This application claims the benefit of priority to Chinese Patent Application No. 201210592038.3, entitled “ARRAY SUBSTRATE AND TOUCH SCREEN WITH HORIZONTAL ELECTRIC FIELD DRIVING MODE”, filed with the Chinese Patent Office on Dec. 31, 2012, the contents of which is incorporated herein by reference in its entirety.
The present invention relates to flat panel display technologies, in particular to an array substrate and a touch screen with a horizontal electric field driving mode.
A touch screen built in a liquid crystal display can be integrated on a color filter substrate or an array substrate to reduce a thickness of an entire touch display device effectively, and hence is widely used. As for the liquid crystal display with a horizontal electric field driving mode such as a Fringe Field Switching (FFS) mode or an In-Plane Switching (IPS) mode, it is generally required for the In-Cell touch screen to arrange driving lines and sensing lines which are used for a touch function at one side of the color filter substrate.
As shown in
Furthermore, it can also be seen from
The present invention provides an array substrate and a touch screen with a horizontal electric field driving mode, to simplify a manufacturing process for an In-Cell touch screen with the horizontal electric field driving mode, thereby reducing production costs of the In-Cell touch screen.
Another object of the invention is to solve the problem of the touch noise generated by a liquid crystal layer of the touch screen with the horizontal electric field driving mode, thereby increasing the touch sensitivity of the touch screen.
Embodiments of the present invention provide an array substrate with a horizontal electric field driving mode for solving the problems mentioned above. The array substrate comprises:
In an embodiment, the common electrode lines may function as sensing electrodes or driving electrodes and the data lines may function as the driving electrodes or the sensing electrodes during a touch period;
In an embodiment, the common electrode lines are arranged perpendicular to the data lines.
In an embodiment, the common electrode lines function as the sensing electrodes and the data lines function as the driving electrodes during the touch period.
In an embodiment, the common electrode lines function as the driving electrodes and the data lines function as the sensing electrodes during the touch period.
In an embodiment, the common electrode lines are arranged perpendicular to the gate lines.
In an embodiment, the common electrode lines function as the sensing electrodes and the gate lines function as the driving electrodes during the touch period.
In an embodiment, the common electrode lines function as the driving electrodes and the gate lines function as the sensing electrodes during the touch period.
In an embodiment, each of the common electrode lines has a width in a range from about 3 mm to about 5 mm.
In an embodiment, the array substrate further comprises a plurality of pixel rows and a plurality of pixel columns formed by the plurality of data lines and the plurality of gate lines.
In an embodiment, the common electrode lines may overlap the pixel rows or the pixel columns.
In an embodiment a data line and a gate line adjacent to each other define a pixel region, and the pixel region includes a pixel electrode.
In an embodiment, the pixel region comprises a plurality of pixel electrodes that are connected together.
In an embodiment, a pixel electrode is formed in the pixel region.
In an embodiment, the pixel electrode is formed above the pixel common electrodes. In another embodiment, the pixel electrode is formed below the pixel common electrodes.
Embodiments of the present invention also provide a touch screen with a horizontal electric field driving mode. The touch screen comprises: an array substrate with the horizontal electric field driving mode as described above, a color filter substrate, and a liquid crystal layer disposed between the array substrate and the color filter substrate.
In an embodiment, the array substrate has a touch surface facing a user.
According to an embodiment, on the array substrate with the horizontal electric field driving mode, the common electrode is split to form the plurality of common electrode lines, which function as the sensing electrodes or the driving electrodes while the data lines or the gate lines function as the driving electrodes or the sensing electrodes during the touch period. That is, the common electrode lines function as the sensing electrodes or the driving electrodes during the touch period, and function as the common electrode during a display period. Likewise, the data lines or the gate lines function as the driving electrodes or the sensing electrodes during the touch period, and still function as the data lines or the gate lines during the display period. That is, based on the existing manufacturing of the common electrode, the data lines and the gate lines on the array substrate with the horizontal electric field driving mode, both the display function and the touch function can be implemented without adding other additional processes, so that the processes are reduced significantly and hence production costs are reduced greatly.
In another aspect of the present invention, since the common electrode, the data lines or the gate used for implementing the touch function are all located on the same array substrate, the metal layer used as the touch layer is no longer required on the color filter substrate, and the parasitic capacitance involving the liquid crystal layer is not generated between the array substrate and the color filter substrate, therefore, the detection of the touch capacitance is not affected by the rotation of the liquid crystal molecules in a driving electric field, that is, the rotation of the liquid crystal molecules no longer causes the touch noise, thereby increasing the touch sensitivity of the touch screen effectively.
