WO2023108736A1 - 触控显示面板及显示装置 - Google Patents

触控显示面板及显示装置 Download PDF

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Publication number
WO2023108736A1
WO2023108736A1 PCT/CN2021/140228 CN2021140228W WO2023108736A1 WO 2023108736 A1 WO2023108736 A1 WO 2023108736A1 CN 2021140228 W CN2021140228 W CN 2021140228W WO 2023108736 A1 WO2023108736 A1 WO 2023108736A1
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WO
WIPO (PCT)
Prior art keywords
wiring
sub
subsection
adjacent
touch
Prior art date
Application number
PCT/CN2021/140228
Other languages
English (en)
French (fr)
Inventor
方亮
丁玎
Original Assignee
武汉华星光电半导体显示技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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 US17/623,219 priority Critical patent/US12026336B2/en
Publication of WO2023108736A1 publication Critical patent/WO2023108736A1/zh

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Classifications

    • 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
    • G06F3/0416Control or interface arrangements specially adapted for digitisers
    • G06F3/04164Connections between sensors and controllers, e.g. routing lines between electrodes and connection pads
    • 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
    • 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
    • G06F3/0416Control or interface arrangements specially adapted for digitisers
    • G06F3/0418Control or interface arrangements specially adapted for digitisers for error correction or compensation, e.g. based on parallax, calibration or alignment
    • 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
    • G06F3/044Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means
    • G06F3/0443Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means using a single layer of sensing electrodes
    • 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
    • G06F3/044Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means
    • G06F3/0445Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means using two or more layers of sensing electrodes, e.g. using two layers of electrodes separated by a dielectric layer
    • 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
    • G06F3/044Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means
    • G06F3/0446Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means by capacitive means using a grid-like structure of electrodes in at least two directions, e.g. using row and column electrodes

Definitions

  • the present application relates to the field of display technology, in particular to a touch display panel and a display device having the touch display panel.
  • touch display technology has gradually pervaded people's lives.
  • capacitive touch display panels have the advantages of long life, high light transmittance, and support for multi-touch, and have become a hot spot in touch display technology. .
  • Capacitive touch display panels can be classified into self-capacitive touch display panels and mutual-capacitive touch display panels.
  • the way of setting the lead includes setting the metal grid structure on the same layer as the electrode, and then breaking the metal grid structure horizontally and vertically to form horizontal leads and vertical leads. , and each lead wire is electrically connected to each electrode.
  • the interrupting method of the metal grid structure in the related art is too simple, resulting in obvious pattern differences between the formed horizontal leads and the vertical leads.
  • the horizontal dividing line is a vertical line, and the horizontal dividing line is a horizontal line. The difference in display brightness between the two is obvious, and uneven display is likely to occur.
  • Embodiments of the present application provide a touch display panel and a display device, which can reduce the pattern difference between the touch traces arranged along the first direction and the touch traces arranged along the second direction, and improve display unevenness The phenomenon.
  • An embodiment of the present application provides a touch display panel, including a display area and a non-display area, and the touch display panel further includes:
  • a light emitting layer disposed on one side of the substrate and including a plurality of light emitting pixels disposed in the display area;
  • the touch layer includes a plurality of touch electrodes arranged in the display area, and a plurality of touch traces arranged corresponding to the touch electrodes;
  • the touch trace includes a first subsection arranged along a first direction and a second subsection arranged along a second direction, and the first direction is different from the second direction;
  • the first sub-section includes: a plurality of first wiring sub-sections arranged along the first direction and on one side of the light-emitting pixel, and a plurality of first wiring sub-sections connected to adjacent first wiring sub-sections.
  • a connection sub-section, the widths of the two first connection sub-sections connected to one of the first wiring sub-sections are different, and/or, the width between two adjacent first wiring sub-sections The widths of the two connected first connecting subsections are different;
  • the second sub-section includes: a plurality of second wiring sub-sections arranged along the second direction and on one side of the light-emitting pixel, and a plurality of first wiring sub-sections connected to adjacent second wiring sub-sections.
  • Two connection sub-sections, the widths of the two second connection sub-sections connected to one second wiring sub-section are different, and/or, the width between two adjacent second wiring sub-sections The widths of the two connected second connecting sub-parts are different.
  • the first wiring subsection in one of the first subsections is connected to the other first subsection.
  • the adjacent first wiring subsections are arranged around the same light-emitting pixel, and the first connection subsection in one of the first subsections is connected to the adjacent one of the other first subsections.
  • the widths of the first connecting subparts are different;
  • the first wiring subsection in one of the first subsections is provided with at least two second wiring subsections in the direction of the adjacent first wiring subsection in the other first subsection.
  • a protruding structure, the widths of adjacent two first protruding structures are different.
  • the lengths of the two first protrusion structures connected to the same side of a first trace sub-section are different.
  • the length of one of the first protruding structures connected to one of the first wiring sub-sections is the same as that of the other first wiring sub-section connected to and arranged opposite to each other.
  • the lengths of the first protruding structures are different.
  • the first wiring subsection in one of the first subsections is connected to the other first subsection.
  • the widths of adjacent first wiring subsections are the same.
  • the second routing subsection in one of the second subsections is connected to the other second subsection.
  • the adjacent second wiring subsections are arranged around the same light-emitting pixel, and the second connection subsection in one of the second subsections is connected to the adjacent second wiring subsection in the other second subsection.
  • the widths of the second connecting subparts are different;
  • the second wiring subsection in one of the second subsections is provided with at least two second wiring subsections in the direction of the adjacent second wiring subsection in the other second subsection.
  • the widths of adjacent two second raised structures are different.
  • the lengths of the two second protruding structures connected to the same side of a second wiring sub-section are different.
  • the length of one of the second raised structures connected to one of the second routing sub-sections is the same as the length of the second protrusion structure connected to the other second routing sub-section and arranged oppositely.
  • the lengths of one of the second protruding structures are different.
  • the second routing subsection in one of the second subsections is connected to the other second subsection.
  • the widths of the adjacent second wiring subsections are the same.
  • the plurality of touch traces include: a first touch trace, a second touch trace, and a third touch trace that are sequentially adjacent;
  • the first wiring sub-section in the second touch wiring and the adjacent first wiring sub-section in the first touch wiring are arranged around the same light-emitting pixel, and the The first wiring sub-section in the second touch wiring is provided with at least two first protrusion structures in the direction of the adjacent first wiring sub-section in the third touch wiring. ;
  • the second wiring sub-section in the second touch wiring and the adjacent second wiring sub-section in the first touch wiring are arranged around the same light-emitting pixel, and the The second wiring sub-section in the second touch wiring is provided with at least two second protrusion structures in the direction of the adjacent second wiring sub-section in the third touch wiring. .
  • a display device includes a touch display panel, the touch display panel includes a display area and a non-display area, and the touch display panel further includes:
  • a light emitting layer disposed on one side of the substrate and including a plurality of light emitting pixels disposed in the display area;
  • the touch layer includes a plurality of touch electrodes arranged in the display area, and a plurality of touch traces arranged corresponding to the touch electrodes;
  • the touch trace includes a first subsection arranged along a first direction and a second subsection arranged along a second direction, and the first direction is different from the second direction;
  • the first sub-section includes: a plurality of first wiring sub-sections arranged along the first direction and on one side of the light-emitting pixel, and a plurality of first wiring sub-sections connected to adjacent first wiring sub-sections.
  • a connection sub-section, the widths of the two first connection sub-sections connected to one of the first wiring sub-sections are different, and/or, the width between two adjacent first wiring sub-sections The widths of the two connected first connecting subsections are different;
  • the second sub-section includes: a plurality of second wiring sub-sections arranged along the second direction and on one side of the light-emitting pixel, and a plurality of first wiring sub-sections connected to adjacent second wiring sub-sections.
  • Two connection sub-sections, the widths of the two second connection sub-sections connected to one second wiring sub-section are different, and/or, the width between two adjacent second wiring sub-sections The widths of the two connected second connecting sub-parts are different.
  • the first wiring subsection in one of the first subsections is connected to the other first subsection.
  • the adjacent first wiring subsections are arranged around the same light-emitting pixel, and the first connection subsection in one of the first subsections is connected to the adjacent one of the other first subsections.
  • the widths of the first connecting subparts are different;
  • the first wiring subsection in one of the first subsections is provided with at least two second wiring subsections in the direction of the adjacent first wiring subsection in the other first subsection.
  • a protruding structure, the widths of adjacent two first protruding structures are different.
  • the lengths of the two first protrusion structures connected to the same side of a first trace sub-section are different.
  • the length of one of the first protruding structures connected to one of the first wiring sub-sections is the same as that of the other first wiring sub-section connected to and arranged opposite to each other.
  • the lengths of the first protruding structures are different.
  • the first wiring subsection in one of the first subsections is connected to the other first subsection.
  • the widths of adjacent first wiring subsections are the same.
  • the second routing subsection in one of the second subsections is connected to the other second subsection.
  • the adjacent second wiring subsections are arranged around the same light-emitting pixel, and the second connection subsection in one of the second subsections is connected to the adjacent second wiring subsection in the other second subsection.
  • the widths of the second connecting subparts are different;
  • the second wiring subsection in one of the second subsections is provided with at least two second wiring subsections in the direction of the adjacent second wiring subsection in the other second subsection.
  • the widths of adjacent two second raised structures are different.
  • the lengths of the two second protruding structures connected to the same side of a second wiring sub-section are different.
  • the length of one of the second raised structures connected to one of the second routing sub-sections is the same as the length of the second protrusion structure connected to the other second routing sub-section and arranged oppositely.
  • the lengths of one of the second protruding structures are different.
  • the second routing subsection in one of the second subsections is connected to the other second subsection.
  • the widths of the adjacent second wiring subsections are the same.
  • the plurality of touch traces include: a first touch trace, a second touch trace, and a third touch trace that are sequentially adjacent;
  • the first wiring sub-section in the second touch wiring and the adjacent first wiring sub-section in the first touch wiring are arranged around the same light-emitting pixel, and the The first wiring sub-section in the second touch wiring is provided with at least two first protrusion structures in the direction of the adjacent first wiring sub-section in the third touch wiring. ;
  • the second wiring sub-section in the second touch wiring and the adjacent second wiring sub-section in the first touch wiring are arranged around the same light-emitting pixel, and the The second wiring sub-section in the second touch wiring is provided with at least two second protrusion structures in the direction of the adjacent second wiring sub-section in the third touch wiring. .
  • the present application sets the widths of two first connection subsections connected to a first wiring subsection to be different in the first subsection, and/or, sets two adjacent The widths of the two connected first connection subsections between the first wiring subsections are set to be different; and the width of the two second connection subsections connected with a second wiring subsection in the second subsection
  • the widths are different, and/or, the widths of the two connected second connection subsections between two adjacent second wiring subsections are different, and then between two adjacent first subsections, And between two adjacent second sub-sections, a broken-line partition channel may be formed, so that the partition channels in the first sub-section and the second sub-section have portions extending along the first direction and the second direction at the same time,
  • the difference in patterning of the touch traces arranged along the first direction and the second direction can be reduced, so as to reduce the difference between the touch traces arranged along the first direction and the second direction in the process of displaying light transmission, and improve Display unevenness of the touch display panel.
  • FIG. 1 is a schematic diagram of a distribution structure of a touch layer in a display panel provided by an embodiment of the present application
  • FIG. 2A is a schematic diagram of a partition structure of a first routing part provided by an embodiment of the present application
  • FIG. 2B is a schematic diagram of a partition structure of a second routing part provided by an embodiment of the present application.
  • FIG. 3A is a schematic diagram of a partition structure of vertical touch traces in the related art
  • FIG. 3B is a schematic diagram of a partition structure of horizontal touch traces in the related art
  • FIG. 4 is a schematic structural diagram of a first wiring unit provided in an embodiment of the present application.
  • FIG. 5A is a schematic diagram of another partition structure of the first wiring part provided by the embodiment of the present application.
  • FIG. 5B is a schematic diagram of another partition structure of the second routing part provided by the embodiment of the present application.
  • FIG. 6A is a schematic diagram of another partition structure of the first wiring part provided by the embodiment of the present application.
  • FIG. 6B is a schematic diagram of another partition structure of the second routing part provided by the embodiment of the present application.
  • FIG. 7A is a schematic diagram of another partition structure of the first routing part provided by the embodiment of the present application.
  • FIG. 7B is a schematic diagram of another partition structure of the second routing part provided by the embodiment of the present application.
  • FIG. 8A is a schematic diagram of another partition structure of the first wiring part provided by the embodiment of the present application.
  • FIG. 8B is a schematic diagram of another partition structure of the second routing part provided by the embodiment of the present application.
  • FIG. 9A is a schematic diagram of another partition structure of the first routing part provided by the embodiment of the present application.
  • FIG. 9B is a schematic diagram of another partition structure of the second routing part provided by the embodiment of the present application.
  • the embodiment of the present application provides a touch display panel. Please refer to FIG. 1, FIG. 2A and FIG. 2B.
  • the touch display panel includes a substrate, a light-emitting layer and a touch layer disposed on the substrate, and the display panel includes a display area AA and Non-display area BA.
