Display panel and display equipment

By setting a plurality of pixel circuits in the first display area and the second display area of ​​the display panel, and bypassing the first display area through the second data line, reducing the number of data lines and reducing load differences, the contradiction between light transmittance and display effect in the under-screen face recognition display technology is solved, and the effects of high light transmittance and display uniformity are achieved.

CN119942912AActive Publication Date: 2025-05-06WUHAN CHINA STAR OPTOELECTRONICS SEMICONDUCTOR DISPLAY TECHNOLOGY CO LTD

Patent Information

Application Number
CN202510093840.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-05-06
Estimated Expiration
2045-01-21

AI Technical Summary

Technical Problem

When developing under-screen face recognition display technology, it is difficult to maintain display effect and data signal continuity while ensuring high light transmittance, resulting in insufficient light transmittance and display uniformity.

Method used

A display panel is designed, including a first display area and a second display area. By setting a plurality of first pixel circuits in the first display area, each circuit is connected to at least two light emitting devices, and a plurality of second pixel circuits are provided in the second display area. Each circuit is connected to a light emitting device, and bypassing the first display area through the second data line, reducing the number of data lines to improve light transmittance, and connecting the second data line through the auxiliary part to reduce load differences and improve display uniformity.

Benefits of technology

The light transmittance and display uniformity of the first display area are achieved, and the contradiction between light transmittance and display effect in the prior art is solved.

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Abstract

The embodiment of the invention discloses a display panel and a display device, a first data line is arranged in a whole display area, the first data line is connected with a first pixel circuit and a second pixel circuit, a second data line is arranged in a second display area and located on the outer side of the first display area, and the second data line is connected with the second pixel circuit. The second data line comprises a first wire, a connecting wire and a second wire which are connected in sequence, at least part of the connecting wire intersects with the first data line, and the first wire and the second wire are located on the opposite sides of the first display area. The second data line further comprises an auxiliary part, and the auxiliary part is connected to the connecting wire. Wherein the second data line is not connected with the first pixel circuit in the first display area, so that the second data line bypasses the first display area through the connecting line, and the light transmittance of the first display area is improved. The auxiliary part is connected with the second data line to reduce the load of the second data line and improve the display uniformity of the first display area.
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Description

Technical Field

[0001] The present application relates to the field of display technology, and in particular to a display panel and a display device. Background Art

[0002] The development of under-screen face recognition technology needs to meet two requirements: first, the face recognition display area must have the same display effect as the regular display area; second, the face recognition display area must meet the requirements for infrared light transmittance. Usually, high transmittance requires low pixel density, but the pixel density of the screen is closely related to the display effect. Some technologies use the method of deleting pixels in the face recognition display area to achieve high transmittance requirements, but this will reduce the display effect of this area.

[0003] Other technologies, in order to minimize the display difference between the two areas, use the design of deleting the driving circuit of the face recognition display area, and using one driving circuit to correspond to multiple light-emitting devices to achieve equal resolution in the two areas, which can also meet the transmittance requirements.

[0004] However, in order to ensure the continuity of data signals within the plane, the data signals of the conventional display area are wired one-to-one in the face recognition display area, but these connections will reduce the overall light transmittance of the face recognition display area. Summary of the invention

[0005] Embodiments of the present application provide a display panel and a display device, which can improve the light transmittance and display uniformity of a first display area.

[0006] An embodiment of the present application provides a display panel, including a first display area and a second display area located at least on one side of the first display area, wherein the first display area is configured to transmit light, and the display panel includes:

[0007] A plurality of first pixel circuits are arranged in the first display area, and each of the first pixel circuits is correspondingly connected to at least two light-emitting devices;

[0008] A plurality of second pixel circuits are arranged in the second display area, and one second pixel circuit is connected to one light emitting device; and

[0009] a plurality of first data lines, arranged in the first display area and the second display area, wherein each of the first data lines is connected to the first pixel circuit and the second pixel circuit respectively; and

[0010] at least one second data line, arranged in the second display area and located outside the first display area, the second data line being connected to the second pixel circuit;

[0011] The second data line includes a first routing line, a connecting routing line, and a second routing line connected in sequence, the first routing line and the second routing line are respectively connected to the second pixel circuit, at least a portion of the connecting routing line intersects with the first data line and is arranged in a different layer, the first routing line and the second routing line are located at opposite sides of the first display area and are both separated from the first data line;

[0012] The length of the second data line is greater than that of the first data line, and the second data line further includes an auxiliary portion, and the auxiliary portion is connected to the connecting line.

[0013] Optionally, in some embodiments of the present application, the connecting routing line includes a first sub-line, a second sub-line, and a third sub-line connected in sequence, the first sub-line is connected to the first routing line, the third sub-line is connected to the second routing line, the first sub-line and the third sub-line extend along a first direction, the second sub-line, the first data line, the first routing line, and the second routing line extend along a second direction intersecting the first direction, the first sub-line and the third sub-line cross the first data line and are arranged in different layers, and the second sub-line is arranged at intervals from the first data line;

[0014] The auxiliary portion includes a first auxiliary portion, the first sub-line includes a first end connected to the first routing line and a second end connected to the second sub-line, and at least one of the first end and the second end is connected to the first auxiliary portion.

