WO2020001357A1 - 显示面板及其制作方法、移动终端 - Google Patents

显示面板及其制作方法、移动终端 Download PDF

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Publication number
WO2020001357A1
WO2020001357A1 PCT/CN2019/092036 CN2019092036W WO2020001357A1 WO 2020001357 A1 WO2020001357 A1 WO 2020001357A1 CN 2019092036 W CN2019092036 W CN 2019092036W WO 2020001357 A1 WO2020001357 A1 WO 2020001357A1
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glass layer
organic light
layer
emitting pixel
pixel units
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PCT/CN2019/092036
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English (en)
French (fr)
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黄凯
何宗文
朱华胜
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维沃移动通信有限公司
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Publication of WO2020001357A1 publication Critical patent/WO2020001357A1/zh

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    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • G09F9/30Indicating 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
    • G09F9/33Indicating 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 being semiconductor devices, e.g. diodes
    • 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

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  • the present disclosure relates to the field of display technology, and in particular, to a display panel, a manufacturing method thereof, and a mobile terminal.
  • Narrow bezel design can greatly improve the frontal visual impact of mobile phones. Narrow bezel design, to a large extent, Constrained by the black edges of the display screen, especially the way the display screen goes out, greatly affects the size of the lower black edges.
  • the structure of the Active Matrix / Organic Light Emitting Diode (AMOLED) display itself is shown in Figure 1.
  • the main structure of the AMOLED display module includes the upper polarizer 11, the upper glass 12, and the lower glass 13.
  • the peripheral edges of the upper glass 12 and the lower glass 13 are bonded by the frame glue 14 to form a sealed hollow structure in the middle.
  • the surface of the upper glass 12 is plated with a touch sensing layer 15, and then connected to the mobile phone main control board through a touch flexible circuit board 16 (FPC (Flexible Printed Circuit)) to realize the touch function.
  • the surface of the lower glass 13 is a pixel 17 (RGB) composed of organic light-emitting materials and an inert gas.
  • the outer edge of the pixel is a display layer Indium Tin Oxide (ITO) trace 18, and then the display layer FPC trace 19 and the main The control board is connected to realize the display function.
  • ITO Indium Tin Oxide
  • the total width of the AMOLED display module's exit position is from A (the edge of the display to the edge of the upper glass) + B (the edge of the upper glass to the edge of the lower glass) + C (the edge of the lower glass to the outer edge of the FPC display) + D (From the outside of the FPC to the outside of the touch FPC bend) Accumulate the composition.
  • the total width of the AMOLED display module outlet position will be larger, which will cause the lower black border of the mobile phone to be larger, reducing the screen ratio of the mobile phone. .
  • the embodiments of the present disclosure provide a display panel, a manufacturing method thereof, and a mobile terminal to solve the related art because the touch sensing layer and the display layer ITO wiring are independently set, which causes the total width of the display module outlet position to be large. As a result, the lower black border of the mobile terminal is large, and there is a problem that the screen ratio of the mobile terminal is reduced.
  • an embodiment of the present disclosure provides a display panel, including:
  • a first glass layer, a plurality of organic light emitting pixel units are disposed on a first region of a first surface of the first glass layer, and a touch sensing layer is laid on the plurality of organic light emitting pixel units, the first glass
  • the second area of the first side of the layer is further provided with a connection trace, and the connection trace is respectively connected to the plurality of organic light emitting pixel units and the touch sensing layer, wherein the first area and all The second area is arranged adjacently;
  • a second glass layer, the second glass layer is opposite to the first glass layer, and a closed space is formed between the second glass layer and the first glass layer by a rubber frame, and the plurality of An organic light emitting pixel unit and the touch sensing layer are located in the closed space;
  • a polarizer is disposed on a side of the second glass layer facing away from the first glass layer.
