Display panel

By designing the first group of pixel rows and the second group of pixel rows alternately arranged in the column direction in the display panel, and using the branch structures of the first pixel electrode and the second pixel electrode to make the protrusion direction opposite, the problem of the difference in picture quality of the traditional liquid crystal display panel at different observation angles is solved, and the display effect is improved.

CN222840006UActive Publication Date: 2025-05-06GUANGZHOU CHINA STAR OPTOELECTRONICS SEMICON DISPLAY TECH CO LTD
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Patent Information

Application Number
CN202421657821.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-12
Publication Date
2025-05-06
Estimated Expiration
2034-07-12

AI Technical Summary

Technical Problem

The traditional LCD display panel has different picture quality differences in the display screen under different observation angles, which affects the display effect.

Method used

A display panel is designed, which includes a first set of pixel rows and a second set of pixel rows alternately arranged in a column direction. The first set of pixel rows includes a plurality of first pixels arranged in the row direction, and the first pixels include a first pixel electrode. The second set of pixel rows includes a plurality of second pixels arranged in the row direction, and the second pixels include a second pixel electrode. The segment structure of the first pixel electrode and the second pixel electrode is designed such that the convex direction of the first pixel electrode is opposite to the convex direction of the second pixel electrode.

Benefits of technology

With this design, when the display screen is observed from the left and right sides of the display panel, the difference in the display screen at different observation angles is reduced and the display effect is improved.

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Abstract

The utility model discloses a display panel. The display panel comprises a first group of pixel rows and a second group of pixel rows, the first group of pixel rows comprises first pixels arranged in the row direction, and the first pixels comprise first pixel electrodes; the second group of pixel rows comprises second pixels arranged in the row direction, and the second pixels comprise second pixel electrodes; the first pixel electrode comprises a first branch section and a second branch section which are connected, the first branch section extends in the first direction, the second branch section extends in the second direction, and the joint of the first branch section and the second branch section protrudes in the row direction; the second pixel electrode comprises a third branch section and a fourth branch section which are connected, the third branch section extends in the second direction, the fourth branch section extends in the first direction, and the joint of the third branch section and the fourth branch section protrudes in the direction opposite to the row direction; and the third branch section of the second pixel electrode is arranged close to the second branch section of the first pixel electrode between the first pixel sub-row and the second pixel sub-row which are adjacent to each other. The display effect can be improved.
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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. Background Art

[0002] Fringe Field Switching (FFS) technology is a liquid crystal display technology, which is mainly used in liquid crystal display panels to improve the display effect of liquid crystal display panels.

[0003] But for Figure 1 As shown in the figure, for the conventional liquid crystal display panel using the fringe field switching technology, the upper and lower halves of the pixel electrode in each pixel unit are symmetrically tilted. When powered on, the liquid crystal molecules in the upper and lower regions have tilt angles in opposite directions, that is, there are two different liquid crystal domains (dual-domain pixels) in a single pixel unit. Although the conventional dual-domain pixels have a high contrast ratio, when viewing the display from the left and right sides of the liquid crystal display panel, the display quality is different at different viewing angles, which affects the display effect.

[0004] Therefore, it is necessary to propose a new technical solution to solve the above technical problems. Utility Model Content

[0005] The purpose of the present application is to provide a display panel to improve the display effect.

[0006] To solve the above problems, the technical solution of this application is as follows:

[0007] The present application proposes a display panel, comprising:

[0008] A first group of pixel rows includes at least one first pixel sub-row, wherein the first pixel sub-row includes a plurality of first pixels arranged along a row direction; and

[0009] A second group of pixel rows includes at least one second pixel sub-row, wherein the second pixel sub-row includes a plurality of second pixels arranged along the row direction, and the second group of pixel rows and the first group of pixel rows are alternately arranged along the column direction;

[0010] The first pixel includes a first pixel electrode, the second pixel includes a second pixel electrode, and the second pixel electrode and the first pixel electrode are arranged in the same layer;

