Array substrate, liquid crystal display panel and display apparatus
10585314 ยท 2020-03-10
Assignee
Inventors
Cpc classification
G02F1/1368
PHYSICS
G06F3/04164
PHYSICS
International classification
H01L27/12
ELECTRICITY
G02F1/1368
PHYSICS
Abstract
The present disclosure relates to an array substrate, a liquid crystal display panel, and a display apparatus. In an embodiment, an array substrate includes: a plurality of pixel electrodes arranged in an array, data signal lines each connected to a corresponding one of the pixel electrodes, and touch control signal lines extending in a same direction as the data signal lines. Every two ones of the pixel electrodes adjacent to each other in a row direction constitute an electrode set. Each of the data signal lines is located in a gap between two adjacent electrode sets in a column direction, and the touch control signal lines are each disposed between one of the data signal lines and either of two adjacent electrode sets located adjacent to the one data signal line in the row direction.
Claims
1. An array substrate, comprising: a plurality of pixel electrodes arranged in an array, data signal lines each connected to a corresponding one of the pixel electrodes, and touch control signal lines extending in a same direction as the data signal lines; wherein: every two ones of the pixel electrodes adjacent to each other in a row direction constitute an electrode set, each of the data signal lines is located in a gap between two adjacent electrode sets in a column direction, and the touch control signal lines are each disposed between one of the data signal lines and either of two electrode sets located adjacent to the one data signal line in the row direction; one, where the data signal line is disposed, of the gaps between the adjacent pixel electrodes in the column direction has a greater width than that of other one, where no data signal line is disposed, of the gaps between the adjacent pixel electrodes in the column direction; and the adjacent pixel electrodes in the column direction are staggered one another by a distance that is equal to a factor X multiplied by a width of the pixel electrode and the factor X is larger than zero and less than one.
2. The array substrate of claim 1, wherein distances between the data signal lines and the pixel electrodes respectively connected to the data signal lines are equal to one another.
3. The array substrate of claim 1, wherein the data signal lines and the touch control signal lines extend in a zigzag manner along the gaps between the electrode sets.
4. The array substrate of claim 1, wherein the data signal line and the touch control signal line are located in different layers of films, respectively.
5. The array substrate of claim 1, wherein each of the data signal lines is connected to the pixel electrodes located in a same column.
6. The array substrate of claim 5, wherein the array substrate has a single-gate structure, and the data signal lines are in a one-to-one correspondence with the touch control signal lines.
7. The array substrate of claim 1, wherein the array substrate has a dual-gate structure, and each of the data signal lines is connected to two columns of pixel electrodes adjacent to the each data signal line, respectively.
8. The array substrate of claim 7, wherein each of the data signal lines corresponds to two of the touch control signal lines, respectively.
9. A liquid crystal display panel comprising the array substrate of claim 1, wherein, in the array substrate, one, where the data signal line is disposed, of the gaps between the adjacent pixel electrodes in the column direction has a greater width than that of other one, where no data signal line is disposed, of the gaps between the adjacent pixel electrodes in the column direction; the adjacent pixel electrodes in the column direction are staggered one another by a distance that is equal to a factor X multiplied by a width of the pixel electrode and the factor X is larger than zero and less than one.
10. The liquid crystal display panel of claim 9, wherein in the array substrate, distances between the data signal lines and the pixel electrodes respectively connected to the data signal lines are equal to one another.
11. The liquid crystal display panel of claim 9, wherein in the array substrate, the data signal lines and the touch control signal lines extend in a zigzag manner along the gaps between the electrode sets.
12. The liquid crystal display panel of claim 9, wherein each of data signal lines is connected to the pixel electrodes in a same column; and the array substrate has a single-gate structure, and the data signal lines are in a one-to-one correspondence with the touch control signal lines.
13. The liquid crystal display panel of claim 9, wherein the array substrate has a dual-gate structure, each of the data signal lines is connected to two columns of pixel electrodes adjacent to the each data signal line, respectively, and each of the data signal lines corresponds to two of the touch control signal lines, respectively.
