The present application relates to a field of display technology, and particularly, to a display device and a driving device.
With a development of display technology, a liquid crystal display device is used more and more widely. However, there are following problems in existing solutions of prior art: gate control lines and data lines are connected to different sides of a driving circuit, the gate control lines are generally connected to right and left sides of the driving circuit, resulting in large fan-out areas at right and left sides of a display panel, thereby causing a display device comprising the display panel to have wide bezels.
An object of the present application is to provide a display device and a driving device for achieving narrow bezels of the display device.
In order to achieve above object, the present application provides a display device comprising a driving device and a display panel, the display panel comprising a plurality of gate control lines, a plurality of gate lines and a plurality of data lines, the gate lines and the data lines being intersected to define pixels, the driving device comprising a driving circuit, and gate output pins and source output pins provided on the driving circuit;
Optionally, the connection ends of the gate control lines are connected to a side of the driving circuit proximal to the display panel, and the connection ends of the data lines are also connected to the side of the driving circuit proximal to the display panel.
Optionally, all the gate output pins and the source output pins are provided at the side of the driving circuit proximal to the display panel.
Optionally, the gate lines and the gate control lines are provided in a same layer.
Optionally, the gate control lines and the data lines are provided in parallel.
Optionally, the gate lines are arranged sequentially, and the gate control lines connected to the gate lines are also arranged sequentially.
Optionally, the gate lines are arranged sequentially, and the gate control lines connected to the gate lines are arranged non-sequentially in accordance with a shape of the display panel.
Optionally, the gate control lines and the data lines are provided in parallel, and the gate control lines and the data lines are provided alternatively.
Optionally, the gate control lines and the data lines are provided in parallel, and one of the gate control lines is provided every multiple data lines.
Optionally, the display panel is of a singular shape.
In order to achieve the above object, the present application further provides a driving device of a display device, the display device comprising a plurality of gate control lines, a plurality of gate lines and a plurality of data lines, the gate lines and the data lines are intersected to define pixels, the driving device comprising a driving circuit, and gate output pins and source output pins provided on the driving circuit,
Optionally, the gate output pins and the source output pins are provided at a side of the driving circuit proximal to the display panel.
Optionally, the gate output pins and the source output pins are provided alternatively.
Optionally, one of the gate output pins is provided every multiple source output pins.
The present application has following beneficial effects.
In technical solutions of the display device and the driving device provided by the present application, the connection ends of the data lines are connected to the corresponding source output pins, the gate lines are connected to the corresponding gate control lines, the connection ends of the gate control lines are connected to the corresponding gate output pins, and all the connection ends of the gate control lines and the connection ends of the data lines are connected to a same side (i.e., the side of the driving circuit proximal to the display panel) of the driving circuit, avoiding the connection ends of the gate control lines and the connection ends of the data lines being connected to different sides of the driving circuit, resulting in reduced fan-out areas at right and left sides of the display panel, thereby the display device has narrow bezels.
In order to make a person skilled in the art understand technical solutions of the present application better, the display device and the driving device provided by the present application will be described in detail below in conjunction with accompanying drawings.
However, in above technical solution, the gate control lines and the data lines are connected to different sides of the driving circuit 1, the gate control lines are generally connected to left and right sides of the driving circuit 1, resulting in large fan-out areas at left and right sides of the display panel 2, thereby causing the display device to have wide bezels.
In the present embodiment, the gate lines may include gate lines G1, G2, G3, . . . , Gn, the data lines include data lines S1, S2, S3, S4, . . . , Sn, only the gate lines G1, G2, G3 and the data lines S1, S2, S3, S4 are shown in
As shown in
Optionally, the gate lines and the gate control lines are provided in a same layer. During manufacturing the gate lines, the gate control lines may be formed synchronously so that the gate lines and the gate control lines are formed in the same layer, thus the manufacturing cost is reduced.
Optionally, the gate control lines and the data lines are provided in parallel. In the present embodiment, the data lines are provided in parallel, the gate control lines are provided in parallel, and the data lines and the gate control lines are also provided in parallel. Such configuration facilitates an arrangement of the gate control lines, resulting in a reduced complexity of wiring in the display panel.
In the present embodiment, the gate lines are arranged sequentially, and the gate control lines connected to the gate lines are also arranged sequentially. As shown in
In the present embodiment, the gate control lines and the data lines are provided alternatively. As shown in
In the present embodiment, the gate output pins and the source output pins are provided alternatively. As shown in
In the present embodiment, each of the pixels 3 comprises the thin film transistor 31 and the pixel electrode 32. The thin film transistor 31 may comprise a gate, an active layer, a source and a drain, each of the gate lines is connected to the gate of the corresponding thin film transistor 31, each of the data lines is connected to the source of the corresponding thin film transistor 31. The pixel electrode 32 is connected to the drain of the thin film transistor 31.
In the present embodiment, the driving circuit 1 is of a structure of one-chip, and functions of a gate driving circuit and a source driving circuit are integrated in the driving circuit 1, thus the driving circuit 1 can drive the gates of the thin film transistors 31 through the gate lines and drive the sources of the thin film transistors through the data lines.
The display device may further comprise a timing controller 4 for outputting a timing control signal to the driving circuit 1.
Optionally, in the present embodiment, the display device is a liquid crystal display device. In practical applications, the display device may be applied in a vehicular field, that is, the display device may he a vehicle display device.