[0015] Optionally, in some embodiments of the present application, the first auxiliary portion is connected to the first sub-line in the same layer, and the first auxiliary portion is extended along the first direction.

[0016] Optionally, in some embodiments of the present application, the auxiliary part includes a second auxiliary part, the second sub-line includes a third end connected to the first sub-line and a fourth end connected to the third sub-line, and at least one of the third end and the fourth end is connected to the second auxiliary part.

[0017] Optionally, in some embodiments of the present application, the second auxiliary portion is connected to the second sub-line in the same layer, and the second auxiliary portion is extended along the second direction.

[0018] Optionally, in some embodiments of the present application, the auxiliary part includes a third auxiliary part, the third sub-line includes a fifth end connected to the second routing line and a sixth end connected to the second sub-line, and at least one of the fifth end and the sixth end is connected to the third auxiliary part.

[0019] Optionally, in some embodiments of the present application, the third auxiliary portion is connected to the third sub-line in the same layer, and the third auxiliary portion is extended along the first direction.

[0020] Optionally, in some embodiments of the present application, in the display panel viewed from a top-down perspective, the first display area has a central axis extending along the second direction, and the connecting line of the second data line that is farther away from the central axis is closer to the first display area, and two adjacent connecting lines are separated.

[0021] Optionally, in some embodiments of the present application, in the display panel viewed from a top view, the farther away from the central axis, the shorter the length of the connecting line of the second data line.

[0022] Optionally, in some embodiments of the present application, in the display panel viewed from a top-down perspective, in the first direction, the closer the second sub-line is to the first display area, the shorter the length; in the second direction, the closer the first sub-line is to the first display area, the shorter the length, and the closer the third sub-line is to the first display area, the shorter the length.

[0023] Optionally, in some embodiments of the present application, in the display panel viewed from a top-down perspective, in the second direction, the closer the first sub-line is to the first display area, the longer the length of the first auxiliary portion corresponding to the first sub-line is, and the closer the third sub-line is to the first display area, the longer the length of the third auxiliary portion corresponding to the third sub-line is.

[0024] Optionally, in some embodiments of the present application, the display panel includes a first cathode connecting line extending along the first direction, the first cathode connecting line, the first sub-line and the third sub-line are in the same layer and are arranged at intervals, and in the second display area, the first sub-lines are arranged at intervals in the extension direction of part of the first cathode connecting line, the third sub-lines are arranged at intervals in the extension direction of part of the first cathode connecting line, and part of the first cathode connecting line extends through the entire second display area.

[0025] Optionally, in some embodiments of the present application, the display panel includes a second cathode connecting line extending along the second direction, the second cathode connecting line is arranged in a different layer from the first cathode connecting line and is electrically connected, the second cathode connecting line and the second sub-line are in the same layer and are arranged at intervals, the second sub-lines are arranged at intervals in the extension direction of some of the second cathode connecting lines, and some of the second cathode connecting lines extend through the entire second display area.

[0026] Optionally, in some embodiments of the present application, the distance between two adjacent first cathode connection lines is equal to the distance between two adjacent first sub-lines and the distance between two adjacent third sub-lines, and the distance between two adjacent second cathode connection lines is equal to the distance between two adjacent second sub-lines.

[0027] Optionally, in some embodiments of the present application, the first sub-line is connected to the first routing line via a first avoidance line, the first avoidance line includes a first connection end connected to the first routing line, and the distance between the first connection end and the adjacent routing line on the same layer is greater than the distance between the first sub-line and the adjacent routing line on the same layer.

[0028] Correspondingly, an embodiment of the present application further provides a display device, which includes a display panel as described in any one of the embodiments.

[0029] The display panel and display device of the embodiment of the present application include a first data line and a second data line, the first data line is arranged in a first display area and a second display area, the first data line is respectively connected to a first pixel circuit and a second pixel circuit, the second data line is arranged in the second display area and is located outside the first display area, and the second data line is connected to the second pixel circuit. The second data line includes a first routing line, a connecting routing line, and a second routing line connected in sequence, the first routing line and the second routing line are respectively connected to the second pixel circuit, at least part of the connecting routing line intersects with the first data line and is arranged in a different layer, and the first routing line and the second routing line are located on opposite sides of the first display area and are both separated from the first data line.

[0030] The length of the second data line is greater than that of the first data line, and the second data line further includes an auxiliary portion, and the auxiliary portion is connected to the connecting line.

