Display panel and display device
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-12
- Publication Date
- 2026-08-14
AI Technical Summary
[0004]本申请旨在解决上述技术问题,即,解决现有无法在避免数据线的电压反复跳变和降低功耗的同时保证显示效果的问题
[0023]该方案通过将两种不同颜色的子像素分别通过转换线与对方所在列对应的数据线连接,可以实现与同一条数据线连接的子像素为相同颜色的子像素,避免数据线的电压反复跳变,可以有效降低功耗,同时,通过同一行中相邻两个第一子像素单元中只有一个第一子像素单元中两种不同颜色的子像素分别通过转换线的方式与数据线连接,以及,相邻第一子像素单元和第二子像素单元中只有一者中两种不同的子像素分别通过转换线的方式与数据线连接,可以使寄生电容比较均匀的分布,使像素间的电压更加稳定,保证显示效果。
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Figure CN122575255A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of display technology, specifically providing a display panel and a display device. Background Technology
[0002] The display panel may include multiple columns of sub-pixels and multiple data lines. Each data line is connected to a column of sub-pixels to provide data signals to that column. A column of sub-pixels may include sub-pixels of different colors, such as red and blue sub-pixels. Since different colored sub-pixels require different voltages for their data signals, the data line in this column needs to switch repeatedly between different voltages, resulting in high power consumption.
[0003] In order to solve the above problems, related technologies provide a solution by adjusting the connection method between the data line and the sub-pixel to avoid repeated voltage jumps and reduce power consumption, but this cannot guarantee the display effect. Summary of the Invention
[0004] This application aims to solve the aforementioned technical problem, namely, to address the existing problem of being unable to ensure display quality while avoiding repeated voltage fluctuations in the data line and reducing power consumption.
[0005] In a first aspect, this application provides a display panel including a pixel array and multiple data lines. The pixel array includes multiple sub-pixels, and the multiple sub-pixels include sub-pixels of multiple colors. The multiple data lines are configured to correspond one-to-one with each column of the pixel array, and each data line is connected to a sub-pixel in each row of the pixel array. Sub-pixels connected to the same data line are sub-pixels of the same color.
[0006] The pixel array includes a first sub-pixel unit and a second sub-pixel unit, which are arranged periodically in the row direction and alternately in the column direction. Both the first sub-pixel unit and the second sub-pixel unit include sub-pixels of the multiple colors.
[0007] In one of the first sub-pixel units of any two adjacent first sub-pixel units, the two different colors of the multiple colors are respectively connected to the data line corresponding to their respective columns by connecting lines; in the other first sub-pixel unit of any two adjacent first sub-pixel units, the two different colors of the sub-pixel are respectively connected to the data line corresponding to the other column by conversion lines.
[0008] In the second sub-pixel unit adjacent to the first sub-pixel unit, the two different colored sub-pixels are respectively connected to the data line corresponding to the column of the other sub-pixel unit through conversion lines; in the second sub-pixel unit adjacent to the other first sub-pixel unit, the two different colored sub-pixels are respectively connected to the data line corresponding to their respective columns through connecting lines.
[0009] In some embodiments, sub-pixels of colors other than the two different colors are connected to the data lines corresponding to their respective columns via connecting lines, or connected to the data lines corresponding to the columns of another sub-pixel via conversion lines, wherein the other sub-pixel has the same color as the sub-pixels of the other colors but is located in a different column.
[0010] In some embodiments, the display panel further includes a driver chip; the plurality of data lines are connected to the driver chip in a through-through manner, or, the data lines corresponding to the columns of the two different colors of the sub-pixels in some of the first sub-pixel units are connected to the driver chip in a cross-connect manner, and the remaining data lines of the plurality of data lines are connected to the driver chip in a through-through manner.
[0011] In some embodiments, the display panel further includes a plurality of multiplexers; each multiplexer is connected to two data lines, the two data lines being connected to two adjacent first sub-pixel units or sub-pixels of the same color in the same first sub-pixel unit, and different multiplexers are connected to different data lines.
