WO2023124151A1 - 显示面板和显示装置 - Google Patents

显示面板和显示装置 Download PDF

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Publication number
WO2023124151A1
WO2023124151A1 PCT/CN2022/114780 CN2022114780W WO2023124151A1 WO 2023124151 A1 WO2023124151 A1 WO 2023124151A1 CN 2022114780 W CN2022114780 W CN 2022114780W WO 2023124151 A1 WO2023124151 A1 WO 2023124151A1
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WO
WIPO (PCT)
Prior art keywords
touch
antenna
display panel
substrate
area
Prior art date
Application number
PCT/CN2022/114780
Other languages
English (en)
French (fr)
Inventor
肖江梅
吕品高
蔺帅
Original Assignee
云谷(固安)科技有限公司
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 云谷(固安)科技有限公司 filed Critical 云谷(固安)科技有限公司
Priority to KR1020237036652A priority Critical patent/KR20230156147A/ko
Priority to JP2023567062A priority patent/JP2024516017A/ja
Publication of WO2023124151A1 publication Critical patent/WO2023124151A1/zh
Priority to US18/485,555 priority patent/US20240039144A1/en

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Classifications

    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/12Supports; Mounting means
    • H01Q1/22Supports; Mounting means by structural association with other equipment or articles
    • H01Q1/24Supports; Mounting means by structural association with other equipment or articles with receiving set
    • H01Q1/241Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM
    • H01Q1/242Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM specially adapted for hand-held use
    • H01Q1/243Supports; Mounting means by structural association with other equipment or articles with receiving set used in mobile communications, e.g. GSM specially adapted for hand-held use with built-in antennas
    • 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
    • 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
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • G09F9/40Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements in which the desired character is selected from a number of characters arranged one beside the other, e.g. on a common carrier plate
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/12Supports; Mounting means
    • H01Q1/125Means for positioning
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01QANTENNAS, i.e. RADIO AERIALS
    • H01Q1/00Details of, or arrangements associated with, antennas
    • H01Q1/44Details of, or arrangements associated with, antennas using equipment having another main function to serve additionally as an antenna, e.g. means for giving an antenna an aesthetic aspect
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0272Details of the structure or mounting of specific components for a projector or beamer module assembly
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0274Details of the structure or mounting of specific components for an electrical connector module
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/04Supports for telephone transmitters or receivers
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/22Illumination; Arrangements for improving the visibility of characters on dials
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0266Details of the structure or mounting of specific components for a display module assembly
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/22Details of telephonic subscriber devices including a touch pad, a touch sensor or a touch detector

Definitions

  • the present application relates to the technical field of display devices, in particular to a display panel and a display device.
  • Embodiments of the present application provide a display panel and a display device, aiming to solve the problem of how to arrange antennas in a limited space.
  • the embodiment of the first aspect of the present application provides a display panel, the display panel has a display area and a non-display area located on at least one side of the display area, and the display panel includes: a substrate; an antenna module disposed on one side of the substrate, and The orthographic projection of at least one antenna module on the substrate is located in the winding area of the non-display area.
  • the embodiment of the second aspect of the present application further provides a display device, including the display panel of any one of the above-mentioned embodiments of the first aspect.
  • the display panel includes a substrate and an antenna module disposed on the substrate. At least one antenna module is located in the winding area of the non-display area, without reserving additional installation space for the antenna module, which can reduce the space occupied by the antenna module, thereby reducing the size of the non-display area.
  • the size of the upper frame of the display device can be reduced to increase the screen ratio.
  • Fig. 1 is a schematic structural diagram of a display panel provided by an embodiment of the first aspect of the present application
  • Fig. 2 is a partial enlarged structural schematic diagram of Fig. 1;
  • Fig. 3 is a partial cross-sectional view at A-A place in Fig. 1;
  • Fig. 4 is a schematic structural diagram of a display panel provided by another embodiment of the first aspect of the present application.
  • Fig. 5 is a partial enlarged structural schematic diagram of Fig. 1 in an embodiment of the first aspect of the present application;
  • Fig. 6 is a partial enlarged structural schematic diagram of Fig. 1 in another embodiment of the first aspect of the present application;
  • Fig. 7 is a cross-sectional view at A-A in Fig. 1 in another embodiment of the first aspect of the present application;
  • Fig. 8 is a schematic structural diagram of a display panel provided by another embodiment of the first aspect of the present application.
  • Fig. 9 is a schematic diagram of a partially enlarged structure in Fig. 8.
  • Fig. 10 is a partial enlarged structural schematic diagram of Fig. 8 in yet another embodiment of the first aspect of the present application;
  • Fig. 11 is a schematic diagram of a partially enlarged structure in Fig. 8 in yet another embodiment of the first aspect of the present application;
  • Fig. 12 is a partial enlarged structural schematic diagram of Fig. 8 in yet another embodiment of the first aspect of the present application;
  • Fig. 13 is a partial enlarged structural schematic diagram of Fig. 8 in yet another embodiment of the first aspect of the present application;
  • Fig. 14 is a partially enlarged structural schematic diagram of Fig. 8 in yet another embodiment of the first aspect of the present application.
  • FIG. 1 is a schematic structural diagram of a display panel provided by an embodiment of the first aspect of the present application.
  • FIG. 2 is a partial enlarged structural schematic diagram of FIG. 1
  • FIG. 3 is a partial cross-sectional view at A-A in FIG. 1 .
  • the display panel provided by the embodiment of the first aspect of the present application has a display area AA and a non-display area NA located on at least one side of the display area AA.
  • the display panel includes: a substrate 100 ; an antenna module 300 , It is arranged on one side of the substrate 100, and the orthographic projection of at least one antenna module 300 on the substrate is located in the winding area of the non-display area NA.
  • the wiring area of the non-display area NA is formed by routing the signal lines of the display panel in the non-display area NA.
  • the signal wire can be the touch wire 210 .
  • the signal line may also be other signal lines, such as a ground line and the like.
  • the winding area is located between the display area AA and the outer frame of the non-display area.
  • the width of the routing area refers to the distance between the part of the signal line farthest from the display area AA and the display area AA, that is, the width of the routing area refers to the maximum distance between the signal line and the display area AA.
  • the width of the wiring area refers to the maximum distance between the orthographic projection of the touch wiring 210 on the substrate and the display area AA.
  • the width of the wiring area refers to the maximum distance between the orthographic projection of the array wiring on the substrate and the display area AA.
  • the width of the wiring area refers to the maximum distance between the orthographic projection of the signal line (including the touch wiring and the array wiring) on the substrate and the display area AA. distance.
  • the display panel includes a substrate 100 and an antenna module 300 disposed on the substrate 100 .
  • the orthographic projection of at least one antenna module 210 on the substrate is set in the winding area formed by the non-display area NA, without reserving additional installation space for the antenna module 300, which can reduce the space occupied by the antenna module 300, thereby reducing The size of the non-display area NA.
  • the size of the upper frame of the display device can be reduced to increase the screen ratio.
  • the display panel further includes a touch module 200 disposed on one side of the substrate 100, and the touch module 200 includes multiple touch panels located in the non-display area NA.
  • the wiring 210 the wiring area includes the touch wiring area formed by the touch wiring 210 routing in the non-display area NA, and the orthographic projection of at least one antenna module 300 on the substrate is located in the touch wiring area.
  • the distance between the edge of the touch routing area away from the display area AA and the display area AA is consistent, that is, the touch routing area is set at the same width, and the width of the touch routing area refers to the distance between the touch routing area 210 and the display area AA.
  • the distance between the furthest part and the display area AA, that is, the width of the touch wiring area refers to the maximum distance between the touch wiring 210 and the display area AA.
  • the antenna module 300 is disposed on the substrate 100 .
  • the fact that the touch module 200 and the antenna module 300 are arranged on the substrate 100 does not mean that the touch module 200 and the antenna module 300 are directly arranged on the surface of the substrate 100, other film layers may be arranged between the touch module 200 and the substrate 100, and the antenna Other film layers may also be provided between the module 300 and the substrate 100 .
  • the display panel includes a substrate 100 , a touch module 200 and an antenna module 300 disposed on the substrate.
  • the orthographic projection of at least one antenna module 300 on the substrate is located in the touch wiring area formed by the touch wiring 210 in the non-display area NA, so there is no need to reserve additional installation space for the antenna module 300, and the size of the antenna module 300 can be reduced.
  • the space shared by the touch module 200 further reduces the size of the non-display area NA.
  • the orthographic projection of at least one antenna module 300 on the substrate is located in the array wiring area formed by the array wiring in the non-display area NA, and there is no need to reserve additional setting space for the antenna module 300, which can reduce the size of the antenna module. 300 and the space occupied by the array wiring, thereby reducing the size of the non-display area NA.
  • the size of the upper frame of the display device can be reduced to increase the screen ratio.
  • the touch module 200 further includes an electrode block 220 located in the display area AA, and the orthographic projection of at least one antenna module 300 on the substrate 100 is located on two adjacent touch traces 210 on the substrate 100 and/or, the orthographic projection of at least one antenna module 300 on the substrate 100 is located between the orthographic projections of the electrode block 220 and the touch trace 210 on the substrate.