[0011] The first pixel electrode comprises a first branch segment and a second branch segment connected to each other, the first branch segment extends along a first direction, the second branch segment extends along a second direction intersecting the first direction, and a cross-connection between the first branch segment and the second branch segment protrudes toward the row direction;

[0012] The second pixel electrode comprises a third branch segment and a fourth branch segment connected to each other, the third branch segment extends along the second direction, the fourth branch segment extends along the first direction, and a cross-connection between the third branch segment and the fourth branch segment protrudes in a direction opposite to the row direction;

[0013] In a plan view of the display panel, between two adjacent rows of the first pixel sub-row and the second pixel sub-row, the third branch segment of the second pixel electrode is disposed close to the second branch segment of the first pixel electrode.

[0014] In one embodiment of the present application, in a plan view of the display panel, an angle formed by the first branch segment and the second branch segment is in a range of 95 degrees to 175 degrees, and an angle formed by the third branch segment and the fourth branch segment is in a range of 95 degrees to 175 degrees.

[0015] In one embodiment of the present application, the display panel further includes:

[0016] A plurality of data lines are arranged along the row direction; and

[0017] A plurality of gate lines are arranged along the column direction;

[0018] The data line includes a first sub-segment and a second sub-segment, the first sub-segments of two adjacent data lines and the two gate lines intersect to form a first pixel region, the first pixel region is provided with a first pixel electrode, the second sub-segments of two adjacent data lines and the two gate lines intersect to form a second pixel region, the second pixel region is provided with a second pixel electrode;

[0019] The first sub-section includes a first sub-portion and a second sub-portion which are cross-connected, the first sub-portion is arranged on one side of the first branch section, and the second sub-portion is arranged on one side of the second branch section;

[0020] The second subsection includes a third subsection and a fourth subsection which are cross-connected, the third subsection is arranged at one side of the third branch section, and the fourth subsection is arranged at one side of the fourth branch section;

[0021] The first sub-portion extends along the first direction, the second sub-portion extends along the second direction, the third sub-portion extends along the second direction, and the fourth sub-portion extends along the first direction.

[0022] In one embodiment of the present application, in a plan view of the display panel, an angle formed by the first sub-section and the second sub-section is in a range of 95 degrees to 175 degrees, and an angle formed by the third sub-section and the fourth sub-section is in a range of 95 degrees to 175 degrees.

[0023] In an embodiment of the present application, one of the first pixel groups includes only one of the first pixel sub-rows, and one of the second pixel groups includes only one of the second pixel sub-rows.

[0024] In an embodiment of the present application, the first sub-segments and the second sub-segments are alternately connected and arranged along the column direction.

[0025] In an embodiment of the present application, one of the first pixel groups includes at least two of the first pixel sub-rows, and one of the second pixel groups includes at least two of the second pixel sub-rows.

[0026] In one embodiment of the present application, in the first group of pixel rows, at least two of the first sub-segments are connected to form a first combined segment;

[0027] In the second group of pixel rows, at least two of the second sub-segments are connected to form a second combined segment;

[0028] The first combined segments and the second combined segments are alternately connected and arranged in the column direction.

[0029] In one embodiment of the present application, the display panel further includes:

[0030] a plurality of data lines, the data lines extending along the column direction, and the plurality of data lines arranged along the row direction; and

[0031] A plurality of gate lines, wherein the gate lines extend along the row direction, and the plurality of gate lines are arranged along the column direction;

[0032] Two adjacent data lines and two adjacent gate lines intersect to form a third pixel region, and the third pixel region is provided with one of the first pixel electrode and the second pixel electrode.

[0033] In one embodiment of the present application, the first pixel further includes a first common electrode, and the first common electrode and the first pixel electrode are arranged in different layers;

[0034] The second pixel further includes a second common electrode, and the second common electrode and the second pixel electrode are arranged in different layers;

[0035] In a plan view of the display panel, the first common electrode overlaps with the first pixel electrode, and the second common electrode overlaps with the second pixel electrode;

[0036] The first pixel electrode further comprises a first main segment, and the first main segment is electrically connected to a plurality of first branch segments of the same first pixel electrode;

[0037] The second pixel electrode further includes a second main segment, and the second main segment is electrically connected to a plurality of third branch segments of the same second pixel electrode.