14. A display apparatus comprising the liquid crystal display panel of claim 9.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE EMBODIMENTS
(7) Solutions of an array substrate, a liquid crystal display panel and a display apparatus according to embodiments of the present disclosure will be described hereinafter in detail in conjunction with the embodiments and with reference to the attached drawings.
(8) Shapes and sizes of these components/elements shown in the attached drawings do not reflect real proportion of the array substrate, but are intended only to illustrate the contents of this disclosure.
(9) As shown in
(10) Accordingly, embodiments of the present disclosure provide an array substrate. As shown in
(11) Every two ones of the pixel electrodes 01 adjacent to each other in a row direction constitute an electrode set 011. The data signal lines 02 are located in gaps between the adjacent electrode sets 011 in a column direction, and the touch control signal line 03 is disposed between each of two adjacent electrode sets 011 and the data signal line 02 located between the two adjacent electrode sets 011 in the row direction.
(12) Specifically, in the array substrate according to the embodiments of the present disclosure, the touch control signal line 03 is disposed between the data signal line 02 and the pixel electrode 01 located on either side of the data signal line 02. Accordingly, it is ensured that each data signal line 02 is always located on a side of the touch control signal line 03 away from the pixel electrodes 01 connected to the each data signal line 02, and thus a distance between the data signal line 02 and the adjacent pixel electrode 01 is increased, thereby greatly decreasing a coupling capacitance C.sub.pd between the data signal line 02 and the adjacent pixel electrode 01, reducing probability of occurrence of a poor picture display and thus improving picture display quality.
(13) In the array substrate according to the embodiments of the present disclosure, each data signal line 02 is set to be always located on a side of the touch control signal line 03 away from the pixel electrodes 01 connected to the each data signal line 02. Thereby, the distance between the each data signal line 02 and the adjacent pixel electrode 01 can be in a range that is greater than 0 and less than or equal to 15 m.
(14) In the existing array substrate, as shown in
(15) In the array substrate according to the embodiments of the present disclosure, as shown in
(16) Specifically, the distances between the data signal lines 02 and the pixel electrodes 01 respectively connected to the data signal lines 02 are set to be the same. Accordingly, it can be ensured that there is the same coupling capacitance C.sub.pd between each of the data signal lines 02 and a proximate column of pixel electrodes 01 (generally which are the pixel electrodes 01 connected to the each data signal line 02), alleviating a poor picture display caused by a difference of the coupling capacitances C.sub.pd between the different data signal lines 02 and the pixel electrodes 01, and thus improving picture display quality.
(17) In the array substrate according to the embodiments of the present disclosure, as shown in
(18) In some embodiments, as shown in
(19) In the array substrate according to the embodiments of the present disclosure, one, where the data signal line is disposed, of the gaps between the adjacent pixel electrodes in the column direction has a greater width than that of other one, where no data signal line is disposed, of the gaps between the adjacent pixel electrodes in the column direction. As shown in
(20) Specifically, the width of one, where no data signal line 02 is disposed, of the gaps between the adjacent pixel electrodes in the column direction is reduced as far as possible, so that a usable area of the pixel electrode 01 can be increased, thereby raising an aperture ratio of a pixel. Of course, in specific application, as shown in
(21) In the array substrate according to the embodiments of the present disclosure, as shown in
(22) In the array substrate according to the embodiments of the present disclosure, as shown in
(23) Specifically, when the data signal lines 02 and the touch control signal lines 03 extend in a straight line manner along the gaps between the electrode sets, it can be ensured that the data signal lines 02 and the touch control signal lines 03 have minimal wiring lengths, facilitating wiring design. However, no data signal lines 02 are disposed in the gaps between the adjacent pixel electrodes 01 in the electrode sets. Generally, since one, where the data signal line 02 is disposed, of the gaps between the adjacent pixel electrodes in the column direction has a greater width than that of other one, where no data signal line 02 is disposed, of the gaps between the adjacent pixel electrodes in the column direction, visual effect of picture display is adversely affected by nonuniformity of adjacent gaps along whole columns on the entire array substrate.