  • An embodiment of the present disclosure further provides a method for manufacturing a display panel, including:
  • connection trace connected to the plurality of organic light emitting pixel units and the touch sensing layer on a first surface of the first glass layer
  • the plurality of organic light emitting pixel units are disposed on a first region of the first surface of the first glass layer, and the connection trace is disposed on a second region of the first surface of the first glass layer.
  • the first region and the second region are disposed adjacent to each other, and a closed space is formed between the second glass layer and the first glass layer by a plastic frame.
  • the plurality of organic light emitting pixel units and The touch sensing layer is located in the closed space.
  • An embodiment of the present disclosure further provides a mobile terminal including the above display panel.
  • connection traces of the organic light-emitting pixel unit and the touch-sensing layer together, and using the connection traces to connect the organic light-emitting pixel unit and the touch-sensing layer to the motherboard, it is possible to reduce the position of the display panel wiring.
  • the overall width further reduces the lower black border of the mobile terminal, and increases the screen ratio of the mobile terminal.
  • FIG. 1 is a schematic diagram showing the main structure of an AMOLED display module in the related art
  • FIG. 2 is a schematic structural diagram of a display panel according to an embodiment of the present disclosure
  • FIG. 3 is a schematic flowchart of a method for manufacturing a display panel according to an embodiment of the present disclosure
  • FIG. 4 is a schematic structural diagram of a first glass layer after the organic light-emitting pixel unit is manufactured
  • FIG. 5 is a schematic structural diagram of a first glass layer after the touch sensing layer is manufactured
  • FIG. 6 is a schematic structural diagram of a first glass layer after connection wiring is manufactured
  • FIG. 7 is a schematic structural diagram of the second glass layer after being connected to the first glass layer.
  • the present disclosure is directed to the fact that the ITO routing of the touch sensing layer and the display layer is independently set in the related technology, which causes the total width of the display module outlet position to be large, which causes the lower black edge of the mobile terminal to be large, and reduces the screen of the mobile terminal.
  • a display panel, a manufacturing method thereof, and a mobile terminal are provided.
  • an embodiment of the present disclosure provides a display panel including:
  • a first glass layer 100, a plurality of organic light emitting pixel units 101 are disposed on a first area of a first surface of the first glass layer 100, and a touch sensing layer 102 is laid on the plurality of organic light emitting pixel units 101,
  • the second area of the first surface of the first glass layer 100 is further provided with a connection trace 103, and the connection trace 103 is respectively connected to the plurality of organic light emitting pixel units 101 and the touch sensing layer 102.
  • the first region and the second region are disposed adjacent to each other;
  • the second glass layer 200 is disposed opposite to the first glass layer 100, and the second glass layer 200 and the first glass layer 100 are sealed by a plastic frame 300 to form a seal. Space, the plurality of organic light emitting pixel units 101 and the touch sensing layer 102 are located in the closed space;
  • a polarizer 210 is disposed on a side of the second glass layer 200 facing away from the first glass layer 100.
  • a plurality of organic light emitting pixel units 101 and a touch sensing layer 102 are all disposed on the first glass layer 100, and the same connection wiring 103 is used to connect the two with the motherboard.
  • This can avoid the problem that the connection traces are set in different glass layers, causing the total width of the display panel outlet position to be large. In this way, the total width of the display panel outlet position is reduced.
  • the first glass layer 100 and the second glass layer 200 are disposed in parallel.
  • the planar area is smaller than the planar area of the first glass layer 100, and the planar area of the second glass layer 200 is larger than the planar area occupied by the plurality of organic light emitting pixel units 101 on the first glass layer 100 to ensure that The second glass layer 200 can completely cover the plurality of organic light emitting pixel units 101.
  • the second glass layer 200 When the second glass layer 200 is set, in order to ensure that the plurality of organic light emitting pixel units 101 can be sealed, the second glass layer 200 is Outside the first area occupied by the organic light-emitting pixel unit 101, a second glass layer 200 is also covered in a preset range around the first area, and a second glass layer is formed around the first area by the plastic frame 300
  • the connection between 200 and the first glass layer 100 can ensure that the organic light emitting pixel unit 101 is not covered by the plastic frame 300 during the connection, and that the display function of the display panel is not affected.