  • the light-emitting layer is arranged on one side of the substrate, and the light-emitting layer includes a plurality of light-emitting pixels 12 arranged in the display area; the touch layer includes a plurality of touch electrodes 11 arranged in the display area AA, and a plurality of touch electrodes
  • the control electrodes 11 correspond to the touch wires 20 provided.
  • the touch wire 20 includes a first subsection 21 arranged along a first direction X and a second subsection 22 arranged along a second direction Y, and the first direction X is different from the second direction Y.
  • the first sub-section 21 includes: a first wiring sub-section 211 arranged on one side of the light emitting pixel 12 along the first direction X, and a plurality of first wiring sub-sections 211 connecting two adjacent first wiring sub-sections 211.
  • the connection sub-sections 212, the widths of the two first connection sub-sections 212 connected to a first wiring sub-section 211 are different, and/or, the two adjacent first wiring sub-sections 211 are connected to each other.
  • the widths of the first connecting sub-portions 212 are different.
  • the second sub-section 22 includes: a second wiring sub-section 221 arranged on one side of the light-emitting pixel 12 along the second direction Y, and a second connection sub-section 222 connecting adjacent second wiring sub-sections 221, and a The widths of the two second connection sub-sections 222 connected by the second wiring sub-section 221 are different, and/or, the two second connection sub-sections 222 connected between two adjacent second wiring sub-sections 221 are not the same width.
  • the touch electrode block and the touch lead wire of the touch panel are arranged on the same layer, specifically, they can be arranged on the same layer of the touch electrode block
  • each intermediate body 1 and connecting body 2 are interrupted horizontally and vertically to form a longitudinal fracture 3 and a transverse fracture 4, thereby forming a plurality of independent touch leads, and each touch lead and touch electrode
  • the blocks are overlapped to realize the touch function.
  • the longitudinal fracture 3 and the transverse fracture 4 are both interrupted by a straight line, and the extension direction of the formed fracture is single.
  • the vertical fracture 3 forms a vertical line through light transmission.
  • a horizontal line is formed through the light transmission of the transverse cutout 4 , resulting in a significant difference in the brightness of light transmitted through the touch display panel at the longitudinal cutout 3 and the transverse cutout 4 , and uneven display is likely to occur.
  • the touch display panel includes a display area AA and a non-display area BA, and the touch display panel further includes a substrate and a light emitting layer and a touch layer disposed on the substrate.
  • the embodiment of the present application only expands and describes the touch layer disposed on the touch display panel, while other display devices and film layers disposed on the touch display panel can be realized by referring to conventional processes; for example, the touch layer
  • the control display panel can be a liquid crystal display panel, and the touch display panel includes an array substrate, a liquid crystal layer, and a color filter substrate, and the touch layer can be hung outside the array substrate and the color filter substrate, or installed inside the array substrate and the color filter substrate.
  • the touch display panel can also be an organic light emitting diode display panel, then the touch display panel also includes a thin film transistor layer, a light-emitting layer, and an encapsulation layer arranged on the substrate, and the touch layer can be arranged on the encapsulation layer or Set under the encapsulation layer.
  • the embodiment of the present application only takes the above as an example, but is not limited thereto, and can be selected according to actual needs.
  • the display panel includes a substrate, a light-emitting layer disposed on the substrate, and a touch layer disposed on the light-emitting layer, wherein the display panel further includes a display area AA and a non-display area BA, and the light-emitting layer includes a set For the plurality of light-emitting pixels 12 in the display area AA, the touch layer includes a plurality of touch electrodes 11 disposed in the display area AA and a touch wire 20 connected to each touch electrode 11 .
  • the touch layer includes a plurality of touch electrodes 11 distributed in rows and columns in the display area AA along the first direction X and the second direction Y, and one end extends into the display area AA to connect to each touch electrode 11, and the other end extends to the display area AA.
  • the non-display area BA is also connected to the touch trace 20 of the terminal portion 30 .
  • the terminal part 30 is arranged in the non-display area BA, and a plurality of metal terminals for binding are arranged in the terminal part 30; the touch terminal part 31 used for transmitting the touch signal is included in the terminal part 30, and the distributed There are touch metal terminals for transmitting touch signals.
  • the touch wiring 20 includes a first subsection 21 arranged along the first direction X and a second subsection 22 arranged along the second direction Y, wherein, in the first subsection 21, there are A plurality of first wiring sub-sections 211 arranged in X and first connecting sub-sections 212 connected to both sides of each first wiring sub-section 211 along the first direction X, and two adjacent first wiring sub-sections
  • the parts 211 are connected by two first connecting sub-parts 212, wherein the widths of the two first connecting sub-parts 212 connected to the same first wiring sub-part 211 are different, and/or, two adjacent second connecting sub-parts 212
  • the widths of the two first connection sub-sections 212 connected between one trace sub-section 211 are different.
  • the second sub-section 22 includes a plurality of second routing sub-sections 221 arranged along the second direction and second connecting sub-sections connected to both sides of each second routing sub-section 221 along the second direction Y. 222, and two adjacent second wiring subsections 221 are connected through two second connection subsections 222, wherein the two second connection subsections 222 connected to the same second wiring subsection 221
  • the widths are different, and/or the widths of the two second connection sub-sections 222 connected between two adjacent second wiring sub-sections 221 are different.
  • the first sub-section 21 includes two adjacent first wiring sub-sections 211 and two second wiring sub-sections connected to both sides of each first wiring sub-section 211.
  • a connection sub-section 212 In the embodiment of the present application, the width of the first connection sub-section 212 connected to the top of the left first wiring sub-section 211 is L1, and the width of the first connection sub-section 212 connected to the left side of the first wiring sub-section 212 is The width of the first connection sub-section 212 is L3, the width of the first connection sub-section 212 connected to the top of the first wiring sub-section 211 on the right side is L2, and connects to the first connection below the first wiring sub-section 211 on the right side.
  • the width of the sub-section 212 is L4, wherein L1 can be equal to L4, and L2 can be equal to L3;
  • the distance between the two first connection sub-sections 212 below the two first wiring sub-sections 211 is W2, wherein W1 may be equal to W2, so that two adjacent first sub-sections 21 are separated and formed
  • the first partition channel 201 is in a zigzag shape.
  • the first subsection 21 is the touch wiring 20 arranged along the first direction X
  • the second subsection 22 is the touch wiring 20 arranged along the second direction Y.
  • the non-display area BA includes a bending area CA, through which bending is performed to bend the terminal part 30 to the back of the touch display panel, so as to reduce the border width of the touch display panel;
  • the touch wires 20 arranged along the second direction Y are disposed in the display area AA, thereby saving the space in the non-display area BA to further realize narrow border display.
  • the touch wiring 20 is formed by partitioning a plurality of grid structures distributed in the display area AA as shown in FIG. 2A along the first direction X and the second direction Y, and the embodiment of the present application will The widths of the connecting sub-parts are set differently, so that the partition channel of the touch trace 20 is in the shape of a broken line, so as to improve the display uniformity of the display panel.
  • each first sub-section 21 includes two first wiring sub-sections 211 and connected to The first connection sub-section 212 of each first wiring sub-section 211 is taken as an example.
  • each second sub-section 22 includes two second sub-sections.
  • the wiring sub-sections 221 and the second connection sub-sections 222 connected to the second wiring sub-sections 221 are taken as examples for description.
  • FIG. 1, FIG. 2A and FIG. 2B please refer to FIG. 1, FIG. 2A and FIG. 2B.
  • the width of one connection sub-section 212 is different, and the widths of the two first connection sub-sections 212 connected between two adjacent first routing sub-sections 211 along the first direction X are the same, so that two adjacent The first partition channel 201 formed between the first sub-sections 21 is in a zigzag shape, so as to improve the display uniformity of the display panel.
  • the first wiring subsection 211 is arranged around one light-emitting pixel 12; and between the third first subsection 21 and the fourth first subsection 21, the first wiring subsection of the third first subsection 21 part 211 and an adjacent first wiring subsection 211 are arranged around a light-emitting pixel 12, and in the embodiment of the present application, the touch wiring 20 is arranged in the display area AA, but it will not block the light-emitting pixel 12. , that is, the amount of light output and the light output effect of the display panel can be improved.
  • each first routing subsection 211 is provided with a first protruding structure 213 along the second direction Y, for example, between the second first subsection 21 and the third first subsection 21, wherein Each first routing subsection 211 in one first subsection 21 is provided with two first protruding structures 213 in the direction toward the other adjacent first subsection 21, and the second first subsection The first protruding structures 213 on the part 21 are spaced apart from the first protruding structures 213 on the third first sub-part 21 and opposite to each other.
  • the widths of the two first protruding structures 213 connected to the same first routing sub-section 211 and located on the same side are different, and the two adjacent first routing sub-sections 211 are located opposite to each other.
  • the widths of the first protruding structures 213 are the same, and the widths of the two first protruding structures 213 that are connected to opposite sides of the same trace sub-section 211 and disposed opposite to each other are different.
  • the widths of the two second connection sub-sections 222 connected to the same second wiring sub-section 221 are different, and the two adjacent second sub-sections 222 along the second direction Y
  • the widths of the two second connection sub-sections 222 connected between the two routing sub-sections 221 are the same, so that the second partition channel 202 formed between two adjacent second sub-sections 22 is in the shape of a broken line to improve the display panel. display uniformity.
  • the second routing sub-section 221 is arranged around one light-emitting pixel 12; and between the third second sub-section 22 and the fourth second sub-section 22, the second routing sub-section of the third second sub-section 22 part 221 and an adjacent second wiring subsection 221 are arranged around a luminous pixel 12 , and in the embodiment of the present application, the touch wiring 20 is arranged in the display area AA, but it will not block the light emission of the luminous pixel 12 , that is, the amount of light output and the light output effect of the display panel can be improved.
  • each second routing subsection 221 is provided with a second protruding structure 223 along the first direction X, for example, between the second second subsection 22 and the third second subsection 22, wherein Each second routing subsection 221 in one second subsection 22 is provided with two second protruding structures 223 in the direction toward another adjacent second subsection 22, and the second second subsection The second protruding structure 223 on the part 22 is spaced apart from the second protruding structure 223 on the third second sub-part 22 and oppositely arranged.
  • the widths of the two second protruding structures 223 connected to the same second routing sub-section 221 and located on the same side are different, and the two adjacent second routing sub-sections 221 are located opposite to each other.
  • the widths of the second protruding structures 223 are the same, and the widths of the two second protruding structures 223 that are connected to opposite sides of the same first wiring sub-section 211 and disposed opposite to each other are different.
  • the touch trace 20 includes the first touch trace 2011, the second touch trace 2012 and the third touch trace 2013 which are sequentially adjacent; wherein, the first touch trace 2012 in the second touch trace 2012
  • the wiring sub-section 211 and the adjacent first wiring sub-section 211 of the first touch wiring 2011 are arranged around the same light-emitting pixel 12, and the first wiring sub-section 211 of the second touch wiring 2012 faces At least two first protruding structures 213 are arranged in the direction of the adjacent first wiring sub-sections 211 in the third touch wiring 2013;
  • the second wiring sub-section 221 in the second touch wiring 2012 Adjacent second wiring subsections 221 in one touch wiring 2011 are arranged around the same light-emitting pixel 12 , and the second wiring subsection 221 in the second touch wiring 2012 faces the third touch wiring 2013
  • the first subsection 21 may also include a third wiring subsection and a third connection subsection connecting both sides of the third wiring subsection, and is connected to the same third wiring subsection.
  • the widths of the two third connection sub-sections on both sides of the wire sub-section are equal, or the widths of the two third connection sub-sections connected between two adjacent third wiring sub-sections are equal to form a linear partition Channels; it can be understood that, in order to improve the display uniformity of the display panel and improve the improvement effect, the number of the first wiring sub-section 211 in the first sub-section 21 needs to be greater than the number of the third wiring sub-section.
  • the second sub-section 22 may also include a fourth routing sub-section and a fourth connecting sub-section connected to both sides of the fourth routing sub-section, and connected to two
  • the width of the fourth connection sub-sections is equal, or the width of the two fourth connection sub-sections connected between two adjacent fourth wiring sub-sections is equal to form a linear partition channel, and in order to improve the performance of the display panel To display uniformity and improve the improvement effect, the number of the second routing sub-sections 221 in the second sub-section 22 needs to be greater than the number of the third routing sub-sections.
  • a zigzag-shaped first partition channel 201 can be formed between adjacent first sub-sections 21, and a zig-zag-shaped second partition channel can be formed between adjacent second sub-sections 22.
  • 202 when forming the first sub-section 21 along the first direction X, and forming the second sub-section 22 along the second direction Y, not only the vertical light transmission, but also the horizontal light transmission, to reduce The difference in light transmission between the vertical and horizontal directions of the small touch display panel when the touch traces 20 are patterned can effectively improve the display unevenness of the touch display panel and improve the display effect of the touch display panel.
  • the widths of the first connecting sub-sections 212 are different, and the widths of the two first connecting sub-sections 212 connected between two adjacent first wiring sub-sections 211 along the first direction X are also different, so that The first partition channel 201 formed between two adjacent first sub-sections 21 is in the shape of a zigzag line, so as to improve the display uniformity of the display panel.