[0038] In the present application, a display panel includes a first group of pixel rows and a second group of pixel rows alternately arranged in a column direction, the first group of pixel rows includes a plurality of first pixels arranged in a row direction, and the first pixel includes a first pixel electrode. The second group of pixel rows includes a plurality of second pixels arranged in a row direction, and the second pixel includes a second pixel electrode. Among them, the first pixel electrode includes a first branch segment and a second branch segment connected to each other. The second pixel electrode includes a third branch segment and a fourth branch segment connected to each other. The connection between the first branch segment and the second branch segment protrudes in the row direction, and the connection between the third branch segment and the fourth branch segment protrudes in the opposite direction of the row direction. Since the protruding direction of the first pixel electrode is opposite to the protruding direction of the second pixel electrode, when the display image is observed from the left and right sides of the display panel, the difference in the display image under different viewing angles can be reduced, thereby improving the display effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] Figure 1 is a plan view of a conventional display panel;

[0040] Figure 2 is a plan view of a first embodiment of a display panel of the present application;

[0041] Figure 3 is a schematic diagram of data lines of a conventional display panel and data lines of an embodiment of a display panel of the present application;

[0042] Figure 4 is a plan view of a second embodiment of a display panel of the present application;

[0043] Figure 5 It is a plan view of a third embodiment of the display panel of the present application. DETAILED DESCRIPTION

[0044] The meanings of the terms used in this specification and claims correspond to the meanings commonly understood by those of ordinary skill in the art to which this application belongs. The terms used in this specification and claims are only for the purpose of facilitating the description and understanding of this application, and are not intended to limit this application to the narrow interpretation of the specific terms used in the specification and claims.

[0045] See also Figure 1, a conventional display panel 100a to which fringe field switching technology is applied includes a plurality of first pixel rows 10a arranged along a column direction Y. The first pixel row 10a includes a plurality of first pixels 111a arranged along a row direction X. The first pixel 111a includes a first pixel electrode 1111a. The upper and lower halves of the first pixel electrode 1111a are symmetrically inclined structures. In the powered-on state, the liquid crystal molecules located in the region where the upper half is located and the liquid crystal molecules located in the region where the lower half is located have inclination angles in opposite directions, that is, there are two different liquid crystal domains (dual-domain pixels) in a single first pixel 111a. Although conventional dual-domain pixels have a higher contrast, when viewing the display image from the left and right sides of the conventional liquid crystal display panel 100a, the display image has a difference in picture quality at different viewing angles, which affects the display effect.

[0046] See also Figure 2 The present application provides a display panel, including a first group of pixel rows 10 and a second group of pixel rows 20. The first group of pixel rows 10 includes at least one first pixel sub-row 11. The first pixel sub-row 11 includes a plurality of first pixels 111 arranged along a row direction X. The second group of pixel rows 20 includes at least one second pixel sub-row 21. The second pixel sub-row 21 includes a plurality of second pixels 211 arranged along a row direction X. The second group of pixel rows 20 and the first group of pixel rows 10 are arranged alternately along a column direction Y.

[0047] The first pixel 111 includes a first pixel electrode 112 , and the second pixel 211 includes a second pixel electrode 212 . The second pixel electrode 212 is disposed in the same layer as the first pixel electrode 112 .

[0048] The first pixel electrode 112 includes a first branch segment 113 and a second branch segment 114 connected to each other. The first branch segment 113 extends along a first direction D1. The second branch segment 114 extends along a second direction D2 intersecting the first direction D1. The intersection of the first branch segment 113 and the second branch segment 114 protrudes toward the row direction X.

[0049] The second pixel electrode 212 includes a third branch segment 213 and a fourth branch segment 214 connected to each other. The third branch segment 213 extends along the second direction D2. The fourth branch segment 214 extends along the first direction D1. The intersection of the third branch segment 213 and the fourth branch segment 214 protrudes in the opposite direction of the row direction X.