[0012] In some embodiments, the two different colored sub-pixels are respectively connected to the data lines corresponding to the columns of the other via conversion lines, including:
[0013] The two different colored sub-pixels are connected in the current row to the corresponding data line in the column of the other via conversion lines; or,
[0014] Sub-pixels of at least one of the two different colors are connected to the corresponding data lines in adjacent rows and columns of the other sub-pixels by conversion lines; the remaining sub-pixels of the two different colors are connected to the corresponding data lines in the current row and columns of the other sub-pixels by conversion lines.
[0015] In some embodiments, when sub-pixels of at least one of the two different colors are connected by conversion lines in adjacent rows to the data lines corresponding to the columns of the other, sub-pixels that are in the same column and adjacent to the other are connected by conversion lines in the data lines corresponding to the columns of the other and themselves.
[0016] In some embodiments, the subpixel arrangement of the first subpixel unit and the second subpixel unit is different.
[0017] In some embodiments, the first sub-pixel unit includes red sub-pixels, green sub-pixels, blue sub-pixels and green sub-pixels arranged sequentially along the row direction; the second sub-pixel unit includes blue sub-pixels, green sub-pixels, red sub-pixels and green sub-pixels arranged sequentially along the row direction.
[0018] In some embodiments, the two different colored sub-pixels are respectively connected to the data lines corresponding to the columns of the other via conversion lines, including:
[0019] The red sub-pixel is connected to the data line corresponding to the column of the blue sub-pixel via a conversion line; the blue sub-pixel is connected to the data line corresponding to the column of the red sub-pixel via another conversion line.
[0020] In some embodiments, in at least one of the first sub-pixel units or the second sub-pixel units, two green sub-pixels are respectively connected to the data line corresponding to the column of the other through a conversion line.
[0021] In a second aspect, this application provides a display device comprising the display panel described in any of the preceding claims.
[0022] With the above technical solution adopted, this application can provide a display panel including a pixel array and multiple data lines. The pixel array includes multiple sub-pixels, and the multiple sub-pixels include sub-pixels of multiple colors. The multiple data lines are set one-to-one with each column of the pixel array, and each data line is connected to a sub-pixel in each row of the pixel array. The sub-pixels connected to the same data line are sub-pixels of the same color. The pixel array includes a first sub-pixel unit and a second sub-pixel unit, which are arranged periodically in the row direction and alternately in the column direction. Both the first and second sub-pixel units include sub-pixels of multiple colors. In one of the first sub-pixel units of any two adjacent first sub-pixel units, two different colors of sub-pixels are connected to the data lines corresponding to their respective columns via connecting lines. In the other first sub-pixel unit of any two adjacent first sub-pixel units, the two different colors of sub-pixels are connected to the data lines corresponding to the other's columns via conversion lines. In the second sub-pixel unit adjacent to one first sub-pixel unit, the two different colors of sub-pixels are connected to the data lines corresponding to the other's columns via conversion lines. In the second sub-pixel unit adjacent to another first sub-pixel unit, the two different colors of sub-pixels are connected to the data lines corresponding to their respective columns via connecting lines.
[0023] This scheme connects two different colored sub-pixels to the corresponding data line in the same column via conversion lines. This ensures that sub-pixels connected to the same data line are of the same color, avoiding repeated voltage jumps on the data line and effectively reducing power consumption. Furthermore, by ensuring that only one of two adjacent first sub-pixel units in the same row has two different colored sub-pixels connected to the data line via conversion lines, and by ensuring that only one of adjacent first and second sub-pixel units has two different colored sub-pixels connected to the data line via conversion lines, parasitic capacitance can be distributed more evenly, resulting in more stable voltage between pixels and ensuring better display quality. Attached Figure Description
[0024] The preferred embodiments of this application are described below with reference to the accompanying drawings, in which:
[0025] Figure 1 This is a schematic diagram of the structure of a display panel in related technologies;
[0026] Figure 2 This is a schematic diagram of the display panel structure provided in an embodiment of this application;
[0027] Figure 3 This is a partial wiring diagram of the pixel array in the display panel provided in an embodiment of this application;
[0028] Figure 4 This is a schematic diagram of the structure of a display panel provided in another embodiment of this application;
[0029] Figure 5 This is a schematic diagram of the structure of a display panel provided in another embodiment of this application;
[0030] Figure 6 This is a schematic diagram of the structure of another display panel provided in an embodiment of this application;
[0031] Figure 7 This is a schematic diagram of the structure of a display panel provided in another embodiment of this application;
[0032] Figure 8 This is a schematic diagram of the structure of a display panel provided in another embodiment of this application. Detailed Implementation
[0033] To make the objectives, technical solutions, and advantages of the embodiments of this disclosure clearer, the technical solutions of the embodiments of this disclosure will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this disclosure. All other embodiments obtained by those skilled in the art based on the described embodiments of this disclosure without creative effort are within the scope of protection of this disclosure.