  • the first wiring subsection 211 is arranged around one light-emitting pixel 12; and between the third first subsection 21 and the fourth first subsection 21, the first wiring subsection of the third first subsection 21 part 211 and an adjacent first wiring subsection 211 are arranged around a light-emitting pixel 12, and in the embodiment of the present application, the touch wiring 20 is arranged in the display area AA, but it will not block the light-emitting pixel 12. , that is, the amount of light output and the light output effect of the display panel can be improved.
  • each first routing subsection 211 is provided with a first protruding structure 213 along the second direction Y, for example, between the second first subsection 21 and the third first subsection 21, wherein Each first routing subsection 211 in one first subsection 21 is provided with two first protruding structures 213 in the direction toward the other adjacent first subsection 21, and the second first subsection The first protruding structures 213 on the part 21 are spaced apart from the first protruding structures 213 on the third first sub-part 21 and opposite to each other.
  • the widths of the two first protruding structures 213 connected to the same first routing sub-section 211 and located on the same side are different, and the two adjacent first routing sub-sections 211 are located opposite to each other.
  • the widths of the first protruding structures 213 are different, and the widths of the two first protruding structures 213 that are connected to opposite sides of the same trace sub-section 211 and disposed opposite to each other are different.
  • the widths of the two second connection sub-sections 222 connected to the same second wiring sub-section 221 are different, and the two adjacent second sub-sections 222 along the second direction Y
  • the widths of the two second connection sub-sections 222 connected between the two routing sub-sections 221 are different, so that the second partition channel 202 formed between two adjacent second sub-sections 22 is a zigzag shape to improve display Panel display uniformity.
  • the second routing sub-section 221 is arranged around one light-emitting pixel 12; and between the third second sub-section 22 and the fourth second sub-section 22, the second routing sub-section of the third second sub-section 22 part 221 and an adjacent second wiring subsection 221 are arranged around a luminous pixel 12 , and in the embodiment of the present application, the touch wiring 20 is arranged in the display area AA, but it will not block the light emission of the luminous pixel 12 , that is, the amount of light output and the light output effect of the display panel can be improved.
  • each second routing subsection 221 is provided with a second protruding structure 223 along the first direction X, for example, between the second second subsection 22 and the third second subsection 22, wherein Each second routing subsection 221 in one second subsection 22 is provided with two second protruding structures 223 in the direction toward another adjacent second subsection 22, and the second second subsection The second protruding structure 223 on the part 22 is spaced apart from the second protruding structure 223 on the third second sub-part 22 and oppositely arranged.
  • the widths of the two second protruding structures 223 connected to the same second routing sub-section 221 and located on the same side are different, and the two adjacent second routing sub-sections 221 are located opposite to each other.
  • the widths of the second protruding structures 223 are the same, and the widths of the two second protruding structures 223 that are connected to opposite sides of the same first wiring sub-section 211 and disposed opposite to each other are different.
  • a zigzag-shaped first partition channel 201 can be formed between adjacent first sub-sections 21, and a zig-zag-shaped second partition channel can be formed between adjacent second sub-sections 22.
  • 202 when forming the first sub-section 21 along the first direction X, and forming the second sub-section 22 along the second direction Y, not only the vertical light transmission, but also the horizontal light transmission, to reduce The difference in light transmission between the vertical and horizontal directions of the small touch display panel when the touch traces 20 are patterned can effectively improve the display unevenness of the touch display panel and improve the display effect of the touch display panel.
  • the first wiring subsection 211 is arranged around one light-emitting pixel 12; and between the third first subsection 21 and the fourth first subsection 21, the first wiring subsection of the third first subsection 21 part 211 and an adjacent first wiring subsection 211 are arranged around a light-emitting pixel 12, and in the embodiment of the present application, the touch wiring 20 is arranged in the display area AA, but it will not block the light-emitting pixel 12. , that is, the amount of light output and the light output effect of the display panel can be improved.
  • each first routing subsection 211 is provided with a first protruding structure 213 along the second direction Y, for example, between the second first subsection 21 and the third first subsection 21, wherein Each first routing subsection 211 in one first subsection 21 is provided with two first protruding structures 213 in the direction toward the other adjacent first subsection 21, and the second first subsection The first protruding structures 213 on the part 21 are spaced apart from the first protruding structures 213 on the third first sub-part 21 and opposite to each other.
  • the widths of the two first protruding structures 213 connected to the same first routing sub-section 211 and located on the same side are different, and the two adjacent first routing sub-sections 211 are located opposite to each other.
  • the widths of the first protruding structures 213 are the same, and the widths of the two first protruding structures 213 that are connected to opposite sides of the same trace sub-section 211 and disposed opposite to each other are different.
  • each first wiring sub-section 211 is provided with a third isolation channel 203 along the second direction Y, and the third isolation channel 203 is arranged on two first wiring sub-sections 211 on the same side connecting the first routing sub-section 211.
  • the first sub-section 21 is divided into a plurality of segments arranged along the first direction X, so as to form the signal traces connected to the touch electrodes 11 and the signal traces in the touch traces 20 virtual wires arranged at intervals, and the virtual wires have the same structure as the signal wires, so that they can have the same light transmission during the display process, so as to improve the light transmission uniformity of the display panel in each touch wire 20, and improve Display uniformity of the display panel.
  • the widths of the two second connection sub-sections 222 connected to the same second wiring sub-section 221 are different, and the two adjacent second sub-sections 222 along the second direction Y
  • the widths of the two second connection sub-sections 222 connected between the two routing sub-sections 221 are the same, so that the second partition channel 202 formed between two adjacent second sub-sections 22 is in the shape of a broken line to improve the display panel. display uniformity.
  • the second routing sub-section 221 is arranged around one light-emitting pixel 12; and between the third second sub-section 22 and the fourth second sub-section 22, the second routing sub-section of the third second sub-section 22 part 221 and an adjacent second wiring subsection 221 are arranged around a luminous pixel 12 , and in the embodiment of the present application, the touch wiring 20 is arranged in the display area AA, but it will not block the light emission of the luminous pixel 12 , that is, the amount of light output and the light output effect of the display panel can be improved.
  • each second routing subsection 221 is provided with a second protruding structure 223 along the first direction X, for example, between the second second subsection 22 and the third second subsection 22, wherein Each second routing subsection 221 in one second subsection 22 is provided with two second protruding structures 223 in the direction toward another adjacent second subsection 22, and the second second subsection The second protruding structure 223 on the part 22 is spaced apart from the second protruding structure 223 on the third second sub-part 22 and oppositely arranged.
  • the widths of the two second protruding structures 223 connected to the same second routing sub-section 221 and located on the same side are different, and the two adjacent second routing sub-sections 221 are located opposite to each other.
  • the widths of the second protruding structures 223 are the same, and the widths of the two second protruding structures 223 that are connected to opposite sides of the same first wiring sub-section 211 and disposed opposite to each other are different.
  • each second routing sub-section 221 is provided with a fourth isolation channel 204 along the first direction X, and the fourth isolation channel 204 is provided on the same side connecting the second routing sub-section 221 with two second routing channels.
  • the second sub-section 22 is divided into a plurality of segments arranged along the second direction Y, so as to form the signal traces connected to the touch electrodes 11 in the touch traces 20, and the signal traces virtual wires arranged at intervals, and the virtual wires have the same structure as the signal wires, so that they can have the same light transmission during the display process, so as to improve the light transmission uniformity of the display panel in each touch wire 20, and improve Display uniformity of the display panel.
  • a zigzag-shaped first partition channel 201 can be formed between adjacent first sub-sections 21, and a zig-zag-shaped second partition channel can be formed between adjacent second sub-sections 22.
  • 202 when forming the first sub-section 21 along the first direction X, and forming the second sub-section 22 along the second direction Y, not only the vertical light transmission, but also the horizontal light transmission, to reduce The difference in light transmission between the vertical and horizontal directions of the small touch display panel when the touch traces 20 are patterned can effectively improve the display unevenness of the touch display panel and improve the display effect of the touch display panel.
  • FIG. 1, FIG. 7A and FIG. 7B Please refer to FIG. 1, FIG. 7A and FIG. 7B.
  • the widths of the first connecting sub-sections 212 are different, and the widths of the two first connecting sub-sections 212 connected between two adjacent first wiring sub-sections 211 along the first direction X are different, so that adjacent The first partition channel 201 formed between the two first sub-sections 21 is in the shape of a zigzag line, so as to improve the display uniformity of the display panel.
  • the first wiring subsection 211 is arranged around one light-emitting pixel 12; and between the third first subsection 21 and the fourth first subsection 21, the first wiring subsection of the third first subsection 21 part 211 and an adjacent first wiring subsection 211 are arranged around a light-emitting pixel 12, and in the embodiment of the present application, the touch wiring 20 is arranged in the display area AA, but it will not block the light-emitting pixel 12. , that is, the amount of light output and the light output effect of the display panel can be improved.
  • each first routing subsection 211 is provided with a first protruding structure 213 along the second direction Y, for example, between the second first subsection 21 and the third first subsection 21, wherein Each first routing subsection 211 in one first subsection 21 is provided with two first protruding structures 213 in the direction toward the other adjacent first subsection 21, and the second first subsection The first protruding structures 213 on the part 21 are spaced apart from the first protruding structures 213 on the third first sub-part 21 and opposite to each other.
  • the widths of the two first protruding structures 213 connected to the same first routing sub-section 211 and located on the same side are different, and the two adjacent first routing sub-sections 211 are located opposite to each other.
  • the widths of the first protruding structures 213 are the same, and the widths of the two first protruding structures 213 that are connected to opposite sides of the same trace sub-section 211 and disposed opposite to each other are different.
  • each first wiring sub-section 211 is provided with a third isolation channel 203 along the second direction Y, and the third isolation channel 203 is arranged on two first wiring sub-sections 211 on the same side connecting the first routing sub-section 211.
  • the first sub-section 21 is divided into a plurality of segments arranged along the first direction X, so as to form the signal traces connected to the touch electrodes 11 and the signal traces in the touch traces 20 virtual wires arranged at intervals, and the virtual wires have the same structure as the signal wires, so that they can have the same light transmission during the display process, so as to improve the light transmission uniformity of the display panel in each touch wire 20, and improve Display uniformity of the display panel.
  • the widths of the two second connection sub-sections 222 connected to the same second wiring sub-section 221 are different, and the two adjacent second sub-sections 222 along the second direction Y
  • the widths of the two second connection sub-sections 222 connected between the two routing sub-sections 221 are different, so that the second partition channel 202 formed between two adjacent second sub-sections 22 is a zigzag shape to improve display Panel display uniformity.
  • the second routing sub-section 221 is arranged around one light-emitting pixel 12; and between the third second sub-section 22 and the fourth second sub-section 22, the second routing sub-section of the third second sub-section 22 part 221 and an adjacent second wiring subsection 221 are arranged around a luminous pixel 12 , and in the embodiment of the present application, the touch wiring 20 is arranged in the display area AA, but it will not block the light emission of the luminous pixel 12 , that is, the amount of light output and the light output effect of the display panel can be improved.
  • each second routing subsection 221 is provided with a second protruding structure 223 along the first direction X, for example, between the second second subsection 22 and the third second subsection 22, wherein Each second routing subsection 221 in one second subsection 22 is provided with two second protruding structures 223 in the direction toward another adjacent second subsection 22, and the second second subsection The second protruding structure 223 on the part 22 is spaced apart from the second protruding structure 223 on the third second sub-part 22 and oppositely arranged.
  • the widths of the two second protruding structures 223 connected to the same second routing sub-section 221 and located on the same side are different, and the two adjacent second routing sub-sections 221 are located opposite to each other.
  • the widths of the second protruding structures 223 are the same, and the widths of the two second protruding structures 223 that are connected to opposite sides of the same first wiring sub-section 211 and disposed opposite to each other are different.
  • each second routing sub-section 221 is provided with a fourth isolation channel 204 along the first direction X, and the fourth isolation channel 204 is provided on the same side connecting the second routing sub-section 221 with two second routing channels.
  • the second sub-section 22 is divided into a plurality of segments arranged along the second direction Y, so as to form the signal traces connected to the touch electrodes 11 in the touch traces 20, and the signal traces virtual wires arranged at intervals, and the virtual wires have the same structure as the signal wires, so that they can have the same light transmission during the display process, so as to improve the light transmission uniformity of the display panel in each touch wire 20, and improve Display uniformity of the display panel.
  • a zigzag-shaped first partition channel 201 can be formed between adjacent first sub-sections 21, and a zig-zag-shaped second partition channel can be formed between adjacent second sub-sections 22.
  • 202 when forming the first sub-section 21 along the first direction X, and forming the second sub-section 22 along the second direction Y, not only the vertical light transmission, but also the horizontal light transmission, to reduce The difference in light transmission between the vertical and horizontal directions of the small touch display panel when the touch traces 20 are patterned can effectively improve the display unevenness of the touch display panel and improve the display effect of the touch display panel.
  • FIG. 1, FIG. 8A and FIG. 8B In another embodiment of the present application, in this embodiment, for the first sub-section 21, two wires connected to the same first routing sub-section 211 The widths of the first connection sub-sections 212 are different, and the widths of the two first connection sub-sections 212 connected between two adjacent first routing sub-sections 211 along the first direction X are the same, so that two adjacent The first partition channel 201 formed between the first sub-sections 21 of the bar is in the shape of a broken line, so as to improve the display uniformity of the display panel.