[0050] In a plan view of the display panel, between two adjacent first pixel sub-rows 11 and second pixel sub-rows 21 , the third branch segment 213 of the second pixel electrode 212 is disposed close to the second branch segment 114 of the first pixel electrode 112 .

[0051] In the present application, the display panel includes a first group of pixel rows 10 and a second group of pixel rows 20 alternately arranged along a column direction Y, the first group of pixel rows 10 includes a plurality of first pixels arranged along a row direction X, and the first pixel includes a first pixel electrode 112. The second group of pixel rows 20 includes a plurality of second pixels arranged along a row direction X, and the second pixel includes a second pixel electrode 212. The first pixel electrode 112 includes a first branch segment 113 and a second branch segment 114 connected to each other. The second pixel electrode 212 includes a third branch segment 213 and a fourth branch segment 214 connected to each other. The connection between the first branch segment 113 and the second branch segment 114 protrudes in the row direction X, and the connection between the third branch segment 213 and the fourth branch segment 214 protrudes in the opposite direction of the row direction X. Since the protruding direction of the first pixel electrode 112 is opposite to the protruding direction of the second pixel electrode 212, when the display image is observed from the left and right sides of the display panel, the difference in the display image under different viewing angles can be reduced, thereby improving the display effect.

[0052] Optionally, the first pixel further includes a first common electrode 50. The first common electrode 50 is disposed in a different layer from the first pixel electrode 112. The second pixel further includes a second common electrode 60. The second common electrode 60 is disposed in a different layer from the second pixel electrode 212. In a plan view of the display panel, the first common electrode 50 overlaps with the first pixel electrode 112, and the second common electrode 60 overlaps with the second pixel electrode 212.

[0053] The first common electrode 50 and the second common electrode 60 are disposed in the same layer.

[0054] Optionally, in a plan view of the display panel, an angle α formed by the first branch segment 113 and the second branch segment 114 is in a range of 95 to 175 degrees, and an angle β formed by the third branch segment 213 and the fourth branch segment 214 is in a range of 95 to 175 degrees.

[0055] Among them, the value of the angle α formed by the first branch segment 113 and the second branch segment 114 is one of 95 degrees, 100 degrees, 105 degrees, 110 degrees, 115 degrees, 120 degrees, 125 degrees, 130 degrees, 135 degrees, 140 degrees, 145 degrees, 150 degrees, 155 degrees, 160 degrees, 165 degrees, 170 degrees, and 175 degrees.

[0056] The value of the angle β formed by the third branch segment 213 and the fourth branch segment 214 is one of 95 degrees, 100 degrees, 105 degrees, 110 degrees, 115 degrees, 120 degrees, 125 degrees, 130 degrees, 135 degrees, 140 degrees, 145 degrees, 150 degrees, 155 degrees, 160 degrees, 165 degrees, 170 degrees, and 175 degrees.

[0057] Optionally, the angle α formed by the first branch segment 113 and the second branch segment 114 is equal to the angle β formed by the third branch segment 213 and the fourth branch segment 214. When the display image is observed from the left and right sides of the display panel, the difference of the display image under different viewing angles can be reduced, thereby improving the display effect.

[0058] Optional, see Figure 2 , a first group of pixel rows 10 includes only a first pixel sub-row 11 , and a second group of pixel rows 20 includes only a second pixel sub-row 21 .

[0059] In this embodiment, the first pixel sub-row 11 and the second pixel sub-row 21 are arranged alternately along the column direction Y. In the column direction Y of the display panel, the first pixel electrode 112 and the second pixel electrode 212 are arranged alternately. Since the protruding direction of the first pixel electrode 112 is opposite to the protruding direction of the second pixel electrode 212, compared with the traditional display panel, when the display panel of the present application is viewed from the left and right sides, the image quality difference of the display image is reduced under different viewing angles, and the display effect is improved.

[0060] Optional, see Figure 2 The display panel further includes a plurality of data lines 30 and a plurality of gate lines 40. The plurality of data lines 30 are arranged along a row direction X. The plurality of gate lines 40 are arranged along a column direction Y.

