integration module and a second touch integration module, and the first touch integration module and the second touch integration module are symmetrically arranged along the center line of the touch panel;
  • the corresponding touch signal lines in the same column are parallel to each other and arranged at equal intervals.
  • the non-display area includes a bezel area and a bendable area, the bezel area is arranged adjacent to the bendable area and the bendable area is close to the edge of the touch panel .
  • connection module includes a straight portion and a vertical portion, the straight portion is disposed in the frame area, the vertical portion is disposed in the bendable area, and the vertical The part is perpendicular to the straight part.
  • the other ends of the corresponding multiple touch signal lines in the same row are at least converged at a junction area and are electrically connected to the corresponding straight portion, and the vertical portion is connected to the The touch integrated module is electrically connected.
  • the width of the straight portion gradually decreases along an end where the straight portion intersects the vertical portion to the other end of the straight portion.
  • the distance between two adjacent vertical portions is greater than the width of the touch module.
  • the width at the merging area corresponding to the straight portion corresponds to the number of the touch signal lines connected to the connection module and the number of adjacent two touch signals.
  • a touch panel is provided:
  • the touch panel includes a display area and a non-display area adjacent to the display area, and is characterized in that it includes:
  • a touch module the array of touch modules is arranged in a display area corresponding to the touch panel;
  • Touch signal lines one end of each touch signal line is electrically connected to each touch module, and the other end of the touch signal line extends into the non-display area;
  • the non-display area is provided with a display integration module, at least one touch integration module, and at least one connection module, the connection module is electrically connected to the corresponding touch integration module, and the touch signal line The other end of is correspondingly electrically connected with the connection module.
  • the non-display area includes a bezel area and a bendable area, the bezel area is arranged adjacent to the bendable area and the bendable area is close to the edge of the touch panel .
  • connection module includes a straight portion and a vertical portion, the straight portion is disposed in the frame area, the vertical portion is disposed in the bendable area, and the vertical The part is perpendicular to the straight part.
  • the other ends of the corresponding multiple touch signal lines in the same row are at least converged at a junction area and are electrically connected to the corresponding straight portion, and the vertical portion is connected to the The touch integrated module is electrically connected.
  • the width of the straight portion gradually decreases along an end where the straight portion intersects the vertical portion to the other end of the straight portion.
  • the distance between two adjacent vertical portions is greater than the width of the touch module.
  • the width at the merging area corresponding to the straight portion corresponds to the number of the touch signal lines connected to the connection module and the number of adjacent two touch signals.
  • the corresponding touch signal lines in the same column are arranged parallel to each other and at equal intervals.
  • the touch integrated module includes a first touch integrated module and a second touch integrated module, and the first touch integrated module and the second touch integrated module extend along the touch panel The center line is symmetrical.
  • a display device including:
  • a touch module the array of touch modules is arranged in a display area corresponding to the touch panel;
  • Touch signal lines one end of each touch signal line is electrically connected to each touch module, and the other end of the touch signal line extends into the non-display area;
  • the non-display area is provided with a display integration module, at least one touch integration module, and at least one connection module, the connection module is electrically connected to the corresponding touch integration module, and the touch signal line The other end of is correspondingly electrically connected with the connection module.
  • the corresponding touch signal lines in the same column are arranged parallel to each other and at equal intervals.
  • the touch integrated module includes a first touch integrated module and a second touch integrated module, and the first touch integrated module and the second touch integrated module extend along the touch panel The center line is symmetrical.
  • the non-display area includes a bezel area and a bendable area, the bezel area is arranged adjacent to the bendable area and the bendable area is close to the edge of the touch panel .
  • the embodiments of the present disclosure provide a touch panel and a display device, by arranging a plurality of touch integrated modules in the non-display area of the touch panel, and extending the corresponding touch signal lines in the display area to their corresponding connections On the module, in the same column, multiple touch signal lines are gathered at a confluence area, and then connected to the touch integrated module, so as to realize the transmission of touch signals.
  • forming multiple touch signals can be collected in multiple different converging areas, and the width of the corresponding connection module at each converging area is different, thereby improving the wiring design of the touch signal line and realizing the touch
  • the narrow frame design of the control panel reduces the production cost while improving the display quality.
