The present invention relates to the field of display, and in particular to a circuit and a method for common voltage feedback compensation and liquid crystal display (LCD) device.
In the LCD panel, a certain degree of leakage exists in the thin film transistor (TFT) and a capacitive effect exists between the TFTs. Thus, the voltages between adjacent data lines are affected by the capacitance, which may affect each other, thereby forming crosstalk phenomenon. The crosstalk generally requires to be improved by compensating the common voltage VCOM to adjust the display effect of the LCD panel.
The compensation of the common voltage VCOM on the common electrode is a technology commonly used by the existing display panel driving.
However, due to coupling of the loading of the panel memory and other signals in the panel, the final result is shown in
The object of the present invention is to provide a circuit and a method for common voltage feedback compensation and an LCD device, to improve the H-crosstalk.
To achieve the above object, the present invention provides a circuit for common voltage feedback compensation, comprising: a timing controller and a power management circuit, the timing controller and the power management circuit being electrically connected; the timing controller providing a corresponding preset feedback compensation value to the power management circuit under different images; the power management circuit comprising a common voltage compensation circuit and an adder, and the adder integrating the feedback compensation value and a feedback common voltage returned from a feedback point in a display panel through addition obtain an integration result, the common voltage compensation circuit obtaining a common voltage compensation signal based on the integration result and providing the common voltage compensation signal to the display panel.
Wherein, the feedback compensation value is pre-stored in a flash memory.
Wherein, the timing controller provides, only under a crosstalk image, the corresponding feedback compensation value to the power management circuit for the crosstalk image.
Wherein, the timing controller provides a GND signal as the feedback compensation value to the power management circuit under non-crosstalk images.
Wherein, the adder comprises a first input end, a second input end, and an output end, the first input end inputs the feedback compensation value, the second input end inputs the feedback common voltage, and the output end outputs the addition integration result of the feedback compensation value and the feedback common voltage.
Wherein, the common voltage compensation circuit comprises:
a capacitor having one end connected to the output end of the adder and the other end connected to one end of a first resistor;
the first resistor having the other end connected to an inverting input terminal of an operational amplifier;
a second resistor having one end connected to the inverting input terminal of the operational amplifier and the other end connected to an output terminal of the operational amplifier;
the operational amplifier having a non-inverting input terminal inputting a reference common voltage, and the output terminal outputting a common voltage compensation signal.
The present invention also provides a liquid crystal display device comprising the circuit for common voltage feedback compensation according to any of the above.
The invention also provides a method for common voltage feedback compensation, comprising:
a timing controller providing a corresponding preset feedback compensation value to a power management circuit under different images;
the power management circuit comprising a common voltage compensation circuit and an adder, and the adder integrating the feedback compensation value and a feedback common voltage returned from a feedback point in a display panel through addition obtain an integration result, the common voltage compensation circuit obtaining a common voltage compensation signal based on the integration result and providing the common voltage compensation signal to the display panel.
Wherein, the timing controller provides, only under a crosstalk image, the corresponding feedback compensation value to the power management circuit for the crosstalk image.
Wherein, the timing controller provides a GND signal as the feedback compensation value to the power management circuit under non-crosstalk images.
In summary, the common voltage feedback compensation circuit, method and liquid crystal display device of the invention generate the feedback compensation value required for the common voltage feedback and provides to the power management circuit under different images through the timing controller. As such, the present invention can stabilize the feedback point voltage of the feedback common voltage or close to stability, improve H-crosstalk, and can effectively compensate the common voltage to achieve the best display effect.
To make the technical solution of the embodiments according to the present invention, a brief description of the drawings that are necessary for the illustration of the embodiments will be given as follows. Apparently, the drawings described below show only example embodiments of the present invention and for those having ordinary skills in the art, other drawings may be easily obtained from these drawings without paying any creative effort. In the drawings:
To further explain the technical means and effect of the present invention, the following refers to embodiments and drawings for detailed description.
Refer to
The timing controller 10 is configured to provide a corresponding preset feedback compensation value FB_compensation to the power management circuit 20 under different images. The power management circuit 20 comprises a common voltage compensation circuit 21 and an adder 22. The first input end of the adder 22 inputs the feedback compensation value FB_compensation, the second input end inputs the feedback common voltage VCOM_FB, the output end outputs an addition integration result. The feedback compensation value FB_compensation and the feedback common voltage VCOM_FB returned from the feedback point in the display panel 30 are integrated by addition, and the integration result of the feedback common voltage VCOM_FB and the feedback compensation value FB_compensation, instead of the feedback common voltage VCOM_FB, is inputted to the common voltage compensation circuit 21. The common voltage compensation circuit 21 obtains the common voltage compensation signal VCOM_OUT according to the integration result of the feedback compensation value FB_compensation and the feedback common voltage VCOM_FB, and the common voltage compensation signal VCOM_OUT is supplied to the display panel 30. The common voltage feedback compensation circuit of the present invention generate the feedback compensation value FB_compensation required for the common voltage feedback and provides to the power management circuit 20 under different images through the timing controller 10. As such, the present invention can stabilize the feedback point voltage of the feedback common voltage in the display panel 30 or close to stability and improve H-crosstalk.
