The present application claims the priority of Chinese patent application CN201510255868.0, entitled “Display device” and filed on May 19, 2015, the entirety of which is incorporated herein by reference.
The present disclosure relates to the technical field of display, and in particular, to a display device.
TECHNICAL BACKGROUND
With the development of display technology, liquid crystal display devices have become the most common display devices.
In a liquid crystal display device, images are displayed through control of pixels by criss-cross gate lines and data lines on a substrate. Gate drive signal and source drive signal are sent out from a chip of a drive circuit of the liquid crystal display device, and are transmitted respectively to gate lines and data lines on the substrate by means of a chip on film (COF).
Specifically, as shown in
The objective of the present disclosure is to provide a display device, so as to solve the technical problem of unequal resistances of leads in a fan-out conducting wire, whereby effects on display uniformity of display panels can be avoided.
The embodiments of the present disclosure provide a display device. The display device comprises a display panel and a drive circuit disposed on the periphery of the display panel. The drive circuit comprises a plurality of output ends arranged side by side. The display panel is provided thereon with a plurality of input ends arranged side by side and corresponding to the output ends of the drive circuit. Each of the output ends of the drive circuit and each of the corresponding input ends of the display panel are provided therebetween with a same resistance. Or, a drive signal output from each of the output ends of the drive circuit is enhanced from middle to both sides accordingly.
Each of the output ends of the drive circuit and each of the input ends of the display panel are connected to each other with a fan-out conducting wire which includes a plurality of leads. The length of the plurality of leads increases gradually from middle to both sides of the fan-out conducting wire.
The plurality of leads has a same resistance.
Each of the plurality of leads is provided thereon with a through hole. The number of the through holes on the leads decreases gradually from middle to both sides of the fan-out conducting wire, so that the plurality of leads can have a same resistance.
The through holes have a same size.
Each of the plurality of leads is provided thereon with a resistor. The resistance of each of the resistors decreases gradually from middle to both sides of the fan-out conducting wire, so that the plurality of leads can have a same resistance.
A width of each of the plurality of leads increases gradually from middle to both sides of the fan-out conducting wire, so that the plurality of leads can have a same resistance.
The output ends of the drive circuit each are provided with a resistor connected serially thereto. The resistance of each of the resistors decreases gradually from middle to both sides of the output ends arranged side by side.
The display device further comprises a linear operational amplifier module disposed on a side of the drive circuit close to the display panel, for accessing the drive signal output by each of the output ends of the drive circuit. Degree of amplifying the drive signal output by each of the output ends by the linear operational amplifier module increases gradually from middle to both sides of the output ends arranged side by side.
The degree of amplifying the drive signal output by each of the output ends by the linear operational amplifier module increases linearly from middle to both sides of the output ends arranged side by side.
The present disclosure achieves the following beneficial effects. The present disclosure provides a display device which comprises a display panel and a drive circuit disposed on the periphery of the display panel. According to the display device, each of the output ends of the drive circuit and each of the corresponding input ends of the display panel are provided therebetween with a same resistance, or, the drive signal can be enhanced properly based on attenuation degree thereof after the drive signal passes through the fan-out conducting wire, whereby the display uniformity of the display panel can be improved.
Other features and advantages of the present disclosure will be further explained in the following description, and will partly become self-evident therefrom, or be understood through the implementation of the present disclosure. The objectives and advantages of the present disclosure will be achieved through the structures specifically pointed out m the description, claims, and the accompanying drawings.
For further illustrating the technical solutions provided in the embodiments of the present disclosure, a brief introduction will be given below to the accompanying drawings involved in the embodiments.
The present disclosure will be explained in detail below with reference to the embodiments and the accompanying drawings, so that one can fully understand how the present disclosure solves the technical problem and achieves the technical effects through the technical means, thereby implementing the same. It should be noted that as long as there is no structural conflict, any of the embodiments and any of the technical features thereof may be combined with one another, and the technical solutions obtained therefrom all fall within the scope of the present disclosure.
The present disclosure provides a display device which comprises a display panel, and a drive circuit disposed on the periphery of the display panel. The drive circuit, comprises a plurality of output ends arranged side by side, and the display panel is provided thereon with a plurality of input ends arranged side by side and corresponding to the output ends of the drive circuit. Each of the output ends of the drive circuit and each of the corresponding input ends of the display panel are provided therebetween with a same resistance.