  • FIG. 1 is a schematic diagram of the structure of a touch panel in an embodiment of the disclosure
  • FIG. 2 is a schematic diagram of another touch panel structure provided by an embodiment of the present disclosure.
  • FIG. 3 is a schematic structural diagram of another touch panel provided by an embodiment of the disclosure.
  • the corresponding touch signal lines will increase, which will cause the width of the junction area of the touch signal lines to become wider, and finally make the existing touch display panel have a wider bottom frame, which cannot Reduce production costs and realize the design of narrow bezel panels.
  • FIG. 1 is a schematic diagram of the structure of a touch panel in an embodiment of the disclosure.
  • the touch panel 100 includes a display area 101 and a non-display area 102, and the display area 101 and the non-display area 102 are arranged adjacent to each other.
  • the display area 101 is the display area and the touch area of the touch panel 100. This area is the normal light-emitting and touch function area of the touch panel 100.
  • the display area 101 is A plurality of touch modules are provided, and the touch modules receive and transmit touch commands to complete the touch operation of the panel.
  • the width of the non-display area 102 of the touch panel 100 is relatively narrow, which is a narrow-frame touch display panel.
  • FIG. 2 is a schematic diagram of another touch panel structure provided by an embodiment of the disclosure.
  • the touch panel includes a display area 200 and a non-display area 201.
  • the display area 200 is arranged adjacent to the non-display area 201.
  • the display area 200 is the display touch operation area of the touch panel.
  • the non-display area 201 can be a frame area or other non-display areas. Show the ribbon.
  • the non-display area 201 further includes a frame area 2011 and a bendable area 2012, wherein the frame area 2011 is adjacent to the bendable area 2012, and the frame area 2011 is close to the display area 200 and can be bent
  • the area 2012 is set close to the edge of the touch panel.
  • a bending area is also provided between the frame area 2011 and the bendable area 2012.
  • the frame area 2011 and the bendable area 2012 are bounded by the bending area for bending.
  • the width of the frame area 2011 is H1
  • the width of the bendable area 2012 is H2, preferably, H2>H1 to ensure the bending performance of the touch panel.
  • the display area 200 also includes a touch module 202 and a touch signal line 203.
  • the touch modules 202 may be arranged in an array in the row and column directions in the display area 200, and at the same time, each touch module 202 is connected to a touch signal line 203 correspondingly.
  • the touch module 202 is described by taking a 3 ⁇ 5 as an example, that is, in the display area 200, the touch module 202 has a structure of 5 rows and 3 columns.
  • each touch signal line 203 is electrically connected to the corresponding touch module 202. After the connection with the touch module 202 is completed, the rest of the touch signal line 203 can extend vertically into the non-display area 201 of the touch panel. That is, the other end of the touch signal line 203 extends into the non-display area 201.
  • the touch signal lines 203 connected to the touch module 202 in the corresponding area of the same column may be arranged in parallel with each other and at equal intervals.
  • a touch integration module 206 and a display integration module 205 are also provided in the bendable area 2012 in the non-display area 201.
  • the touch integration module 206 may be provided in two, which are respectively provided in the edge regions on both sides of the touch panel.
  • the touch integration module 206 and the display integration module 205 receive touch and display signals, and transmit them to the inside of the panel.
  • the touch panel further includes a connection module 204.
  • the connection module 204 is arranged in the non-display area 201.
  • connection module 204 includes a straight portion 2041 and a vertical portion 2042.
  • the straight portion 2041 and the vertical portion 2042 are connected to each other.
  • the straight portion 2041 is disposed in the frame area 2011 in the non-display area 201, and the straight portion 2041
  • the edge of the touch panel can be parallel to the bottom frame of the touch panel.
  • the vertical portion 2042 can be parallel to the left and right frames of the touch panel or perpendicular to the bottom frame of the touch panel. Further, the other end of the vertical portion 2042 is electrically connected to the touch integrated module 206. Therefore, a part of the vertical portion 2042 is disposed at In the frame area 2011, another part of the vertical portion 2042 is disposed in the bendable area 2012.