[0031] It is understandable that, since the second data line is not connected to the first pixel circuit in the first display area, the second data line is bypassed around the first display area through the connecting line, so that the number of data lines in the first display area is reduced, thereby improving the light transmittance of the first display area. Since the second data line is wound in a way that makes the length of the second data line longer than the first data line, the auxiliary part is used to connect the second data line to reduce the load of the second data line, thereby reducing the load difference between the first data line and the second data line, thereby improving the display uniformity of the first display area. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 is a schematic diagram of a top plan structure of a display panel provided in an embodiment of the present application;

[0033] Figure 2is a schematic structural diagram of a first display area and its surrounding area of ​​a display panel provided in an embodiment of the present application;

[0034] Figure 3 yes Figure 1 An enlarged schematic diagram of the N1 part;

[0035] Figure 4 yes Figure 3 An enlarged schematic diagram of the N2 portion;

[0036] Figure 5 yes Figure 3 An enlarged schematic diagram of the N3 portion;

[0037] Figure 6 yes Figure 3 An enlarged schematic diagram of the N4 portion;

[0038] Figure 7 yes Figure 3 An enlarged schematic diagram of the N5 portion;

[0039] Figure 8 It is a schematic diagram of the structure of a display device according to an embodiment of the present application. DETAILED DESCRIPTION

[0040] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present application. In addition, it should be understood that the specific implementation methods described herein are only used to illustrate and explain the present application, and are not used to limit the present application. In the present application, the various embodiments can be combined with each other but will not be repeated one by one, and in the absence of contrary instructions, the directional words used, such as "upper" and "lower", usually refer to the upper and lower parts of the device in actual use or working state, specifically the drawing direction in the drawings; while "inside" and "outside" refer to the outline of the device; the terms "first", "second", "third", etc. are used only as markings, and no numerical requirements are imposed or order is established.

[0041] The embodiments of the present application provide a display panel and a display device, which are described in detail below. It should be noted that the description order of the following embodiments is not intended to limit the preferred order of the embodiments.

[0042] Please refer to Figures 1 to 3 ,exist Figure 1In the embodiment, the first direction F1 may be a direction parallel to one side of the display panel 100 in a top plan view, and may be, for example, a transverse direction of the display panel 100. The second direction F2 may be a direction parallel to the other side of the display panel 100 in a top plan view, and may be a longitudinal direction of the display panel 100. Optionally, in some embodiments, the first direction F1 and the second direction F2 may also be non-perpendicular to each other.

[0043] The display panel 100 may have a rectangular shape in a top plan view, but the embodiment is not limited thereto. In some embodiments, the display panel 100 may have a rectangular shape with vertical corners or rounded corners in a top plan view. The display panel 100 may include two short sides extending in a first direction F1 and two long sides extending in a second direction F2 in a top plan view.

[0044] The embodiment of the present application provides a display panel 100 , which includes a first display area AA1 and a second display area AA2 located at at least one side of the first display area AA1 , and the first display area AA1 is configured to transmit light.

[0045] The display panel 100 includes a plurality of first pixel circuits 11 , a second pixel circuit 12 , a first data line 21 , and a second data line 22 .

[0046] A plurality of first pixel circuits 11 are arranged in the first display area AA1, and one first pixel circuit 11 is correspondingly connected to at least two light emitting devices 01. A plurality of second pixel circuits 12 are arranged in the second display area AA2, and one second pixel circuit 12 is correspondingly connected to one light emitting device 01.

[0047] A plurality of first data lines 21 are disposed in the first display area AA1 and the second display area AA2, and a first data line 21 is respectively connected to the first pixel circuit 11 and the second pixel circuit 12. At least one second data line 22 is disposed in the second display area AA2 and is located outside the first display area AA1, and the second data line 22 is connected to the second pixel circuit 12.

[0048] The second data line 22 includes a first line 221, a connection line 223, and a second line 222 which are connected in sequence. The first line 221 and the second line 222 are respectively connected to the second pixel circuit 12. At least a portion of the connection line 223 intersects with the first data line 21 and is arranged in a different layer. The first line 221 and the second line 222 are located at opposite sides of the first display area AA1 and are both separated from the first data line 21. The connection line 223 is arranged around the periphery of the first display area AA1.

[0049] The length of the second data line 22 is greater than that of the first data line 21. The second data line 22 further includes an auxiliary portion 24, and the auxiliary portion 24 is connected to the connection line 223.

[0050] It is understandable that, since the second data line 22 is not connected to the first pixel circuit 11 in the first display area AA1, the second data line 22 is bypassed around the first display area AA1 through the connecting wire 223, so that the number of data lines in the first display area AA1 is reduced, thereby improving the light transmittance of the first display area AA1. Since the second data line 22 is wound in a manner so that the length of the second data line 22 is longer than the first data line 21, the auxiliary part 24 is used to connect the second data line 22 to reduce the load of the second data line 22, thereby reducing the load difference between the first data line 21 and the second data line 22, thereby improving the display uniformity of the first display area AA1.

[0051] It should be explained that the length of the second data line 22 and the length of the first data line 21 are the lengths of the two within the total display area. The first display area AA1 and the second display area AA2 are connected to form the total display area. The second display area AA2 is located on at least one side of the first display area AA1. For example, the second display area AA2 surrounds the first display area AA1, or the second display area AA2 partially surrounds the first display area AA1.