  • the first wiring subsection 211 is arranged around one light-emitting pixel 12; and between the third first subsection 21 and the fourth first subsection 21, the first wiring subsection of the third first subsection 21 part 211 and an adjacent first wiring subsection 211 are arranged around a luminous pixel 12, and in the embodiment of the present application, the touch wiring 20 is arranged in the display area AA, but it will not block the light emission of the luminous pixel 12. , that is, the amount of light output and the light output effect of the display panel can be improved.
  • each first routing subsection 211 is provided with a first protruding structure 213 along the second direction Y, for example, between the second first subsection 21 and the third first subsection 21, wherein Each first routing subsection 211 in one first subsection 21 is provided with two first protruding structures 213 in the direction toward the other adjacent first subsection 21, and the second first subsection The first protruding structures 213 on the part 21 are spaced apart from the first protruding structures 213 on the third first sub-part 21 and opposite to each other.
  • the widths of the two first protruding structures 213 connected to the same first routing sub-section 211 and located on the same side are different, and the two adjacent first routing sub-sections 211 are located opposite to each other.
  • the widths of the first protruding structures 213 are the same, and the widths of the two first protruding structures 213 that are connected to the opposite sides of the same wiring sub-section 211 and arranged opposite to each other are not the same, and are connected to the same first wiring sub-section 211.
  • the lengths of the two first protruding structures 213 on the side are different, and the length of each first protruding structure 213 in the second first sub-section 21 is the same as that of the first protruding structure 213 in the third first sub-section 21 that is oppositely arranged.
  • the protruding structures 213 have different lengths.
  • each first wiring sub-section 211 is provided with a third isolation channel 203 along the second direction Y, and the third isolation channel 203 is arranged on two first wiring sub-sections 211 on the same side connecting the first routing sub-section 211.
  • the first sub-section 21 is divided into a plurality of segments arranged along the first direction X, so as to form the signal traces connected to the touch electrodes 11 and the signal traces in the touch traces 20 virtual wires arranged at intervals, and the virtual wires have the same structure as the signal wires, so that they can have the same light transmission during the display process, so as to improve the light transmission uniformity of the display panel in each touch wire 20, and improve Display uniformity of the display panel.
  • the widths of the two second connection sub-sections 222 connected to the same second wiring sub-section 221 are different, and the two adjacent second sub-sections 222 along the second direction Y
  • the widths of the two second connection sub-sections 222 connected between the two routing sub-sections 221 are the same, so that the second partition channel 202 formed between two adjacent second sub-sections 22 is in the shape of a broken line to improve the display panel. display uniformity.
  • the second routing sub-section 221 is arranged around one light-emitting pixel 12; and between the third second sub-section 22 and the fourth second sub-section 22, the second routing sub-section of the third second sub-section 22 part 221 and an adjacent second wiring subsection 221 are arranged around a luminous pixel 12 , and in the embodiment of the present application, the touch wiring 20 is arranged in the display area AA, but it will not block the light emission of the luminous pixel 12 , that is, the amount of light output and the light output effect of the display panel can be improved.
  • each second routing subsection 221 is provided with a second protruding structure 223 along the first direction X, for example, between the second second subsection 22 and the third second subsection 22, wherein Each second routing subsection 221 in one second subsection 22 is provided with two second protruding structures 223 in the direction toward another adjacent second subsection 22, and the second second subsection The second protruding structure 223 on the part 22 is spaced apart from the second protruding structure 223 on the third second sub-part 22 and oppositely arranged.
  • the widths of the two second protruding structures 223 connected to the same second routing sub-section 221 and located on the same side are different, and the two adjacent second routing sub-sections 221 are located opposite to each other.
  • the width of the second protruding structures 223 is the same, and the widths of the two second protruding structures 223 that are connected to the opposite sides of the same second routing sub-section 221 and oppositely arranged are different, and are connected to a second routing sub-section 221
  • the lengths of the two second protruding structures 223 on the same side are different, and the length of each second protruding structure 223 in the second second sub-section 22 is the same as that of the second protruding structure 223 in the third second sub-section 22 that is oppositely arranged.
  • the lengths of the two protruding structures 223 are different.
  • each second routing sub-section 221 is provided with a fourth isolation channel 204 along the first direction X, and the fourth isolation channel 204 is provided on the same side connecting the second routing sub-section 221 with two second routing channels.
  • the second sub-section 22 is divided into a plurality of segments arranged along the second direction Y, so as to form the signal traces connected to the touch electrodes 11 in the touch traces 20, and the signal traces virtual wires arranged at intervals, and the virtual wires have the same structure as the signal wires, so that they can have the same light transmission during the display process, so as to improve the light transmission uniformity of the display panel in each touch wire 20, and improve Display uniformity of the display panel.
  • a zigzag-shaped first partition channel 201 can be formed between adjacent first sub-sections 21, and a zig-zag-shaped second partition channel can be formed between adjacent second sub-sections 22.
  • 202 when forming the first sub-section 21 along the first direction X, and forming the second sub-section 22 along the second direction Y, not only the vertical light transmission, but also the horizontal light transmission, to reduce The difference in light transmission between the vertical and horizontal directions of the small touch display panel when the touch traces 20 are patterned can effectively improve the display unevenness of the touch display panel and improve the display effect of the touch display panel.
  • FIG. 1, FIG. 9A and FIG. 9B In another embodiment of the present application, in this embodiment, for the first sub-section 21, two wires connected to the same first routing sub-section 211 The widths of the first connecting sub-sections 212 are different, and the widths of the two first connecting sub-sections 212 connected between two adjacent first wiring sub-sections 211 along the first direction X are different, so that adjacent The first partition channel 201 formed between the two first sub-sections 21 is in the shape of a zigzag line, so as to improve the display uniformity of the display panel.
  • the first wiring subsection 211 is arranged around one light-emitting pixel 12; and between the third first subsection 21 and the fourth first subsection 21, the first wiring subsection of the third first subsection 21 part 211 and an adjacent first wiring subsection 211 are arranged around a light-emitting pixel 12, and in the embodiment of the present application, the touch wiring 20 is arranged in the display area AA, but it will not block the light-emitting pixel 12. , that is, the amount of light output and the light output effect of the display panel can be improved.
  • each first routing subsection 211 is provided with a first protruding structure 213 along the second direction Y, for example, between the second first subsection 21 and the third first subsection 21, wherein Each first routing subsection 211 in one first subsection 21 is provided with two first protruding structures 213 in the direction toward the other adjacent first subsection 21, and the second first subsection The first protruding structures 213 on the part 21 are spaced apart from the first protruding structures 213 on the third first sub-part 21 and opposite to each other.
  • the widths of the two first protruding structures 213 connected to the same first routing sub-section 211 and located on the same side are different, and the two adjacent first routing sub-sections 211 are located opposite to each other.
  • the widths of the first protruding structures 213 are different, and the widths of the two first protruding structures 213 that are connected to the opposite sides of the same first trace sub-section 211 and arranged opposite to each other are different in width, and are connected to a first trace sub-section 211.
  • the lengths of the two first protruding structures 213 on the same side of the part 211 are different, and the lengths of the first protruding structures 213 in the second first sub-part 21 are opposite to those in the third first sub-part 21 The lengths of the first protruding structures 213 are different.
  • the width of some of the first protruding structures 213 may be unevenly varied, for example, the first trace near it
  • the width of the side of the sub-section 211 is greater than the width of the side away from the first routing sub-section 211 .
  • the widths of the two second connection sub-sections 222 connected to the same second wiring sub-section 221 are different, and the two adjacent second sub-sections 222 along the second direction Y
  • the widths of the two second connection sub-sections 222 connected between the two wiring sub-sections 221 are different, so that the second partition channel 202 formed between two adjacent second sub-sections 22 is a zigzag shape to improve display Panel display uniformity.
  • the second routing sub-section 221 is arranged around one light-emitting pixel 12; and between the third second sub-section 22 and the fourth second sub-section 22, the second routing sub-section of the third second sub-section 22 part 221 and an adjacent second wiring subsection 221 are arranged around a luminous pixel 12 , and in the embodiment of the present application, the touch wiring 20 is arranged in the display area AA, but it will not block the light emission of the luminous pixel 12 , that is, the amount of light output and the light output effect of the display panel can be improved.
  • each second routing subsection 221 is provided with a second protruding structure 223 along the first direction X, for example, between the second second subsection 22 and the third second subsection 22, wherein Each second routing subsection 221 in one second subsection 22 is provided with two second protruding structures 223 in the direction toward another adjacent second subsection 22, and the second second subsection The second protruding structure 223 on the part 22 is spaced apart from the second protruding structure 223 on the third second sub-part 22 and oppositely arranged.
  • the widths of the two second protruding structures 223 connected to the same second routing sub-section 221 and located on the same side are different, and the two adjacent second routing sub-sections 221 are located opposite to each other.
  • the widths of the second protruding structures 223 are different, and the widths of the two second protruding structures 223 that are connected to the opposite sides of the same first wiring sub-section 211 and arranged opposite to each other are not the same, and are connected to a second wiring sub-section 221
  • the lengths of the two second protruding structures 223 on the same side are different, and the length of each second protruding structure 223 in the second second sub-section 22 is the same as that in the third second sub-section 22 and is oppositely arranged.
  • the lengths of the second protruding structures 223 are different.
  • the width of part of the second protruding structure 223 may be non-uniform, for example, the second trace near it
  • the width of the side of the sub-section 221 is greater than the width of the side away from the second routing sub-section 221 .
  • a zigzag-shaped first partition channel 201 can be formed between adjacent first sub-sections 21, and a zig-zag-shaped second partition channel can be formed between adjacent second sub-sections 22.
  • 202 when forming the first sub-section 21 along the first direction X, and forming the second sub-section 22 along the second direction Y, not only the vertical light transmission, but also the horizontal light transmission, to reduce The difference in light transmission between the vertical and horizontal directions of the small touch display panel when the touch traces 20 are patterned can effectively improve the display unevenness of the touch display panel and improve the display effect of the touch display panel.
  • an embodiment of the present application further provides a display device, which includes the touch display panel described in the above embodiments.