  • the other end of the touch signal line 203 in the same column converges on the corresponding straight portion 2041 and forms a confluence area.
  • the touch module 202 has three rows. After being assembled, a plurality of merging areas are formed, such as a first merging area 207 and a second merging area 208.
  • the touch signal line 203 in the junction area is correspondingly connected with the signal line in the connecting portion 204 to realize signal transmission.
  • the connecting module 204 is similar to an inverted "L" structure.
  • the width of the straight portion 2041 can be gradually reduced to save production costs.
  • the width of different areas is reduced, it is more conducive to the realization of a narrow-frame touch panel, and the reliability of the panel is improved.
  • connection module 204 may also have a “T” shape or other structures to facilitate the connection of the corresponding touch signal line 203 with the connection module 204.
  • the touch signal lines 203 corresponding to the same column can be gathered on the same touch integrated module 204, and can also be gathered on different touch integrated modules 204. As shown in FIG. 2, the touch signal lines in the second column The two touch signal lines 203 of 203 converge on the touch integrated module 204 on the left, and the remaining three touch signal lines 203 converge in the second junction area 208 corresponding to the other touch integrated module 204. Therefore, the arrangement of the touch signal line 203 is more flexible and reasonable.
  • the width of the junction of the touch signal line 203 and the flat portion 2041 is W, and the width W is corresponding to that of the touch signal line 203 connected to the connection module 204 The product of the number and the sum of the distance between two adjacent touch signal lines 203 and the width of the touch signal lines 203.
  • the first merging area 207 is formed by the collection of the touch signal lines 203 at the outermost edge.
  • the width of the merging area corresponding to the first merging area 207 is D, as shown in the figure.
  • the two touch integrated modules 204 can be arranged symmetrically along the center line of the touch panel, so as to simplify the processing technology and improve the production efficiency of the touch panel.
  • FIG. 3 is a schematic structural diagram of another touch panel provided by an embodiment of the disclosure.
  • the touch panel includes a display area 300 and a non-display area 301 adjacent to the display area 300.
  • a plurality of touch modules 302 are arranged in an array in the display area 300, and each touch module 302 is electrically connected to one end of the touch signal line 303, and the other end of the touch signal line 303 extends to the non-display area.
  • each touch module 302 is electrically connected to one end of the touch signal line 303, and the other end of the touch signal line 303 extends to the non-display area.
  • the non-display area 301 also includes two adjacently arranged frame areas 3011 and a bendable area 3012, wherein the width of the bendable area 3012 is greater than the width of the frame area 3011.
  • a touch integration module 306 and a display integration module 305 are also provided in the corresponding bending area 3012 in the non-display area 301.
  • the touch panel further includes a connection module 304, which is electrically connected to the other end of the touch signal line 303, and at the same time, the other end of the connection module 304 is electrically connected to the touch integrated module 306.
  • the connection module 304 includes a vertical portion 3042 and a straight portion 3041, wherein the straight portion 3041 is disposed in the frame area 3011, one end of the vertical portion 3042 is connected to the touch integrated module 306, and the other end is connected to the straight portion 3041.
  • connection module 304 is provided in the corresponding area of each column. Therefore, the touch signal lines 303 in the same column are All are electrically connected to the corresponding connection module 304.
  • the distance between two adjacent vertical portions 3042 may be greater than the width of each touch module 302. In order to prevent the touch signal lines 303 coming out of the touch module 302 from interfering with each other, the reliability of the touch panel is improved.
  • the embodiment of the present disclosure also provides a display device, the display device includes the touch panel provided in the embodiment of the present disclosure, the touch signal lines in the touch panel, the touch module and the connection module are provided in the embodiment of the present disclosure.
  • the structure is set.