[0034] Unless otherwise defined, the technical or scientific terms used in this disclosure shall have the ordinary meaning understood by one of ordinary skill in the art to which this disclosure pertains. The terms “first,” “second,” and similar terms used in this disclosure do not indicate any order, quantity, or importance, but are merely used to distinguish different components. Terms such as “comprising” or “including” mean that an element or object preceding the word encompasses the elements or objects listed following the word and their equivalents, without excluding other elements or objects. Terms such as “connection” are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect.
[0035] As described in the background section, in the display panel of the related art, a column of sub-pixels can include sub-pixels of various different colors, and each data line is connected to a column of sub-pixels. See [link to relevant documentation]. Figure 1 Taking the Pentile arrangement as an example, a column of subpixels can include a red subpixel R and a blue subpixel B, and both the red subpixel R and the blue subpixel B in the same column are connected to the corresponding data line DL. Since the red subpixel R and the blue subpixel B require different voltage signals, the data line corresponding to the current column needs to repeatedly switch between different voltages, resulting in high power consumption. Although related technologies offer solutions to this problem, they affect the display effect and cannot guarantee a good display effect while avoiding repeated voltage switching and reducing power consumption.
[0036] Based on this, this application provides a display panel, which includes a pixel array and multiple data lines. The pixel array includes multiple sub-pixels, and the multiple sub-pixels include sub-pixels of multiple colors. The multiple data lines are configured to correspond one-to-one with each column of the pixel array, and each data line is connected to a sub-pixel in each row of the pixel array. The sub-pixels connected to the same data line are sub-pixels of the same color.
[0037] The pixel array includes a first sub-pixel unit and a second sub-pixel unit. The first sub-pixel unit and the second sub-pixel unit are arranged periodically in the row direction and alternately in the column direction. Both the first sub-pixel unit and the second sub-pixel unit include sub-pixels of multiple colors.
[0038] In one of the two adjacent first sub-pixel units, the two different colors of the sub-pixels are connected to the data lines corresponding to their respective columns by connecting lines; in the other of the two adjacent first sub-pixel units, the two different colors of the sub-pixels are connected to the data lines corresponding to the other column by conversion lines.
[0039] In a second sub-pixel unit adjacent to a first sub-pixel unit, sub-pixels of two different colors are connected to the data lines corresponding to the columns of the other sub-pixels via conversion lines; in a second sub-pixel unit adjacent to another first sub-pixel unit, sub-pixels of two different colors are connected to the data lines corresponding to the columns of their respective sub-pixels via connection lines.
[0040] The pixel array in this embodiment can be a pixel array arranged in a Pentile pattern. The pixel array can include sub-pixels of three colors: red, blue, and green. This will be used as an example in the following description.
[0041] It should be noted that in this application, "row" and "column" are relative terms and can be used interchangeably. For example, in the above description, "row" can be replaced by "column" and "column" by "row". This application does not limit this.
[0042] See Figure 2 As shown, Figure 2 This is a schematic diagram of the display panel structure provided in an embodiment of this application. The first sub-pixel unit and the second sub-pixel unit have different sub-pixel arrangements.
[0043] The first sub-pixel unit includes red sub-pixels R, green sub-pixels G, blue sub-pixels B and green sub-pixels G arranged sequentially along the row direction; the red sub-pixels R, green sub-pixels G, blue sub-pixels B and green sub-pixels G are arranged periodically in the row direction.