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Abstract

一种触控显示面板及显示装置。其包括触控走线,触控走线包括沿第一方向设置的第一子部;第一子部包括沿着第一方向设置的第一走线子部(211)、和连接相邻第一走线子部(211)的第一连接子部(212),与一第一走线子部(211)相连的两个第一连接子部(212)的宽度不相同,和/或相邻两个第一走线子部(211)之间的两个相连的第一连接子部(212)的宽度不相同。

Description

触控显示面板及显示装置 技术领域
本申请涉及显示技术领域,尤其涉及一种触控显示面板及具有该触控显示面板的显示装置。
背景技术
随着显示技术的飞速发展,触控显示技术已经逐渐遍及人们的生活中。在现有的触控显示面板中,相对于电阻式触控显示面板,电容式触控显示面板具有寿命长、透光率高、可以支持多点触控等优点,成为触控显示技术的热点。
电容式触控显示面板可以分为自容式触控显示面板和互容式触控显示面板。目前,在自容式触控显示面板中,设置引线的方式包括与电极同层设置金属网格结构,然后对金属网格结构进行横向打断以及纵向打断,以形成横向引线与竖向引线,且各引线电性连接于各电极。但是,相关技术中对于金属网格结构的打断方式过于单一,导致形成的横向引线与纵向引线之间的图案化差异明显,例如打断过程中形成的分隔线在光透过时,纵向分隔线为以竖线,而横向分隔线为一横线,两者在显示亮度上差异明显,容易产生显示不均的现象。
技术问题
本申请实施例提供一种触控显示面板及显示装置,能够减小沿第一方向排列的触控走线与沿第二方向排列的触控走线之间的图案化差异,改善显示不均的现象。
技术解决方案
本申请实施例提供一种触控显示面板,包括显示区和非显示区,所述触控显示面板还包括:
基板;
发光层,设置在所述基板的一侧,且包括设置在所述显示区中的多个发光像素;
触控层,包括多个设置在所述显示区中的触控电极、和多条与所述触控电极对应设置的触控走线;
其中,所述触控走线包括沿第一方向设置的第一子部和沿第二方向设置的第二子部,所述第一方向与所述第二方向相异;
所述第一子部包括:多个沿着所述第一方向并设置在所述发光像素一侧的第一走线子部、和多个连接相邻所述第一走线子部的第一连接子部,与一所述第一走线子部相连的两个所述第一连接子部的宽度不相同,和/或,相邻两个所述第一走线子部之间的两个相连的所述第一连接子部的宽度不相同;
所述第二子部包括:多个沿着所述第二方向并设置在所述发光像素一侧的第二走线子部、和多个连接相邻所述第二走线子部的第二连接子部,与一所述第二走线子部相连的两个所述第二连接子部的宽度不相同,和/或,相邻两个所述第二走线子部之间的两个相连的所述第二连接子部的宽度不相同。
在本申请的一种实施例中,相邻的两条所述第一子部中,其中一条所述第一子部中的所述第一走线子部与另一条所述第一子部中相邻的所述第一走线子部围绕同一所述发光像素设置,其中一条所述第一子部中的所述第一连接子部与另一条所述第一子部中相邻的所述第一连接子部的宽度不相同;
或者,其中一条所述第一子部中的所述第一走线子部,向着另一条所述第一子部中相邻的所述第一走线子部的方向设置有至少两条第一凸起结构,相邻两条所述第一凸起结构的宽度不相同。
在本申请的一种实施例中,连接于一所述第一走线子部同一侧的两条所述第一凸起结构的长度不相同。
在本申请的一种实施例中,连接于其中一所述第一走线子部的一条所述第一凸起结构的长度与连接于另一所述第一走线子部且相对设置的一条所述第一凸起结构的长度不相同。
在本申请的一种实施例中,两条相邻的所述第一子部中,其中一条所述第一子部中的所述第一走线子部与另一条所述第一子部中相邻的所述第一走线子部的宽度相同。
在本申请的一种实施例中,两条相邻的所述第二子部中,其中一条所述第二子部中的所述第二走线子部与另一条所述第二子部中相邻的所述第二走线子部围绕同一所述发光像素设置,其中一条所述第二子部中的所述第二连接子部与另一条所述第二子部中相邻的所述第二连接子部的宽度不相同;
或者,其中一条所述第二子部中的所述第二走线子部,向着另一条所述第二子部中相邻的所述第二走线子部的方向设置有至少两条第二凸起结构,相邻两条所述第二凸起结构的宽度不相同。
在本申请的一种实施例中,连接于一所述第二走线子部同一侧的两条所述第二凸起结构的长度不相同。
在本申请的一种实施例中,连接于其中一所述第二走线子部的一条所述第二凸起结构的长度与连接于另一所述第二走线子部且相对设置的一条所述第二凸起结构的长度不相同。
在本申请的一种实施例中,两条相邻的所述第二子部中,其中一条所述第二子部中的所述第二走线子部与另一条所述第二子部中相邻的所述第二走线子部的宽度相同。
在本申请的一种实施例中,多条所述触控走线包括:依次相邻的第一触控走线、第二触控走线、以及第三触控走线;
所述第二触控走线中的所述第一走线子部与所述第一触控走线中相邻的所述第一走线子部围绕同一所述发光像素设置,且所述第二触控走线中的所述第一走线子部,向着所述第三触控走线中相邻的所述第一走线子部的方向设置有至少两条第一凸起结构;
所述第二触控走线中的所述第二走线子部与所述第一触控走线中相邻的所述第二走线子部围绕同一所述发光像素设置,且所述第二触控走线中的所述第二走线子部,向着所述第三触控走线中相邻的所述第二走线子部的方向设置有至少两条第二凸起结构。
根据本申请的上述目的,提供一种显示装置,所述显示装置包括触控显示面板,所述触控显示面板包括显示区和非显示区,所述触控显示面板还包括:
基板;
发光层,设置在所述基板的一侧,且包括设置在所述显示区中的多个发光像素;
触控层,包括多个设置在所述显示区中的触控电极、和多条与所述触控电极对应设置的触控走线;
其中,所述触控走线包括沿第一方向设置的第一子部和沿第二方向设置的第二子部,所述第一方向与所述第二方向相异;
所述第一子部包括:多个沿着所述第一方向并设置在所述发光像素一侧的第一走线子部、和多个连接相邻所述第一走线子部的第一连接子部,与一所述第一走线子部相连的两个所述第一连接子部的宽度不相同,和/或,相邻两个所述第一走线子部之间的两个相连的所述第一连接子部的宽度不相同;
所述第二子部包括:多个沿着所述第二方向并设置在所述发光像素一侧的第二走线子部、和多个连接相邻所述第二走线子部的第二连接子部,与一所述第二走线子部相连的两个所述第二连接子部的宽度不相同,和/或,相邻两个所述第二走线子部之间的两个相连的所述第二连接子部的宽度不相同。
在本申请的一种实施例中,相邻的两条所述第一子部中,其中一条所述第一子部中的所述第一走线子部与另一条所述第一子部中相邻的所述第一走线子部围绕同一所述发光像素设置,其中一条所述第一子部中的所述第一连接子部与另一条所述第一子部中相邻的所述第一连接子部的宽度不相同;
或者,其中一条所述第一子部中的所述第一走线子部,向着另一条所述第一子部中相邻的所述第一走线子部的方向设置有至少两条第一凸起结构,相邻两条所述第一凸起结构的宽度不相同。
在本申请的一种实施例中,连接于一所述第一走线子部同一侧的两条所述第一凸起结构的长度不相同。
在本申请的一种实施例中,连接于其中一所述第一走线子部的一条所述第一凸起结构的长度与连接于另一所述第一走线子部且相对设置的一条所述第一凸起结构的长度不相同。
在本申请的一种实施例中,两条相邻的所述第一子部中,其中一条所述第一子部中的所述第一走线子部与另一条所述第一子部中相邻的所述第一走线子部的宽度相同。
在本申请的一种实施例中,两条相邻的所述第二子部中,其中一条所述第二子部中的所述第二走线子部与另一条所述第二子部中相邻的所述第二走线子部围绕同一所述发光像素设置,其中一条所述第二子部中的所述第二连接子部与另一条所述第二子部中相邻的所述第二连接子部的宽度不相同;
或者,其中一条所述第二子部中的所述第二走线子部,向着另一条所述第二子部中相邻的所述第二走线子部的方向设置有至少两条第二凸起结构,相邻两条所述第二凸起结构的宽度不相同。
在本申请的一种实施例中,连接于一所述第二走线子部同一侧的两条所述第二凸起结构的长度不相同。
在本申请的一种实施例中,连接于其中一所述第二走线子部的一条所述第二凸起结构的长度与连接于另一所述第二走线子部且相对设置的一条所述第二凸起结构的长度不相同。
在本申请的一种实施例中,两条相邻的所述第二子部中,其中一条所述第二子部中的所述第二走线子部与另一条所述第二子部中相邻的所述第二走线子部的宽度相同。
在本申请的一种实施例中,多条所述触控走线包括:依次相邻的第一触控走线、第二触控走线、以及第三触控走线;
所述第二触控走线中的所述第一走线子部与所述第一触控走线中相邻的所述第一走线子部围绕同一所述发光像素设置,且所述第二触控走线中的所述第一走线子部,向着所述第三触控走线中相邻的所述第一走线子部的方向设置有至少两条第一凸起结构;
所述第二触控走线中的所述第二走线子部与所述第一触控走线中相邻的所述第二走线子部围绕同一所述发光像素设置,且所述第二触控走线中的所述第二走线子部,向着所述第三触控走线中相邻的所述第二走线子部的方向设置有至少两条第二凸起结构。
有益效果
相较于现有技术,本申请通过在第一子部中将与一第一走线子部相连的两个第一连接子部的宽度设置为不相同,和/或,将相邻两个第一走线子部之间的两个相连的第一连接子部的宽度设置为不相同;以及在第二子部中与一第二走线子部相连的两个第二连接子部的宽度不相同,和/或,将相邻两个第二走线子部之间的两个相连的第二连接子部的宽度不相同,进而在相邻的两条第一子部之间,以及在相邻的两条第二子部之间,可以形成折线形的隔断通道,使得第一子部与第二子部中的隔断通道同时具有沿第一方向与第二方向延伸的部分,进而可以减小沿第一方向与第二方向排列的触控走线的图案化差异,以减小沿第一方向与第二方向排列的触控走线在显示透光过程中的差异,改善触控显示面板的显示不均的现象。
附图说明
下面结合附图,通过对本申请的具体实施方式详细描述,将使本申请的技术方案及其它有益效果显而易见。
图1为本申请实施例提供的一种显示面板中触控层的分布结构示意图;
图2A为本申请实施例提供的一种第一走线部的隔断结构示意图;
图2B为本申请实施例提供的一种第二走线部的隔断结构示意图;
图3A为相关技术中纵向触控走线的隔断结构示意图;
图3B为相关技术中横向触控走线的隔断结构示意图;
图4为本申请实施例提供的一种第一走线单元的结构示意图;
图5A为本申请实施例提供的另一种第一走线部的隔断结构示意图;
图5B为本申请实施例提供的另一种第二走线部的隔断结构示意图;
图6A为本申请实施例提供的又一种第一走线部的隔断结构示意图;
图6B为本申请实施例提供的又一种第二走线部的隔断结构示意图;
图7A为本申请实施例提供的另一种第一走线部的隔断结构示意图;
图7B为本申请实施例提供的另一种第二走线部的隔断结构示意图;
图8A为本申请实施例提供的又一种第一走线部的隔断结构示意图;
图8B为本申请实施例提供的又一种第二走线部的隔断结构示意图;
图9A为本申请实施例提供的另一种第一走线部的隔断结构示意图;
图9B为本申请实施例提供的另一种第二走线部的隔断结构示意图。
本发明的实施方式
下面将结合本申请实施例中的附图,对本申请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申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域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,都属于本申请保护的范围。
本申请实施例提供一种触控显示面板,请参照图1、图2A以及图2B,该触控显示面板包括基板以及设置于基板上发光层以及触控层,且显示面板包括显示区AA和非显示区BA。
其中,发光层设置于基板的一侧,且发光层包括设置于显示区中的多个发光像素12;触控层包括设置于显示区AA中的多个触控电极11、和多条与触控电极11对应设置的触控走线20。
触控走线20包括沿第一方向X设置的第一子部21以及沿第二方向Y设置的第二子部22,且第一方向X与第二方向Y相异。
进一步地,第一子部21包括:沿第一方向X并设置在发光像素12一侧的第一走线子部211、和连接相邻两个第一走线子部211的多个第一连接子部212,与一第一走线子部211相连的两个第一连接子部212的宽度不相同,和/或,相邻两个第一走线子部211之间的相连的两个第一连接子部212的宽度不相同。
第二子部22包括:沿第二方向Y并设置在发光像素12一侧的第二走线子部221、和连接相邻第二走线子部221的第二连接子部222,与一第二走线子部221相连的两个第二连接子部222的宽度不相同,和/或,相邻两个第二走线子部221之间的相连的两个第二连接子部222的宽度不相同。
在实施应用过程中,请参照图3A以及图3B,在相关技术中,将触控面板的触控电极块与触控引线设置于同一层,具体地,可在触控电极块的同层设置呈行列排布的多个连接单元,且每个连接单元包括中间体1以及连接于中间体1四周的连接体2,且各中间体1通过连接体2与相邻的中间体1连接,且相关技术中通过将各中间体1与连接体2沿横向以及纵向进行打断,形成纵向断口3和横向断口4,进而可以形成多个独立的触控引线,且各触控引线与触控电极块进行搭接,以实现触控功能。但是,在相关技术中,纵向断口3与横向断口4皆为直线打断,形成的断口的延伸方向单一,在触控显示面板进行显示过程中,纵向断口3透光形成的为一竖线,而横向断口4透光形成的为一横线,导致触控显示面板在纵向断口3处与横向断口4处的透光亮度差异明显,容易产生显示不均的现象。而本申请实施例中,通过在第一子部21中将与一第一走线子部211相连的两个第一连接子部212的宽度设置为不相同,和/或,将相邻两个第一走线子部211之间的两个相连的第一连接子部212的宽度设置为不相同;以及在第二子部22中与一第二走线子部221相连的两个第二连接子部222的宽度不相同,和/或,将相邻两个第二走线子部221之间的两个相连的第二连接子部222的宽度不相同,进而在相邻的两条第一子部21之间,以及在相邻的两条第二子部22之间,可以形成折线形的隔断通道,使得第一子部21与第二子部22中的隔断通道同时具有沿第一方向X与第二方向Y延伸的部分,进而可以减小沿第一方向X与第二方向Y排列的触控走线的图案化差异,以减小沿第一方向X与第二方向Y排列的触控走线在显示透光过程中的差异,改善触控显示面板的显示不均的现象。