  • the second region is disposed between one of the edges of the first glass layer 100 and the first region, that is, the second region where the connection wiring 103 is disposed is located in the first region.
  • the plastic frame 300 is used to connect the second glass layer 200 and the first glass layer 100, A plastic frame 300 located between one edge of the first surface of the first glass layer 100 and an area provided by the plurality of organic light-emitting pixel units 101 is disposed on the connection line 103.
  • the connection trace 103 is a time-division multiplexed or parallel indium tin oxide (ITO) trace for touch and display.
  • the area of the polarizer 210 is substantially equal to the area of the second glass layer 200 minus the area of the second glass layer 200 occupied by the plastic frame 300.
  • a flexible circuit board 400 is used to implement the connection between the two.
  • the flexible circuit board 400 is formed by the first glass layer 100. One side is bent to a side facing away from the first side of the first glass layer 100.
  • the first glass layer 100 is the lower glass of the display panel
  • the second glass layer is the upper glass of the display panel
  • the touch is flexible.
  • the circuit board is shared with the display flexible circuit board to realize display and touch functions, so that the total width of the display panel outlet position is: A + B + C, which is reduced compared with the total width of the display panel outlet position in FIG. 1
  • the width of D is reduced, thereby reducing the total width of the display panel outlet position.
  • an embodiment of the present disclosure further provides a method for manufacturing the display panel, including:
  • Step 301 fabricating a plurality of organic light emitting pixel units 101 on the first surface of the first glass layer 100;
  • the organic light-emitting pixel unit 101 (referring to RGB pixel points) has a plurality of, and has a predetermined regular distribution in a specific area of the first glass layer 100. After step 301 is performed, the first glass The specific structure of the layer 100 is shown in FIG. 4.
  • Step 302 fabricate a touch sensing layer 102 on the organic light emitting pixel unit 101;
  • the touch sensing layer 102 is plated on the upper surface of the organic light-emitting pixel unit 101.
  • the yellow light process is mainly used to fabricate the touch sensing layer 102, specifically, in organic light-emitting.
  • a base material for manufacturing the touch sensing layer 102 is disposed above the pixel unit 101, and then the touch sensing layer 102 is manufactured through processes such as exposure, development, and etching. After step 302 is performed, the specific structure of the first glass layer 100 is shown in FIG. 5.
  • the plurality of organic light-emitting pixel units are disposed on a first region of the first surface of the first glass layer, and the connection wiring is disposed on the first surface of the first glass layer.
  • the first region and the second region are disposed adjacent to each other.
  • a connection trace 103 is formed on the first surface of the first glass layer 100 to connect the organic light emitting pixel units 101 and the touch sensing layer 102.
  • connection trace 103 is plated on the first surface of the first glass layer 100, and the connection trace 103 is connected to a plurality of organic light emitting pixel units 101 and the touch sensing layer 102.
  • the connection trace 103 is a time-division multiplexed or parallel ITO trace for touch and display.
  • Step 304 Connect the second glass layer 200 and the first glass layer 100 through the plastic frame 300.
  • a closed space is formed between the second glass layer 200 and the first glass layer 100 by a plastic frame 300, and the plurality of organic light emitting pixel units 101 and the touch sensing layer 102 are located in the closed space. In space.
  • a polarizer 210 is attached to a side of the second glass layer 200 facing away from the first glass layer 100.
  • step 303 the method further includes:
  • the flexible circuit board 400 is electrically connected to the connection wiring 103, and the flexible circuit board 400 is bent from the first surface of the first glass layer 100 to a distance from the first surface of the first glass layer 100. One side.
  • the touch-sensitive layer is plated on the surface of the organic light-emitting pixel unit on the lower glass, and the time-division multiplexing of touch and display or parallel ITO traces are plated on the periphery of the organic light-emitting pixel unit and the touch-sensitive layer, so that The touch and display share the flexible circuit board, which saves the use of the flexible circuit board and reduces the total width of the display panel outlet position.