[0061] Optional, see Figure 2 The data line 30 includes a first sub-segment 31 and a second sub-segment 32. The first sub-segments 31 of two adjacent data lines 30 and the two gate lines 40 intersect to form a first pixel region P1. The first pixel region P1 is provided with a first pixel electrode 112. The second sub-segments 32 of two adjacent data lines 30 and the two gate lines 40 intersect to form a second pixel region P2. The second pixel region P2 is provided with a second pixel electrode 212.

[0062] Optional, see Figure 2 The first subsection 31 includes a first subsection 311 and a second subsection 312 that are cross-connected. The first subsection 311 is arranged at one side of the first branch section 113. The second subsection 312 is arranged at one side of the second branch section 114. The second subsection 32 includes a third subsection 321 and a fourth subsection 322 that are cross-connected. The third subsection 321 is arranged at one side of the third branch section 213, and the fourth subsection 322 is arranged at one side of the fourth branch section 214. The first subsection 311 extends along the first direction D1. The second subsection 312 extends along the second direction D2. The third subsection 321 extends along the second direction D2. The fourth subsection 322 extends along the first direction D1.

[0063] In this example, see Figure 2, the first sub-portion 311 of the first sub-segment 31 and the first branch segment 113 of the first pixel electrode 112 both extend along the first direction D1, so the first sub-portion 311 of the first sub-segment 31 is parallel to the first branch segment 113 of the first pixel electrode 112. The second sub-portion 312 of the first sub-segment 31 and the second branch segment 114 of the first pixel electrode 112 both extend along the second direction D2, so the second sub-portion 312 of the first sub-segment 31 is parallel to the second branch segment 114 of the first pixel electrode 112. This embodiment can reduce the footprint of a single first pixel, so that more first pixels can be set in any row of the first pixel sub-row 11, thereby improving the resolution of the display panel to improve the display effect.

[0064] Optionally, the first sub-segments 31 and the second sub-segments 32 are alternately connected along the column direction Y.

[0065] Optional, see Figure 2 In two adjacent first pixel regions P1 and second pixel regions P2 in the column direction Y, the third sub-portion 321 of the second sub-segment 32 is located on the extension line of the extension direction of the second sub-portion 312 of the first sub-segment 31 .

[0066] In this example, see Figure 3 Since the second sub-portion 312 and the third sub-portion 321 are formed into a straight strip pattern, the number of corners of a single data line 30 is reduced, thereby reducing the resistive capacitive loading (RC loading) value of the data line 30, thereby reducing the heat generation and signal attenuation of the data line 30 and improving the display effect.

[0067] Optional, see Figure 2 In two adjacent first pixel regions P1 and second pixel regions P2 in the column direction Y, the first sub-portion 311 of the first sub-segment 31 is located on the extension line of the extension direction of the fourth sub-portion 322 of the second sub-segment 32 .

[0068] In this example, see Figure 3 Since the first sub-portion 311 and the fourth sub-portion 322 are formed into a straight strip pattern, the number of corners of a single data line 30 is reduced, thereby reducing the resistive capacitive loading (RC loading) value of the data line 30, thereby reducing the heat generation and signal attenuation of the data line 30 and improving the display effect.

[0069] Optionally, in a plan view of the display panel, an angle γ formed by the first sub-portion 311 and the second sub-portion 312 is in a range of 95 to 175 degrees, and an angle δ formed by the third sub-portion 321 and the fourth sub-portion 322 is in a range of 95 to 175 degrees.

[0070] Among them, the value of the angle γ formed by the first sub-section 311 and the second sub-section 312 is a value among 95 degrees, 100 degrees, 105 degrees, 110 degrees, 115 degrees, 120 degrees, 125 degrees, 130 degrees, 135 degrees, 140 degrees, 145 degrees, 150 degrees, 155 degrees, 160 degrees, 165 degrees, 170 degrees, and 175 degrees.