  • the orthographic projection of at least one antenna module 300 on the substrate 100 can be located in the orthographic projection of the electrode block 220 on the substrate 100 and the orthographic projection of part of the touch traces 210 on the substrate 100 or, when the orthographic projection of at least one antenna module 300 on the substrate 100 may be located between the orthographic projections of two adjacent touch traces 210 on the substrate 100, at least one The orthographic projection of the antenna module 300 on the substrate 100 and the orthographic projection of at least part of the touch traces 210 on the substrate 100 are distributed along the circumferential direction of the display area AA at intervals. That is, the orthographic projection of at least one antenna module 300 on the substrate 100 and the orthographic projection of at least part of the touch traces 210 on the substrate 100 are distributed at intervals along the extending direction of the edge of the display area AA.
  • the antenna module 300 includes a radiation electrode 310, a ground terminal 320 disposed on the radiation electrode 310, and a transmission terminal 330.
  • the transmission terminal 330 and the radiation electrode 310 are electrically connected to each other.
  • Terminal 330 is used to transmit signals.
  • two ground terminals 320 are disposed on the same antenna module 300 , and the two ground terminals 320 are respectively disposed on two sides of the transmission terminal 330 .
  • the display panel further includes a ground wire 900 , and the antenna module 300 may also be connected to the ground wire 900 .
  • the ground terminal 320 of the antenna module 300 is connected to the ground wire 900 .
  • the ground wire 900 is set around the display area AA.
  • the ground terminals 320 of multiple antenna modules 300 are connected to the same ground wire 900 .
  • the orthographic projection of the antenna module 300 on the substrate 100 is located between the ground wire 900 and the display area AA, that is, the antenna module 300 is located in the winding area formed by the ground wire 900 around the display area AA.
  • the display panel further includes a touch pad 400 located in the non-display area NA; Section 213 and the wiring section 212 between the first connection section 211 and the second connection section 213, the electrode block 220 includes a touch electrode block 221, the first connection section 211 is connected to the touch electrode block 221, and the second connection section 213 connected to the touch pad 400 .
  • the orthographic projection of at least part of the antenna module 300 on the substrate 100 is located in two adjacent first connecting sections 211 and/or second connecting sections 213 Between orthographic projections on the substrate 100 .
  • Two adjacent first connecting segments 211 and/or second connecting segments 213 refer to adjacent two first connecting segments 211, or adjacent two second connecting segments 213, or adjacent two second connecting segments One connecting segment 211 and two adjacent second connecting segments 213 .
  • a corner area is usually formed between the first connecting segment 211 and the routing segment 212, and a corner area is also formed between the routing segment 212 and the second connecting segment 213.
  • the size of the corner area is relatively large, and the antenna The arrangement of the module 300 in this area can reduce the influence of the antenna module 300 on the wiring of the touch control wires.
  • the orthographic projection of at least one antenna module 300 on the substrate 100 is located between the display area AA and the orthographic projection of the wiring segment 212 on the substrate 100, that is, at least one antenna module 300 is located on the substrate 100.
  • the orthographic projection on the above is located in the touch winding area, which can further reduce the size of the frame area of the display panel.
  • the electrode block 220 further includes at least one spacer electrode block 222 located between the touch electrode blocks 221 corresponding to at least partially adjacent two first connecting segments 211, and at least part of the antenna module 300
  • the orthographic projection on the substrate 100 is located on the side of the at least one spacer electrode block 222 facing the non-display area AA.
  • the touch electrode blocks 221 corresponding to the two adjacent first connection segments 211 refer to the touch electrode blocks 221 to which the two adjacent first connection segments 211 are respectively connected.
  • At least one spacer electrode block 222 can be formed between the touch electrode blocks 221 corresponding to two adjacent first connection segments 211 by adjusting the wiring of the touch control lines 210 .
  • no touch trace 210 is arranged on the above-mentioned spacer electrode block 222 , so that the spacer electrode block 222 corresponds to the space between the two adjacent first connection sections 211 Larger, can provide enough layout space for the antenna module 300 .
  • the orthographic projection of at least part of the antenna module 300 on the substrate 100 is located between the orthographic projection of at least one spaced electrode block 222 on the substrate 100 and the orthographic projection of the wiring segment 212 on the substrate 100 so that the arrangement of the antenna module 300 will not affect the routing of the routing segment 212.
  • a plurality of first connecting segments 211 are arranged at intervals around the display area AA along the circumferential direction.
  • a gap for disposing the antenna module 300 can be formed between two adjacent first connecting sections 211 in the circumferential direction.
  • the touch pads 400 are disposed on one side of the display area AA along the first direction Y, and a plurality of touch pads 400 are disposed side by side along the second direction X. Therefore, the plurality of second connection segments 213 are arranged side by side along the second direction X, and the plurality of second connection segments 213 are located at one side of the display area AA in the first direction Y.
  • the non-display area NA includes a first sub-area NA1 and a second sub-area NA2 oppositely arranged along the first direction Y, and the touch pad 400 and the second connection segment 213 are located in the second sub-area NA2;
  • the two connecting sections 213 are arranged side by side along the second direction X, so that regular gaps can be formed between adjacent second connecting sections 213 .
  • each touch electrode block 221 is connected to the first connection section 211 respectively.
  • Each touch electrode block 221 is located at a different position of the display area AA, and a plurality of first connection segments 211 are distributed at intervals around the display area AA to connect each touch electrode block 221 .
  • the number of touch wires 210 is getting smaller and the number of wire segments 212 is getting smaller and smaller, so two adjacent The gap between the first connecting sections 211 becomes larger and larger.
  • At least one antenna module 300 can be disposed correspondingly between two adjacent first connecting sections 211 with a large gap, so as to reduce the influence of the antenna module 300 on the routing of the touch wiring 210 .
  • the routing segment 212 is arranged around the display area AA.
  • the lengths of the multiple routing segments 212 may be different, for example, when the distance between the first connecting segment 211 and the second connecting segment 213 is relatively short, the distance of the routing segments 212 is relatively short. Since the touch pad 400 is arranged in the second sub-area NA2, the closer to the second sub-area NA2, the more the number of the wiring segments 212, so on the side away from the second sub-area NA2, the wiring segments 212 and the first connection The number of segments 211 is small, which results in gaps between adjacent first connecting segments 211 , or gaps between display area AA and wiring segments 212 .
  • the non-display area NA includes a first sub-area NA1 and a second sub-area NA2 oppositely arranged along the first direction Y, and the second connecting section 213 is located in the second sub-area NA2, the antenna module 300 is located in the first sub-area NA1.
  • the first sub-area NA1 and the second sub-area NA2 are shown in a rectangular dot-dash line frame in FIG. 1, the dot-dash line does not constitute a structural limitation to the embodiment of the present application, and the dot-dash line only illustrates the first sub-area NA1 and the second sub-area NA2.
  • the first sub-area NA1 and the second sub-area NA2 are the non-display area NA within the dot-dash line rectangular frame.
  • the second connection section 213 is located in the second sub-area NA2, then, the closer to the second sub-area NA2, the denser the wiring section 212 is, and the smaller the gap size between the wiring section 212 and the display area AA is. Small.
  • Setting the antenna module 300 in the first sub-area NA1 can reserve more space for the antenna module 300 to facilitate the arrangement of the antenna module 300;
  • the metal wiring density of the second sub-area NA2 is more consistent, which improves the consistency of the wiring density on the display panel.
  • the first sub-area NA1 is a strip structure extending along the second direction X, that is, the first sub-area NA1 is located on one side of the display area AA in the first direction Y.
  • the antenna module 300 is disposed on one side of the display area AA in the first direction Y.
  • the first sub-area NA1 includes a first section NA11 and a second section NA12 that intersect, and the first section NA11 is located in the display area AA in the first direction Y
  • the second section NA12 is located on at least one side of the display area AA in the second direction X.
  • the antenna module 300 is located in the first section NA11 and/or the second section NA12. Only one second section NA12 is shown in FIG. 1 .
  • two second sections NA12 are located on both sides of the display area AA in the second direction X. As shown in FIG.
  • the antenna module 300 is located on the side of the first section NA11 close to the second section NA12, and/or the antenna module 300 is located on the side of the second section NA12 close to the first section NA11, that is, the antenna module 300
  • the corner area near the non-display area NA is set.
  • the first sub-area NA1 is located at a corner area of the display panel.
  • the density of the touch wires 210 in this area is relatively small, and the gap between the wire segment 212 and the display area AA is relatively large, which can reserve more installation space for the antenna module 300 .
  • the number of the first sub-areas NA1 is two, the two first sub-areas NA1 are distributed along the second direction X at intervals, and the second sections NA12 of the two first sub-areas NA1 are respectively set in the display area AA in Both sides in the second direction X.
  • the layout of the antenna module 300 can be made more uniform; on the other hand, the consistency of wiring density on the display panel can be better improved; and the gap between the touch wire 210 and the display area AA.
  • the antenna module 300 in the display panel.
  • at least one antenna module 300 is arranged on the layer where the touch module 200 is located. That is, at least part of the antenna module 300 and the touch module 200 are arranged on the same layer, and the antenna module 300 can be prepared together when the touch module 200 is prepared, which can simplify the preparation of the antenna module 300 and improve the production efficiency of the display panel.
  • the electrode blocks 220 and the touch wires 210 in the touch module 200 can be arranged in the same layer or layered.