具体地,请继续参照图1、图2A以及图2B,触控显示面板包括显示区AA以及非显示区BA,且触控显示面板还包括基板以及设置于基板上的发光层和触控层。需要说明的是,本申请实施例仅对设置于触控显示面板上的触控层进行展开说明,而设置于触控显示面板上的其他显示器件以及膜层皆可参照常规工艺实现;例如触控显示面板可为液晶显示面板,则触控显示面板包括阵列基板、液晶层以及彩膜基板,则触控层可外挂于阵列基板与彩膜基板外,或内设于阵列基板与彩膜基板内;又例如触控显示面板还可为有机发光二极管显示面板,则触控显示面板还包括设置于基板上的薄膜晶体管层、发光层以及封装层,则触控层可设置于封装层上或设置于封装层下。且本申请实施例仅以上述为例,但并不限于此,可根据实际需求进行选择。在本申请实施例中,显示面板包括基板、设置于基板上的发光层以及设置于发光层上的触控层,其中,显示面板还包括显示区AA以及非显示区BA,且发光层包括设置于显示区AA内的多个发光像素12,触控层包括设置于显示区AA内的多个触控电极11以及连接于每一触控电极11设置的触控走线20。
触控层包括沿第一方向X以及第二方向Y呈行列分布于显示区AA内的多个触控电极11,以及一端延伸至显示区AA内连接于各触控电极11,另一端延伸至非显示区BA并连接于端子部30的触控走线20。
需要说明的是,端子部30设置于非显示区BA内,且端子部30内设置有用于绑定的多个金属端子;其中包括用于传输触控信号的触控端子部31,其内分布有用于传输触控信号的触控金属端子。
进一步地,触控走线20包括沿第一方向X设置的第一子部21以及沿第二方向Y设置的第二子部22,其中,在第一子部21中,包括沿第一方向X排列的多个第一走线子部211以及沿第一方向X连接于每一第一走线子部211两侧的第一连接子部212,且相邻的两个第一走线子部211之间通过两个第一连接子部212相连接,其中,连接于同一第一走线子部211的两个第一连接子部212的宽度不同,和/或,相邻两个第一走线子部211之间相连接的两个第一连接子部212的宽度不同。
此外,第二子部22中,包括沿第二方向排列的多个第二走线子部221以及沿第二方向Y连接于每一第二走线子部221两侧的第二连接子部222,且相邻的两个第二走线子部221之间通过两个第二连接子部222相连接,其中,连接于同一第二走线子部221的两个第二连接子部222的宽度不同,和/或,相邻两个第二走线子部221之间相连接的两个第二连接子部222的宽度不同。
如图4所示,以第一子部21中的结构为例,其中,包括相邻的两个第一走线子部211以及连接于各第一走线子部211两侧的两个第一连接子部212,在本申请实施例中,连接于左侧第一走线子部211上方的第一连接子部212的宽度为L1,连接于左侧第一走线子部212下方的第一连接子部212的宽度为L3,连接于右侧第一走线子部211上方的第一连接子部212的宽度为L2,连接右侧第一走线子部211下方的第一连接子部212的宽度为L4,其中,L1可等于L4,L2可等于L3;连接于两个第一走线子部211上方的两个第一连接子部212之间的间距为W1,连接于两个第一走线子部211下方的两个第一连接子部212之间的间距为W2,其中,W1可等于W2,以使得相邻两条第一子部21之间相隔断形成的第一隔断通道201为折线形。
可以理解的是,第一子部21为沿第一方向X设置的触控走线20,而第二子部22为沿第二方向Y设置的触控走线20,在本申请实施例中,一方面,非显示区BA包括弯折区CA,通过弯折区CA进行弯折,以将端子部30弯折至触控显示面板的背面,以减小触控显示面板的边框宽度;另一方面,将沿第二方向Y排布的触控走线20设置于显示区AA内,进而可以节省非显示区BA内的空间,以进一步实现窄边框显示。
承上,触控走线20为分布于显示区AA内的多个如图2A所示网格结构沿第一方向X和第二方向Y进行隔断所形成的,且本申请实施例通过将对连接子部的宽度进行差异化设置,以使得触控走线20的隔断通道为折线形,以提高显示面板的显示均一性。
具体地,下面结合具体实施例进行详述,且本申请实施例中皆仅示出四条第一子部21,以及每条第一子部21包括两个第一走线子部211以及连接于各第一走线子部211的第一连接子部212为例,同理,本申请实施例中皆仅示出四条第二子部22,以及每条第二子部22包括两个第二走线子部221以及连接于各第二走线子部221的第二连接子部222为例,进行说明。
在本申请的一种实施例中,请参照图1、图2A以及图2B,在本实施例中,对于第一子部21中,连接于同一个第一走线子部211的两个第一连接子部212的宽度不相同,且沿第一方向X相邻的两个第一走线子部211之间相连的两个第一连接子部212的宽度相同,以使得相邻两条第一子部21之间形成的第一隔断通道201为折线形,以提高显示面板的显示均一性。
进一步地,从左至右,第一条第一子部21与第二条第一子部21之间,其中第一条第一子部21的第一走线子部211与相邻的一个第一走线子部211围绕一个发光像素12设置;而第三条第一子部21与第四条第一子部21之间,其中第三条第一子部21的第一走线子部211与相邻的一个第一走线子部211围绕一个发光像素12设置,进而本申请实施例中将触控走线20设置于显示区AA中,但是并不会遮挡发光像素12的发光,即可以提高显示面板的出光量和出光效果。
此外,每一第一走线子部211沿第二方向Y上设置有第一凸起结构213,例如,在第二条第一子部21和第三条第一子部21之间,其中一条第一子部21中的每一第一走线子部211朝向相邻的另一条第一子部21中的方向上设置有两条第一凸起结构213,且第二条第一子部21上的第一凸起结构213与第三条第一子部21上且相对设置的第一凸起结构213相间隔设置。
其中,连接于同一第一走线子部211且位于同一侧的两条第一凸起结构213的宽度不同,且位于相邻两个第一走线子部211之间且相对设置的两条第一凸起结构213的宽度相同,连接于同一走线子部211相对两侧且相对设置的两条第一凸起结构213的宽度不相同。
在本实施例中,对于第二子部22,连接于同一个第二走线子部221的两个第二连接子部222的宽度不相同,且沿第二方向Y相邻的两个第二走线子部221之间相连的两个第二连接子部222的宽度相同,以使得相邻两条第二子部22之间形成的第二隔断通道202为折线形,以提高显示面板的显示均一性。
进一步地,从上至下,第一条第二子部22与第二条第二子部22之间,其中第一条第二子部21的第二走线子部221与相邻的一个第二走线子部221围绕一个发光像素12设置;而第三条第二子部22与第四条第二子部22之间,其中第三条第二子部22的第二走线子部221与相邻的一个第二走线子部221围绕一个发光像素12设置,进而本申请实施例中将触控走线20设置于显示区AA中,但是并不会遮挡发光像素12的发光,即可以提高显示面板的出光量和出光效果。
此外,每一第二走线子部221沿第一方向X上设置有第二凸起结构223,例如,在第二条第二子部22和第三条第二子部22之间,其中一条第二子部22中的每一第二走线子部221朝向相邻的另一条第二子部22中的方向上设置有两条第二凸起结构223,且第二条第二子部22上的第二凸起结构223与第三条第二子部22上且相对设置的第二凸起结构223相间隔设置。
其中,连接于同一第二走线子部221且位于同一侧的两条第二凸起结构223的宽度不同,且位于相邻两个第二走线子部221之间且相对设置的两条第二凸起结构223的宽度相同,连接于同一第一走线子部211相对两侧且相对设置的两条第二凸起结构223的宽度不相同。
承上,在本申请实施例中,至少一第一子部21与至少一第二子部22相连接,以形成各连接于触控电极11的触控走线20,请结合图1以及图2A所示,触控走线20包括依次相邻的第一触走线2011、第二触控走线2012以及第三触控走线2013;其中,第二触控走线2012中的第一走线子部211与第一触控走线2011中相邻的第一走线子部211围绕同一发光像素12设置,且第二触控走线2012中的第一走线子部211,向着第三触控走线2013中相邻的第一走线子部211的方向设置有至少两条第一凸起结构213;第二触控走线2012中的第二走线子部221与第一触控走线2011中相邻的第二走线子部221围绕同一发光像素12设置,且第二触控走线2012中的第二走线子部221,向着第三触控走线2013中相邻的第二走线子部221的方向设置有至少两条第二凸起结构223。
需要说明的是,在本申请实施例中,第一子部21还可包括第三走线子部以及连接第三走线子部两侧的第三连接子部,且连接于同一第三走线子部两侧的两个第三连接子部的宽度相等,或相邻的两个第三走线子部之间相连接的两个第三连接子部的宽度相等,以形成直线形隔断通道;可以理解的是,为了提高显示面板的显示均一性,提高改善效果,则第一子部21中第一走线子部211的数量需要大于第三走线子部的数量。同理,第二子部22中也可包括第四走线子部以及连接第四走线子部两侧的第四连接子部,且连接于同一第四走线子部两侧的两个第四连接子部的宽度相等,或相邻的两个第四走线子部之间相连接的两个第四连接子部的宽度相等,以形成直线形隔断通道,且为了提高显示面板的显示均一性,提高改善效果,则第二子部22中第二走线子部221的数量需要大于第三走线子部的数量。
承上,在本实施例中,相邻的第一子部21之间可形成折线形的第一隔断通道201,以及相邻的第二子部22之间可形成折线形的第二隔断通道202,进而在形成沿第一方向X的第一子部21,以及在形成沿第二方向Y的第二子部22时,不仅仅只有竖向透光,同时还有横向透光,以减小触控显示面板在图案化触控走线20时竖向与横向之间的透光差异,进而可以有效改善触控显示面板的显示不均现象,提高触控显示面板的显示效果。
请继续参照图1、图5A以及图5B,在本申请的另一种实施例中,在本实施例中,对于第一子部21中,连接于同一个第一走线子部211的两个第一连接子部212的宽度不相同,且沿第一方向X相邻的两个第一走线子部211之间相连的两个第一连接子部212的宽度也不相同,以使得相邻两条第一子部21之间形成的第一隔断通道201为折线形,以提高显示面板的显示均一性。
进一步地,从左至右,第一条第一子部21与第二条第一子部21之间,其中第一条第一子部21的第一走线子部211与相邻的一个第一走线子部211围绕一个发光像素12设置;而第三条第一子部21与第四条第一子部21之间,其中第三条第一子部21的第一走线子部211与相邻的一个第一走线子部211围绕一个发光像素12设置,进而本申请实施例中将触控走线20设置于显示区AA中,但是并不会遮挡发光像素12的发光,即可以提高显示面板的出光量和出光效果。
此外,每一第一走线子部211沿第二方向Y上设置有第一凸起结构213,例如,在第二条第一子部21和第三条第一子部21之间,其中一条第一子部21中的每一第一走线子部211朝向相邻的另一条第一子部21中的方向上设置有两条第一凸起结构213,且第二条第一子部21上的第一凸起结构213与第三条第一子部21上且相对设置的第一凸起结构213相间隔设置。
其中,连接于同一第一走线子部211且位于同一侧的两条第一凸起结构213的宽度不相同,且位于相邻两个第一走线子部211之间且相对设置的两条第一凸起结构213的宽度不相同,连接于同一走线子部211相对两侧且相对设置的两条第一凸起结构213的宽度不相同。
在本实施例中,对于第二子部22,连接于同一个第二走线子部221的两个第二连接子部222的宽度不相同,且沿第二方向Y相邻的两个第二走线子部221之间相连的两个第二连接子部222的宽度不相同,以使得相邻两条第二子部22之间形成的第二隔断通道202为折线形,以提高显示面板的显示均一性。
进一步地,从上至下,第一条第二子部22与第二条第二子部22之间,其中第一条第二子部21的第二走线子部221与相邻的一个第二走线子部221围绕一个发光像素12设置;而第三条第二子部22与第四条第二子部22之间,其中第三条第二子部22的第二走线子部221与相邻的一个第二走线子部221围绕一个发光像素12设置,进而本申请实施例中将触控走线20设置于显示区AA中,但是并不会遮挡发光像素12的发光,即可以提高显示面板的出光量和出光效果。
此外,每一第二走线子部221沿第一方向X上设置有第二凸起结构223,例如,在第二条第二子部22和第三条第二子部22之间,其中一条第二子部22中的每一第二走线子部221朝向相邻的另一条第二子部22中的方向上设置有两条第二凸起结构223,且第二条第二子部22上的第二凸起结构223与第三条第二子部22上且相对设置的第二凸起结构223相间隔设置。
其中,连接于同一第二走线子部221且位于同一侧的两条第二凸起结构223的宽度不同,且位于相邻两个第二走线子部221之间且相对设置的两条第二凸起结构223的宽度相同,连接于同一第一走线子部211相对两侧且相对设置的两条第二凸起结构223的宽度不相同。
承上,在本实施例中,相邻的第一子部21之间可形成折线形的第一隔断通道201,以及相邻的第二子部22之间可形成折线形的第二隔断通道202,进而在形成沿第一方向X的第一子部21,以及在形成沿第二方向Y的第二子部22时,不仅仅只有竖向透光,同时还有横向透光,以减小触控显示面板在图案化触控走线20时竖向与横向之间的透光差异,进而可以有效改善触控显示面板的显示不均现象,提高触控显示面板的显示效果。