[0071] The value of the angle δ formed by the third sub-portion 321 and the fourth sub-portion 322 is one of 95 degrees, 100 degrees, 105 degrees, 110 degrees, 115 degrees, 120 degrees, 125 degrees, 130 degrees, 135 degrees, 140 degrees, 145 degrees, 150 degrees, 155 degrees, 160 degrees, 165 degrees, 170 degrees, and 175 degrees.

[0072] Optionally, the angle γ formed by the first sub-section 311 and the second sub-section 312 is equal to the angle δ formed by the third sub-section 321 and the fourth sub-section 322. This can reduce the footprint of a single pixel, so that more pixels can be set in any pixel row, thereby improving the resolution of the display panel and improving the display effect.

[0073] Optional, see Figure 4 A first group of pixel rows 10 includes at least two first pixel sub-rows 11. A second group of pixel rows 20 includes at least two second pixel sub-rows 21.

[0074] In this embodiment, the first group of pixel rows 10 and the second group of pixel rows 20 are arranged alternately along the column direction Y. In the column direction Y of the display panel, a plurality of first pixel electrodes 112 and a plurality of second pixel electrodes 212 are arranged alternately. Since the protruding direction of the first pixel electrode 112 is opposite to the protruding direction of the second pixel electrode 212, compared with the traditional display panel, when the display panel of the present application is viewed from the left and right sides, the image quality difference of the display image is reduced under different viewing angles, and the display effect is improved.

[0075] Optional, see Figure 4 In the first pixel row 10, at least two first sub-segments 31 are connected to form a first combined segment K1. In the second pixel row 20, at least two second sub-segments 32 are connected to form a second combined segment K2. The first combined segment K1 and the second combined segment K2 are alternately connected in the column direction Y.

[0076] In this embodiment, the design of the first combination segment K1 and the second combination segment K2 can reduce the footprint of a single first pixel, so that more first pixels can be set in any row of the first group of pixel rows 10, and more second pixels can be set in any row of the second group of pixel rows 20, thereby improving the resolution of the display panel to improve the display effect.

[0077] Optional, see Figure 5 The display panel further includes a plurality of data lines 30 and a plurality of gate lines 40. The data lines 30 extend along the column direction Y, and the plurality of data lines 30 are arranged along the row direction X. The gate lines 40 extend along the row direction X, and the plurality of gate lines 40 are arranged along the column direction Y. Two adjacent data lines 30 and two adjacent gate lines 40 intersect to form a third pixel region P3. The third pixel region P3 is provided with one of the first pixel electrode 112 and the second pixel electrode 212.

[0078] See also Figure 5 Since the data line 30 extends along the column direction Y, the data line 30 is formed into a straight strip pattern, which reduces the number of corners of a single data line 30, thereby reducing the resistive capacitive loading (RC Loading) of the data line 30, thereby reducing the heat generation and signal attenuation of the data line 30 and improving the display effect.

[0079] Optional, see Figure 5 The first pixel electrode 112 further includes a first main segment 115. The first main segment 115 is electrically connected to the plurality of first branch segments 113 of the same first pixel electrode 112. The second pixel electrode 212 further includes a second main segment 215. The second main segment 215 is electrically connected to the plurality of third branch segments 213 of the same second pixel electrode 212.

[0080] The above is a detailed description of the specific implementation of the present application. The above implementation disclosed in the present application is only the preferred implementation of the present application. For ordinary technicians in this field, many modifications and improvements can be made without departing from the concept of the present application. These modifications and improvements all fall within the scope of protection defined by the claims of the present application.