  • the electrode block 220 is arranged on the same layer as the touch wiring 210
  • at least one antenna module 300 is arranged on the same layer as the electrode block 220 and the touch wiring 210 .
  • the antenna module 300 , the electrode block 220 and the touch wiring 210 can be prepared simultaneously in the same process step, which can further improve the manufacturing efficiency of the display panel.
  • the electrode block 220 and the touch wiring 210 are arranged in layers, and at least one antenna module 300 is arranged in the same layer as at least one of the electrode block 220 and the touch wiring 210 .
  • at least one antenna module 300 may be disposed on the same layer as the electrode block 220 .
  • at least one antenna module 300 can be arranged on the same layer as the touch wiring 210 .
  • at least one of the plurality of antenna modules 300 is disposed on the same layer as the electrode block 220 , and at least the other is disposed on the same layer as the touch wire 210 .
  • the display panel includes an array substrate layer 110 disposed on the substrate 100 and a light-emitting layer, and the light-emitting layer is located on a side of the array substrate layer 110 away from the substrate 100 .
  • the array substrate layer 110 includes a driving circuit
  • the light emitting layer includes a light emitting unit 120
  • the driving circuit of the array substrate layer 110 is used to drive the light emitting unit 120 of the light emitting layer to emit light.
  • the display panel further includes an encapsulation layer 130 for sealing the light emitting unit 120 , and the encapsulation layer 130 is disposed on a side of the light emitting layer away from the array substrate layer 110 .
  • the encapsulation layer 130 is used to provide protection for the light-emitting layer, preventing the light-emitting unit 120 from being invaded by water and oxygen and affecting the yield of the display panel.
  • the encapsulation layer 130 may be thin film encapsulation, glass encapsulation and the like.
  • the encapsulation layer 130 may include an encapsulation cover plate 131 and an annular encapsulation portion 132 .
  • the display panel further includes a touch module 200 located on a side of the encapsulation layer 130 away from the light-emitting layer, and a polarizer located on a side of the touch module 200 away from the encapsulation layer 130 .
  • the antenna module 300 is arranged in at least one film layer in the display panel; and/or, the antenna module 300 can be arranged in any of the display panels. Between two adjacent film layers, that is, the antenna module 300 can be arranged between the substrate 100 and the array substrate layer 110, and/or, the antenna module 300 can be arranged between the polarizer and the layer where the touch module 200 is located, and Or, the antenna module 300 may be disposed between the encapsulation layer 130 and the layer where the touch module 200 is located.
  • the encapsulation layer 130 is thin-film encapsulation and includes two or more organic layers and inorganic layers alternately arranged, at least one antenna module 200 may be located between adjacent organic layers and inorganic layers in the encapsulation film layer 130 .
  • the encapsulation layer 130 includes an encapsulation cover plate 131 and an annular encapsulation portion 132 disposed on a side of the encapsulation cover plate 131 facing the light emitting unit 120 , and the antenna module 300 is correspondingly located in the annular encapsulation portion 132 .
  • the location of the annular encapsulation 132 is shown in FIG. 4 .
  • the antenna module 300 is correspondingly located in the ring-shaped package part 132.
  • a high-temperature process such as sintering is used to connect the ring-shaped package part 132 and the glass cover to each other, the influence of high temperature on the antenna module 300 can be reduced. It is also possible to reduce the influence of the antenna module 300 on the sintering energy.
  • the antenna module 300 and the touch module 200 may be located on a side of the packaging layer 130 away from the substrate 100 .
  • the display panel further includes a protective layer located on a side of the touch module 200 and the antenna module 300 facing away from the substrate 100 , and the antenna module and the touch module 200 can be protected by the protective layer.
  • FIG. 5 is a partially enlarged structural diagram of FIG. 1 in an embodiment of the first aspect of the present application.
  • the display panel further includes an antenna wire 500 and an antenna pad 600 , and the antenna module 300 is connected to the antenna pad 600 through the antenna wire 500 .
  • At least two or more antenna modules 300 are connected in series.
  • more than two antenna modules 300 can be connected in series to realize a powerful antenna function.
  • more than two antenna modules 300 may be connected in series through the serial connection line 30a.
  • antenna modules 300 there are many ways for the antenna modules 300 to be connected in series. As mentioned above, please continue to refer to FIG. Connection 30a.
  • FIG. 6 is a partial enlarged structural diagram of FIG. 1 in another embodiment of the first aspect of the present application.
  • more than two antenna modules 300 are connected to each other through a series connection line 30a, that is, more than two antenna modules 300 can be connected in series through a series connection line 30a, and connected in series. Any one of the two or more antenna modules 300 and the antenna wiring 500 are connected to each other.
  • the wiring of the display panel can be further simplified, the preparation of the display panel can be simplified and the yield rate of the display panel can be improved.
  • the series connection line 30a is connected between the transmission ends 330 of the two antenna modules 300 connected in series, or the radiation electrodes 310 of the two antenna modules 300 connected in series are connected to each other through the series connection line 30a.
  • At least part of the orthographic projection of the antenna trace 500 on the substrate 100 and the orthographic projection of the touch trace 210 on the substrate 100 are at least partly staggered. , to avoid crosstalk between the antenna signal and the touch signal.
  • the antenna wiring 500 is located on a side of the touch wiring 210 away from the display area AA.
  • the antenna pad 600 and the touch pad 400 are arranged on the same side of the display area AA, and a plurality of antenna pads 600 are arranged side by side along the second direction X.
  • the antenna wiring 500 is arranged on the side of the touch wiring 210 away from the display area AA, that is, the antenna wiring 500 is arranged on the side of the wiring segment 212 away from the display area AA, so that the antenna walks
  • the line 500 will not intersect with multiple first connection sections 211, which can improve the stability of signal transmission, simplify the wiring of the display panel, and improve the yield of the display panel.
  • the antenna wire 500 may also be located on a side of at least one touch wire 210 facing the display area AA.
  • the antenna trace 500 and the touch trace 210 are arranged on the same layer and the same material, which can simplify the manufacturing process of the display panel and improve the manufacturing efficiency of the display panel.
  • the antenna wiring 500 and the touch wiring 210 may also be arranged in different layers.
  • the antenna module 300 is connected to the antenna wiring 500 through the antenna bridge 30 b.
  • the display panel further includes an antenna bridge 30b, one end of the antenna bridge 30b is connected to the antenna module 300, and the other end of the antenna bridge 30b is connected to the antenna wiring 500 , the orthographic projection of the antenna bridge 30b on the substrate 100 and the orthographic projection of at least one touch trace 210 on the substrate 100 are arranged to intersect.
  • the transmission end 330 of the antenna module 300 is connected to the antenna wiring 500 through the antenna bridge 30b.
  • the antenna bridge 30 b intersects with the touch trace 210 , so the antenna bridge 30 b and the touch trace 210 are arranged on different layers.
  • the antenna bridge 30b and the electrode block 220 are arranged in the same layer, which can simplify the layer structure of the display panel, reduce the thickness of the display panel and improve the manufacturing efficiency of the display panel.
  • the modules 200 are arranged in the same layer to simplify the preparation of the display panel.
  • At least part of the antenna module 300 is located on the layer where the touch module 200 is located, that is, at least part of the antenna module 300 is set on the same layer as the touch module 200, and the antenna module can be prepared together when the touch module 200 is prepared. 300, which can simplify the preparation of the antenna module 300 and improve the preparation efficiency of the display panel.
  • the electrode blocks 220 and the touch wires 210 in the touch module 200 can be arranged in the same layer or layered.
  • the electrode block 220 and the touch trace 210 are drawn on the same layer where the touch module 200 is located, and the electrode block 220 It can be located in the same layer as the touch wire 210 or in a different layer.
  • one of the antenna module 300 and the serial line 30 a is arranged on the same layer as the touch module 200 to avoid crosstalk between the antenna signal and the touch signal.
  • At least one antenna module 300 is disposed on the same layer as the electrode block 220 and the touch wire 210 .
  • the antenna module 300 , the electrode block 220 and the touch wiring 210 can be prepared simultaneously in the same process step, which can further improve the manufacturing efficiency of the display panel.
  • At least one antenna module 300 , the serial connection line 30a, the electrode block 220 and the touch control line 210 are all arranged on the same layer.
  • the antenna module 300 , the serial connection line 30 a , the electrode block 220 and the touch trace 210 can be prepared simultaneously in the same process step, which can further improve the production efficiency of the display panel.
  • one of the antenna module 300 and the serial line 30a is arranged on the same layer as the touch wiring 210, and the other is arranged on the same layer as the electrode block 220 set up.
  • at least one antenna module 300 can be arranged on the same layer as the electrode block 220, and the series connection line 30a can be arranged on the same layer as the touch wiring line 210;
  • the electrode blocks 220 may be arranged in the same layer.
  • the antenna module 300 can be provided without increasing the layer structure, the layer structure and wiring structure of the display panel can be simplified, and the thickness of the display panel can be reduced.
  • the antenna module 300 and the serial wire 30 a are on different layers, and the antenna module 300 and the touch wire 210 are arranged on the same layer.
  • the serial line 30a and the electrode block 220 may be arranged in the same layer (not shown in the figure).