  • An embodiment of the present disclosure further provides a mobile terminal including the above display panel.
  • the mobile terminal provided with the display panel reduces the lower black edge of the mobile terminal and increases the screen ratio of the mobile terminal.
  • the mobile terminal includes, but is not limited to, a mobile phone, a tablet computer, a notebook computer, a palmtop computer, a car terminal, a wearable device, a pedometer, and the like.

Abstract

一种显示面板及其制作方法、移动终端。显示面板包括:第一玻璃层(100),第一玻璃层(100)的第一面的第一区域上设置有多个有机发光像素单元(101),多个有机发光像素单元(101)上铺设有触控感应层(102),第一玻璃层(100)的第一面的第二区域上还设置有连接走线(103),连接走线(103)分别与多个有机发光像素单元(101)和触控感应层(102)连接;第二玻璃层(200),第二玻璃层(200)与第一玻璃层(100)相对设置,且第二玻璃层(200)与第一玻璃层(100)之间通过胶框(300)密封形成一封闭空间,多个有机发光像素单元(101)和触控感应层(102)位于封闭空间中;偏光片(210),偏光片(210)设置在第二玻璃层(200)背离第一玻璃层(100)的一侧。

Description

显示面板及其制作方法、移动终端
相关申请的交叉引用
本申请主张在2018年6月27日在中国提交的中国专利申请号No.201810678877.4的优先权,其全部内容通过引用包含于此。
技术领域
本公开涉及显示技术领域,特别涉及一种显示面板及其制作方法、移动终端。
背景技术
随着手机行业的快速发展,人们对手机的依赖性也越来越高,对其外观也越来越关注,窄边框设计可大幅提高手机正面视觉冲击力,而窄边框设计,很大程度上受制于显示屏幕的自身黑边,特别是显示屏的出线方式,很大程度影响了其下黑边的大小。
有源矩阵/有机发光二极管(Active Matrix/Organic Light Emitting Diode,AMOLED)显示屏本身的结构如图1所示,AMOLED显示模组主要结构包括最上层偏光片11、上层玻璃12和下层玻璃13,上层玻璃12和下层玻璃13的四周边缘由框胶14粘合,形成中间的密封空心结构。上层玻璃12表面镀有触控感应层15,再通过触控柔性线路板16(FPC(Flexible Printed Circuit))与手机主控制板连接,来实现触控功能。下层玻璃13表面是有机发光材料组成的像素点17(RGB)和惰性气体,像素外边缘是显示层氧化铟锡(Indium Tin Oxide,ITO)走线18,再通过显示层FPC走线19与主控制板连接,来实现显示功能。
由图1可知,AMOLED显示模组出线位置的总宽度由A(显示边缘到上层玻璃边缘)+B(上层玻璃边缘到下层玻璃边缘)+C(下层玻璃边缘到显示FPC弯折外边)+D(显示FPC外边到触控FPC弯折外边)累加构成。
由此可知,由于独立进行触控感应层和显示层ITO走线的设置,会造成AMOLED显示模组出线位置的总宽度较大,造成手机的下黑边较大,降低了 手机的屏占比。
发明内容