[0052] Optionally, in some embodiments of the present application, the display panel 100 further includes a third data line 23 disposed in the second display area AA2, the third data line 23 extending along the second direction F2 and passing through the entire second display area AA2. The third data line 23 and the first data line 21 are disposed in the same layer and are spaced apart. In the first direction F1, the third data line 23 is disposed on opposite sides of all the first data lines 21 as a whole. In the first direction F1, the second sub-line 22b is disposed between two adjacent third data lines 23.

[0053] In the second display area AA2, the length of the third data line 23 is less than that of the second data line 22. The auxiliary portion 24 is used to connect the second data line 22 to reduce the load of the second data line 22, thereby reducing the load difference between the third data line 23 and the second data line 22, thereby improving the display uniformity of the total display area.

[0054] Secondly, the second display area AA2 and the first display area AA1 are both areas including pixels for displaying images. The first display area AA1 is configured to provide a light-transmitting channel for the camera module.

[0055] Optionally, the camera module may be a camera module for facial recognition, the camera module comprising a transmitter and a receiver, the transmitter being configured to emit infrared light, and the receiver being configured to receive infrared light reflected from a human face.

[0056] exist Figure 1In the embodiment, the display panel 100 includes two first display areas AA1, one first display area AA1 is configured to provide a light transmission channel for the transmitter, and the other first display area AA1 is configured to provide a light transmission channel for the receiver. However, the present invention is not limited thereto. For example, one first display area AA1 can provide a light transmission channel for both the transmitter and the receiver; or the display panel 100 includes one first display area AA1, and the first display area AA1 is configured to provide a light transmission channel for a conventional camera module, such as a single camera module, a multi-camera module, or an infrared camera module.

[0057] Optionally, the plurality of light-emitting devices 01 include a red light-emitting device R, a green light-emitting device G, and a blue light-emitting device B. In the first display area AA1, a first pixel circuit 11 is connected to at least two red light-emitting devices R, another first pixel circuit 11 is connected to at least two green light-emitting devices G, and another first pixel circuit 11 is connected to at least two blue light-emitting devices B. In the second display area AA2, a second pixel circuit 12 is connected to a red light-emitting device R, another second pixel circuit 12 is connected to a green light-emitting device G, and another second pixel circuit 12 is connected to a blue light-emitting device B.

[0058] Optionally, in some embodiments, in the first display area AA1, a first pixel circuit 11 is connected to two red light emitting devices R, another first pixel circuit 11 is connected to two green light emitting devices G, and another first pixel circuit 11 is connected to four blue light emitting devices B.

[0059] Optionally, in some embodiments, the plurality of second data lines 22 are divided into two groups, and the connection lines 223 of one group of second data lines 22 are wound toward the left side of the first display area AA1, and the connection lines 223 of the other group of second data lines 22 are wound toward the right side of the first display area AA1. That is, the connection lines of the two groups of second data lines 22 are arranged opposite to each other with respect to the first display area AA1. Compared with the unilateral winding method, the bilateral winding method adopted in the embodiment of the present application can reduce the load difference between the first data line 21 and the second data line 22, and reduce the load difference between the second data lines 22.

[0060] Optionally, in some embodiments of the present application, the connecting line 223 includes a first sub-line 22a, a second sub-line 22b, and a third sub-line 22c connected in sequence, the first sub-line 22a is connected to the first line 221, and the third sub-line 22c is connected to the second line. The first sub-line 22a and the third sub-line 22c extend along the first direction F1. The second sub-line 22b, the first data line 21, the first line 221, and the second line 222 extend along the second direction F2 intersecting the first direction F1. The first sub-line 22a and the third sub-line 22c cross the first data line 21 and are arranged in different layers, and the second sub-line 22b is arranged at intervals from the first data line 21.

[0061] Please refer to Figures 2 to 5 The auxiliary portion 24 includes a first auxiliary portion 241 , the first sub-line 22a includes a first end connected to the first wiring 221 and a second end connected to the second sub-line 22b , and at least one of the first end and the second end is connected to the first auxiliary portion 241 .

[0062] Optionally, a first auxiliary portion 241 is connected to the first end, and another first auxiliary portion 241 is connected to the second end to reduce the impedance of the second data line 22, thereby reducing the load difference between the first data line 21 and the second data line 22 and improving the display uniformity of the first display area AA1.

[0063] Optionally, in some embodiments of the present application, the first auxiliary portion 241 is connected to the first sub-line 22 a in the same layer, and the first auxiliary portion 241 is extended along the first direction F1.

[0064] Optionally, in some embodiments of the present application, in the first direction F1, the first sub-line 22 a is extended in a straight line to reduce the load difference between the first data line 21 and the second data line 22 .

[0065] The first sub-line 22a is connected to the second sub-line 22b through the via g1.