  • the touch trace 210 is located in the non-display area NA, therefore, the touch trace 210 is usually made of a metal material with low impedance.
  • the electrode block 220 is located in the display area AA, and the electrode block 220 is usually made of indium tin oxide (ITO) material with high light transmittance. In other embodiments, the electrode block 220 may also be made of grid-like metal material.
  • the antenna module 300 and the touch wiring 210 are arranged on the same layer, so that the antenna module 300 can be made of the same metal material as the touch wiring 210, which can reduce the impedance of the antenna module 300 and facilitate signal transmission. transmission.
  • the series connection line 30a is used to connect the antenna modules 300 in series. The length of the series connection line 30a is usually short, and the impedance of the series connection line 30a can be reduced by increasing the width of the series connection line 30a.
  • the antenna module 300 and the serial connection line 30a may also be arranged in different layers from the touch module 200 to avoid crosstalk between the antenna signal and the touch signal.
  • FIG. 8 is a schematic structural diagram of a display panel provided by another embodiment of the first aspect of the present application.
  • FIG. 9 is a schematic diagram of a partially enlarged structure in FIG. 8 .
  • the non-display area NA is provided with dummy wires 800 , and at least part of the dummy wires 800 are connected to the antenna pad 600 to be multiplexed as the antenna module 300 .
  • the first sub-area NA1 and the second sub-area NA2 are illustrated by rectangular dot-dash lines.
  • the dot-dash lines do not constitute a structural limitation of the embodiment of the present application, and the dot-dash lines only illustrate the first sub-area.
  • the first sub-area NA1 and the second sub-area NA2 are the non-display area NA within the dotted line rectangular frame.
  • the orthographic projection of the virtual wiring 800 on the substrate 100 is located within the orthographic projections of two adjacent second connecting segments 213 on the substrate.
  • the dummy wiring 800 can be set on the same layer as at least one of the touch wiring 210 and the electrode block 220; optionally, the second connecting section 213 can be set on the same layer as the dummy wiring 800 .
  • the second connection section 213 is located in the second sub-area NA2
  • the dummy wiring 800 is located in the second sub-area NA2 and is arranged on the same layer as the second connection section 213 .
  • At least part of the antenna module 300 and the dummy wiring 800 are arranged on the same layer, so as to simplify the preparation of the antenna module 300 .
  • at least part of the dummy wiring 800 is connected to the antenna pad 600 to be multiplexed as the antenna module 300 .
  • a dummy wire 800 is set in the non-display area NA. On the one hand, it can simplify the layout of the antenna module 300 , and on the other hand, it can avoid electrostatic discharge on the virtual wiring 800 , affecting the performance of the touch module 200 .
  • the orthographic projection of the virtual wiring 800 on the substrate 100 is located between the orthographic projections of two adjacent second connecting segments 213 on the substrate time
  • the orthographic projection of at least part of the antenna module 300 on the substrate 100 is located between the orthographic projections of two adjacent second connecting segments 213 on the substrate 100, and this part of the antenna module 300 is multiplexed for the virtual wiring 800
  • the antenna module 300 a dummy wiring 800 multiplexed as the antenna module 300 is provided between at least part of the adjacent two second connection sections 213 .
  • There is a gap between two adjacent second connecting sections 213 and the gap has a uniform and regular shape, which is convenient for arranging the dummy wiring 800 and the antenna module 300 .
  • the antenna pad 600 and the touch pad 400 are located in the second sub-area NA2, and the antenna module 300 and the antenna pad 600 are electrically connected to each other.
  • the antenna modules 300 are electrically connected to each other through the antenna wire 500 and the antenna pad 600 .
  • the orthographic projection of the antenna module 300 on the substrate 100 is located between the orthographic projections of two adjacent second connecting segments 213 on the substrate 100, the antenna module 300 is located in the second sub-area NA2, which can reduce the size of the antenna module.
  • the distance between the antenna pad 600 and the antenna pad 600 reduces the length of the antenna trace 500, which can improve the stability of signal transmission and simplify the wiring of the display panel.
  • the display panel further includes an impedance test unit 700, and the impedance test unit 700 is connected to the antenna pad 600 to be multiplexed as an antenna module. 300.
  • the impedance test unit 700 is connected to the antenna pad 600 to be multiplexed as an antenna module. 300.
  • more than two impedance testing terminals 710 are provided on the impedance testing unit 700 .
  • the impedance testing unit 700 can be arranged in the same layer or different layers with at least one of the touch wiring 210 and the electrode block 220; 210 same floor setting.
  • the antenna module 300 and the impedance testing unit 700 may be arranged on the same layer or layered.
  • At least part of the antenna module 300 and the impedance testing unit 700 are arranged on the same layer, so as to simplify the preparation of the antenna module 300 .
  • the impedance test element can be connected through the impedance test terminal 710, so that an impedance detection loop is formed between the antenna module 300, the antenna trace 500, the antenna pad 600, the impedance test unit 700 and the impedance test element , can detect the stability of the circuit connection in the antenna module 300 , the antenna trace 500 , the antenna pad 600 , and the impedance test unit 700 .
  • the impedance test unit 700 is reused as the antenna module 300, which can simplify the wiring structure of the display panel and improve the yield rate and manufacturing efficiency of the display panel.
  • the orthographic projection of the impedance testing unit 700 on the substrate 100 is located between two adjacent second connection segments 213 .
  • the impedance testing unit 700 and the second connecting section 213 are arranged on the same layer, there is a gap between two adjacent second connecting sections 213 , and the gap is uniform in shape and has certain rules, which facilitates the arrangement of the impedance testing unit 700 .
  • the distance between the second connecting section 213 and the antenna pad 600 is relatively close, which can reduce the distance between the impedance test unit 700 and the antenna pad 600, thereby reducing the wiring between the impedance test unit 700 and the antenna pad 600 length.
  • FIG. 10 is a partially enlarged structural schematic diagram of FIG. 8 in yet another embodiment of the first aspect of the present application.
  • the display panel includes more than two antenna modules 300 , and the two or more antenna modules 300 are connected in series through a series connection line 30 a.
  • the series connection line 30 a can connect the radiation electrodes 310 of the antenna modules 300 .
  • the power of the antenna modules 300 can be expanded by connecting more than two antenna modules 300 in series through the serial connection line 30a.
  • the serial connection line 30a when the antenna module 300 is correspondingly located between two adjacent second connection sections 213, and the serial connection line 30a is used to connect the antenna modules 300 on both sides of the same second connection section 213,
  • the serial line 30a and the second connecting segment 213 cross each other.
  • the series connection line 30a and the second connection segment 213 are arranged on different layers, that is, the series connection line 30a and the touch control line 210 are not located in the same film layer, so as to avoid a cross-short circuit between the series connection line 30a and the touch control line 210, The yield rate of the display panel can be improved.
  • FIG. 11 is a partially enlarged structural schematic diagram of FIG. 8 in still another embodiment of the first aspect of the present application.
  • more than two antenna modules 300 may be correspondingly arranged between two adjacent second connecting sections 213 .
  • These antenna modules 300 can be arranged independently of each other, or as shown in FIG. More than two antenna modules 300 between the second connecting sections 213 are arranged in series with each other.
  • FIG. 12 is a partially enlarged structural schematic diagram of FIG. 8 in yet another embodiment of the first aspect of the present application.
  • a dummy wiring 800 that is not multiplexed as an antenna module 300 is provided between two adjacent second connection sections 213, and the antenna module 300 can be connected with other unmultiplexed
  • the dummy wires 800 of the antenna module 300 are arranged on the same layer to improve the yield and manufacturing efficiency of the display panel.
  • FIG. 13 is a partially enlarged structural schematic diagram of FIG. 8 in yet another embodiment of the first aspect of the present application.
  • the orthographic projections of more than two antenna modules 300 on the substrate 100 are located between the orthographic projections of two adjacent touch traces 210 on the substrate 100 between. That is, more than two antenna modules 300 are correspondingly arranged between two adjacent touch control wires 210 , which can increase the number of antenna modules 300 .
  • the antenna modules 300 correspondingly located between two adjacent touch traces 210 may also be connected in series to increase the power of the antenna modules 300 .
  • FIG. 14 is a partially enlarged structural schematic diagram of FIG. 8 in yet another embodiment of the first aspect of the present application.
  • a dummy wiring 800 may be provided between the antenna module 300 and the second connection section 213 to improve the consistency of wiring density of the array substrate.
  • the embodiment of the second aspect of the present invention further provides a display device, including the display panel of any one of the above-mentioned embodiments of the first aspect. Since the display device provided by the embodiment of the second aspect of the present invention includes the display panel of any embodiment of the first aspect above, the display device provided by the embodiment of the second aspect of the present invention has the display panel of any embodiment of the first aspect above. The beneficial effects will not be repeated here.
  • the display device in the embodiment of the present invention includes but is not limited to mobile phones, personal digital assistants (Personal Digital Assistant, PDA for short), tablet computers, e-books, televisions, access control, smart fixed phones, consoles and other devices with display functions .