本公开实施例提供一种显示面板及其制作方法、移动终端,以解决相关技术中由于独立进行触控感应层和显示层ITO走线的设置,导致显示模组出线位置的总宽度较大,造成移动终端的下黑边较大,存在降低移动终端的屏占比的问题。
为了解决上述技术问题,本公开实施例提供一种显示面板,包括:
第一玻璃层,所述第一玻璃层的第一面的第一区域上设置有多个有机发光像素单元,所述多个有机发光像素单元上铺设有触控感应层,所述第一玻璃层的第一面的第二区域上还设置有连接走线,所述连接走线分别与所述多个有机发光像素单元和所述触控感应层连接,其中,所述第一区域和所述第二区域相邻设置;
第二玻璃层,所述第二玻璃层与所述第一玻璃层相对设置,且所述第二玻璃层与所述第一玻璃层之间通过胶框密封形成一封闭空间,所述多个有机发光像素单元和所述触控感应层位于所述封闭空间中;
偏光片,所述偏光片设置在所述第二玻璃层背离所述第一玻璃层的一侧。
本公开实施例还提供一种显示面板的制作方法,包括:
在第一玻璃层的第一面上制作多个有机发光像素单元;
在所述有机发光像素单元上制作触控感应层;
在所述第一玻璃层的第一面上制作与所述多个有机发光像素单元和所述触控感应层连接的连接走线;
通过框胶将第二玻璃层与所述第一玻璃层连接;
在所述第二玻璃层背离所述第一玻璃层的一侧贴合偏光片;
其中,所述多个有机发光像素单元设置在所述第一玻璃层的第一面的第一区域上,所述连接走线设置在所述第一玻璃层的第一面的第二区域上,所述第一区域和所述第二区域相邻设置,所述第二玻璃层与所述第一玻璃层之间通过胶框密封形成一封闭空间,所述多个有机发光像素单元和所述触控感应层位于所述封闭空间中。
本公开实施例还提供一种移动终端,包括上述的显示面板。
本公开的有益效果是:
上述方案,通过将有机发光像素单元和触控感应层的连接走线设置在一起,利用该连接走线进行有机发光像素单元和触控感应层与主板的连接,可以减小显示面板出线位置的总宽度,进而减小了移动终端的下黑边,提高了移动终端的屏占比。
附图说明
图1表示相关技术中AMOLED显示模组主要结构示意图;
图2表示本公开实施例提供的显示面板的结构示意图;
图3表示本公开实施例提供的显示面板的制作方法的流程示意图;
图4表示进行有机发光像素单元制作后,第一玻璃层的结构示意图;
图5表示进行触控感应层制作后,第一玻璃层的结构示意图;
图6表示进行连接走线的制作后,第一玻璃层的结构示意图;
图7表示第二玻璃层与第一玻璃层连接后的结构示意图。
具体实施方式
为使本公开的目的、技术方案和优点更加清楚,下面将结合附图及具体实施例对本公开进行详细描述。
本公开针对相关技术中由于独立进行触控感应层和显示层ITO走线的设置,导致显示模组出线位置的总宽度较大,造成移动终端的下黑边较大,存在降低移动终端的屏占比的问题,提供一种显示面板及其制作方法、移动终端。
如图2所示,本公开实施例提供一种显示面板,包括:
第一玻璃层100,所述第一玻璃层100的第一面的第一区域上设置有多个有机发光像素单元101,所述多个有机发光像素单元101上铺设有触控感应层102,所述第一玻璃层100的第一面的第二区域上还设置有连接走线103,所述连接走线103分别与所述多个有机发光像素单元101和所述触控感应层102连接,其中,所述第一区域和所述第二区域相邻设置;
第二玻璃层200,所述第二玻璃层200与所述第一玻璃层100相对设置,且所述第二玻璃层200与所述第一玻璃层100之间通过胶框300密封形成一封闭空间,所述多个有机发光像素单元101和所述触控感应层102位于所述封闭空间中;
偏光片210,所述偏光片210设置在所述第二玻璃层200背离所述第一玻璃层100的一侧。
需要说明的是,本公开实施例中,将多个有机发光像素单元101和触控感应层102均设置在第一玻璃层100上,且采用相同的连接走线103进行二者与主板的连接,可以避免将连接走线设置在不同的玻璃层,造成显示面板出线位置的总宽度较大的问题,此种方式,减小了显示面板出线位置的总宽度。