[0066] Please refer to Figure 5 and Figure 6 In some embodiments of the present application, the auxiliary portion 24 includes a second auxiliary portion 242, the second sub-line 22b includes a third end connected to the first sub-line 22a and a fourth end connected to the third sub-line 22c, and at least one of the third end and the fourth end is connected to the second auxiliary portion 242.

[0067] Optionally, a second auxiliary portion 242 is connected to the third end, and another second auxiliary portion 242 is connected to the fourth end to reduce the impedance of the second data line 22, thereby reducing the load difference between the first data line 21 and the second data line 22 and improving the display uniformity of the first display area AA1.

[0068] Optionally, in some embodiments of the present application, the second auxiliary portion 242 is connected to the second sub-line 22 b in the same layer, and the second auxiliary portion 242 is extended along the second direction F2.

[0069] Optionally, in some embodiments of the present application, in the second direction F2, the second sub-line 22 b is extended in a straight line, and the first data line 21 is extended in a zigzag line, so as to reduce the load difference between the first data line 21 and the second data line 22 .

[0070] The third sub-line 22c is connected to the second sub-line 22b through the via g1.

[0071] Please refer to Figure 6 and Figure 7 In some embodiments of the present application, the auxiliary portion 24 includes a third auxiliary portion 243, the third sub-line 22c includes a fifth end connected to the second wiring 222 and a sixth end connected to the second sub-line 22b, and at least one of the fifth end and the sixth end is connected to the third auxiliary portion 243.

[0072] Optionally, a third auxiliary portion 243 is connected to the fifth end, and another third auxiliary portion 243 is connected to the sixth end to reduce the impedance of the second data line 22, thereby reducing the load difference between the first data line 21 and the second data line 22 and improving the display uniformity of the first display area AA1.

[0073] Optionally, in some embodiments of the present application, the third auxiliary portion 243 is connected to the third sub-line 22 c in the same layer, and the third auxiliary portion 243 is extended along the first direction F1.

[0074] Optionally, in some embodiments of the present application, in the first direction F1 , the third sub-line 22 c is extended in a straight line to reduce the load difference between the first data line 21 and the second data line 22 .

[0075] Optionally, in some embodiments of the present application, a second data line 22 is connected to a column of green light-emitting devices G, wherein a second sub-line 22b is arranged adjacent to a third data line 23 connected to the green light-emitting device G to reduce the interference of the second data line 22 on other light-emitting devices and improve the display stability.

[0076] Please refer to Table 1, which is a load comparison table of the first data line 21 and the second data line 22 in the embodiment of the present application, wherein the first data line 21 and the second data line 22 are respectively connected to a column of green light emitting devices G, and the two are arranged adjacent to each other. The two columns of green light emitting devices G are also arranged adjacent to each other.

[0077]

[0078] It should be noted that the in-plane proportion refers to the proportion of the load of the data line to the total load of the data lines in the total display area. Figure 3 In the vicinity of the first display area AA1, in the second direction F2 (longitudinal direction), the first data line 21 is designed to be a concave-convex line, and the second sub-line 22b of the second data line 22 is designed to be a straight line.

[0079] It can be seen from Table 1 that the second data line 22 adopts the winding method of the connection line 223 without causing a large load difference, which will not cause the problem of obvious display difference, and at the same time can improve the transmittance of the first display area AA1.

[0080] Please continue to refer to Figure 3 In some embodiments of the present application, in the display panel 100 viewed from a top view, the first display area AA1 has a central axis zz extending along the second direction F2, and the connecting line 223 of the second data line 22 that is farther away from the central axis zz is closer to the first display area AA1, and two adjacent connecting lines 223 are separated from each other.

[0081] It can be understood that the connecting line 223 is semi-circular or quasi-semi-circular, and multiple connecting lines 223 are arranged in a half circle outside the other half circle in the direction away from the first display area AA1, so that any two connecting lines 223 do not intersect or overlap, thereby avoiding the risk of mutual interference between data signals and improving the stability of the display of the first display area AA1.

[0082] Optionally, in some embodiments of the present application, in the display panel 100 in a top view, the farther the connection line 223 of the second data line 22 is from the central axis zz, the shorter the length. The farther the connection line 223 of the second data line 22 is from the central axis zz, the longer the total length of the auxiliary portion 24 corresponding to the connection line 223 of the second data line 22 is.

[0083] It can be understood that by making the lengths of the connecting wires 223 and the auxiliary portion 24 complementary, the wiring area in the unit area of ​​the second display area AA2 is made uniform, thereby improving the uniformity of light distribution and further improving the uniformity of display.

[0084] Secondly, in the second direction F2, in the top area a02 of the second display area AA2 adjacent to the first display area AA1 and far from the data signal input terminal, the portion of the second data line 22 closer to the central axis zz is located in the middle of the top area a02, and the portion of the second data line 22 farther from the central axis zz is located on both sides of the top area a02. From the middle of the top area a02 to the two sides, the length of the second data line 22 decreases, and the length of the auxiliary portion 24 connected to the second data line 22 increases, so that the load of the second data line 22 farther from the central axis zz is smaller and closer to the load of the first data line 21 and the third data line 23, so that in the top area a02, from the middle of the top area a02 to the two sides, the load of the second data line 22 decreases, so as to better perform display transition and improve display uniformity.