  • PDA Personal Digital Assistant

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Abstract

本申请实施例提供一种显示面板和显示装置,显示面板具有显示区和位于显示区至少一侧的非显示区,显示面板包括:衬底;天线模块,设置于所述衬底一侧,且至少一个天线模块在衬底上的正投影位于非显示区的绕线区内。至少一个天线模块位于绕线区内,无需为该天线模块另外预留设置空间,能够减小天线模块占据的空间,进而减小非显示区的尺寸。当显示面板用于显示装置时,能够减小显示装置上边框的尺寸,提高屏占比。

Description

显示面板和显示装置
相关申请的交叉引用
本申请要求享有于2021年12月31日提交的名称为“显示面板和显示装置”的中国专利申请第202111670162.2号的优先权,该申请的全部内容通过引用并入本文中。
技术领域
本申请涉及显示设备技术领域,尤其涉及一种显示面板和显示装置。
背景技术
目前,电子设备(例如手机、智能手表等)日新月异。以手机为例,人们对于手机外观与无线性能的要求也不断的提高。手机摄像头开始变双摄像头和四摄像头,多倍连续变焦;全面屏高屏占比的大屏手机也开始普及。此外,随着天线性能需求的提高。在面板内设置天线是未来技术趋势。但是显示面板内部空间有限,如何在有限的空间内设置天线成为亟待解决的技术问题
发明内容
本申请实施例提供一种显示面板和显示装置,旨在解决如何在有限空间内设置天线的问题。
本申请第一方面的实施例提供了一种显示面板,显示面板具有显示区和位于显示区至少一侧的非显示区,显示面板包括:衬底;天线模块,设置于衬底一侧,且至少一个天线模块在衬底上的正投影位于非显示区的绕线区内。
本申请第二方面的实施例还提供了一种显示装置,包括上述任一第一方面实施例的显示面板。
在本申请实施例提供的显示面板中,显示面板包括衬底和设置于衬底的天线模块。至少一个天线模块位于非显示区的绕线区内,无需为该天线模块另外预留设置空间,能够减小天线模块占据的空间,进而减小非显示 区的尺寸。当显示面板用于显示装置时,能够减小显示装置上边框的尺寸,提高屏占比。
附图说明
通过阅读以下参照附图对非限制性实施例所作的详细描述,本申请的其它特征、目的和优点将会变得更明显,其中,相同或相似的附图标记表示相同或相似的特征。
图1是本申请第一方面实施例提供的一种显示面板的结构示意图;
图2是图1的局部放大结构示意图;
图3是图1中A-A处的局部剖视图;
图4是本申请第一方面另一实施例提供的显示面板的结构示意图;
图5是本申请第一方面一实施例中图1的局部放大结构示意图;
图6是本申请第一方面另一实施例中图1的局部放大结构示意图;
图7是本申请第一方面另一实施例中图1中A-A处的剖视图;
图8是本申请第一方面另一实施例提供的一种显示面板的结构示意图;
图9是图8中的局部放大结构示意图;
图10是本申请第一方面又一实施例中图8中的局部放大结构示意图;
图11是本申请第一方面还一实施例中图8中的局部放大结构示意图;
图12是本申请第一方面再一实施例中图8中的局部放大结构示意图;
图13是本申请第一方面再一实施例中图8中的局部放大结构示意图;
图14是本申请第一方面再一实施例中图8中的局部放大结构示意图。
具体实施方式
下面将详细描述本申请的各个方面的特征和示例性实施例。在下面的详细描述中,提出了许多具体细节,以便提供对本申请的全面理解。但是,对于本领域技术人员来说很明显的是,本申请可以在不需要这些具体细节中的一些细节的情况下实施。下面对实施例的描述仅仅是为了通过示 出本申请的示例来提供对本申请的更好的理解。在附图和下面的描述中,至少部分的公知结构和技术没有被示出,以便避免对本申请造成不必要的模糊;并且,为了清晰,可能夸大了部分结构的尺寸。此外,下文中所描述的特征、结构或特性可以以任何合适的方式结合在一个或更多实施例中。
为了更好地理解本申请,下面结合图1至图14对本申请实施例的显示面板和显示装置进行详细描述。
请参阅图1至图3,图1是本申请第一方面实施例提供的一种显示面板的结构示意图。图2是图1的局部放大结构示意图,图3是图1中A-A处的局部剖视图。
如图1至图3所示,本申请第一方面实施例提供的显示面板具有显示区AA和位于显示区AA至少一侧的非显示区NA,显示面板包括:衬底100;天线模块300,设置于衬底100一侧,且至少一个天线模块300在衬底上的正投影位于非显示区NA的绕线区内。
其中,非显示区NA的绕线区由显示面板的信号线在非显示区NA走线形成。当显示面板包括触控模块200,且触控模块200包括位于非显示区NA的触控走线310时,该信号线可以为触控走线210。在另一些实施例中,该信号线也可以为其他信号线,例如接地线等。
绕线区位于显示区AA与非显示区的外边框之间。绕线区的宽度是指信号线中与显示区AA最远的部分至显示区AA之间的距离,即绕线区的宽度是指信号线与显示区AA的最大距离。当绕线区由触控走线210形成时,绕线区的宽度是指触控走线210在衬底上的正投影与显示区AA的最大距离。当绕线区由阵列走线形成时,绕线区的宽度是指阵列走线在衬底上的正投影与显示区AA的最大距离。绕线区由触控走线210和阵列走线共同形成时,绕线区的宽度是指信号线(包含触控走线、阵列走线)在衬底上的正投影与显示区AA的最大距离。
在本申请实施例提供的显示面板中,显示面板包括衬底100和设置于衬底100的天线模块300。至少一个天线模块210在衬底上的正投影设置于非显示区NA形成的绕线区内,无需为该天线模块300另外预留设置空间,能够减小天线模块300占据的空间,进而减小非显示区NA的尺寸。当显示面板用于显示装置时,能够减小显示装置上边框的尺寸,提高屏占比。
在一些可选的实施例中,请继续参阅图1至图3,显示面板还包括触控模块200,设置于衬底100一侧,触控模块200包括位于非显示区NA 的多条触控走线210,绕线区包括触控走线210在非显示区NA走线形成的触控绕线区,至少一个天线模块300在衬底上的正投影位于触控绕线区。
其中,触控绕线区远离显示区AA的边缘至显示区AA的距离一致,即触控绕线区等宽度设置,触控绕线区的宽度是指触控走线210中与显示区AA最远的部分至显示区AA之间的距离,即触控绕线区的宽度是指触控走线210与显示区AA的最大距离。
可选的,天线模块300设置于衬底100。触控模块200和天线模块300设置于衬底100并不是指触控模块200和天线模块300直接设置于衬底100表面,触控模块200和衬底100之间可以设置有其他膜层,天线模块300和衬底100之间也可以设置有其他膜层。
在本申请实施例提供的显示面板中,显示面板包括衬底100和设置于衬底的触控模块200和天线模块300。至少一个天线模块300在衬底上的正投影位于触控走线210在非显示区NA形成的触控绕线区内,无需为该天线模块300另外预留设置空间,能够减小天线模块300和触控模块200共同占据的空间,进而减小非显示区NA的尺寸。
可选的,至少一个天线模块300在衬底上的正投影位于阵列走线在非显示区NA形成的阵列绕线区内,无需为该天线模块300另外预留设置空间,能够减小天线模块300和阵列走线共同占据的空间,进而减小非显示区NA的尺寸。当显示面板用于显示装置时,能够减小显示装置上边框的尺寸,提高屏占比。
在一些实施例中,触控模块200还包括位于显示区AA的电极块220,至少一个天线模块300在衬底100上的正投影位于相邻的两条触控走线210在衬底100上的正投影之间,和/或,至少一个天线模块300在衬底100上的正投影位于电极块220和触控走线210在衬底上的正投影之间。
如图1和图2所示,至少一个天线模块300在衬底100上的正投影可以位于电极块220在衬底100上的正投影和部分触控走线210在衬底100上的正投影之间的夹角区域内时,或者,至少一个天线模块300在衬底100上的正投影可以位于相邻的两条触控走线210在衬底100上的正投影之间时,至少一个天线模块300在衬底100上的正投影和至少部分触控走线210在衬底100上的正投影沿显示区AA的周向间隔分布。即至少一个天线模块300在衬底100上的正投影和至少部分触控走线210在衬底100上的正投影沿显示区AA边缘的延伸方向间隔分布。
天线模块300的设置方式有多种,请继续参阅图2,天线模块300包括辐射电极310、设置于辐射电极310的接地端320和传输端330,传输端330和辐射电极310相互电连接,传输端330用于传输信号。可选的,同一天线模块300上设置有两个接地端320,两个接地端320分设于传输端330的两侧。
可选的,显示面板还包括地线900,天线模块300还可以连接于地线900。例如天线模块300的接地端320连接于地线900。可选的,地线900环绕显示区AA设置。可选的,多个天线模块300的接地端320连接于同一地线900。可选的,天线模块300在衬底100上的正投影位于地线900和显示区AA之间,即天线模块300位于地线900环绕显示区AA形成的绕线区内。
在一些可选的实施例中,请一并参阅图1至图4,显示面板还包括位于非显示区NA的触控焊盘400;触控走线210包括第一连接段211、第二连接段213和位于第一连接段211和第二连接段213之间的走线段212,电极块220包括触控电极块221,第一连接段211连接于触控电极块221,第二连接段213连接于触控焊盘400。