请参照图1、图6A以及图6B,在本申请的另一种实施例中,在本实施例中,对于第一子部21中,连接于同一个第一走线子部211的两个第一连接子部212的宽度不相同,且沿第一方向X相邻的两个第一走线子部211之间相连的两个第一连接子部212的宽度相同,以使得相邻两条第一子部21之间形成的第一隔断通道201为折线形,以提高显示面板的显示均一性。
进一步地,从左至右,第一条第一子部21与第二条第一子部21之间,其中第一条第一子部21的第一走线子部211与相邻的一个第一走线子部211围绕一个发光像素12设置;而第三条第一子部21与第四条第一子部21之间,其中第三条第一子部21的第一走线子部211与相邻的一个第一走线子部211围绕一个发光像素12设置,进而本申请实施例中将触控走线20设置于显示区AA中,但是并不会遮挡发光像素12的发光,即可以提高显示面板的出光量和出光效果。
此外,每一第一走线子部211沿第二方向Y上设置有第一凸起结构213,例如,在第二条第一子部21和第三条第一子部21之间,其中一条第一子部21中的每一第一走线子部211朝向相邻的另一条第一子部21中的方向上设置有两条第一凸起结构213,且第二条第一子部21上的第一凸起结构213与第三条第一子部21上且相对设置的第一凸起结构213相间隔设置。
其中,连接于同一第一走线子部211且位于同一侧的两条第一凸起结构213的宽度不相同,且位于相邻两个第一走线子部211之间且相对设置的两条第一凸起结构213的宽度相同,连接于同一走线子部211相对两侧且相对设置的两条第一凸起结构213的宽度不相同。
在本实施例中,各第一走线子部211沿第二方向Y设置有第三隔断通道203,且第三隔断通道203设置于连接该第一走线子部211同一侧两条第一凸起结构213之间,以将第一子部21分隔为沿第一方向X排列的多段,以在触控走线20中形成与触控电极11连接的信号走线、以及和信号走线间隔设置的虚拟走线,且虚拟走线与信号走线的结构相同,进而可以在显示过程中具有相同的透光,以提高显示面板在各触控走线20中的透光均一性,提高显示面板的显示均一性。
在本实施例中,对于第二子部22,连接于同一个第二走线子部221的两个第二连接子部222的宽度不相同,且沿第二方向Y相邻的两个第二走线子部221之间相连的两个第二连接子部222的宽度相同,以使得相邻两条第二子部22之间形成的第二隔断通道202为折线形,以提高显示面板的显示均一性。
进一步地,从上至下,第一条第二子部22与第二条第二子部22之间,其中第一条第二子部21的第二走线子部221与相邻的一个第二走线子部221围绕一个发光像素12设置;而第三条第二子部22与第四条第二子部22之间,其中第三条第二子部22的第二走线子部221与相邻的一个第二走线子部221围绕一个发光像素12设置,进而本申请实施例中将触控走线20设置于显示区AA中,但是并不会遮挡发光像素12的发光,即可以提高显示面板的出光量和出光效果。
此外,每一第二走线子部221沿第一方向X上设置有第二凸起结构223,例如,在第二条第二子部22和第三条第二子部22之间,其中一条第二子部22中的每一第二走线子部221朝向相邻的另一条第二子部22中的方向上设置有两条第二凸起结构223,且第二条第二子部22上的第二凸起结构223与第三条第二子部22上且相对设置的第二凸起结构223相间隔设置。
其中,连接于同一第二走线子部221且位于同一侧的两条第二凸起结构223的宽度不同,且位于相邻两个第二走线子部221之间且相对设置的两条第二凸起结构223的宽度相同,连接于同一第一走线子部211相对两侧且相对设置的两条第二凸起结构223的宽度不相同。
在本实施例中,各第二走线子部221沿第一方向X设置有第四隔断通道204,且第四隔断通道204设置于连接该第二走线子部221同一侧两条第二凸起结构223之间,以将第二子部22分隔为沿第二方向Y排列的多段,以在触控走线20中形成与触控电极11连接的信号走线,以及和信号走线间隔设置的虚拟走线,且虚拟走线与信号走线的结构相同,进而可以在显示过程中具有相同的透光,以提高显示面板在各触控走线20中的透光均一性,提高显示面板的显示均一性。
承上,在本实施例中,相邻的第一子部21之间可形成折线形的第一隔断通道201,以及相邻的第二子部22之间可形成折线形的第二隔断通道202,进而在形成沿第一方向X的第一子部21,以及在形成沿第二方向Y的第二子部22时,不仅仅只有竖向透光,同时还有横向透光,以减小触控显示面板在图案化触控走线20时竖向与横向之间的透光差异,进而可以有效改善触控显示面板的显示不均现象,提高触控显示面板的显示效果。
请参照图1、图7A以及图7B,在本申请的另一种实施例中,在本实施例中,对于第一子部21中,连接于同一个第一走线子部211的两个第一连接子部212的宽度不相同,且沿第一方向X相邻的两个第一走线子部211之间相连的两个第一连接子部212的宽度不相同,以使得相邻两条第一子部21之间形成的第一隔断通道201为折线形,以提高显示面板的显示均一性。
进一步地,从左至右,第一条第一子部21与第二条第一子部21之间,其中第一条第一子部21的第一走线子部211与相邻的一个第一走线子部211围绕一个发光像素12设置;而第三条第一子部21与第四条第一子部21之间,其中第三条第一子部21的第一走线子部211与相邻的一个第一走线子部211围绕一个发光像素12设置,进而本申请实施例中将触控走线20设置于显示区AA中,但是并不会遮挡发光像素12的发光,即可以提高显示面板的出光量和出光效果。
此外,每一第一走线子部211沿第二方向Y上设置有第一凸起结构213,例如,在第二条第一子部21和第三条第一子部21之间,其中一条第一子部21中的每一第一走线子部211朝向相邻的另一条第一子部21中的方向上设置有两条第一凸起结构213,且第二条第一子部21上的第一凸起结构213与第三条第一子部21上且相对设置的第一凸起结构213相间隔设置。
其中,连接于同一第一走线子部211且位于同一侧的两条第一凸起结构213的宽度不相同,且位于相邻两个第一走线子部211之间且相对设置的两条第一凸起结构213的宽度相同,连接于同一走线子部211相对两侧且相对设置的两条第一凸起结构213的宽度不相同。
在本实施例中,各第一走线子部211沿第二方向Y设置有第三隔断通道203,且第三隔断通道203设置于连接该第一走线子部211同一侧两条第一凸起结构213之间,以将第一子部21分隔为沿第一方向X排列的多段,以在触控走线20中形成与触控电极11连接的信号走线、以及和信号走线间隔设置的虚拟走线,且虚拟走线与信号走线的结构相同,进而可以在显示过程中具有相同的透光,以提高显示面板在各触控走线20中的透光均一性,提高显示面板的显示均一性。
在本实施例中,对于第二子部22,连接于同一个第二走线子部221的两个第二连接子部222的宽度不相同,且沿第二方向Y相邻的两个第二走线子部221之间相连的两个第二连接子部222的宽度不相同,以使得相邻两条第二子部22之间形成的第二隔断通道202为折线形,以提高显示面板的显示均一性。
进一步地,从上至下,第一条第二子部22与第二条第二子部22之间,其中第一条第二子部21的第二走线子部221与相邻的一个第二走线子部221围绕一个发光像素12设置;而第三条第二子部22与第四条第二子部22之间,其中第三条第二子部22的第二走线子部221与相邻的一个第二走线子部221围绕一个发光像素12设置,进而本申请实施例中将触控走线20设置于显示区AA中,但是并不会遮挡发光像素12的发光,即可以提高显示面板的出光量和出光效果。
此外,每一第二走线子部221沿第一方向X上设置有第二凸起结构223,例如,在第二条第二子部22和第三条第二子部22之间,其中一条第二子部22中的每一第二走线子部221朝向相邻的另一条第二子部22中的方向上设置有两条第二凸起结构223,且第二条第二子部22上的第二凸起结构223与第三条第二子部22上且相对设置的第二凸起结构223相间隔设置。
其中,连接于同一第二走线子部221且位于同一侧的两条第二凸起结构223的宽度不同,且位于相邻两个第二走线子部221之间且相对设置的两条第二凸起结构223的宽度相同,连接于同一第一走线子部211相对两侧且相对设置的两条第二凸起结构223的宽度不相同。
在本实施例中,各第二走线子部221沿第一方向X设置有第四隔断通道204,且第四隔断通道204设置于连接该第二走线子部221同一侧两条第二凸起结构223之间,以将第二子部22分隔为沿第二方向Y排列的多段,以在触控走线20中形成与触控电极11连接的信号走线,以及和信号走线间隔设置的虚拟走线,且虚拟走线与信号走线的结构相同,进而可以在显示过程中具有相同的透光,以提高显示面板在各触控走线20中的透光均一性,提高显示面板的显示均一性。
承上,在本实施例中,相邻的第一子部21之间可形成折线形的第一隔断通道201,以及相邻的第二子部22之间可形成折线形的第二隔断通道202,进而在形成沿第一方向X的第一子部21,以及在形成沿第二方向Y的第二子部22时,不仅仅只有竖向透光,同时还有横向透光,以减小触控显示面板在图案化触控走线20时竖向与横向之间的透光差异,进而可以有效改善触控显示面板的显示不均现象,提高触控显示面板的显示效果。
请参照图1、图8A以及图8B,在本申请的另一种实施例中,在本实施例中,对于第一子部21中,连接于同一个第一走线子部211的两个第一连接子部212的宽度不相同,且沿第一方向X相邻的两个第一走线子部211之间相连的两个第一连接子部212的宽度相同,以使得相邻两条第一子部21之间形成的第一隔断通道201为折线形,以提高显示面板的显示均一性。
进一步地,从左至右,第一条第一子部21与第二条第一子部21之间,其中第一条第一子部21的第一走线子部211与相邻的一个第一走线子部211围绕一个发光像素12设置;而第三条第一子部21与第四条第一子部21之间,其中第三条第一子部21的第一走线子部211与相邻的一个第一走线子部211围绕一个发光像素12设置,进而本申请实施例中将触控走线20设置于显示区AA中,但是并不会遮挡发光像素12的发光,即可以提高显示面板的出光量和出光效果。
此外,每一第一走线子部211沿第二方向Y上设置有第一凸起结构213,例如,在第二条第一子部21和第三条第一子部21之间,其中一条第一子部21中的每一第一走线子部211朝向相邻的另一条第一子部21中的方向上设置有两条第一凸起结构213,且第二条第一子部21上的第一凸起结构213与第三条第一子部21上且相对设置的第一凸起结构213相间隔设置。
其中,连接于同一第一走线子部211且位于同一侧的两条第一凸起结构213的宽度不相同,且位于相邻两个第一走线子部211之间且相对设置的两条第一凸起结构213的宽度相同,连接于同一走线子部211相对两侧且相对设置的两条第一凸起结构213的宽度不相同,连接于一个第一走线子部211同一侧的两条第一凸起结构213的长度不相同,第二条第一子部21中的各第一凸起结构213的长度与第三条第一子部21中且相对设置的第一凸起结构213的长度不相同。
在本实施例中,各第一走线子部211沿第二方向Y设置有第三隔断通道203,且第三隔断通道203设置于连接该第一走线子部211同一侧两条第一凸起结构213之间,以将第一子部21分隔为沿第一方向X排列的多段,以在触控走线20中形成与触控电极11连接的信号走线、以及和信号走线间隔设置的虚拟走线,且虚拟走线与信号走线的结构相同,进而可以在显示过程中具有相同的透光,以提高显示面板在各触控走线20中的透光均一性,提高显示面板的显示均一性。
在本实施例中,对于第二子部22,连接于同一个第二走线子部221的两个第二连接子部222的宽度不相同,且沿第二方向Y相邻的两个第二走线子部221之间相连的两个第二连接子部222的宽度相同,以使得相邻两条第二子部22之间形成的第二隔断通道202为折线形,以提高显示面板的显示均一性。
进一步地,从上至下,第一条第二子部22与第二条第二子部22之间,其中第一条第二子部21的第二走线子部221与相邻的一个第二走线子部221围绕一个发光像素12设置;而第三条第二子部22与第四条第二子部22之间,其中第三条第二子部22的第二走线子部221与相邻的一个第二走线子部221围绕一个发光像素12设置,进而本申请实施例中将触控走线20设置于显示区AA中,但是并不会遮挡发光像素12的发光,即可以提高显示面板的出光量和出光效果。
此外,每一第二走线子部221沿第一方向X上设置有第二凸起结构223,例如,在第二条第二子部22和第三条第二子部22之间,其中一条第二子部22中的每一第二走线子部221朝向相邻的另一条第二子部22中的方向上设置有两条第二凸起结构223,且第二条第二子部22上的第二凸起结构223与第三条第二子部22上且相对设置的第二凸起结构223相间隔设置。
其中,连接于同一第二走线子部221且位于同一侧的两条第二凸起结构223的宽度不同,且位于相邻两个第二走线子部221之间且相对设置的两条第二凸起结构223的宽度相同,连接于同一第二走线子部221相对两侧且相对设置的两条第二凸起结构223的宽度不相同,连接于一个第二走线子部221同一侧的两条第二凸起结构223的长度不相同,第二条第二子部22中的各第二凸起结构223的长度与第三条第二子部22中且相对设置的第二凸起结构223的长度不相同。
在本实施例中,各第二走线子部221沿第一方向X设置有第四隔断通道204,且第四隔断通道204设置于连接该第二走线子部221同一侧两条第二凸起结构223之间,以将第二子部22分隔为沿第二方向Y排列的多段,以在触控走线20中形成与触控电极11连接的信号走线,以及和信号走线间隔设置的虚拟走线,且虚拟走线与信号走线的结构相同,进而可以在显示过程中具有相同的透光,以提高显示面板在各触控走线20中的透光均一性,提高显示面板的显示均一性。
承上,在本实施例中,相邻的第一子部21之间可形成折线形的第一隔断通道201,以及相邻的第二子部22之间可形成折线形的第二隔断通道202,进而在形成沿第一方向X的第一子部21,以及在形成沿第二方向Y的第二子部22时,不仅仅只有竖向透光,同时还有横向透光,以减小触控显示面板在图案化触控走线20时竖向与横向之间的透光差异,进而可以有效改善触控显示面板的显示不均现象,提高触控显示面板的显示效果。
