The present application claims priority to Chinese patent application CN201610945638.1, entitled “Touch panel and display device”, filed on Nov. 2, 2016, the entire contents of which are incorporated herein by reference.
The present disclosure relates to the technical field of in-cell touch panels, and particularly to a touch panel and a display device.
An in-cell touch panel is a panel that integrates touch function into a thin film transistor liquid crystal display (TFT-LCD) array process, whereby a thin panel and even a thin display device can be realized. A mutual capacitive in-cell panel is one kind of in-cell touch panel, which includes a sensor pad, a first connecting line, and a second connecting line. In a commonly used mutual capacitive in-cell touch panel, as shown in
In view of problem of the wide frame in the prior art, the present disclosure provides a touch panel and a display device in which a narrow frame design can be easily realized.
The touch panel provided by the present disclosure has a touch area and a peripheral area. The touch area has a first edge and a second edge which are oppositely arranged, and the peripheral area has a first frame and a second frame which are oppositely arranged outside the first edge and the second edge. An extending direction of the first edge and an extending direction of the first frame are parallel to each other. The peripheral area comprises an area between the first edge and the first frame and an area between the second edge and the second frame, and the touch area comprises an area between the first edge and the second edge. The first edge extends in a second direction, and a first direction is perpendicular to the second direction.
The touch panel includes a sensor pad, a first connecting line and a second connecting line which are arranged in the touch area. The peripheral area is provided with a first driving circuit and a GOA circuit. The first driving circuit and the GOA circuit are provided between the first edge and the first frame, and between the second edge and the second frame. The first connecting line and the second connecting line are used for connecting adjacent sensor pads.
In the touch panel provided herein, no first signal line is provided between the first edge and the first frame, or between the second edge and the second frame, so that a distance between the first edge and the first frame, and between the second edge and the second frame can be reduced to a certain extent, which can facilitate realization of narrow panel design.
As a further improvement on the present disclosure, the first driving circuit comprises a stage transmission unit and a first output unit, and the GOA circuit comprises a stage transmission unit and a second output unit. The first driving circuit is sandwiched in the GOA circuit, and the first driving circuit shares a first driving signal with the GOA circuit.
Since both the first driving circuit and the GOA circuit comprise stage transmission units, the first diving circuit can share the first driving signal with the GOA circuit. In this manner, a number of output pins of the IC can be reduced. At the same time, the first driving circuit is sandwiched in the GOA circuit, and thus a layout space of the first driving circuit can be saved, which facilitates the design of narrow frame of the touch panel.
In one preferred embodiment, a number of GOA circuits between every two adjacent first driving circuits is equal. In this manner, a clear layout of the circuit can be ensured, which can facilitate error diagnosis of the circuit.
In one preferred embodiment, the sensor pads are arranged in a rectangular array. Rows of the rectangular array extend in a first direction, and columns of the rectangular array extend in a second direction. The second connecting line connects the adjacent sensor pads arranged in a same column in the second direction, and the first connecting line connects the adjacent sensor pads arranged in a same row in the first direction.
Furthermore, a first sensor pad and a last sensor pad of each row of sensor pads are connected to the first driving circuit, respectively. In this manner, the first signal line that is originally provided between the first edge and the first frame, and between the second edge and the second frame is replaced by the first driving circuit, and the sensor pads of each row are driven by the first driving circuit.
The present disclosure, on the basis of the aforesaid touch panel, further provides a display device, which comprises the touch panel provided herein.
The present disclosure will be described in more detail below by way of embodiments and with reference to the accompanying drawings. In the drawings:
In the drawings, the same components are represented by the same reference signs, and the size of each component does not represent the actual size of the corresponding component.
As shown in
Sensor pads 10 are provided in the touch area. The sensor pads 10 are arranged in a rectangular array. Rows of the rectangular array extend in a first direction, and columns of the rectangular array extend in a second direction. A first connecting line 11 connects the adjacent sensor pads 10 arranged in a same row in the first direction, and a second connecting line 12 connects the adjacent sensor pads 10 arranged in a same column in the second direction. It can be seen from a structure of the sensor pad as shown in
A first driving circuit 20 and a GOA circuit combination 30 which includes a plurality of GOA circuits 17 are arranged in the peripheral region, i.e. the first driving circuit 20 and the GOA circuit combination 30 are arranged between the first edge 13 and the first frame 15, and the first driving circuit 20 and the GOA circuit combination 30 are arranged between the second edge 14 and the second frame 16. As shown in
As shown in
The GOA circuit 17 in
Preferably, a number of GOA circuits 17 between every two adjacent first driving circuits 20 is equal. Since the touch panel contains a plurality of first driving circuits 20 and a plurality of GOA circuits 17, specific arrangement of the first driving circuits 20 in the GOA circuit 17 is provided herein. It is assumed that there are m GOA circuits 17 and n first driving circuits 20 in the peripheral area between the first edge 13 and the first border 15, m is divided into equal n+1 groups (if there is a remainder, the remainder is divided into a first group and a last group), and then the n first driving circuits 20 are distributed at the end of each group of the GOA circuits. According to this embodiment, it is assumed that there are 29 GOA circuits 17 and 8 first driving circuits 20 in the peripheral area between the first edge 13 and the first border 15, 29 are divided into equal 9 groups, and the remainder is divided into a first group and a last group to obtain a circuit as shown in
At last, it should be noted that, the above embodiments are only used for illustrating, rather than restricting the present disclosure. The present disclosure is illustrated in detail in combination with preferred embodiments hereinabove, but it can be understood that, the embodiments disclosed herein can be amended or substituted without departing from the protection scope of the present disclosure. The protection scope of the present disclosure shall be determined by the scope as defined in the claims.
Number | Date | Country | Kind |
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2016 1 0945638 | Nov 2016 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2016/112271 | 12/27/2016 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2018/082170 | 5/11/2018 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
20120105338 | Lin | May 2012 | A1 |
20160041664 | Qin | Feb 2016 | A1 |
20160259455 | Li | Sep 2016 | A1 |
20160300523 | Tan | Oct 2016 | A1 |
Number | Date | Country | |
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20180224982 A1 | Aug 2018 | US |