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  • General Engineering & Computer Science (AREA)
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Abstract

一种触控面板(100)及显示装置,触控面板(100)包括触控模块(202、302)、触控信号线(203、303)和连接模块(204、304),触控信号线(203、303)的一端与触控模块(202、302)连接,另一端延伸至连接模块(204、304)上,多条触控信号线(203、303)在连接模块(204、304)上汇集并形成不同的汇合区域,不同的汇合区域对应的连接模块(204、304)的宽度不同,从而实现窄边框面板的设计,并降低了生产成本。

Description

触控面板及显示装置 技术领域
本揭示涉及面板显示技术领域,尤其涉及一种触控面板及显示装置。
背景技术
随着显示技术的发展,显示装置已被广泛的应用于各种领域之中。
目前的显示装置主要包括液晶显示器、等离子体显示面板(plasma display panel,PDP)、有机电致发光以及有源矩阵有机电致发光装置等。触控功能已成为多数显示装置的标配之一,其中电容性触控屏应用最为广泛。常见的电容性触控面板的一种重要触控技术是自容式,对应自容式触控面板,其中往往单独采用一个触控感应模块以及每个触控感应模块均对应一天触控信号线,触控信号线在面板的下外围处汇合以形成信号线汇合区。但是,对于现有的上述结构型的触控显示面板,随着触控信号线的增加以及线宽的扩大,当信号线在下外围处汇合后,其汇合处的宽度随之增加,从而导致了显示面板在设计时具有较宽的下边框以及设计空间,从而不利于窄边框型显示面板的设计。
因此需要对现有技术中的问题提出解决方法。
技术问题
综上所述,现有的触控显示面板中,其触控信号线在面板底部汇合后,容易形成较宽的下边框,导致显示面板的下边框较大,不利于窄边框型显示面板的设计。
技术解决方案
为解决上述问题,本揭示提供一种触控面板及显示装置,以解决现有的触控型面板的下边框的宽度较大,触控信号线在下边框处汇合后占据较大的空间,不利于窄边框型显示面板的设计等问题。
为解决上述技术问题,本揭示实施例提供的技术方案如下:
根据本揭示实施例的第一方面,提供了一种触控面板:
所述触控面板包括显示区和与所述显示区相邻的非显示区,其特征在于,包括:
触控模块,所述触控模块阵列设置在所述触控面板对应的显示区内;以及
触控信号线,每条所述触控信号线的一端分别与每个所述触控模块电连接,所述触控信号线的另一端延伸至所述非显示区域内;
其中,所述非显示区内设置有显示集成模块、至少一触控集成模块以及至少一连接模块,所述连接模块与相对应的所述触控集成模块电连接,且所述触控信号线的另一端对应的与所述连接模块电连接;
所述触控集成模块包括第一触控集成模块和第二触控集成模块,且所述第一触控集成模块与第二触控集成模块沿所述触控面板的中线呈对称设置;
同一列内对应的所述触控信号线相互平行且等间距设置。
根据本揭示一实施例,所述非显示区包括边框区和可弯折区,所述边框区与所述可弯折区相邻设置且所述可弯折区靠近所述触控面板的边缘。
根据本揭示一实施例,所述连接模块包括平直部和垂直部,所述平直部设置在所述边框区内,所述垂直部设置在所述可弯折区内,且所述垂直部垂直所述平直部。
根据本揭示一实施例,同一列内相对应的多条所述触控信号线的另一端至少汇集于一汇合区处且与对应的所述平直部电连接,所述垂直部与所述触控集成模块电连接。
根据本揭示一实施例,沿所述平直部与所述垂直部相交的一端向所述平直部的另一端,所述平直部的宽度逐渐减小。
根据本揭示一实施例,相邻两所述垂直部之间的距离大于所述触控模块的宽度。
根据本揭示一实施例,所述平直部上相对应的所述汇合区域处的宽度为对应连接于所述连接模块上的所述触控信号线的条数与相邻两所述触控信号线的间距和所述触控信号线的宽度的和的乘积。