请参照图1、图9A以及图9B,在本申请的另一种实施例中,在本实施例中,对于第一子部21中,连接于同一个第一走线子部211的两个第一连接子部212的宽度不相同,且沿第一方向X相邻的两个第一走线子部211之间相连的两个第一连接子部212的宽度不相同,以使得相邻两条第一子部21之间形成的第一隔断通道201为折线形,以提高显示面板的显示均一性。
进一步地,从左至右,第一条第一子部21与第二条第一子部21之间,其中第一条第一子部21的第一走线子部211与相邻的一个第一走线子部211围绕一个发光像素12设置;而第三条第一子部21与第四条第一子部21之间,其中第三条第一子部21的第一走线子部211与相邻的一个第一走线子部211围绕一个发光像素12设置,进而本申请实施例中将触控走线20设置于显示区AA中,但是并不会遮挡发光像素12的发光,即可以提高显示面板的出光量和出光效果。
此外,每一第一走线子部211沿第二方向Y上设置有第一凸起结构213,例如,在第二条第一子部21和第三条第一子部21之间,其中一条第一子部21中的每一第一走线子部211朝向相邻的另一条第一子部21中的方向上设置有两条第一凸起结构213,且第二条第一子部21上的第一凸起结构213与第三条第一子部21上且相对设置的第一凸起结构213相间隔设置。
其中,连接于同一第一走线子部211且位于同一侧的两条第一凸起结构213的宽度不相同,且位于相邻两个第一走线子部211之间且相对设置的两条第一凸起结构213的宽度不相同,连接于同一第一走线子部211相对两侧且相对设置的两条第一凸起结构213的宽度不相同,连接于一个第一走线子部211同一侧的两条第一凸起结构213的长度不相同,第二条第一子部21中的各第一凸起结构213的长度与第三条第一子部21中且相对设置的第一凸起结构213的长度不相同。
进一步地,连接于第二条第一子部21左侧的第一凸起结构213中,其中部分第一凸起结构213的宽度可呈不均一变化,例如,靠近其连接的第一走线子部211一侧的宽度大于远离第一走线子部211一侧的宽度。
在本实施例中,对于第二子部22,连接于同一个第二走线子部221的两个第二连接子部222的宽度不相同,且沿第二方向Y相邻的两个第二走线子部221之间相连的两个第二连接子部222的宽度不相同,以使得相邻两条第二子部22之间形成的第二隔断通道202为折线形,以提高显示面板的显示均一性。
进一步地,从上至下,第一条第二子部22与第二条第二子部22之间,其中第一条第二子部21的第二走线子部221与相邻的一个第二走线子部221围绕一个发光像素12设置;而第三条第二子部22与第四条第二子部22之间,其中第三条第二子部22的第二走线子部221与相邻的一个第二走线子部221围绕一个发光像素12设置,进而本申请实施例中将触控走线20设置于显示区AA中,但是并不会遮挡发光像素12的发光,即可以提高显示面板的出光量和出光效果。
此外,每一第二走线子部221沿第一方向X上设置有第二凸起结构223,例如,在第二条第二子部22和第三条第二子部22之间,其中一条第二子部22中的每一第二走线子部221朝向相邻的另一条第二子部22中的方向上设置有两条第二凸起结构223,且第二条第二子部22上的第二凸起结构223与第三条第二子部22上且相对设置的第二凸起结构223相间隔设置。
其中,连接于同一第二走线子部221且位于同一侧的两条第二凸起结构223的宽度不同,且位于相邻两个第二走线子部221之间且相对设置的两条第二凸起结构223的宽度不相同,连接于同一第一走线子部211相对两侧且相对设置的两条第二凸起结构223的宽度不相同,连接于一个第二走线子部221同一侧的两条第二凸起结构223的长度不相同,第二条第二子部22中的各第二凸起结构223的长度与第三条第二子部22中且相对设置的第二凸起结构223的长度不相同。
进一步地,连接于第二条第二子部22下侧的第二凸起结构223中,其中部分第二凸起结构223的宽度可呈不均一变化,例如,靠近其连接的第二走线子部221一侧的宽度大于远离第二走线子部221一侧的宽度。
承上,在本实施例中,相邻的第一子部21之间可形成折线形的第一隔断通道201,以及相邻的第二子部22之间可形成折线形的第二隔断通道202,进而在形成沿第一方向X的第一子部21,以及在形成沿第二方向Y的第二子部22时,不仅仅只有竖向透光,同时还有横向透光,以减小触控显示面板在图案化触控走线20时竖向与横向之间的透光差异,进而可以有效改善触控显示面板的显示不均现象,提高触控显示面板的显示效果。
另外,本申请实施例还提供一种显示装置,该显示装置包括上述实施例中所述的触控显示面板。
在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详述的部分,可以参见其他实施例的相关描述。
以上对本申请实施例所提供的一种触控显示面板及显示装置进行了详细介绍,本文中应用了具体个例对本申请的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本申请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,或者对其中部分技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本申请各实施例的技术方案的范围。

Claims (20)

  1. 一种触控显示面板,包括显示区和非显示区,所述触控显示面板还包括:
    基板;
    发光层,设置在所述基板的一侧,且包括设置在所述显示区中的多个发光像素;
    触控层,包括多个设置在所述显示区中的触控电极、和多条与所述触控电极对应设置的触控走线;
    其中,所述触控走线包括沿第一方向设置的第一子部和沿第二方向设置的第二子部,所述第一方向与所述第二方向相异;
    所述第一子部包括:多个沿着所述第一方向并设置在所述发光像素一侧的第一走线子部、和多个连接相邻所述第一走线子部的第一连接子部,与一所述第一走线子部相连的两个所述第一连接子部的宽度不相同,和/或,相邻两个所述第一走线子部之间的两个相连的所述第一连接子部的宽度不相同;
    所述第二子部包括:多个沿着所述第二方向并设置在所述发光像素一侧的第二走线子部、和多个连接相邻所述第二走线子部的第二连接子部,与一所述第二走线子部相连的两个所述第二连接子部的宽度不相同,和/或,相邻两个所述第二走线子部之间的两个相连的所述第二连接子部的宽度不相同。
  2. 根据权利要求1所述的触控显示面板,其中,相邻的两条所述第一子部中,其中一条所述第一子部中的所述第一走线子部与另一条所述第一子部中相邻的所述第一走线子部围绕同一所述发光像素设置,其中一条所述第一子部中的所述第一连接子部与另一条所述第一子部中相邻的所述第一连接子部的宽度不相同;
    或者,其中一条所述第一子部中的所述第一走线子部,向着另一条所述第一子部中相邻的所述第一走线子部的方向设置有至少两条第一凸起结构,相邻两条所述第一凸起结构的宽度不相同。
  3. 根据权利要求2所述的触控显示面板,其中,连接于一所述第一走线子部同一侧的两条所述第一凸起结构的长度不相同。
  4. 根据权利要求2所述的触控显示面板,其中,连接于其中一所述第一走线子部的一条所述第一凸起结构的长度与连接于另一所述第一走线子部且相对设置的一条所述第一凸起结构的长度不相同。
  5. 根据权利要求2所述的触控显示面板,其中,两条相邻的所述第一子部中,其中一条所述第一子部中的所述第一走线子部与另一条所述第一子部中相邻的所述第一走线子部的宽度相同。
  6. 根据权利要求1所述的触控显示面板,其中,两条相邻的所述第二子部中,其中一条所述第二子部中的所述第二走线子部与另一条所述第二子部中相邻的所述第二走线子部围绕同一所述发光像素设置,其中一条所述第二子部中的所述第二连接子部与另一条所述第二子部中相邻的所述第二连接子部的宽度不相同;
    或者,其中一条所述第二子部中的所述第二走线子部,向着另一条所述第二子部中相邻的所述第二走线子部的方向设置有至少两条第二凸起结构,相邻两条所述第二凸起结构的宽度不相同。
  7. 根据权利要求6所述的触控显示面板,其中,连接于一所述第二走线子部同一侧的两条所述第二凸起结构的长度不相同。
  8. 根据权利要求6所述的触控显示面板,其中,连接于其中一所述第二走线子部的一条所述第二凸起结构的长度与连接于另一所述第二走线子部且相对设置的一条所述第二凸起结构的长度不相同。
  9. 根据权利要求6所述的触控显示面板,其中,两条相邻的所述第二子部中,其中一条所述第二子部中的所述第二走线子部与另一条所述第二子部中相邻的所述第二走线子部的宽度相同。
  10. 根据权利要求1所述的触控显示面板,其中,多条所述触控走线包括:依次相邻的第一触控走线、第二触控走线、以及第三触控走线;
    所述第二触控走线中的所述第一走线子部与所述第一触控走线中相邻的所述第一走线子部围绕同一所述发光像素设置,且所述第二触控走线中的所述第一走线子部,向着所述第三触控走线中相邻的所述第一走线子部的方向设置有至少两条第一凸起结构;
    所述第二触控走线中的所述第二走线子部与所述第一触控走线中相邻的所述第二走线子部围绕同一所述发光像素设置,且所述第二触控走线中的所述第二走线子部,向着所述第三触控走线中相邻的所述第二走线子部的方向设置有至少两条第二凸起结构。
  11. 一种显示装置,所述显示装置包括触控显示面板,所述触控显示面板包括显示区和非显示区,所述触控显示面板还包括:
    基板;
    发光层,设置在所述基板的一侧,且包括设置在所述显示区中的多个发光像素;
    触控层,包括多个设置在所述显示区中的触控电极、和多条与所述触控电极对应设置的触控走线;
    其中,所述触控走线包括沿第一方向设置的第一子部和沿第二方向设置的第二子部,所述第一方向与所述第二方向相异;
    所述第一子部包括:多个沿着所述第一方向并设置在所述发光像素一侧的第一走线子部、和多个连接相邻所述第一走线子部的第一连接子部,与一所述第一走线子部相连的两个所述第一连接子部的宽度不相同,和/或,相邻两个所述第一走线子部之间的两个相连的所述第一连接子部的宽度不相同;
    所述第二子部包括:多个沿着所述第二方向并设置在所述发光像素一侧的第二走线子部、和多个连接相邻所述第二走线子部的第二连接子部,与一所述第二走线子部相连的两个所述第二连接子部的宽度不相同,和/或,相邻两个所述第二走线子部之间的两个相连的所述第二连接子部的宽度不相同。
  12. 根据权利要求11所述的显示装置,其中,相邻的两条所述第一子部中,其中一条所述第一子部中的所述第一走线子部与另一条所述第一子部中相邻的所述第一走线子部围绕同一所述发光像素设置,其中一条所述第一子部中的所述第一连接子部与另一条所述第一子部中相邻的所述第一连接子部的宽度不相同;
    或者,其中一条所述第一子部中的所述第一走线子部,向着另一条所述第一子部中相邻的所述第一走线子部的方向设置有至少两条第一凸起结构,相邻两条所述第一凸起结构的宽度不相同。
  13. 根据权利要求12所述的显示装置,其中,连接于一所述第一走线子部同一侧的两条所述第一凸起结构的长度不相同。
  14. 根据权利要求12所述的显示装置,其中,连接于其中一所述第一走线子部的一条所述第一凸起结构的长度与连接于另一所述第一走线子部且相对设置的一条所述第一凸起结构的长度不相同。
  15. 根据权利要求12所述的显示装置,其中,两条相邻的所述第一子部中,其中一条所述第一子部中的所述第一走线子部与另一条所述第一子部中相邻的所述第一走线子部的宽度相同。
  16. 根据权利要求11所述的显示装置,其中,两条相邻的所述第二子部中,其中一条所述第二子部中的所述第二走线子部与另一条所述第二子部中相邻的所述第二走线子部围绕同一所述发光像素设置,其中一条所述第二子部中的所述第二连接子部与另一条所述第二子部中相邻的所述第二连接子部的宽度不相同;
    或者,其中一条所述第二子部中的所述第二走线子部,向着另一条所述第二子部中相邻的所述第二走线子部的方向设置有至少两条第二凸起结构,相邻两条所述第二凸起结构的宽度不相同。
  17. 根据权利要求16所述的显示装置,其中,连接于一所述第二走线子部同一侧的两条所述第二凸起结构的长度不相同。
  18. 根据权利要求16所述的显示装置,其中,连接于其中一所述第二走线子部的一条所述第二凸起结构的长度与连接于另一所述第二走线子部且相对设置的一条所述第二凸起结构的长度不相同。
  19. 根据权利要求16所述的显示装置,其中,两条相邻的所述第二子部中,其中一条所述第二子部中的所述第二走线子部与另一条所述第二子部中相邻的所述第二走线子部的宽度相同。
  20. 根据权利要求11所述的显示装置,其中,多条所述触控走线包括:依次相邻的第一触控走线、第二触控走线、以及第三触控走线;
    所述第二触控走线中的所述第一走线子部与所述第一触控走线中相邻的所述第一走线子部围绕同一所述发光像素设置,且所述第二触控走线中的所述第一走线子部,向着所述第三触控走线中相邻的所述第一走线子部的方向设置有至少两条第一凸起结构;
    所述第二触控走线中的所述第二走线子部与所述第一触控走线中相邻的所述第二走线子部围绕同一所述发光像素设置,且所述第二触控走线中的所述第二走线子部,向着所述第三触控走线中相邻的所述第二走线子部的方向设置有至少两条第二凸起结构。
PCT/CN2021/140228 2021-12-15 2021-12-21 触控显示面板及显示装置 WO2023108736A1 (zh)

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