The present invention relates to the field of display technology, and in particular relates to a touch panel and a display device.
Because of having operability, visualizability and flexibility, touch panels have been applied to most human-computer interaction means such as a personal mobile communication device (e.g. a smart phone), an integrated information terminal (e.g. a tablet computer), a super notebook computer and the like. Touch panels can be classified into four main types, which are resistive touch panels, capacitive touch panels, infrared touch panels and surface acoustic wave (SAW) touch panels, according to the principle of touch control. A capacitive touch panel, among the four main types, has a multi-touch function, a fast response time, a long service life, a high transmittance, and an excellent user experience of use. Meanwhile as the gradual improvement of the technology, a yield rate of a capacitive touch panel has been significantly increased, and a price of a capacitive touch panel has been decreasing, making it a major technical means of touch interaction for middle and small sized information terminals at the moment.
In
To address the above problem existing in the existing touch panel, the present invention provides a touch panel with a high sensitivity, a simple wiring, and a low power consumption, and a display device including the touch panel.
As a technical solution to the technical problem of the present invention, there is provided a touch panel, comprising a substrate and a touch control layer provided on the substrate, the touch control layer comprising a plurality of touch control units, wherein each of the touch control units has a convex part and a concave part, wherein a shape of the convex part of any one of the touch control units matches with a shape of the concave part of a touch control unit adjacent thereto.
Optionally, the touch control layer further comprises an auxiliary touch control unit provided in a peripheral region of the touch control layer, and a shape of the auxiliary touch control unit matches with a shape of the touch control unit also provided in the peripheral region of the touch control layer, such that a shape of the touch control layer corresponds to a shape of a display region of the touch panel.
Optionally, the touch panel further comprises a plurality of signal lines, wherein one end of each signal line is connected to one of the touch control units, with the other end connected to a driving chip.
Further optionally, the signal lines and data lines of the touch panel are provided in one layer, and are formed of a same material.
Optionally, each of the touch control units may be further time-division multiplexed as a common electrode of the touch panel.
Optionally, a material of the touch control unit is ITO.
Optionally, shapes of the plurality of the touch control units include a first shape and a second shape, the first shape and the second shape are alternately provided in both a row direction and a column direction; wherein
optionally, a first side and a third side of the first shape are provided opposite to each other, and a second side and a fourth side of the first shape are provided opposite to each other; the first side and the third side of the first shape each has one convex part, and these two convex parts are provided symmetrically; the second side and the fourth side of the first shape each has one concave part, and these two concave parts are provided symmetrically; and
optionally, a first side and a third side of the second shape are provided opposite to each other, and a second side and a fourth side of the second shape are provided opposite to each other; the first side and the third side of the second shape each has one concave part, and these two concave parts are provided symmetrically; the second side and the fourth side of the second shape each has one convex part, and these two convex parts are provided symmetrically.
As a technical solution to the technical problem of the present invention, there is further provided a display device, which comprises the above touch panel.
The present invention has the following beneficial effects:
In the present invention, because a shape of the convex part of any one of the touch control units matches with a shape of the concave part of a touch control unit adjacent thereto, a touch of a human finger on the touch panel will definitely result in change in self capacitances of at least two touch control units; while in the prior art, when a human finger touches the touch panel, the minimum number of touch control units that undergo change in self capacitance is one, due to the touch control unit in the prior art being rectangular. Thus the sensitivity of the touch panel provided in the present invention is significantly improved compared to the prior art.
In order to provide a better understanding of the technical solutions of the present invention to those skilled in the art, the invention is described in further detail below in conjunction with the drawings and specific implementations.
As shown in
In the present embodiment, because the touch control unit 1A has a small size, and the shape of the convex part of any one of the touch control units 1A matches with the shape of the concave part of a touch control unit 1A adjacent thereto, when a human finger touches the touch panel, there must occur change in self capacitances of at least two touch control units 1A. While in the prior art, when a human finger touches the touch panel, due to the rectangular touch control unit 1 (as shown in
As a preferable structure of the present embodiment, as shown in
It can be seen from
In particular, the touch control layer including the touch control units 1A with the first shape 11 and the touch control units 1A with the second shape 12 may not only improve a sensitivity of the touch panel, but also reduce a number of signal lines, which is described below by way of example and comparison.
In case of two touch panels with a same size of display regions, assuming the size of each of display regions of the two touch panels is 80 mm×120 mm, if existing rectangular touch control units 1 are provided in the display region of one of the touch panels, and a size of each rectangular touch control unit 1 is 5 mm×5 mm (as shown in the left side of
In addition, as shown in
To summarize, the touch control layer including the touch control units 1A with the first shape 11 and the touch control units 1A with the second shape 12 may not only improve the sensitivity of the touch panel, but also reduce the number of the signal lines 3, so as to accordingly reduce space required for wiring in a fan-out region of the touch panel, thereby further narrowing down a bezel of a display device, as well as decreasing a power consumption of the touch panel.
Further, the touch control layer of the present embodiment further includes at least one auxiliary touch control unit 4 provided in a peripheral region of the touch control layer, and a shape of the auxiliary touch control unit 4 matches with a shape of the touch control unit 1A which is also provided in the peripheral region of the touch control layer, such that a shape of the touch control layer corresponds to a shape of a display region of the touch panel. It can be seen in
Preferably, the signal line 3 for connecting the touch control unit 1A to the driving chip 21 on a flexible circuit board 2 may be provided in a same layer in which data lines are provided, and the signal lines 3 and the data lines may be formed of a same material, to save production costs. Of course, a layer of signal lines may be separately prepared, and the touch control units 1A may be connected to the driving chips by the layer of signal lines.
Preferably, each of the touch control units 1A of the present embodiment may be further time-division multiplexed as (i.e., may also functions as) a common electrode of the touch panel. In other words, during a display stage, a common voltage signal is inputted to the touch control units 1A, and during a touch control stage, a touch control scan signal is inputted to the touch control units 1A, so as to save production costs without increasing a thickness of the touch panel. A material of the touch control unit 1A may be ITO.
To summarize, the touch panel provided by the present embodiment has a high sensitivity, a simple wiring, a narrow bezel and a low power consumption. It is to be noted that the shape of the touch control unit in the present embodiment is not limited to the first shape and the second shape described above, and may be other shapes that match to each other by convex and concave parts. For example, the rectangular convex part of the touch control unit 1A in
The present embodiment provides a display device, which includes the touch panel of Embodiment 1.
The display device may be any product or component having a display function, such as a liquid crystal display device (e.g. liquid crystal panel), electronic paper, a mobile phone, a table PC, a TV, a monitor, a notebook computer, a digital photo frame, a navigator and the like.
The display device of the present embodiment has a high sensitivity.
It can be understood that the foregoing implementations are merely exemplary implementations used for describing the principle of the present invention, but the present invention is not limited thereto. Those of ordinary skill in the art may make various variations and modifications without departing from the spirit and essence of the present invention, and these variations and modifications shall fall into the protection scope of the present invention.
Number | Date | Country | Kind |
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201610006921.8 | Jan 2016 | CN | national |