The present invention request for the priority of an earlier application of the application number 201610486646.4 of the invention name “Array Substrate and Touch Display” on Jun. 28, 2016. The earlier application content is quoted in the present invention.
The present invention relates to the touch display technology field, more specifically, to the array substrate and touch display.
With the development of the TDDI (Touch Display Driver Integration) technology of the self-capacitance touch display, the common electrode layer of the array substrate of the display panel uses to be the touch electrode layer for self-capacitance touch detection. According to the time-sequential drive, and the time-sequential control of the touch and the display, it achieves the touch and the display at the same time. To integrate the touch circuit into the display directly, it reduces the cost a lot, improves the efficiency of production, and reduces the thickness of the panel.
When the common electrode uses to be the touch electrode, the common electrode needs to separates into the plurality of independent common electrodes. At the same time, to realize the time-sequential control of touch and display, each touch electrode provides the signal by passing through the individual touch electrode, to provide the touch signal from the touch electrode at the touch period and to provide the driving voltage from the touch electrode ate the display period by passing through the touch circuit. In the current self-capacitance touch display, the capacitive coupling forms between the common electrode and gate line, and it increases the loading of the touch electrode and decreases the sensitivity of the touch.
The present disclosure provides an array substrate to reduce the touch electrode load, to improve the touch sensitivity, and to improve the touch performance of the in-cell touch display.
Another object of the invention provides the array substrate used in the touch display.
To achieve the purpose, the embodiment of the invention provides the technical solution:
The invention provides an array substrate, comprising the plurality of gate lines and matrix arranged touch electrodes, and each of the touch electrodes has the plurality of sub electrodes, and each sub electrode and the gate line extend along the first direction. The plurality of sub electrodes are arranged along the second direction in spaced arrangement. The first direction and the second direction are perpendicular to each other. The plurality of sub electrodes electrically connects to each other by the first touch trace, the shadow of the gate line on the touch electrode is between the two sub electrodes.
The through hole is disposed in each of the sub electrode. The first touch trace and the sub electrode are disposed in the different conducting layers, and the first touch trace connects to the sub electrode electrically connects by the through hole.
Each of the sub electrodes has the plurality of through holes arranged along the first direction.
In each of the touch electrodes, the plurality of through holes along the second direction are connected by the first touch trace.
The number of the first touch trace is plural the plurality of the first touch trace extends along the second direction.
The present disclosure further comprises the touch driving unit and the second touch trace, each of the touch electrodes electrically connects to the touch driving unit by the second touch trace.
Two of the nonadjacent first touch traces connect to one of the second and connect to the touch driving unit through the second touch trace.
The gate line and the touch electrode are disposed in the different conducting layers, where the gate line is located under the touch electrode.
Each of the gate lines corresponds to one of the sub electrodes.
The disclosure further provides a touch display, comprising an array substrate which the array substrate has the plurality of gate lines and matrix arranged touch electrodes, wherein each of the touch electrode has the plurality of sub electrodes, each of the sub electrodes and the gate lines extend along the first direction, and the plurality of sub electrodes are arranged along the second direction in spaced arrangement. The first direction and the second direction are perpendicular to each other. The plurality of sub electrodes electrically connected to each other by the first touch trace, and the shadow of the gate line on the touch electrode is between the two sub electrodes.
The through hole is disposed in each of the sub electrodes, and the first touch trace and the sub electrode are disposed in the different conducting layers, and the first touch trace electrically connects to the sub electrode by the through hole.
the plurality of through holes is arranged on each of the sub electrodes along the first direction.
In each of the touch electrodes, the plurality of through holes along the second direction are connected by the first touch trace.
The number of the first touch trace is plural, the plurality of the first touch trace extend along the second direction.
The present disclosure comprises the touch driving unit and the second touch trace, each of the touch electrodes is electrically connected the touch driving unit by the second touch trace.
Two of the nonadjacent first touch traces and the second touch trace are connected, and the first touch traces connects to the touch driving unit by the second touch trace.
The gate line and the touch electrode are disposed in the different conducting layers, wherein the gate line is located under the touch electrode.
Each of the gate lines corresponds to one of the sub electrodes.