[0044] The second sub-pixel unit and the first sub-pixel unit are in different rows. The second sub-pixel unit includes blue sub-pixel B, green sub-pixel G, red sub-pixel R and green sub-pixel G arranged sequentially along the row direction. The blue sub-pixel B, green sub-pixel G, red sub-pixel R and green sub-pixel G are arranged periodically in the row direction.
[0045] In some embodiments, see Figure 2 As shown, in any two adjacent first sub-pixel units, the two different colors of sub-pixels are connected to the data lines corresponding to their respective columns by connecting lines. In any two adjacent first sub-pixel units in an odd number of groups (i.e., 2n-1 groups, where n is a positive integer greater than or equal to 1), the red sub-pixel R and the green sub-pixel G are connected to the data lines corresponding to their respective columns by connecting lines.
[0046] In any two adjacent first sub-pixel units, the two different colored sub-pixels are connected to the corresponding data lines of the other's column via conversion lines. This can be done as follows: In any two adjacent first sub-pixel units in an even array (i.e., 2n groups) of first sub-pixel units, the red sub-pixel R is connected to the corresponding data line of the column where the blue sub-pixel B is located via a conversion line; the blue sub-pixel B is connected to the corresponding data line of the column where the red sub-pixel R is located via another conversion line.
[0047] In some embodiments, two different colored sub-pixels are connected in the current row to the corresponding data line in the column of the other via conversion lines, see [reference]. Figure 2 As shown, in the first sub-pixel unit of group 2n, the red sub-pixel R is connected to the data line corresponding to the column of the blue sub-pixel B in its row through a conversion line, and the blue sub-pixel B is connected to the data line corresponding to the column of the red sub-pixel R in its row through another conversion line.
[0048] In a second sub-pixel unit adjacent to a first sub-pixel unit, the two different colored sub-pixels can be connected to the corresponding data line of the other's column via conversion lines as follows: In a second sub-pixel unit located in the same column and adjacent to the first sub-pixel unit of an odd number of sub-pixels (i.e., 2n-1 groups, where n is a positive integer greater than or equal to 1), the red sub-pixel R is connected to the corresponding data line of the column where the blue sub-pixel B is located via a conversion line; the blue sub-pixel B is connected to the corresponding data line of the column where the red sub-pixel R is located via another conversion line.
[0049] In a second sub-pixel unit adjacent to another first sub-pixel unit, the two different colored sub-pixels are connected to the data lines corresponding to their respective columns by connecting lines. In a second sub-pixel unit located in the same column and adjacent to the even-numbered (i.e., 2n groups) first sub-pixel sub-units, the red sub-pixel R and the green sub-pixel G are connected to the data lines corresponding to their respective columns by connecting lines.
[0050] In some embodiments, two different colored sub-pixels are connected in the current row to the corresponding data line in the column of the other via conversion lines, see [reference]. Figure 2 As shown, in the second sub-pixel unit of group 2n-1, the red sub-pixel R is connected to the data line corresponding to the column of the blue sub-pixel B in its row by a conversion line, and the blue sub-pixel B is connected to the data line corresponding to the column of the red sub-pixel R in its row by another conversion line.
[0051] In some embodiments, sub-pixels of colors other than the two different colors are connected to the data lines corresponding to their respective columns via connecting lines.
[0052] See Figure 2As shown, in each first sub-pixel unit and each second sub-pixel unit, the two green sub-pixels G are connected by connecting data lines corresponding to their respective columns.
[0053] See Figure 3 As shown, Figure 3 This is a partial wiring diagram of the pixel array in the display panel provided in this application embodiment. Each row uses transition lines to connect sub-pixels and data lines, enabling data lines in the same column to connect to sub-pixels of the same color. This avoids the data lines needing to repeatedly switch between different voltages, thereby reducing power consumption. Furthermore, as... Figure 3 As shown, for the first or second sub-pixel unit that uses a conversion line, the conversion line corresponding to the blue sub-pixel B can span multiple sub-pixels, and the wiring around a group of blue sub-pixels B and red sub-pixels R that use conversion lines is the same, so the parasitic capacitance is distributed more evenly, making the voltage between pixels more stable and effectively improving the uniformity of display brightness.