需要说明的是,通过在第一玻璃层100的上表面设置第二玻璃层200,其中,所述第一玻璃层100和所述第二玻璃层200平行设置,所述第二玻璃层200的平面面积小于所述第一玻璃层100的平面面积、且所述第二玻璃层200的平面面积大于所述第一玻璃层100上所述多个有机发光像素单元101占用的平面面积,以保证第二玻璃层200可以完全覆盖所述多个有机发光像素单元101,在进行第二玻璃层200的设置时,为了保证能进行多个有机发光像素单元101的密封,第二玻璃层200除了正对有机发光像素单元101所占的第一区域外,在第一区域的四周的预设范围内也均有第二玻璃层200覆盖,利用胶框300在第一区域的四周进行第二玻璃层200与第一玻璃层100的连接,可以保证在连接时,有机发光像素单元101不受胶框300的覆盖,保证显示面板的显示功能不受影响。
具体地,因本公开实施例的所述第二区域设置在所述第一玻璃层100的其中一边缘与所述第一区域之间,即设置连接走线103的第二区域位于所述第一玻璃层100的第一面的其中一边缘与设置所述多个有机发光像素单元101的第一区域之间,因此在利用胶框300连接第二玻璃层200与第一玻璃层100时,位于第一玻璃层100的第一面的其中一边缘与所述多个有机发光像素单元101所设置区域之间的胶框300是设置在连接走线103之上的。该连接走线103为触控与显示的分时复用或并行的氧化铟锡(Indium Tin Oxide, ITO)走线。
具体地,所述偏光片210的面积大致等于第二玻璃层200面积减去胶框300占用的所述第二玻璃层200的面积。
进一步地,为了保证连接走线103与主板的顺利连接,本公开实施例中,采用柔性线路板400实现二者连接,具体地,所述柔性线路板400由所述第一玻璃层100的第一面弯折到背离所述第一玻璃层100的第一面的一侧。
需要说明的是,本公开实施例中的第一玻璃层100即显示面板的下层玻璃,第二玻璃层即显示面板的上层玻璃。
由本公开实施例可知,通过将多个有机发光像素单元101和触控感应层102均设置在第一玻璃层100上,且采用相同的连接走线103进行二者与主板的连接,触控柔性线路板与显示柔性线路板共用,来实现显示与触控功能,使得显示面板出线位置的总宽度构成为:A+B+C,与图1中的显示面板出线位置的总宽度相比,减少了D的宽度,以此减小了显示面板出线位置的总宽度。
进一步如图3所示,本公开实施例还提供一种上述的显示面板的制作方法,包括:
步骤301,在第一玻璃层100的第一面上制作多个有机发光像素单元101;
需要说明的是,该有机发光像素单元101(指的是RGB像素点)具有多个,且具有预设规则的分布在第一玻璃层100的特定区域,在执行完步骤301后,第一玻璃层100的具体结构如图4所示。
步骤302,在所述有机发光像素单元101上制作触控感应层102;
需要说明的是,此步骤是将触控感应层102镀在有机发光像素单元101的上表面,此处主要采用的是黄光工艺的方式进行触控感应层102的制作,具体为在有机发光像素单元101上方设置制作触控感应层102的基材,然后通过曝光、显影、蚀刻等工艺流程制作得到触控感应层102。在执行完步骤302后,第一玻璃层100的具体结构如图5所示。
还需要说明的是,所述多个有机发光像素单元设置在所述第一玻璃层的第一面的第一区域上,所述连接走线设置在所述第一玻璃层的第一面的第二区域上,所述第一区域和所述第二区域相邻设置。
步骤303,在所述第一玻璃层100的第一面上制作与所述多个有机发光像素单元101和所述触控感应层102连接的连接走线103。
需要说明的是,此步骤是在第一玻璃层100的第一面镀上连接走线103,该连接走线103与多个有机发光像素单元101和所述触控感应层102均连接,该连接走线103为触控与显示的分时复用或并行的ITO走线。在执行完步骤303后,第一玻璃层100的具体结构如图6所示。