Claims

1. A display panel, characterized in that: include: A first group of pixel rows includes at least one first pixel sub-row, wherein the first pixel sub-row includes a plurality of first pixels arranged along a row direction; and A second group of pixel rows includes at least one second pixel sub-row, wherein the second pixel sub-row includes a plurality of second pixels arranged along the row direction, and the second group of pixel rows and the first group of pixel rows are alternately arranged along the column direction; The first pixel includes a first pixel electrode, the second pixel includes a second pixel electrode, and the second pixel electrode and the first pixel electrode are arranged in the same layer; The first pixel electrode comprises a first branch segment and a second branch segment connected to each other, the first branch segment extends along a first direction, the second branch segment extends along a second direction intersecting the first direction, and a cross-connection between the first branch segment and the second branch segment protrudes toward the row direction; The second pixel electrode comprises a third branch segment and a fourth branch segment connected to each other, the third branch segment extends along the second direction, the fourth branch segment extends along the first direction, and a cross-connection between the third branch segment and the fourth branch segment protrudes in a direction opposite to the row direction; In a plan view of the display panel, between two adjacent rows of the first pixel sub-row and the second pixel sub-row, the third branch segment of the second pixel electrode is disposed close to the second branch segment of the first pixel electrode.

2. The display panel according to claim 1, wherein: In a plan view of the display panel, an angle formed by the first branch segment and the second branch segment is in a range of 95 degrees to 175 degrees, and an angle formed by the third branch segment and the fourth branch segment is in a range of 95 degrees to 175 degrees.

3. The display panel according to claim 1, wherein: The display panel further includes: A plurality of data lines are arranged along the row direction; and A plurality of gate lines are arranged along the column direction; The data line includes a first sub-segment and a second sub-segment, the first sub-segments of two adjacent data lines and the two gate lines intersect to form a first pixel region, the first pixel region is provided with a first pixel electrode, the second sub-segments of two adjacent data lines and the two gate lines intersect to form a second pixel region, the second pixel region is provided with a second pixel electrode; The first subsection includes a first subsection and a second subsection which are cross-connected, the first subsection is arranged at one side of the first branch section, and the second subsection is arranged at one side of the second branch section; The second subsection includes a third subsection and a fourth subsection which are cross-connected, the third subsection is arranged at one side of the third branch section, and the fourth subsection is arranged at one side of the fourth branch section; The first sub-portion extends along the first direction, the second sub-portion extends along the second direction, the third sub-portion extends along the second direction, and the fourth sub-portion extends along the first direction.

4. The display panel according to claim 3, wherein: In a plan view of the display panel, an angle formed by the first sub-portion and the second sub-portion is in a range of 95 degrees to 175 degrees, and an angle formed by the third sub-portion and the fourth sub-portion is in a range of 95 degrees to 175 degrees.

5. The display panel according to claim 3, wherein: One of the first pixel groups includes only one of the first pixel sub-rows, and one of the second pixel groups includes only one of the second pixel sub-rows.

6. The display panel according to claim 5, wherein: The first sub-segments and the second sub-segments are alternately connected and arranged along the column direction.

7. The display panel according to claim 3, wherein: One of the first pixel groups includes at least two of the first pixel sub-rows, and one of the second pixel groups includes at least two of the second pixel sub-rows.

8. The display panel according to claim 7, wherein: In the first group of pixel rows, at least two of the first sub-segments are connected to form a first combined segment; In the second group of pixel rows, at least two of the second sub-segments are connected to form a second combined segment; The first combined segments and the second combined segments are alternately connected and arranged in the column direction.

9. The display panel according to claim 1, wherein: The display panel further includes: a plurality of data lines, the data lines extending along the column direction, and the plurality of data lines arranged along the row direction; and A plurality of gate lines, wherein the gate lines extend along the row direction, and the plurality of gate lines are arranged along the column direction; Two adjacent data lines and two adjacent gate lines intersect to form a third pixel region, and the third pixel region is provided with one of the first pixel electrode and the second pixel electrode.

10. The display panel according to any one of claims 1 to 9, characterized in that: The first pixel further includes a first common electrode, and the first common electrode and the first pixel electrode are arranged in a different layer; The second pixel further includes a second common electrode, and the second common electrode and the second pixel electrode are arranged in different layers; In a plan view of the display panel, the first common electrode overlaps with the first pixel electrode, and the second common electrode overlaps with the second pixel electrode; The first pixel electrode further comprises a first main segment, and the first main segment is electrically connected to a plurality of first branch segments of the same first pixel electrode; The second pixel electrode further includes a second main segment, and the second main segment is electrically connected to a plurality of third branch segments of the same second pixel electrode.