[0054] In other embodiments, two different colored sub-pixels are respectively connected to the data lines corresponding to the columns of the other via conversion lines, including:
[0055] Subpixels of at least one of two different colors are connected in adjacent rows to the corresponding data lines in the columns of the other subpixels via conversion lines; the remaining subpixels of the two different colors are connected in the current row to the corresponding data lines in the columns of the other subpixels via conversion lines.
[0056] When sub-pixels of at least one of two different colors are connected by a conversion line in the adjacent row to the data line corresponding to the column of the other, the sub-pixels that are in the same column and adjacent to the other are connected by a conversion line in the row of the other and the data line of their own column.
[0057] See Figure 4 As shown, Figure 4 This is a schematic diagram of the structure of a display panel provided in another embodiment of this application. In the second sub-pixel unit of group 2n-1, the blue sub-pixel B is connected to the data line corresponding to the column where the red sub-pixel R is located in the adjacent row through a conversion line. The red sub-pixel R is connected to the data line corresponding to the column where the blue sub-pixel B is located in its row through a conversion line.
[0058] In the first sub-pixel unit of group 2n, the blue sub-pixel B is connected to the data line corresponding to the column of the red sub-pixel R in the adjacent row through a conversion line, and the red sub-pixel R is connected to the data line corresponding to the column of the blue sub-pixel B in its row through a conversion line.
[0059] The conversion lines are all set between the first and second sub-pixel units in two adjacent rows.
[0060] like Figure 4 As shown, when the blue sub-pixel B in the second sub-pixel unit of group 2n-1 is connected to the data line corresponding to the column of the red sub-pixel R in the adjacent row through a conversion line, the sub-pixel that is in the same column and adjacent to the red sub-pixel R, that is, the blue sub-pixel B in the adjacent first pixel unit group, is connected to the data line corresponding to its own column in the row of the red sub-pixel R through a conversion line.
[0061] In another embodiment, the red sub-pixel R can be connected to the data line corresponding to the column of the blue sub-pixel B in an adjacent row via a conversion line, and the blue sub-pixel B can be connected to the data line corresponding to the column of the red sub-pixel R in its own row via another conversion line. Correspondingly, the red sub-pixel R, located in the same column and adjacent to the blue sub-pixel B (i.e., in the adjacent first pixel unit group), is connected to the data line corresponding to its own column in the row of the blue sub-pixel B via a conversion line.
[0062] In other embodiments, the red sub-pixel R can be connected to the data line corresponding to the column where the blue sub-pixel B is located in the adjacent row via a conversion line, and the blue sub-pixel B can be connected to the data line corresponding to the column where the red sub-pixel R is located in the adjacent row via another conversion line.
[0063] In other embodiments, sub-pixels of colors other than the two different colors are connected to the data line corresponding to the column of another sub-pixel via a conversion line. The other sub-pixel has the same color as the sub-pixels of the other colors but is located in a different column.
[0064] It should be noted that this embodiment can be based on Figure 2 or Figure 4 The corresponding implementation is based on... Figure 2 The implementation of the corresponding embodiment is described below. In at least one first sub-pixel unit or second sub-pixel unit, two green sub-pixels G are respectively connected to the data line corresponding to the column of the other through a conversion line. See also Figure 5 As shown, Figure 5 This is a schematic diagram of the structure of a display panel provided in another embodiment of this application. In the same first sub-pixel unit and the same second sub-pixel unit, two green sub-pixels G are respectively connected to the data lines corresponding to the columns of the other through conversion lines.
[0065] In some embodiments, the display panel further includes a driver chip; multiple data lines are connected to the driver chip via a through-through method.