步骤304,通过胶框300将第二玻璃层200与所述第一玻璃层100连接;
其中,所述第二玻璃层200与所述第一玻璃层100之间通过胶框300密封形成一封闭空间,所述多个有机发光像素单元101和所述触控感应层102位于所述封闭空间中。
步骤305,在所述第二玻璃层200背离所述第一玻璃层100的一侧贴合偏光片210。
在执行完此过程后,第二玻璃层200与第一玻璃层100连接后的结构如图7所示。
进一步,在步骤303之后,还包括:
将柔性线路板400与所述连接走线103进行电连接,并将柔性线路板400由所述第一玻璃层100的第一面弯折到背离所述第一玻璃层100的第一面的一侧。
通过将触控感应层镀在下层玻璃上的有机发光像素单元表面,并在有机发光像素单元和触控感应层外围,镀上触控与显示的分时复用或并行的ITO走线,使得触控与显示共用柔性线路板,节省了柔性线路板的使用,同时减小了显示面板出线位置的总宽度。
本公开实施例还提供一种移动终端,包括上述的显示面板。
需要说明的是,设置有该显示面板的移动终端,减小了移动终端的下黑边,提高了移动终端的屏占比。
需要说明的是,该移动终端包括但不限于手机、平板电脑、笔记本电脑、掌上电脑、车载终端、可穿戴设备以及计步器等。
以上所述的是本公开的可选实施方式,应当指出对于本技术领域的普通人员来说,在不脱离本公开所述的原理前提下还可以作出若干改进和润饰, 这些改进和润饰也在本公开的保护范围内。

Claims (6)

  1. 一种显示面板,包括:
    第一玻璃层,所述第一玻璃层的第一面的第一区域上设置有多个有机发光像素单元,所述多个有机发光像素单元上铺设有触控感应层,所述第一玻璃层的第一面的第二区域上还设置有连接走线,所述连接走线分别与所述多个有机发光像素单元和所述触控感应层连接,其中,所述第一区域和所述第二区域相邻设置;
    第二玻璃层,所述第二玻璃层与所述第一玻璃层相对设置,且所述第二玻璃层与所述第一玻璃层之间通过胶框密封形成一封闭空间,所述多个有机发光像素单元和所述触控感应层位于所述封闭空间中;
    偏光片,所述偏光片设置在所述第二玻璃层背离所述第一玻璃层的一侧。
  2. 根据权利要求1所述的显示面板,还包括:
    与所述连接走线电连接的柔性线路板,所述柔性线路板由所述第一玻璃层的第一面弯折到背离所述第一玻璃层的第一面的一侧。
  3. 根据权利要求1所述的显示面板,其中,所述第二区域设置在所述第一玻璃层的其中一边缘与所述第一区域之间。
  4. 一种显示面板的制作方法,包括:
    在第一玻璃层的第一面上制作多个有机发光像素单元;
    在所述有机发光像素单元上制作触控感应层;
    在所述第一玻璃层的第一面上制作与所述多个有机发光像素单元和所述触控感应层连接的连接走线;
    通过框胶将第二玻璃层与所述第一玻璃层连接;
    在所述第二玻璃层背离所述第一玻璃层的一侧贴合偏光片;
    其中,所述多个有机发光像素单元设置在所述第一玻璃层的第一面的第一区域上,所述连接走线设置在所述第一玻璃层的第一面的第二区域上,所述第一区域和所述第二区域相邻设置,所述第二玻璃层与所述第一玻璃层之间通过胶框密封形成一封闭空间,所述多个有机发光像素单元和所述触控感应层位于所述封闭空间中。
  5. 根据权利要求4所述的显示面板的制作方法,在所述第一玻璃层的第一面上制作与所述多个有机发光像素单元和所述触控感应层连接的连接走线的步骤之后,还包括:
    将柔性线路板与所述连接走线进行电连接,并将柔性线路板由所述第一玻璃层的第一面弯折到背离所述第一玻璃层的第一面的一侧。
  6. 一种移动终端,包括如权利要求1至3任一项所述的显示面板。
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