(24) In the array substrate according to the embodiments of the present disclosure, as shown in
(25) Specifically, when the data signal lines 02 and the touch control signal lines 03 extend in a zigzag manner along the gaps between the electrode sets, as shown in the figure, the data signal lines 02 and the touch control signal lines 03 may be regarded as having a layout of zigzag shape. In this way, arrangement of pixels can be optimized and visual effect caused by a difference in the widths of the gaps between the pixel electrodes in the column direction can be alleviated.
(26) In the array substrate according to the embodiments of the present disclosure, as shown in
(27) Of course, each data signal line 02 extending in the column direction may also be bent at any row of pixel electrodes 01. For example, as shown in
(28) In the array substrate according to the embodiments of the present disclosure, the data signal line 02 and the touch control signal line 03 are respectively located in different layers of films to ensure that no short circuit will occur at crossing positions between the data signal lines 02 and the touch control signal lines 03.
(29) In the array substrate according to the embodiments of the present disclosure, as shown in
(30) Specifically, when the data signal lines 02 and the touch control signal lines 03 extend in a straight line manner along the gaps between the electrode sets, as shown in
(31) In the array substrate according to the embodiments of the present disclosure, when the array substrate has a single-gate structure, the data signal lines 02 may be in a one-to-one correspondence with the touch control signal lines 03.
(32) Specifically, as shown in
(33) In the array substrate according to the embodiments of the present disclosure, as shown in
(34) In the array substrate according to the embodiments of the present disclosure, as shown in
(35) Specifically, as shown in
(36) Based on the same inventive concept, embodiments of the present disclosure also provide a liquid crystal display panel comprising the array substrate according to the embodiments of the present disclosure. Since principles of the liquid crystal display panel for solving a problem are similar to those of the array substrate, implementations of the array substrate may be referred to for implementations of the liquid crystal display panel, and repeated contents are no longer described for the sake of brevity.
(37) Based on the same inventive concept, embodiments of the present disclosure also provide a display apparatus comprising the liquid crystal display panel according to the embodiments of the present disclosure. The display apparatus may comprise any products or parts having a displaying function, such as a mobile phone, a tablet computer, a TV, a display, a notebook computer, a digital frame, and a navigator, and the likes. The embodiments of the liquid crystal display panel may be referred to for implementations of the display apparatus and repeated contents are no longer described for the sake of brevity.
(38) The embodiments of the present disclosure provide the array substrate, the liquid crystal display panel, and the display apparatus. The array substrate comprises: a plurality of pixel electrodes arranged in an array, data signal lines each connected to a corresponding one of the pixel electrodes, and touch control signal lines extending in the same direction as the data signal lines. Every two ones of the pixel electrodes adjacent to each other in a row direction constitute an electrode set. Each of the data signal lines is located in a gap between two adjacent electrode sets in a column direction, and the touch control signal lines are each disposed between one of the data signal lines and either of two electrode sets located adjacent to the one data signal line in the row direction. The touch control signal line is disposed between the data signal line and each of the pixel electrodes located on both sides of the data signal line. Accordingly, it is ensured that the data signal line is always located on a side of the touch control signal line away from the pixel electrodes, and thus a distance between the data signal line and the adjacent pixel electrode is increased, thereby greatly decreasing a coupling capacitance between the data signal line and the pixel electrode, reducing probability of occurrence of a poor picture display and improving picture display quality.
(39) Apparently, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations may be made without departing from the spirit and scope of the disclosure. Therefore, if the changes, modifications, substitutions and alterations of the present disclosure belong to the scope defined in the appended claims of the present disclosure and their equivalents, the present disclosure is intended to include the changes, modifications, substitutions and alterations.