根据本揭示实施例的第二方面,提供了一种触控面板:
所述触控面板包括显示区和与所述显示区相邻的非显示区,其特征在于,包括:
触控模块,所述触控模块阵列设置在所述触控面板对应的显示区内;以及
触控信号线,每条所述触控信号线的一端分别与每个所述触控模块电连接,所述触控信号线的另一端延伸至所述非显示区域内;
其中,所述非显示区内设置有显示集成模块、至少一触控集成模块以及至少一连接模块,所述连接模块与相对应的所述触控集成模块电连接,且所述触控信号线的另一端对应的与所述连接模块电连接。
根据本揭示一实施例,所述非显示区包括边框区和可弯折区,所述边框区与所述可弯折区相邻设置且所述可弯折区靠近所述触控面板的边缘。
根据本揭示一实施例,所述连接模块包括平直部和垂直部,所述平直部设置在所述边框区内,所述垂直部设置在所述可弯折区内,且所述垂直部垂直所述平直部。
根据本揭示一实施例,同一列内相对应的多条所述触控信号线的另一端至少汇集于一汇合区处且与对应的所述平直部电连接,所述垂直部与所述触控集成模块电连接。
根据本揭示一实施例,沿所述平直部与所述垂直部相交的一端向所述平直部的另一端,所述平直部的宽度逐渐减小。
根据本揭示一实施例,相邻两所述垂直部之间的距离大于所述触控模块的宽度。
根据本揭示一实施例,所述平直部上相对应的所述汇合区域处的宽度为对应连接于所述连接模块上的所述触控信号线的条数与相邻两所述触控信号线的间距和所述触控信号线的宽度的和的乘积。
根据本揭示一实施例,同一列内对应的所述触控信号线相互平行且等间距设置。
根据本揭示一实施例,所述触控集成模块包括第一触控集成模块和第二触控集成模块,且所述第一触控集成模块与第二触控集成模块沿所述触控面板的中线呈对称设置。
根据本揭示的第三方面,还提供一种显示装置,显示装置包括:
触控模块,所述触控模块阵列设置在所述触控面板对应的显示区内;以及
触控信号线,每条所述触控信号线的一端分别与每个所述触控模块电连接,所述触控信号线的另一端延伸至所述非显示区域内;
其中,所述非显示区内设置有显示集成模块、至少一触控集成模块以及至少一连接模块,所述连接模块与相对应的所述触控集成模块电连接,且所述触控信号线的另一端对应的与所述连接模块电连接。
根据本揭示一实施例,同一列内对应的所述触控信号线相互平行且等间距设置。
根据本揭示一实施例,所述触控集成模块包括第一触控集成模块和第二触控集成模块,且所述第一触控集成模块与第二触控集成模块沿所述触控面板的中线呈对称设置。
根据本揭示一实施例,所述非显示区包括边框区和可弯折区,所述边框区与所述可弯折区相邻设置且所述可弯折区靠近所述触控面板的边缘。
有益效果
综上所述,本揭示实施例的有益效果为:
本揭示实施例提供一种触控面板及显示装置,通过在触控面板的非显示区域内设置多个触控集成模块,并将显示区域内对应的触控信号线延伸至其相对应的连接模块上,其中,在同一列中,多条触控信号线汇集于一汇合区处,然后接入触控集成模块,从而实现触控信号的传递。在连接时,形成多个触控信号可汇集在多个不同的汇合区域中,每个汇合区域处对应的连接模块的宽度不同,从而改善了触控信号线的走线设计,并实现了触控面板窄边框的设计,降低了生产成本同时提高了显示质量。
附图说明
图1为本揭示实施例中触控面板的结构示意图;
图2为本揭示实施例提供的又一种触控面板结构示意图;
图3为本揭示实施例提供的另一种触控面板的结构示意图。
本发明的最佳实施方式
以下各实施例的说明是参考附加的图式,用以例示本揭示可用以实施的特定实施例。
随着显示装置尺寸的增加,对应的触控信号线会随之增多,进而导致触控信号线汇合区的宽度变宽,最终使得现有的触控显示面板具有较宽的下边框,而无法降低生产成本并实现窄边框面板的设计。
如图1所示,图1为本揭示实施例中触控面板的结构示意图。触控面板100包括显示区域101以及非显示区域102,显示区域101与非显示区域102相邻设置。
其中,显示区域101为触控面板100的显示区域以及触控区域,该区域为触控面板100的正常发光及触控功能区,为了实现触控面板100的触控功能,在显示区域101内设置有多个触控模块,触控模块接收触控指令并传递,以完成面板的触控操作。