Refer to
In the present invention, the timing controller generates the feedback compensation value FB_compensation required for the common voltage VCOM feedback under different images and provides to the power management circuit, and finally stabilizes the voltage at the feedback point of the feedback common voltage VCOM_FB in the display panel or close to stability, improving the H-crosstalk.
Under different images, the timing controller outputs the corresponding feedback compensation value FB_compensation. The feedback compensation value FB_compensation is obtained by inference and pre-stored in a flash memory under the condition of not introducing the feedback compensation value FB_compensation into the common voltage compensation circuit, according to the actual measured value of the feedback common voltage VCOM_FB compared with the ideal result to be realized; that is, in the absence of the feedback compensation value, as in the prior art, the common voltage compensation circuit, only based on the feedback common voltage returned from the feedback point in the display panel, obtains the common voltage compensation signal and the common voltage compensation signal is provided to the display panel. Then, the required feedback compensation value FB_compensation is inferred in advance according to the actual measured value, and stored and then used in the present invention.
In a preferred embodiment, the timing controller can provide, only under a crosstalk image, a corresponding feedback compensation value to the power management circuit for the crosstalk image. The timing controller can have the corresponding feedback compensation value FB_compensation outputted when detecting the crosstalk image, and at other times, the GND signal is used as the feedback compensation value FB_compensation, and the adder integrates the feedback common voltage VCOM_FB of the feedback point and the GND signal. That is, the present invention is simplified to be possible only for the crosstalk images. When the timing controller detects the crosstalk image, the timing controller directly transmits the compensation value to the power management circuit, or records the compensation value in the power management circuit. The timing controller can inform the power management circuit to make the compensation action, which can also achieve the best display effect. For the non-crosstalk images, the compensation used in prior art can be applied, and the feedback compensation value FB_compensation is not needed.
The present invention also provides a corresponding liquid crystal display device comprising the above-described circuit for common voltage feedback compensation.
The invention also provides a method for common voltage feedback compensation, comprising:
a timing controller providing a corresponding preset feedback compensation value to a power management circuit under different images;
the power management circuit comprising a common voltage compensation circuit and an adder, and the adder integrating the feedback compensation value and a feedback common voltage returned from a feedback point in a display panel through addition obtain an integration result, the common voltage compensation circuit obtaining a common voltage compensation signal based on the integration result and providing the common voltage compensation signal to the display panel.
The feedback compensation value can be obtained in advance by the following process: without the feedback compensation value, the common voltage compensation circuit obtains the common voltage compensation signal only according to the feedback common voltage drawn back from the feedback point in the display panel and provides a common voltage compensation signal to the display panel, the required feedback compensation value in inferred based on the actual measured value of the feedback common voltage.
The timing controller provides, only under a crosstalk image, the corresponding feedback compensation value to the power management circuit for the crosstalk image.
In summary, the common voltage feedback compensation circuit, method and liquid crystal display device of the invention generate the feedback compensation value required for the common voltage feedback and provides to the power management circuit under different images through the timing controller. As such, the present invention can stabilize the feedback point voltage of the feedback common voltage or close to stability, improve H-crosstalk, and can effectively compensate the common voltage to achieve the best display effect.
It should be noted that in the present disclosure the terms, such as, first, second are only for distinguishing an entity or operation from another entity or operation, and does not imply any specific relation or order between the entities or operations. Also, the terms “comprises”, “include”, and other similar variations, do not exclude the inclusion of other non-listed elements. Without further restrictions, the expression “comprises a . . . ” does not exclude other identical elements from presence besides the listed elements.
Embodiments of the present invention have been described, but not intending to impose any unduly constraint to the appended claims. Any modification of equivalent structure or equivalent process made according to the disclosure and drawings of the present invention, or any application thereof, directly or indirectly, to other related fields of technique, is considered encompassed in the scope of protection defined by the claims of the present invention.
Number | Date | Country | Kind |
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201810785448.7 | Jul 2018 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2018/108646 | 9/29/2018 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2020/015198 | 1/23/2020 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
5774099 | Iwasaki | Jun 1998 | A |
5818402 | Park | Oct 1998 | A |
7542021 | Kim | Jun 2009 | B2 |
8054274 | Chen | Nov 2011 | B2 |
8299995 | Jeong | Oct 2012 | B2 |
20020180721 | Kimura | Dec 2002 | A1 |
20040169627 | Hong | Sep 2004 | A1 |
20060145995 | Kim | Jul 2006 | A1 |
20070146260 | Kang | Jun 2007 | A1 |
20100110058 | Moh | May 2010 | A1 |
20110102401 | Feng | May 2011 | A1 |
20130314393 | Min | Nov 2013 | A1 |
20150185744 | Lee | Jul 2015 | A1 |
20160180781 | Kim | Jun 2016 | A1 |
20180286336 | Wang | Oct 2018 | A1 |
Number | Date | Country |
---|---|---|
102842280 | Dec 2012 | CN |
104751809 | Jul 2015 | CN |
105469767 | Apr 2016 | CN |
105551414 | May 2016 | CN |
2005234496 | Sep 2005 | JP |
20070094376 | Sep 2007 | KR |
Number | Date | Country | |
---|---|---|---|
20210118383 A1 | Apr 2021 | US |