请继续参阅图2至图4,在一些可选的实施例中,至少部分天线模块300在衬底100上的正投影位于相邻的两条第一连接段211和/或第二连接段213在衬底100上的正投影之间。
相邻的两条第一连接段211和/或第二连接段213是指相邻的两条第一连接段211,或者相邻的两条第二连接段213,或者相邻的两条第一连接段211和相邻的两条第二连接段213。
在这些可选的实施例中,第一连接段211和走线段212之间通常会形成拐角区域,走线段212和第二连接段213也会形成拐角区域,拐角区域的尺寸较大,将天线模块300设置于该区域能够降低天线模块300对触控走线布线的影响。
在一些可选的实施例中,至少一个天线模块300在衬底100上的正投影位于显示区AA和走线段212在衬底100上的正投影之间,即至少一个天线模块300在衬底上的正投影位于触控绕线区,能够进一步减小显示面板的边框区尺寸。
在一些可选的实施例中,电极块220还包括位于至少部分相邻的两条第一连接段211所对应的触控电极块221之间的至少一个间隔电极块222,至少部分天线模块300在衬底100上的正投影位于至少一个间隔电极块222朝向非显示区AA的一侧。相邻的两条第一连接段211所对应的 触控电极块221是指相邻的两条第一连接段211各自所连接的触控电极块221。
在这些可选的实施例中,通过调整触控走线210的布线,使得相邻的两个第一连接段211对应的触控电极块221之间能够形成至少一个间隔电极块222。在上述相邻的两个第一连接段211所在侧,上述间隔电极块222上未设置触控走线210,使得间隔电极块222对应于相邻的两个第一连接段211之间的空间较大,能够为天线模块300提供足够的布置空间。
在一些可选的实施例中,至少部分天线模块300在衬底100上的正投影位于至少一个间隔电极块222在衬底100上的正投影与走线段212在衬底100上的正投影之间,使得天线模块300的设置不会影响走线段212的走线。
可选的,多条第一连接段211沿周向环绕显示区AA间隔设置。在周向上相邻的两个第一连接段211之间能够形成用于设置天线模块300的间隙。
可选的,请继续参阅图1至图4,触控焊盘400设置于显示区AA在第一方向Y上的一侧,且多个触控焊盘400沿第二方向X并排设置。因此,多个第二连接段213沿第二方向X并排设置,且多个第二连接段213位于显示区AA在第一方向Y上的一侧。
可选的,非显示区NA包括沿第一方向Y相对设置的第一子区NA1和第二子区NA2,触控焊盘400和第二连接段213位于第二子区NA2;多条第二连接段213沿第二方向X并排设置,使得相邻的第二连接段213之间能够形成规律的缝隙。
可选的,触控电极块221为多个,各触控电极块221分别连接于第一连接段211。各触控电极块221位于显示区AA的不同位置,多个第一连接段211在显示区AA的周侧间隔分布以连接各触控电极块221。如图1所示,在第二子区NA2至第一子区NA1的方向上,触控走线210的数量越来越少,走线段212的数量越来越少,因此相邻的两个第一连接段211之间的间隙越来越大。可以将至少一个天线模块300对应设置于间隙较大的相邻的两个第一连接段211之间,以减小天线模块300对触控走线210布线的影响。
请继续参阅图1和图4,走线段212环绕显示区AA设置。多条走线段212的长度可以不同,例如当第一连接段211和第二连接段213之间的距离较短时,走线段212的距离较短。由于触控焊盘400设置于第二子区NA2,因此越靠近第二子区NA2,走线段212的数量越多,因此在远离第 二子区NA2的一侧,走线段212和第一连接段211的数量均较少,这就导致相邻的第一连接段211之间会存在间隙,或者显示区AA和走线段212之间存在间隙。
在一些可选的实施例中,请继续参阅图1,非显示区NA包括沿第一方向Y相对设置的第一子区NA1和第二子区NA2,第二连接段213位于第二子区NA2,天线模块300位于第一子区NA1。虽然图1中以矩形点划线框示意出了第一子区NA1和第二子区NA2,首先点划线并不构成对本申请实施例结构上的限定,而且点划线仅示意出了第一子区NA1和第二子区NA2所在的位置,第一子区NA1和第二子区NA2为点划线矩形框内的非显示区NA。
在这些可选的实施例中,第二连接段213位于第二子区NA2,那么,越靠近第二子区NA2,走线段212越密集,走线段212和显示区AA之间的间隙尺寸越小。越远离第二子区NA2走线段212越稀疏,走线段212和显示区AA之间的间隙尺寸越大,相邻两个第一连接段211之间的间距也越大。将天线模块300设置于第一子区NA1,一方面能够为天线模块300预留更多的设置空间,便于天线模块300的布置;另一方面,能够使得第一子区NA1的金属走线和第二子区NA2的金属走线密度更加一致,改善显示面板上走线密度一致性。
第一子区NA1的设置方式有多种,例如第一子区NA1为沿第二方向X延伸的条状结构体,即第一子区NA1位于显示区AA在第一方向Y上的一侧,天线模块300设置于显示区AA在第一方向Y上的一侧。
在另一些可选的实施例中,请继续参阅图1,第一子区NA1包括相交的第一区段NA11和第二区段NA12,第一区段NA11位于显示区AA在第一方向Y上的一侧,第二区段NA12位于显示区AA在第二方向X上的至少一侧。天线模块300位于第一区段NA11和/或第二区段NA12。图1中仅示意出一个第二区段NA12,可选的,两个第二区段NA12位于显示区AA在第二方向X上的两侧。
可选的,天线模块300位于第一区段NA11靠近第二区段NA12的一侧,和/或,天线模块300位于第二区段NA12靠近第一区段NA11的一侧,即天线模块300靠近非显示区NA的拐角区域设置。在这些可选的实施例中,第一子区NA1位于显示面板的拐角区域。通常该区域内触控走线210的密度较小,且走线段212与显示区AA之间的间隙较大,能够为天线模块300预留更多的设置空间。
可选的,第一子区NA1的个数为两个,两个第一子区NA1沿第二方 向X间隔分布,两个第一子区NA1的第二区段NA12分设于显示区AA在第二方向X上的两侧。
在这些可选的实施例中,一方面令天线模块300的布置更加均匀,另一方面能够更好的改善显示面板上走线密度一致性,还能够更好的利用触控走线210之间的间隙及触控走线210与显示区AA之间的间隙。
在一些可选的实施例中,请一并参阅图1至图4,天线模块300在显示面板中的设置方式有多种,可选的,至少一个天线模块300设置于触控模块200所在层,即至少部分天线模块300与触控模块200同层设置,在制备触控模块200时可以一并制备天线模块300,能够简化天线模块300的制备,提高显示面板的制备效率。
触控模块200中的电极块220与触控走线210可以同层或分层设置。
可选的,电极块220与触控走线210同层设置,至少一个天线模块300和电极块220、触控走线210同层设置。可以在同一工艺步骤中同时制备该天线模块300、电极块220和触控走线210,能够进一步提高显示面板的制备效率。
可选的,电极块220与触控走线210分层设置,至少一个天线模块300与电极块220和触控走线210中的至少一者同层设置。例如,至少一个天线模块300可以与电极块220同层设置。或者,至少一个天线模块300可以与触控走线210同层设置。或者,多个天线模块300中的至少一者与电极块220同层设置,至少另一者与触控走线210同层设置。
在一些可选的实施例中,请继续参阅图3和图4,显示面板包括设置于衬底100的阵列基板层110和发光层,发光层位于阵列基板层110背离衬底100的一侧。阵列基板层110包括驱动电路,发光层包括发光单元120,阵列基板层110的驱动电路用于驱动发光层的发光单元120发光。显示面板还包括用于密封发光单元120的封装层130,封装层130设置于发光层背离阵列基板层110的一侧。封装层130用于向发光层提供保护,避免发光单元120被水氧入侵而影响显示面板的良率。封装层130可以为薄膜封装、玻璃封装等。或者封装层130可以包括封装盖板131和环形封装部132。显示面板还包括位于封装层130远离所述发光层一侧的触控模块200,以及位于触控模块200远离封装层130一侧的偏光片。
天线模块300在显示面板中的设置方式有多种,可选的,至少一个天线模块300设置于显示面板中的至少一个膜层内;和/或,天线模块300可以设置于显示面板中的任意相邻两个膜层之间,即天线模块300可以设置于衬底100和阵列基板层110之间,和/或,天线模块300可以设置于偏光 片和触控模块200所在层之间,和/或,天线模块300可以设置于封装层130和触控模块200所在层之间。当封装层130为薄膜封装并包括两层以上交替设置的有机层和无机层时,至少一个天线模块200可以位于封装膜层130内相邻的有机层和无机层之间。
封装层130包括封装盖板131和设置于封装盖板131朝向发光单元120一侧的环形封装部132,天线模块300对应位于环形封装部132内。图4中示出了环形封装部132的位置。
在这些可选的实施例中,天线模块300对应位于环形封装部132内,当使用烧结等高温工艺使得环形封装部132和玻璃盖板相互连接时,能够减小高温对天线模块300的影响,也能够减小天线模块300对烧结能量的影响。
在其他实施例中,天线模块300和触控模块200可以位于封装层130背离衬底100的一侧。