本揭示实施例种,触控面板100的非显示区域102的宽度较窄,为窄边框型触控显示面板。
如图2所示,图2为本揭示实施例提供的又一种触控面板结构示意图。触控面板包括显示区域200和非显示区域201,显示区域200与非显示区域201相邻设置,显示区域200为触控面板的显示触控操作区,非显示区域201可为边框区域或者其他非显示功能区。
具体的,本揭示实施例中,非显示区域201还包括边框区2011和可弯折区2012,其中边框区2011与可弯折区2012相邻设置,边框区2011靠近显示区域200,可弯折区2012靠近触控面板的边缘设置。
边框区2011和可弯折区2012之间还设置有弯折区,边框区2011与可弯折区2012以弯折区为界,进行弯折,本揭示实施例中,边框区2011的宽度为H1,可弯折区2012的宽度为H2,优选的,H2>H1,以保证触控面板的弯折性能。
进一步的,在显示区200内还包括触控模块202和触控信号线203。具体的,触控模块202在显示区200内可在行和列的方向上阵列设置,同时,每个触控模块202对应连接一条触控信号线203。
本揭示实施例中,触控模块202以3×5为例进行说明,即在显示区200内,触控模块202为5行3列的结构。
每条触控信号线203的一端与其对应的触控模块202电连接,与触控模块202连接完成后,触控信号线203的其余部分可垂直延伸至触控面板的非显示区域201内,即触控信号线203的另一端延伸至非显示区域201内。
在排布多条触控信号线203时,同一列对应区域内与触控模块202相连接的触控信号线203之间可相互平行并等间隔设置。
具体的,在非显示区域201内的可弯折区2012内还设置有触控集成模块206和显示集成模块205。触控集成模块206可设置为两个,分别设置在触控面板的两侧边缘区域中。触控集成模块206与显示集成模块205接收触控以及显示信号,并将其传递到面板内部。
本揭示实施例中,触控面板还包括连接模块204。连接模块204设置在非显示区域201内。
具体的,连接模块204包括平直部2041和垂直部2042,平直部2041与垂直部2042相互连接,同时,平直部2041设置在非显示区域201内的边框区2011内,平直部2041的边缘可与触控面板的下边框相平行。
垂直部2042可与触控面板的左右边框平行或与触控面板的下边框相垂直,进一步的,垂直部2042的另一端与触控集成模块206电连接,因此,垂直部2042的一部分设置在边框区2011内,垂直部2042的另一部分设置在可弯折区2012内。
优选的,本揭示实施例中,对于连接模块204的平直部2041,同一列中的触控信号线203的另一端在对应的平直部2041上汇集,并形成一汇合区,由于本揭示实施例中,触控模块202为3列,汇集后,会形成多个汇合区,如第一汇合区207和第二汇合区208。汇合区内的触控信号线203对应的与连接部204内的信号线相连接,以实现信号的传递。
本揭示实施例中,连接模块204类似于倒“L”型结构,沿连接模块204的折弯处向平直部2041的一端,平直部2041的宽度可逐渐减小,以节省生产成本,同时,由于不同区域的宽度减小,更有利于窄边框触控面板的实现,提高面板的可靠性。
本揭示实施例中,连接模块204还可为“T”型或者其他结构,以方便对应的触控信号线203与连接模块204相连接。
同一列对应的触控信号线203可汇集于同一个触控集成模块204上,还可汇集于不同的触控集成模块204上,如图2中所示,第二列中的触控信号线203的两条触控信号线203汇集在左侧的触控集成模块204上,其余3条触控信号线203汇集在另一个触控集成模块204对应的第二汇合区208内。从而使得触控信号线203的排布更加灵活、合理。
进一步的,在设置平直部2041时,触控信号线203与平直部2041汇合处的宽度为W,其宽度W为对应连接于所述连接模块204上的所述触控信号线203的条数与相邻两所述触控信号线203的间距和所述触控信号线203的宽度之和的乘积。