[0085] Optionally, in some embodiments of the present application, in the display panel 100 in a top view, in the first direction F1, the closer the second sub-line 22b is to the first display area AA1, the shorter the length is. In the second direction F2, the closer the first sub-line 22a is to the first display area AA1, the shorter the length is, and the closer the third sub-line 22c is to the first display area AA1, the shorter the length is.

[0086] In the display panel 100 viewed from a top perspective, in the second direction F2, the first auxiliary portion 241 corresponding to the first sub-line 22a closer to the first display area AA1 is longer, and the third auxiliary portion 243 corresponding to the third sub-line 22c closer to the first display area AA1 is longer.

[0087] Optionally, in some embodiments of the present application, the display panel 100 includes a first cathode connection line 31 extending along the first direction F1, and the first cathode connection line 31, the first sub-line 22a and the third sub-line 22c are arranged in the same layer and at intervals. In the second display area AA2, the first sub-lines 22a are arranged at intervals in the extending direction of part of the first cathode connection line 31, the third sub-lines 22c are arranged at intervals in the extending direction of part of the first cathode connection line 31, and part of the first cathode connection line 31 extends through the entire second display area AA2.

[0088] It can be understood that the first cathode connection line 31 is extended along the first direction F1. The first cathode connection line 31 is configured to electrically connect the cathode of the light-emitting device 01. In the second display area AA2, the first cathode connection lines 31 are arranged at intervals along the second direction F2. Among them, based on the first sub-lines 22a arranged at intervals in the extension direction of part of the first cathode connection lines 31, the third sub-lines 22c are arranged at intervals in the extension direction of part of the first cathode connection lines 31, and part of the first cathode connection lines 31 extend through the entire second display area AA2, so that the wiring areas in each unit area of ​​the second display area AA2 tend to be the same, so as to improve the display uniformity.

[0089] Optionally, in some embodiments of the present application, the distance between two adjacent first cathode connecting lines 31 is equal to the distance between two adjacent first sub-lines 22a and the distance between two adjacent third sub-lines 22c, so that the wiring formed by the first cathode connecting lines 31, the first sub-lines 22a and the third sub-lines 22c are arranged equidistantly, thereby improving the wiring positions in each unit area of ​​the second display area AA2 to be consistent, thereby further improving the display uniformity.

[0090] Optionally, in some embodiments of the present application, the display panel 100 includes a second cathode connection line 32 extending along the second direction F2, and the second cathode connection line 32 is arranged in a different layer and electrically connected to the first cathode connection line 31. The second cathode connection line 32 and the second sub-line 22b are arranged in the same layer and are spaced apart. The second sub-lines 22b are spaced apart in the extending direction of part of the second cathode connection line 32, and part of the second cathode connection line 32 extends through the entire second display area AA2.

[0091] It can be understood that the second cathode connection line 32 is extended along the second direction F2. The second cathode connection line 32 is configured to electrically connect the cathode of the light-emitting device 01. In the second display area AA2, the second cathode connection lines 32 are arranged at intervals along the first direction F1. Part of the second cathode connection lines 32 are arranged at intervals in the extending direction, and part of the second cathode connection lines 32 extend through the entire second display area AA2, so that the wiring area in each unit area of ​​the second display area AA2 tends to be the same, so as to improve the display uniformity.

[0092] Optionally, the distance between two adjacent second cathode connection lines 32 is equal to the distance between two adjacent second sub-lines 22b, so that the wiring formed by the second cathode connection lines 32 and the second sub-lines 22b is arranged equidistantly, improving the wiring positions in each unit area of ​​the second display area AA2 to be similar, further improving the display uniformity.

[0093] In addition, it should be noted that in the existing panel technology, the cathode connecting lines are usually designed in a grid shape and arranged on the entire surface, while the embodiment of the present application disconnects part of the cathode connecting lines and uses via g1 to form connecting lines 223, without the need to additionally set up connecting lines 223, thereby saving wiring space and improving the opening ratio.

[0094] Optionally, in some embodiments of the present application, the second cathode connection line 32 does not extend into the first display area AA1 to improve the light transmittance of the first display area AA1.

[0095] Optionally, in some embodiments of the present application, the first sub-line 22a is connected to the first routing line 221 via a first avoidance line 41, the first avoidance line 41 includes a first connection end 41a connected to the first routing line 221, and the distance between the first connection end 41a and the adjacent routing line on the same layer is greater than the distance between the first sub-line 22a and the adjacent routing line on the same layer.

[0096] It can be understood that the first avoidance line 41 is set on the same layer as the first sub-line 22a, and the first sub-line 22a transfers the connection between the first sub-line 22a and the first routing line 221 to a position with a larger space through the first avoidance line 41 to meet the setting requirements of the via g1, thereby reducing the risk of short circuit between the first sub-line 22a and other routing lines on the same layer.