可选的,显示面板还包括保护层,位于触控模块200和天线模块300背离衬底100的一侧,通过保护层可以向天线模块及触控模块200提供防护。
请一并参阅图1至图5,图5是本申请第一方面一实施例中图1的局部放大结构示意图。
在一些可选的实施例中,显示面板还包括天线走线500和天线焊盘600,天线模块300通过天线走线500连接天线焊盘600。
在一些可选的实施例中,如图5所示,多个天线模块300中,至少两个以上的天线模块300相互串联。在这些可选的实施例中,两个以上的天线模块300相互串联能够实现一个功率较大的天线作用。可选的,两个以上的天线模块300可以通过串连线30a相互串联。
天线模块300相互串联的方式有多种,如上所述,请继续参阅图5,相互串联的两个天线模块300可以通过连接于同一天线走线500相互串联,即天线走线500复用为串连线30a。
请参阅图6,图6是本申请第一方面另一实施例中图1的局部放大结构示意图。
在另一些可选的实施例中,如图6所示,两个以上的天线模块300通过串连线30a相互连接,即两个以上的天线模块300可以通过串连线30a相互串联,相互串联的两个以上的天线模块300中的任一者和天线走线500相互连接。能进一步简化显示面板的布线,简化显示面板的制备并提高显示面板的良率。例如串连线30a连接于相互串联的两个天线模块300 的传输端330之间,或者相互串联的两个天线模块300的辐射电极310通过串连线30a相互连接。
在一些可选的实施例中,如图5和图6所示,至少部分天线走线500在衬底100上的正投影与触控走线210在衬底100上的正投影至少部分错开设置,以免天线信号和触控信号串扰。
可选的,如图5和图6所示,天线走线500位于触控走线210背离显示区AA的一侧。可选的,天线焊盘600和触控焊盘400设置于显示区AA的同侧,多个天线焊盘600沿第二方向X并排设置。
在这些可选的实施例中,将天线走线500设置于触控走线210背离显示区AA的一侧,即将天线走线500设置于走线段212背离显示区AA的一侧,使得天线走线500不会与多个第一连接段211相交,能够提高信号传输的稳定性,并简化显示面板的布线,提高显示面板的良率。
在另一些实施例中,天线走线500也可以位于至少一条触控走线210朝向显示区AA的一侧。
可选的,天线走线500和触控走线210同层同材料设置,能够简化显示面板的制备工艺,提高显示面板的制备效率。在其他实施例中,天线走线500和触控走线210也可以不同层设置。
如图5和图6所示,在一些可选的实施例中,天线模块300通过天线架桥30b连接于天线走线500。
可选的,为了实现天线模块300和天线走线500的相互连接,显示面板还包括天线架桥30b,天线架桥30b的一端连接天线模块300,天线架桥30b的另一端连接天线走线500,天线架桥30b在衬底100上的正投影与至少一个触控走线210在衬底100上的正投影交叉设置。
可选的,天线模块300的传输端330通过天线架桥30b连接于天线走线500。天线架桥30b和触控走线210相交,因此天线架桥30b和触控走线210不同层设置。可选的,天线架桥30b和电极块220同层设置,能够简化显示面板的层结构,减薄显示面板并提高显示面板的制备效率。
在一些可选的实施例中,继续参考图3-7所示,当至少两个天线模块300通过串连线30a相互串联时,天线模块300和串连线30a中的至少一者与触控模块200同层设置,以简化显示面板的制备。
在一些可选的实施例中,至少部分天线模块300位于触控模块200所在层,即至少部分天线模块300与触控模块200同层设置,在制备触控模块200时可以一并制备天线模块300,能够简化天线模块300的制备,提高显示面板的制备效率。
在另一些可选的实施例中,触控模块200中的电极块220与触控走线210可以同层或分层设置。图3和图7中为了更方便的展示电极块220和触控走线210之间的位置关系,将电极块220和触控走线210画在了同一触控模块200所在层,电极块220和触控走线210可以位于同一膜层或位于不同的膜层。
可选的,当电极块220和触控走线210同层设置时,天线模块300和串连线30a中的一者与触控模块200同层设置,以避免天线信号和触控信号串扰。
可选的,至少一个天线模块300和电极块220、触控走线210同层设置。可以在同一工艺步骤中同时制备该天线模块300、电极块220和触控走线210,能够进一步提高显示面板的制备效率。
可选的,至少一个天线模块300、串连线30a、电极块220以及触控走线210均同层设置。可以在同一工艺步骤中同时制备该天线模块300、串连线30a、电极块220和触控走线210,能够进一步提高显示面板的制备效率。
可选的,当电极块220和触控走线210分层设置时,天线模块300和串连线30a中的一者与触控走线210同层设置,另一者与电极块220同层设置。例如,至少一个天线模块300可以与电极块220同层设置,串连线30a与触控走线210同层设置;或者,天线模块300和触控走线210同层设置,串连线30a和电极块220可以同层设置。能够在不增加层结构的基础上设置天线模块300,简化显示面板的层结构和布线结构,减薄显示面板的厚度。
在一些可选的实施例中,请继续参阅图7,天线模块300和串连线30a不同层,且天线模块300和触控走线210同层设置。可选的,串连线30a和电极块220可以同层设置(图中未示出)。可选的,触控走线210位于非显示区NA,因此,触控走线210通常选用阻抗较低的金属材料制备形成。电极块220位于显示区AA,电极块220通常选用透光率较高的氧化铟锡(ITO)材料制备形成。在其他实施例中,电极块220也可以选用网格状的金属材料制备形成。
在这些可选的实施例中,天线模块300和触控走线210同层设置,使得天线模块300可以选用和触控走线210相同的金属材料制备,能够降低天线模块300的阻抗,便于信号传输。串连线30a用于连接串联的天线模块300,串连线30a的长度通常较短,可以通过增加串连线30a宽度尺寸等方式降低串连线30a的阻抗。
在另一些可选的实施例中,天线模块300和串连线30a还可以与触控模块200异层设置,以避免天线信号和触控信号相互串扰。
请一并参阅图8和图9,图8是本申请第一方面另一实施例提供的一种显示面板的结构示意图。图9是图8中的局部放大结构示意图。
在另一些可选的实施例中,如图8和图9所示,非显示区NA设置有虚拟走线800,至少部分虚拟走线800连接于天线焊盘600以复用为天线模块300。
图8中以矩形点划线框示意出了第一子区NA1和第二子区NA2,点划线并不构成对本申请实施例结构上的限定,而且点划线仅示意出了第一子区NA1和第二子区NA2所在的位置,第一子区NA1和第二子区NA2为点划线矩形框内的非显示区NA。
可选的,虚拟走线800在衬底100上的正投影位于相邻的两条第二连接段213在衬底上的正投影之内。
在一些可选的实施例中,虚拟走线800可以与触控走线210、电极块220中的至少一者同层设置;可选地,第二连接段213与虚拟走线800同层设置。当第二连接段213位于第二子区NA2时,虚拟走线800位于第二子区NA2并与所述第二连接段213同层设置。
可选的,至少部分天线模块300和虚拟走线800同层设置,以简化天线模块300的制备。可选的,请继续参阅图8和图9,至少部分虚拟走线800连接于天线焊盘600以复用为天线模块300。为了保证非显示区NA布线的均匀性,在一些实施例中,会在非显示区NA设置虚拟走线800,在本申请实施例中,通过将至少一条虚拟走线800复用为天线模块300,一方面能够简化天线模块300的布置,另一方面能够避免虚拟走线800上的静电释放,影响触控模块200的性能。
如图8和图9所示,在一些可选的实施例中,当虚拟走线800在衬底100上的正投影位于相邻的两条第二连接段213在衬底上的正投影之间时,至少部分天线模块300在衬底100上的正投影位于相邻的两条第二连接段213在衬底100上的正投影之间,该部分天线模块300为虚拟走线800复用的天线模块300。即至少部分相邻的两个第二连接段213之间设置有复用为天线模块300的虚拟走线800。相邻的两个第二连接段213之间具有间隙,且该间隙形状均匀且具有一定的规律,便于布置虚拟走线800和天线模块300。
可选的,天线焊盘600和触控焊盘400位于第二子区NA2,天线模块300和天线焊盘600相互电连接。可选的,天线模块300通过天线走线500 和天线焊盘600相互电连接。当天线模块300在衬底100上的正投影位于相邻的两条第二连接段213在衬底100上的正投影之间时,天线模块300位于第二子区NA2,能够减小天线模块300和天线焊盘600之间的间距,减小天线走线500的长度,能够提高信号传输的稳定性并简化显示面板的布线。
在一些可选的实施例中,请继续参阅图9,在又一些可选的实施例中,显示面板还包括阻抗测试单元700,阻抗测试单元700连接于天线焊盘600以复用为天线模块300。例如,阻抗测试单元700上设置两个以上的阻抗测试端710。
在一些可选的实施例中,阻抗测试单元700可以与触控走线210、电极块220中的至少一者同层设置或者异层设置;可选地,阻抗测试单元700与触控走线210同层设置。
可选的,天线模块300和阻抗测试单元700可以同层设置或分层设置。