具体的,本揭示实施例中,以第一汇合区207为例,第一汇合区207由最边缘处的触控信号线203汇集而形成。第一汇合区207对应的汇合区宽度为D,如图所示。为了达到最佳的平直部2041的设计结构,该汇合区的宽度D=7×(触控信号线203的宽度+相邻两触控信号线的间距),触控信号线203的宽度和相邻两触控信号线的间距为P,即D=7P。通过本揭示实施例中的结构关系,可有效的降低边框区2011的宽度,进而实现窄边框的设计,并降低触控面板的生产成本。
本揭示实施例中,两个触控集成模块204可沿触控面板的中线呈对称设置,以简化加工工艺,提高触控面板的生产效率。
如图3所示,图3为本揭示实施例提供的另一种触控面板的结构示意图。触控面板包括显示区300和与显示区300相邻的非显示区301。
具体的,在显示区300内还阵列设置多个触控模块302,每个触控模块302对应的与触控信号线303的一端电连接,触控信号线303的另一端延伸至非显示区301内。
其中,非显示区301还包括两相邻设置的边框区3011和可弯折区3012,其中,可弯折区3012的宽度大于边框区3011的宽度。
结合图2中触控面板的结构示意图。本揭示实施例中,在非显示区301内的对应的弯折区3012内还设置有触控集成模块306和显示集成模块305。
进一步的,触控面板还包括连接模块304,连接模块304与触控信号线303的另一端电连接,同时,连接模块304的另一端与触控集成模块306电连接。连接模块304包括垂直部3042和平直部3041,其中,平直部3041设置在边框区3011内,垂直部3042的一端与触控集成模块306连接,另一端与平直部3041连接。
本揭示实施例中与图2中的触控面板的不同之处在于,本揭示实施例中,在每列对应区域内,均设置一个连接模块304,因此,同一列中的触控信号线303均与其对应的连接模块304电连接。每一个连接模块304的平直部的形状可相同或不同,这样,可进一步的缩短平直部3041的长度,以有效的节省设计空间以及成本。同时,在最外侧的汇合区的宽度D则变为D=5P。由于每个连接模块304与对应列中的触控信号线303连接,因此,在每个连接模块304上只有一个汇合区。
同时,本揭示实施例中,相邻两垂直部3042之间的距离可大于每个触控模块302的宽度。以防止从触控模块302内走出的触控信号线303之间相互干涉,提高触控面板的可靠性。
进一步的,本揭示实施例还提供一种显示装置,显示装置包括本揭示实施例提供的触控面板,触控面板内的触控信号线以及触控模块和连接模块按照本揭示实施例中提供的结构进行设置。从而实现了窄边框触控面板的设计,并降低了生产成本,同时提高了显示装置的可靠性。
以上对本揭示实施例所提供的一种触控面板及显示装置进行了详细的介绍,以上实施例的说明只是用于帮助理解本揭示的技术方案及其核心思想;本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,而这些修改或者替换,并不使相应技术方案的本质脱离本揭示各实施例的技术方案的范围。

Claims (20)

  1. 一种触控面板,所述触控面板包括显示区和与所述显示区相邻的非显示区,包括:
    触控模块,所述触控模块阵列设置在所述触控面板对应的显示区内;以及
    触控信号线,每条所述触控信号线的一端分别与每个所述触控模块电连接,所述触控信号线的另一端延伸至所述非显示区域内;
    其中,所述非显示区内设置有显示集成模块、至少一触控集成模块以及至少一连接模块,所述连接模块与相对应的所述触控集成模块电连接,且所述触控信号线的另一端对应的与所述连接模块电连接;
    所述触控集成模块包括第一触控集成模块和第二触控集成模块,且所述第一触控集成模块与第二触控集成模块沿所述触控面板的中线呈对称设置;
    同一列内对应的所述触控信号线相互平行且等间距设置。
  2. 根据权利要求1所述的触控面板,其中所述非显示区包括边框区和可弯折区,所述边框区与所述可弯折区相邻设置且所述可弯折区靠近所述触控面板的边缘。