The concept of the present invention lies in splitting an integral common electrode arranged on an array substrate with a horizontal electric field driving mode in the prior art to form a plurality of common electrode lines, which then also function as sensing electrodes or driving electrodes, meanwhile, data lines or gate lines also function as driving electrodes or sensing electrodes, for the purpose of integrating the touch function layer on the array substrate without increasing processing steps.
The improvements of the present invention are made on the array substrate with the horizontal electric field driving mode, including a Fringe Field Switching mode or an In-Plane Switching mode, for example.
For a better understanding of the objects, solutions and advantages of the invention, the invention is described in detail below in conjunction with the accompanying drawings.
As shown in
Further referring to
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In the first embodiment, the pixel electrode 205 is formed below the pixel common electrodes 2021, that is, the Top COM form is utilized. It should be understood that embodiments of the present invention are also applicable to the Bottom COM form, that is, the pixel common electrodes 202 are formed above the substrate 201, and the pixel electrode 205 is located above the protect layer 207.
As described above, the concept of the present invention is applicable to any array substrate with a horizontal electric field driving mode. As shown in
As shown in
As shown in
It should be understood that the concept of the present invention is also applicable to any other array substrates with the horizontal electric field driving mode.
The third embodiment is different from the first and second embodiments by having different line widths of the common electrode lines, i.e., different numbers of the common electrode lines split from the entire common electrode as compared with the prior art.
Specifically, as shown in
Since each of the common electrode lines 202 corresponds to one pixel row, the touch function during a touch period does not affect the function of the common electrode 202 as a storage capacitance when the common electrode 202 operates in a display period, thereby optimizing the display effect. Further, when the common electrode line 202 is arranged to overlap with the pixel rows or pixel columns, other inversion manners other than a Dot Inversion can be used for display driving, thereby reducing the power consumption of a display device.
This embodiment is different from the above-mentioned first, second, and third embodiments by that the data lines function as driving electrodes or sensing electrodes in the first, second and third embodiments, but gate lines function as the driving electrodes or the sensing electrodes in the fourth embodiment.
As shown in
Further referring to
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In order to further optimize the touch effect, a surface of the array substrate 200 that faces the user is arranged as a touch surface, so that the liquid crystal layer 402 is not involved in the capacitance generated between a finger of the user and the touch layer, thus the noise carried by a touch signal generated between the finger of the user and the touch layer is reduced.
As can be seen, in the above-mentioned touch screen with the horizontal electric field driving mode, the common electrode arranged on the array substrate is split to form a plurality of common electrode lines, which function as the sensing electrodes or the driving electrodes while the data lines or the gate lines function as the driving electrodes or the sensing electrodes during a touch period. That is, the common electrode lines function as the sensing electrodes or the driving electrodes during the touch period, and function as the common electrode during a display period. Likewise, the data lines or the gate lines function as the driving electrodes or the sensing electrodes during the touch period function as the data lines or gate lines in the display period. Therefore, no additional process is required to form the touch layer, and both the display function and the touch function are implemented, so that the process is simplified significantly and production costs are reduced greatly.
In another aspect, since the common electrode lines, the data lines or the gate lines used for implementing the touch function are all located on the same array substrate, a metal layer used as the touch layer is no longer required on the color filter substrate, and the parasitic capacitance involving the liquid crystal layer is not generated between the array substrate and the color filter substrate, therefore, the detection of the touch capacitance is not affected by the rotation of the liquid crystal molecules in the driving electric field, that is, the rotation of the liquid crystal molecules no longer generates the touch noise, as a result, the touch sensitivity of the touch screen can be improved effectively.
It should be noted that, embodiments are described in a step-up way in the description, that is, differences of each embodiment from the previous embodiments are described, but reference may be made to the previous embodiments for any identical or similar parts of each embodiment with respect to the previous embodiments.
Obviously, various modifications and variations may be made by those skilled in the art without departing from the principle and scope of the invention. Thus, all these modifications and variations are intended to be included in this invention if they fall within the scope of the appended claims and their equivalents.
Number | Date | Country | Kind |
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201210592038.3 | Dec 2012 | CN | national |