[0097] In addition, the first avoidance line 41 includes a second connection end 41b connected to the first sub-line 22a, and the second connection end 41b is located at a side away from the central axis zz at the intersection of the first line 221 and the first sub-line 22a. Such an arrangement can be used to arrange the first auxiliary portion 241 in a limited space and shorten the length of the connecting line 223 to reduce impedance.

[0098] Optionally, in some embodiments of the present application, the third sub-line 22c is connected to the second routing line 222 via a second avoidance line 42, the second avoidance line 42 includes a third connection end 42a connected to the second routing line 222, and the distance between the third connection end 42a and the adjacent routing line on the same layer is greater than the distance between the third sub-line 22c and the adjacent routing line on the same layer.

[0099] It can be understood that the second avoidance line 42 is set on the same layer as the third sub-line 22c, and the third sub-line 22c transfers the connection between the third sub-line 22c and the second routing line 222 to a position with a larger space through the second avoidance line 42 to meet the setting requirements of the via g1, thereby reducing the risk of short circuit between the third sub-line 22c and other routing lines on the same layer.

[0100] In addition, the second avoidance line 42 includes a fourth connection end 42b connected to the third sub-line 22c, and the fourth connection end 42b is located at a side of the intersection of the second line 222 and the third sub-line 22c away from the central axis zz. Such an arrangement can be used to arrange the third auxiliary portion 243 in a limited space and shorten the length of the connecting line 223 to reduce impedance.

[0101] Please refer to Figure 8 Accordingly, an embodiment of the present application further provides a display device 1000, comprising a display panel 100 as described in any one of the above embodiments.

[0102] It can be understood that the structure of the display panel 100 of the display device 1000 of the embodiment of the present application is similar to or the same as the structure of the display panel 100 of any of the above embodiments. Figures 1 to 7 The explanation will not be repeated here.

[0103] Optionally, the display device 1000 further includes a camera module, which is disposed on the backlight side of the display panel 100 and corresponding to the first display area AA1.

[0104] The camera module includes a transmitter and a receiver, the transmitter is configured to emit infrared light, and the receiver is configured to receive infrared light reflected from the face. The transmitter corresponds to a first display area AA1, and the receiver corresponds to another first display area AA1. However, it is not limited to this. For example, a first display area AA1 can be used to provide a light transmission channel for both the transmitter and the receiver; or the display panel 100 includes a first display area AA1, and the camera module is a conventional camera module, such as a single camera module, a multi-camera module or an infrared camera module.

[0105] The display panel 100 of the display device 1000 of the embodiment of the present application includes a first data line 21 and a second data line 22, and the first data line 21 is arranged in the first display area AA1 and the second display area AA2. The first data line 21 is respectively connected to the first pixel circuit 11 and the second pixel circuit 12. The second data line 22 is arranged in the second display area AA2 and is located outside the first display area AA1, and the second data line 22 is connected to the second pixel circuit. The second data line 22 includes a first routing line 221, a connecting routing line 223 and a second routing line 222 connected in sequence, and the first routing line 221 and the second routing line 222 are respectively connected to the second pixel circuit 12, and at least a part of the connecting routing line 223 intersects with the first data line 21 and is arranged in a different layer. The first routing line 221 and the second routing line 222 are located on opposite sides of the first display area AA1 and are both separated from the first data line 21.

[0106] The length of the second data line 22 is greater than that of the first data line 21. The second data line 22 further includes an auxiliary portion 24, and the auxiliary portion 24 is connected to the connection line 223.

[0107] It is understandable that, since the second data line 22 is not connected to the first pixel circuit 11 in the first display area AA1, the second data line 22 is bypassed around the first display area AA1 through the connecting wire 223, so that the number of data lines in the first display area AA1 is reduced, thereby improving the light transmittance of the first display area AA1. Since the second data line 22 is wound in a manner so that the length of the second data line 22 is longer than the first data line 21, the auxiliary part 24 is used to connect the second data line 22 to reduce the load of the second data line 22, thereby reducing the load difference between the first data line 21 and the second data line 22, thereby improving the display uniformity of the first display area AA1.

[0108] The above is a detailed introduction to a display panel and a display device provided in the embodiments of the present application. Specific examples are used herein to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method of the present application and its core idea. At the same time, for technical personnel in this field, according to the idea of ​​the present application, there will be changes in the specific implementation methods and application scope. In summary, the content of this specification should not be understood as a limitation on the present application.