It should be noted that, since the embodiment of the present disclose will not involve a gate drive signal output by a gate drive circuit or a source drive signal output by a source drive circuit, the gate drive circuit and the source drive circuit will not be differentiated from each other in description and will be generally referred to as drive circuit. Similarly, the gate drive signal output by the gate drive circuit or the source drive signal output by the source drive circuit will be generally referred to as drive signal.
As shown in
(where ρ is the resistivity of lead 1, l is the length of the lead 1, and S is the cross-sectional area of the lead 1), that the leads 1 on both sides of the fan-out conducting wire each have a resistance larger than the leads 1 in the middle of the fan-out conducting wire, which can result in serious attenuation and delay of the drive signal transmitted by the leads 1 on both sides of the fan-out conducting wire, thus leading to serious distortion of said drive signal transmitted by the leads 1 on both sides, affecting uniformity of said drive signal, and further affecting display uniformity of the display panel.
Therefore, in order to improve uniformity of the drive signal and display uniformity of the display panel, in the present disclosure, the resistance of each of the leads 1 is adjusted or compensated in advance, which can be achieved by the following methods.
It can be known from the above that the resistance of the lead 1 is determined by its cross-sectional area and length, and that in the existing technologies, the leads 1 in the fan-out conducting wire have a same cross-sectional area. However, as shown in
Specifically, provided that each of the through holes has a same size, for each of the leads 1 in the fan-out conducting wire, the number of the through holes decreases gradually from middle to both sides of the fan-out conducting wire. The arc of the through hole 2 can extend the length of the lead 1 and further increase the resistance of the lead 1. The through hole 2 can be provided on a part of the lead which is disposed on the display panel, or can be provided on a part of the lead which is disposed on a chip on film (COF), since the drive circuit and the display panel are connected to each other through the COF. Both methods can enable the leads 1 to have a same resistance, thus improving display uniformity.
Obviously, only the leads 1 other than the two leads 1 located on both sides of the fan-out conducting wire are provided thereon with an appropriate number of the through holes, so that the leads 1 other than said two leads on both sides and the leads on both sides can have a same resistance.
As shown in
In addition, the resistor 3, instead of being connected serially to each of the leads 1, can be integrated in advance in an integrated circuit (IC) provided with a driving circuit. Specifically, as shown in
It can be known from the formula of resistance
that the resistance is inversely proportional to the cross-sectional area of the lead 1. Therefore, if the height of the lead 1 cannot be increased, the present height of the lead 1 can be kept, while the width of the lead 1 can be increased to reduce the resistance of the lead 1. Specifically, as shown in
Obviously, the above methods all aim at improving the display uniformity of the display panel by changing or compensating the resistance of the leads 1.
As shown in
In order to improve the display uniformity of the display panel, the attenuation of the drive signal can also be compensated by enabling the drive signal output by each of the output ends of the drive circuit to be enhanced from middle to both ends of the fan-out conducting wire. The drive signal output should be amplified to such a degree that the attenuation of the drive signal caused by the leads having different lengths could be offset, thus enabling the drive signal actually received by the corresponding input ends of the display panel to be basically the same as that should be received theoretically.
Specifically, in embodiment 5 of the present disclosure, as shown in
Since the length of the leads 1 in the fan-out conducting wire increases gradually from middle to both ends, degree of amplifying the drive signal output by the output ends by the linear operational amplifier module 5 increases gradually from middle to both sides of the output ends of the drive circuit arranged side by side. Specifically, as shown in
In conclusion, the embodiments of the present disclosure provide a display device which comprises a display panel, and a drive circuit disposed on the periphery of the display panel. In the display device, each of the output ends of the drive circuit and each of the corresponding input ends of the display panel are provided therebetween with a same resistance, or, the drive signal can be enhanced properly based on the attenuation degree thereof after the drive signal passes through the fan-out conducting wire, whereby the display uniformity of the display panel can be improved.
The above embodiments are described only for better understanding, rather than restricting the present disclosure. Anyone skilled in the art can make amendments to the implementing forms or details without departing from the spirit and scope of the present disclosure. The scope o the present disclosure should still be subject to the scope defined in the claims.
Number | Date | Country | Kind |
---|---|---|---|
201510255868.0 | May 2015 | CN | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/CN2015/085376 | 7/29/2015 | WO | 00 |