[0066] See Figure 6 As shown, Figure 6 This is a schematic diagram of the structure of another display panel provided in an embodiment of this application, which can be based on Figure 2In the corresponding embodiment, multiple data lines corresponding to each column in two adjacent first sub-pixel units are, in sequence, data lines R(2n-1) for providing data signals to the red sub-pixel R in the (2n-1)th group of first sub-pixel units, data lines G(2n-1) for providing data signals to the green sub-pixel G, data lines B(2n-1) for providing data signals to the blue sub-pixel B, and data lines G(2n-1) for providing data signals to another green sub-pixel G; and data lines B2n for providing data signals to the blue sub-pixel B, the green sub-pixel G, the red sub-pixel R, and the other green sub-pixel G in the (2n)th group of first sub-pixel units. Each of these multiple data lines R(2n-1), G(2n-1), B(2n-1), G(2n-1), B2n, G2, R2n, and G2n is directly connected to the driver chip.
[0067] In another embodiment, the data lines corresponding to the columns of two different colored sub-pixels in some of the first sub-pixel units are connected to the driver chip in a cross manner, while the remaining data lines in the multiple data lines are connected to the driver chip in a through manner.
[0068] The driver chip can be configured with ports for connecting to each data line. When the driver chip is configured with ports corresponding to the arrangement of R(2n-1), G(2n-1), B(2n-1), G(2n-1), R2n, G2n, B2n, G2n, see [reference needed]. Figure 7 As shown, Figure 7 This is a schematic diagram of the structure of a display panel provided in another embodiment of this application. In the first sub-pixel unit of the 2nth group, the data line R2n corresponding to the column where the red sub-pixel R is located and the data line B2n corresponding to the column where the blue sub-pixel B is located are connected to the driver chip in a cross manner. It should be noted that when R2n and B2n are connected to the driver chip in a cross manner, the two data lines are not connected; their orthographic projections on the display panel overlap at the intersection.
[0069] In some embodiments, the display panel further includes a plurality of multiplexers; each multiplexer is connected to two data lines, the two data lines are connected to two adjacent first sub-pixel units or sub-pixels of the same color in the same first sub-pixel unit, and different multiplexers are connected to different data lines.
[0070] Multiple data lines can be connected to the driver chip via a multiplexer.
[0071] See Figure 8 As shown, Figure 8 This is a schematic diagram of the structure of a display panel provided in another embodiment of this application, which can be based on Figure 2In the corresponding implementation, R(2n-1) can be connected to the same multiplexer as the data line R(2n-2) (not shown in the figure) corresponding to the first sub-pixel unit of the (2n-2)th group (not shown in the figure), B(2n-1) and B2n are connected to the same multiplexer, the two data lines G(2n-1) and G(2n-1) corresponding to the first sub-pixel unit of the (2n-1)th group can be connected to the same multiplexer, and the two data lines G(2n-1) and G(2n-1) corresponding to the first sub-pixel unit of the (2n)th group can be connected to the same multiplexer. Among them, the arrangement of R(2n-1), G(2n-1), B(2n-1), G(2n-1), B2n, G2n, R2n, G2n has a smaller spacing between R(2n-1) and R(2n-2) and between B(2n-1) and B2n compared to the arrangement of R(2n-1), G(2n-1), B(2n-1), G(2n-1), R2n, G2n, B2n, G2n. This can reduce the connection length with the multiplexer and avoid crossing more data lines when connecting to the multiplexer, which helps to simplify the complexity of wiring.
[0072] In another aspect of this application, a display device is also provided, which may include the display panel described in any of the above embodiments.
[0073] As an example, display devices can include any product or component with display functionality, such as electronic paper, mobile phones, tablets, televisions, monitors, laptops, digital photo frames, and navigators.
[0074] The technical solutions of this application have been described above with reference to the preferred embodiments shown in the accompanying drawings. However, it will be readily understood by those skilled in the art that the scope of protection of this application is obviously not limited to these specific embodiments. Without departing from the principles of this application, those skilled in the art can make equivalent changes or substitutions to the relevant technical features, and the technical solutions after these changes or substitutions will all fall within the scope of protection of this application.