Claims

1. A display panel, comprising a first display area and a second display area located at least on one side of the first display area, wherein the first display area is configured to transmit light, characterized in that: The display panel comprises: A plurality of first pixel circuits are arranged in the first display area, and each of the first pixel circuits is correspondingly connected to at least two light-emitting devices; A plurality of second pixel circuits are arranged in the second display area, and one second pixel circuit is connected to one light emitting device; and a plurality of first data lines, arranged in the first display area and the second display area, wherein each of the first data lines is connected to the first pixel circuit and the second pixel circuit respectively; and at least one second data line, arranged in the second display area and located outside the first display area, the second data line being connected to the second pixel circuit; The second data line includes a first routing line, a connecting routing line, and a second routing line connected in sequence, the first routing line and the second routing line are respectively connected to the second pixel circuit, the connecting routing line is arranged around the periphery of the first display area, at least a part of the connecting routing line intersects with the first data line and is arranged in a different layer, the first routing line and the second routing line are located at opposite sides of the first display area and are both separated from the first data line; Wherein, the second data line further includes an auxiliary portion, and the auxiliary portion is connected to the connecting line.

2. The display panel according to claim 1, characterized in that: The connecting routing line includes a first sub-line, a second sub-line and a third sub-line connected in sequence, the first sub-line is connected to the first routing line, the third sub-line is connected to the second routing line, the first sub-line and the third sub-line extend along a first direction, the second sub-line, the first data line, the first routing line and the second routing line extend along a second direction intersecting the first direction, the first sub-line and the third sub-line cross the first data line and are arranged in different layers, and the second sub-line is arranged at intervals from the first data line; The auxiliary portion includes a first auxiliary portion, the first sub-line includes a first end connected to the first routing line and a second end connected to the second sub-line, and at least one of the first end and the second end is connected to the first auxiliary portion.

3. The display panel according to claim 2, characterized in that: The first auxiliary portion is connected to the first sub-line in the same layer, and the first auxiliary portion is extended along the first direction.

4. The display panel according to claim 3, characterized in that: The auxiliary portion includes a second auxiliary portion, the second sub-line includes a third end connected to the first sub-line and a fourth end connected to the third sub-line, and at least one of the third end and the fourth end is connected to the second auxiliary portion.

5. The display panel according to claim 4, characterized in that: The second auxiliary portion is connected to the second sub-line in the same layer, and the second auxiliary portion is extended along the second direction.

6. The display panel according to claim 5, characterized in that: The auxiliary portion includes a third auxiliary portion, the third sub-line includes a fifth end connected to the second routing line and a sixth end connected to the second sub-line, and at least one of the fifth end and the sixth end is connected to the third auxiliary portion.

7. The display panel according to claim 6, characterized in that: The third auxiliary portion is connected to the third sub-line in the same layer, and the third auxiliary portion is extended along the first direction.

8. The display panel according to claim 7, characterized in that: In the display panel viewed from a top view, the first display area has a central axis extending along the second direction, the connecting line of the second data line that is farther from the central axis is closer to the first display area, and two adjacent connecting lines are spaced apart.

9. The display panel according to claim 8, characterized in that: In the display panel viewed from a top view, the farther away from the central axis, the shorter the length of the connecting line of the second data line.

10. The display panel according to claim 9, characterized in that: In the display panel viewed from a top-down perspective, in the first direction, the closer the second sub-line is to the first display area, the shorter the length; in the second direction, the closer the first sub-line is to the first display area, the shorter the length, and the closer the third sub-line is to the first display area, the shorter the length.

11. The display panel according to claim 10, characterized in that: In the display panel viewed from a top perspective, in the second direction, the closer the first sub-line is to the first display area, the longer the length of the first auxiliary portion corresponding to the first sub-line is, and the closer the third sub-line is to the first display area, the longer the length of the third auxiliary portion corresponding to the third sub-line is.

12. The display panel according to any one of claims 2 to 11, characterized in that: The display panel includes a first cathode connecting line extending along the first direction, the first cathode connecting line, the first sub-line and the third sub-line are in the same layer and are arranged at intervals, and in the second display area, the first sub-lines are arranged at intervals in the extending direction of part of the first cathode connecting line, the third sub-lines are arranged at intervals in the extending direction of part of the first cathode connecting line, and part of the first cathode connecting line extends through the entire second display area.

13. The display panel according to claim 12, characterized in that: The display panel includes a second cathode connecting line extending along the second direction, the second cathode connecting line is arranged in a different layer from the first cathode connecting line and is electrically connected, the second cathode connecting line and the second sub-line are in the same layer and are arranged at intervals, the second sub-lines are arranged at intervals in the extending direction of some of the second cathode connecting lines, and some of the second cathode connecting lines extend through the entire second display area.

14. The display panel according to claim 13, characterized in that: The distance between two adjacent first cathode connection lines is equal to the distance between two adjacent first sub-lines and the distance between two adjacent third sub-lines, and the distance between two adjacent second cathode connection lines is equal to the distance between two adjacent second sub-lines.

15. The display panel according to any one of claims 2 to 11, characterized in that: The first sub-line is connected to the first routing line through a first avoidance line, the first avoidance line includes a first connection end connected to the first routing line, and the distance between the first connection end and the adjacent routing line on the same layer is greater than the distance between the first sub-line and the adjacent routing line on the same layer.

16. A display device, characterized in that: Comprising a display panel as described in any one of claims 1-15.

Citation Information

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