  3. 根据权利要求2所述的触控面板,其中所述连接模块包括平直部和垂直部,所述平直部设置在所述边框区内,所述垂直部设置在所述可弯折区内,且所述垂直部垂直所述平直部。
  4. 根据权利要求3所述的触控面板,其中同一列内相对应的多条所述触控信号线的另一端至少汇集于一汇合区域处且与对应的所述平直部电连接,所述垂直部与所述触控集成模块电连接。
  5. 根据权利要求3所述的触控面板,其中沿所述平直部与所述垂直部相交的一端向所述平直部的另一端,所述平直部的宽度逐渐减小。
  6. 根据权利要求3所述的触控面板,其中相邻两所述垂直部之间的距离大于所述触控模块的宽度。
  7. 根据权利要求4所述的触控面板,其中所述平直部上相对应的所述汇合区域处的宽度为对应连接于所述连接模块上的所述触控信号线的条数与相邻两所述触控信号线的间距和所述触控信号线的宽度之和的乘积。
  8. 一种触控面板,所述触控面板包括显示区和与所述显示区相邻的非显示区,包括:
    触控模块,所述触控模块阵列设置在所述触控面板对应的显示区内;以及
    触控信号线,每条所述触控信号线的一端分别与每个所述触控模块电连接,所述触控信号线的另一端延伸至所述非显示区域内;
    其中,所述非显示区内设置有显示集成模块、至少一触控集成模块以及至少一连接模块,所述连接模块与相对应的所述触控集成模块电连接,且所述触控信号线的另一端对应的与所述连接模块电连接。
  9. 根据权利要求8所述的触控面板,其中所述非显示区包括边框区和可弯折区,所述边框区与所述可弯折区相邻设置且所述可弯折区靠近所述触控面板的边缘。
  10. 根据权利要求9所述的触控面板,其中所述连接模块包括平直部和垂直部,所述平直部设置在所述边框区内,所述垂直部设置在所述可弯折区内,且所述垂直部垂直所述平直部。
  11. 根据权利要求10所述的触控面板,其中同一列内相对应的多条所述触控信号线的另一端至少汇集于一汇合区域处且与对应的所述平直部电连接,所述垂直部与所述触控集成模块电连接。
  12. 根据权利要求10所述的触控面板,其中沿所述平直部与所述垂直部相交的一端向所述平直部的另一端,所述平直部的宽度逐渐减小。
  13. 根据权利要求10所述的触控面板,其中相邻两所述垂直部之间的距离大于所述触控模块的宽度。
  14. 根据权利要求11所述的触控面板,其中所述平直部上相对应的所述汇合区域处的宽度为对应连接于所述连接模块上的所述触控信号线的条数与相邻两所述触控信号线的间距和所述触控信号线的宽度之和的乘积。
  15. 根据权利要求8所述的触控面板,其中同一列内对应的所述触控信号线相互平行且等间距设置。
  16. 根据权利要求8所述的触控面板,其中所述触控集成模块包括第一触控集成模块和第二触控集成模块,且所述第一触控集成模块与第二触控集成模块沿所述触控面板的中线呈对称设置。
  17. 一种显示装置,包括触控面板,所述触控面板包括显示区和与所述显示区相邻的非显示区,所述显示装置包括:
    触控模块,所述触控模块阵列设置在所述触控面板对应的显示区内;以及
    触控信号线,每条所述触控信号线的一端分别与每个所述触控模块电连接,所述触控信号线的另一端延伸至所述非显示区域内;
    其中,所述非显示区内设置有显示集成模块、至少一触控集成模块以及至少一连接模块,所述连接模块与相对应的所述触控集成模块电连接,且所述触控信号线的另一端对应的与所述连接模块电连接。
  18. 根据权利要求17所述的显示装置,其中同一列内对应的所述触控信号线相互平行且等间距设置。
  19. 根据权利要求17所述的显示装置,其中所述触控集成模块包括第一触控集成模块和第二触控集成模块,且所述第一触控集成模块与第二触控集成模块沿所述触控面板的中线呈对称设置。
  20. 根据权利要求17所述的显示装置,其中所述非显示区包括边框区和可弯折区,所述边框区与所述可弯折区相邻设置且所述可弯折区靠近所述触控面板的边缘。
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