Claims
1. A display panel, characterized in that, It includes a pixel array and multiple data lines. The pixel array includes multiple sub-pixels, and the multiple sub-pixels include sub-pixels of various colors. The multiple data lines are set to correspond one-to-one with each column of the pixel array, and each data line is connected to a sub-pixel in each row of the pixel array. The sub-pixels connected to the same data line are sub-pixels of the same color. The pixel array includes a first sub-pixel unit and a second sub-pixel unit, which are arranged periodically in the row direction and alternately in the column direction. Both the first sub-pixel unit and the second sub-pixel unit include sub-pixels of the multiple colors. In one of the first sub-pixel units of any two adjacent first sub-pixel units, the two different colors of the multiple colors are respectively connected to the data line corresponding to their respective columns by connecting lines; in the other first sub-pixel unit of any two adjacent first sub-pixel units, the two different colors of the sub-pixel are respectively connected to the data line corresponding to the other column by conversion lines. In the second sub-pixel unit adjacent to the first sub-pixel unit, the two different colored sub-pixels are respectively connected to the data line corresponding to the column of the other sub-pixel unit through conversion lines; in the second sub-pixel unit adjacent to the other first sub-pixel unit, the two different colored sub-pixels are respectively connected to the data line corresponding to their respective columns through connecting lines.
2. The display panel according to claim 1, characterized in that, The sub-pixels of the various colors other than the two different colors are connected to the data lines corresponding to their respective columns via connecting lines, or connected to the data lines corresponding to the columns of another sub-pixel via conversion lines. The other sub-pixel has the same color as the sub-pixels of the other colors but is located in a different column.
3. The display panel according to claim 1, characterized in that, The display panel further includes a driver chip; the multiple data lines are connected to the driver chip in a through-through manner, or, the data lines corresponding to the columns of the two different colors of the sub-pixels in some of the first sub-pixel units are connected to the driver chip in a cross-connect manner, and the remaining data lines of the multiple data lines are connected to the driver chip in a through-through manner.
4. The display panel according to claim 1, characterized in that, The display panel also includes multiple multiplexers; each multiplexer is connected to two data lines, the two data lines are connected to two adjacent first sub-pixel units or sub-pixels of the same color in the same first sub-pixel unit, and different multiplexers are connected to different data lines.
5. The display panel according to claim 1, characterized in that, The two different colored sub-pixels are respectively connected to the data lines of the corresponding columns of the other via conversion lines, including: The two different colored sub-pixels are connected in the current row to the corresponding data line in the column of the other via conversion lines; or, Sub-pixels of at least one of the two different colors are connected to the corresponding data lines in adjacent rows and columns of the other sub-pixels by conversion lines; the remaining sub-pixels of the two different colors are connected to the corresponding data lines in the current row and columns of the other sub-pixels by conversion lines.
6. The display panel according to claim 5, characterized in that, When a sub-pixel of at least one of the two different colors is connected to the data line corresponding to the column of the other in an adjacent row by a conversion line, a sub-pixel that is in the same column and adjacent to the other is connected to the data line corresponding to the column of its own in the row of the other by a conversion line.
7. The display panel according to any one of claims 1 to 5, characterized in that, The first sub-pixel unit and the second sub-pixel unit have different sub-pixel arrangements.
8. The display panel according to claim 7, characterized in that, The first sub-pixel unit includes red sub-pixels, green sub-pixels, blue sub-pixels and green sub-pixels arranged sequentially along the row direction; the second sub-pixel unit includes blue sub-pixels, green sub-pixels, red sub-pixels and green sub-pixels arranged sequentially along the row direction.
9. The display panel according to claim 8, characterized in that, The two different colored sub-pixels are respectively connected to the data lines of the corresponding columns of the other via conversion lines, including: The red sub-pixel is connected to the data line corresponding to the column of the blue sub-pixel via a conversion line; the blue sub-pixel is connected to the data line corresponding to the column of the red sub-pixel via another conversion line.
10. The display panel according to claim 8, characterized in that, In at least one of the first sub-pixel units or the second sub-pixel units, two green sub-pixels are respectively connected to the data line corresponding to the column of the other through a conversion line.
11. A display device, characterized in that, The display panel includes any one of claims 1 to 10.