In technical solutions of the display device provided by the present embodiment, the connection ends of the data lines are connected to the corresponding source output pins, the gate lines are connected to the corresponding gate control lines, the connection ends of the gate control lines are connected to the corresponding gate output pins, and all the connection ends of the gate control lines and the connection ends of the data lines are connected to a same side (i.e., the side of the driving circuit proximal to the display panel) of the driving circuit, avoiding the connection ends of the gate control lines and the connection ends of the data lines being connected to different sides of the driving circuit, resulting in reduced fan-out areas at right and left sides of the display panel, thereby the display device has narrow bezels. The display deice of the present embodiment may also be bezel-less. In the display device of the present embodiment, the wiring of the gate control lines is simple, reducing the complexity of process and resulting in a good yield and a high reliability of the display device.
In the present embodiment, the display panel 2 may be of a singular shape, for example, when the display panel 2 is not a square or rectangle, the display panel 2 may be referred to as a display panel with a singular shape. The display panel 2 in
In technical solutions of the display device provided by the present embodiment, the connection ends of the data lines are connected to the corresponding source output pins, the gate lines are connected to the corresponding gate control lines, the connection ends of the gate control lines are connected to the corresponding gate output pins, and all the connection ends of the gate control lines and the connection ends of the data lines are connected to a same side (i.e., the side of the driving circuit proximal to the display panel) of the driving circuit, avoiding the connection ends of the gate control lines and the connection ends of the data lines being connected to different sides of the driving circuit, resulting in reduced fan-out areas at right and left sides of the display panel, thereby the display device has narrow bezels. The display deice of the present embodiment may also have bezels with a singular shape. In the display device of the present embodiment, the wiring of the gate control lines is simple, reducing the complexity of process and resulting in a good yield and a high reliability of the display device.
In technical solutions of the display device provided by the present embodiment, the connection ends of the data lines are connected to the corresponding source output pins, the gate lines are connected to the corresponding gate control lines, the connection ends of the gate control lines are connected to the corresponding gate output pins, and all the connection ends of the gate control lines and the connection ends of the data lines are connected to a same side (i.e., the side of the driving circuit proximal to the display panel) of the driving circuit, avoiding the connection ends of the gate control lines and the connection ends of the data lines being connected to different sides of the driving circuit, resulting in reduced fan-out areas at right and left sides of the display panel, thereby the display device has narrow bezels. The display deice of the present embodiment may also be bezel-less. In the display device of the present embodiment, the wiring of the gate control lines is simple, reducing the complexity of process and resulting in a good yield and a high reliability of the display device.
As shown in
It should be noted that, the display panel 2 in
In the present application, positions of the gate output pins and the source output pins and the numbers thereof may be determined in accordance with resolution of the display device. Thus, the positions of the gate output pins and the sources output pins and the numbers thereof may be different between display devices with different resolutions.
In technical solutions of the display device provided by the present embodiment, the connection ends of the data lines are connected to the corresponding source output pins, the gate lines are connected to the corresponding gate control lines, the connection ends of the gate control lines are connected to the corresponding gate output pins, and all the connection ends of the gate control lines and the connection ends of the data lines are connected to a same side (i.e., the side of the driving circuit proximal to the display panel) of the driving circuit, avoiding the connection ends of the gate control lines and the connection ends of the data lines being connected to different sides of the driving circuit, resulting in a reduced fan-out areas at right and left sides of the display panel, thereby the display device has narrow bezels. The display deice of the present embodiment may also be bezel-less. In the display device of the present embodiment, the wiring of the gate control lines is simple, reducing the complexity of process and resulting in a good yield and a high reliability of the display device.
A fifth embodiment of the present application provides a driving device. As shown in
In the present embodiment, the gate output pins are connected to the corresponding gate control lines, and the source output pins are connected to the corresponding data lines. Optionally, the number of the gate output pins is the same as that of the gate control lines, and the number of the source output pins is the same as that of the data lines. The gate output pins may include gate output pins L1, L2, L3, . . . , Ln, the source output pins may include M1, M2, M3, . . . , Mn, and only the gate output pins L1, L2, L3 and the source output pins M1, M2, M3 are shown in
In the present embodiment, the gate output pins and the source output pins are provided alternatively, As shown in
In practical applications, optionally, one of the gate output pins is provided every multiple source output pins, which will not be shown.
In technical solutions of the display device provided by the present embodiment, the connection ends of the data lines are connected to the corresponding source output pins, the gate lines are connected to the corresponding gate control lines, the connection ends of the gate control lines are connected to the corresponding gate output pins, and all the connection ends of the gate control lines and the connection ends of the data lines are connected to a same side (i.e., the side of the driving circuit proximal to the display panel) of the driving circuit, avoiding the connection ends of the gate control lines and the connection ends of the data lines being connected to different sides of the driving circuit, resulting in reduced fan-out areas at right and left sides of the display panel, thereby the display device has narrow bezels.
It should be understood that, the above embodiments are merely exemplary embodiments for explaining principle of the present application, but the present application is not limited thereto. Various modifications and improvements may be made by those ordinary skilled in the art within the spirit and essence of the present application, these modifications and improvements fall into the protection scope of the present application.
Number | Date | Country | Kind |
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201610319544.3 | May 2016 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2017/072807 | 2/3/2017 | WO | 00 |