可选的,至少部分天线模块300和阻抗测试单元700同层设置,以简化天线模块300的制备。
在这些可选的实施例中,可以通过阻抗测试端710连接阻抗测试元件,进而使得天线模块300、天线走线500、天线焊盘600、阻抗测试单元700和阻抗测试元件之间形成阻抗检测回路,能够检测天线模块300、天线走线500、天线焊盘600、阻抗测试单元700中的电路连接的稳定性。此外,本申请实施例中,将阻抗测试单元700复用为天线模块300,能够简化显示面板的布线结构,提高显示面板的良率和制备效率。
可选的,阻抗测试单元700在衬底100上的正投影位于相邻的两个第二连接段213之间。当阻抗测试单元700与第二连接段213同层设置,相邻的两个第二连接段213之间具有间隙,且该间隙形状均匀且具有一定的规律,便于布置阻抗测试单元700。且第二连接段213与天线焊盘600的距离较近,能够减小阻抗测试单元700与天线焊盘600之间的距离,进而能够减小阻抗测试单元700与天线焊盘600之间的布线长度。
请参阅图10,图10是本申请第一方面又一实施例中图8中的局部放大结构示意图。
如图10所示,可选的,显示面板包括两个以上的天线模块300,两个以上的天线模块300通过串连线30a相互串联,串连线30a可以连接天线模块300的辐射电极310。
在这些可选的实施例中,通过串连线30a将两个以上的天线模块300 串联,能够扩大天线模块300的功率。
可选的,如图10所示,当天线模块300对应位于相邻的两个第二连接段213之间,且串连线30a用于连接同一第二连接段213两侧天线模块300时,串连线30a和第二连接段213相互交叉。可选的,串连线30a和第二连接段213不同层设置,即串连线30a和触控走线210不位于同一膜层,以避免串连线30a和触控走线210交叉短路,能够提高显示面板的良率。
请参阅图11,图11是本申请第一方面还一实施例中图8中的局部放大结构示意图。
如图11所示,可选的,相邻的两条第二连接段213之间可以对应设置有两个以上的天线模块300。这些天线模块300可以相互独立设置,或者如图10所示,位于相邻两条第二连接段213之间的两个以上天线模块300的传输端330相互连接一体设置,以使位于相邻两条第二连接段213之间的两个以上天线模块300相互串联设置。
请参阅图12,图12是本申请第一方面再一实施例中图8中的局部放大结构示意图。
在一些可选的实施例中,如图12所示,相邻的两个第二连接段213之间设置有未复用为天线模块300的虚拟走线800,天线模块300可以与其他未复用为天线模块300的虚拟走线800同层设置以提高显示面板的良率和制备效率。
请参阅图13,图13是本申请第一方面再一实施例中图8中的局部放大结构示意图。
在一些可选的实施例中,如图13所示,两个以上的天线模块300在衬底100上的正投影位于相邻的两条触控走线210在衬底100上的正投影之间。即相邻的两条触控走线210之间对应设置有两个以上的天线模块300,能够增加天线模块300的数量。
可选的,请继续参阅图13,对应位于相邻两条触控走线210之间的天线模块300还可以相互串联连接,以提高天线模块300的功率。
请参阅图14,图14是本申请第一方面再一实施例中图8中的局部放大结构示意图。
在一些可选的实施例中,如图14所示,天线模块300和第二连接段213之间可以设置有虚拟走线800,以改善阵列基板的走线密度一致性。
本发明第二方面的实施例还提供一种显示装置,包括上述任一第一方面实施例的显示面板。由于本发明第二方面实施例提供的显示装置包括上 述第一方面任一实施例的显示面板,因此本发明第二方面实施例提供的显示装置具有上述第一方面任一实施例的显示面板具有的有益效果,在此不再赘述。
本发明实施例中的显示装置包括但不限于手机、个人数字助理(Personal Digital Assistant,简称:PDA)、平板电脑、电子书、电视机、门禁、智能固定电话、控制台等具有显示功能的设备。
虽然已经参考优选实施例对本申请进行了描述,但在不脱离本申请的范围的情况下,可以对其进行各种改进并且可以用等效物替换其中的部件。尤其是,只要不存在结构冲突,各个实施例中所提到的各项技术特征均可以任意方式组合起来。本申请并不局限于文中公开的特定实施例,而是包括落入权利要求的范围内的所有技术方案。

Claims (20)

  1. 一种显示面板,其中,所述显示面板具有显示区和位于所述显示区至少一侧的非显示区,所述显示面板包括:
    衬底;
    天线模块,设置于所述衬底一侧,且至少一个所述天线模块在所述衬底上的正投影位于所述非显示区的绕线区内。
  2. 根据权利要求1所述的显示面板,其中,所述显示面板还包括触控模块,所述触控模块设置于所述衬底一侧,所述触控模块包括位于所述非显示区的多条触控走线,所述绕线区包括所述触控走线在所述非显示区走线形成的所述触控绕线区;
    至少一个所述天线模块在所述衬底上的正投影位于所述非显示区的所述触控绕线区内。
  3. 根据权利要求2所述的显示面板,其中,所述触控模块还包括位于所述显示区的电极块,至少一个所述天线模块在所述衬底上的正投影位于相邻的两条所述触控走线在所述衬底上的正投影之间,和/或,至少一个所述天线模块在所述衬底上的正投影位于所述电极块在所述衬底上的正投影和所述触控走线在所述衬底上的正投影之间。
  4. 根据权利要求3所述的显示面板,其中,所述触控模块还包括位于所述非显示区的触控焊盘;所述电极块包括触控电极块,
    所述触控走线包括第一连接段、第二连接段及位于所述第一连接段和所述第二连接段之间的走线段,所述第一连接段连接于所述触控电极块,所述第二连接段连接于所述触控焊盘,至少部分所述天线模块在所述衬底上的正投影位于相邻的两条所述第一连接段和/或所述第二连接段在所述衬底上的正投影之间。
  5. 根据权利要求4所述的显示面板,其中,至少部分所述天线模块在所述衬底上的正投影位于所述显示区和所述走线段在所述衬底上的正投影之间。
  6. 根据权利要求4所述的显示面板,其中,所述电极块还包括位于至少部分相邻的两条所述第一连接段所对应的所述触控电极块之间的至少一个间隔电极块,至少部分所述天线模块在所述衬底上的正投影位于所述至少一个间隔电极块朝向所述非显示区的一侧。
  7. 根据权利要求6所述的显示面板,其中,至少部分所述天线模块在所述衬底上的正投影位于所述至少一个间隔电极块在所述衬底上的正投影 与所述走线段在所述衬底上的正投影之间。
  8. 根据权利要求4所述的显示面板,其中,所述非显示区包括沿第一方向相对设置的第一子区和第二子区,所述触控焊盘和所述第二连接段位于所述第二子区,多条所述第二连接段沿第二方向并排设置,所述第二方向和所述第一方向相交。
  9. 根据权利要求2所述的显示面板,其中,所述显示面板包括天线走线和天线焊盘,所述天线模块通过所述天线走线连接所述天线焊盘。
  10. 根据权利要求9所述的显示面板,其中,至少部分所述天线走线在所述衬底上的正投影与所述触控走线在所述衬底上的正投影至少部分错开设置。
  11. 根据权利要求9所述的显示面板,其中,所述显示面板还包括天线架桥,所述天线架桥的一端连接所述天线模块,所述天线架桥的另一端连接所述天线走线。
  12. 根据权利要求11所述的显示面板,其中,所述天线架桥在所述衬底上的正投影与至少一个所述触控走线在衬底上的正投影交叉设置。
  13. 根据权利要求9所述的显示面板,其中,所述非显示区设置有虚拟走线;至少部分所述虚拟走线连接于所述天线焊盘以复用为所述天线模块。
  14. 根据权利要求9所述的显示面板,其中,所述显示面板还包括阻抗测试单元,所述阻抗测试单元连接于所述天线焊盘以复用为所述天线模块。
  15. 根据权利要求3所述的显示面板,其中,至少一个所述天线模块设置于所述显示面板中的至少一个膜层内,和/或,至少一个所述天线模块位于所述显示面板中相邻的两个膜层之间。
  16. 根据权利要求15所述的显示面板,其中,所述显示面板包括阵列基板层,至少部分所述天线模块位于所述阵列基板层所在的层,且与所述阵列基板层中的至少部分金属线同层设置;
    或者,至少部分所述天线模块位于所述触控模块所在层。
  17. 根据权利要求15所述的显示面板,其中,所述电极块与所述触控走线同层设置,至少一个所述天线模块和所述电极块、所述触控走线同层设置;
    或者,所述电极块与所述触控走线分层设置,至少一个所述天线模块与所述电极块和所述触控走线中的至少一者同层设置。
  18. 根据权利要求2所述的显示面板,其中,所述显示面板还包括设置 于所述衬底的发光单元和用于密封所述发光单元的封装层,所述天线模块和所述触控模块位于所述封装层背离所述衬底的一侧;
    和/或,所述封装层包括封装盖板和设置于所述封装盖板朝向所述发光单元一侧的环形封装部,所述天线模块对应位于所述环形封装部内。
  19. 根据权利要求1所述的显示面板,其中,两个以上的所述天线模块通过串连线相互串联连接。
  20. 一种显示装置,包括权利要求1-19任一项所述的显示面板。
PCT/CN2022/114780 2021-12-31 2022-08-25 显示面板和显示装置 WO2023124151A1 (zh)

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