The embodiment of the invention has benefit or advantage as follows:
The touch electrode separates into the plurality of sub electrode arranged in spaced arrangement. The shadow of the gate line on the touch electrode is between the two sub electrodes, and the touch electrode avoids the gate line. Without changing the size of the touch electrode, it decreases the capacity between the gate line and the touch electrode, and further decreases the noise of other signal when touching. It increases the touch sensitivity, and reduces the touch response time. The touch display of the invention has the advantage of high touch sensitivity and short response time.
In order to clearly illustrate the embodiment of the invention or the technical solution of the current technology, the drawings illustrate the embodiments and the current technology; obviously the descriptions of the drawings are embodiments of the invention. According to the drawings, the person skilled in the art will obtain others without any creative efforts.
The description of the technical solution of the embodiment of the invention is illustrated clearly and completely by combination of the drawings in the embodiment of the invention, obviously, the embodiment is part of the embodiments of the invention, not all embodiments. According to the embodiment of the invention, the person skilled in the art will obtain others embodiments without any creative efforts, it belongs the scope of the invention.
Referring to
Referring to
Using the 5.5″ touch display to estimate to prove the technical effort of the invention, C1 is defined as the capacitance between the touch electrode and the gate line; C2 is defined as the capacitance between the second touch trace and the gate line; C3 is defined as another capacitance (includes the sum of the capacitance between the touch electrode and the data line, between the second touch trace and the data line, and between the touch electrodes.); R1 is defined as the resistance of the second touch trace, shown as the following table:
Referring to
In summary, the invention separates the touch electrode into plurality of sub electrodes arranged in spaced arrangement. The shadow of the gate line on the touch electrode is between the two sub electrodes, and the touch electrode avoids the gate line. Without changing the size of the touch electrode, it decreases the capacity between the gate line and the touch electrode, and further decreases the noise of other signal when touching. It increases the touch sensitivity, and shorts the touch response time.
Specifically, referring to
It's to be understood that the embodiment of the invention don't limit the size and shape of the touch electrode 30, and the number of sub electrode 33 in the touch electrode 30. For example, the touch electrode 30 is separated into 5 sub electrodes 33. This is one of the embodiments of the invention, there is no limitation of the invention.
It's to be understood that the number of the through holes 34 in each sub electrode 33 is not limited. Obviously, the larger number of the through holes, the higher touch sensitivity, and the traces are more complex, the cost is larger.
In the embodiment of the invention, two of the nonadjacent first touch traces 31 and the second touch trace 32 are connected, and connected to the touch driving unit 50 by the second touch trace 32. It's to be understood that the larger number of the first touch traces 31 connected to the second touch trace 32, the more stable touch will be, but the more traces are needed, and the cost is higher. In the embodiment, two of the nonadjacent first touch traces is disposed for the purpose of high touch stable.
It's to be understood that the materials of the plurality of first touch trace 31 and the plurality of second touch trace 32 could be metal wire. The resistance of the touch traces is the same for ensuring the signal transmission performance.
The gate line 20 and the touch electrode 30 is disposed in the different conducting layers, wherein the conducting layer of the gate line 20 is under the conducting layer of the touch electrode 30. Specifically, in the same touch electrode 30, each gate line 20 corresponds to one of the sub electrodes 33.
The first touch trace 31, the plurality of second touch traces 32 and the gate lines 20 is disposed in the same conducting layer.
The invention provides a touch display, comprising the color filter substrate and the array substrate disposed relatively, the array substrate could be any array substrate 100 described above. The touch display could be applied in the electronic paper, LCD, mobile phone, digital photo frame, tablet, and any product or part with touch display features. The touch display is not limited in the field described above.
In the description of the specification, the term “one embodiment”, “some embodiments”, “example”, “specific example”, “some examples” means the specific feature, structure, material, or characteristic included in at least one of the embodiment or example of the invention. In the specification, the term of the above representation is not necessary referring to the same embodiment or example. And the description of the specific feature, structure, material, or characteristic could be combined suitably in one or the plurality of the embodiments or examples.
The embodiment descript above is not limit the protection range of the technical solution. Any modification, equivalent replacement, and improvement within the spirit and principle of the embodiment includes in the protection range of the technical solution.
Number | Date | Country | Kind |
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201610486646.4 | Jun 2016 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2016/090607 | 7/20/2016 | WO | 00 |