The subject matter herein generally relates to a liquid crystal display device and a driving method thereof.
Liquid Crystal Display (LCD) devices are widely used in various electronic devices, for example, personal computers, mobile phones, tablets. Generally, a LCD device can include a first driving circuit, a second driving circuit, a plurality of scanning lines, a plurality of data lines and a plurality of pixel units. Adjacent scanning lines and data lines define a pixel unit. Each pixel unit can include four sub pixels, for example, RGBW. The first driving circuit can be configured to one of the plurality of data lines and the second driving circuit can be configured to periodically change polarity of sub pixels coupled to the one of the plurality of data lines.
Implementations of the present technology will now be described, by way of example only, with reference to the attached figures.
It will be appreciated that for simplicity and clarity of illustration, where appropriate, reference numerals have been repeated among the different figures to indicate corresponding or analogous elements. In addition, numerous specific details are set forth in order to provide a thorough understanding of the embodiments described herein. However, it will be understood by those of ordinary skill in the art that the embodiments described herein can be practiced without these specific details. In other instances, methods, procedures and components have not been described in detail so as not to obscure the related relevant feature being described. Also, the description is not to be considered as limiting the scope of the embodiments described herein. The drawings are not necessarily to scale and the proportions of certain parts may be exaggerated to better illustrate details and features of the present disclosure.
A definition that applies throughout this disclosure will now be presented.
The term “comprising,” when utilized, means “including, but not necessarily limited to”; it specifically indicates open-ended inclusion or membership in the so-described combination, group, series and the like.
The first driving circuit 10 can be electrically coupled to the plurality of first driving lines 311-31n to drive the plurality of first driving lines 311-31n to output different output voltages so as to drive the LCD device 100 to display images. The second driving circuit 12 can be electrically coupled to the plurality of second driving lines 321-32m to drive the plurality of first driving lines 321-32n to output different output voltages so as to drive the LCD device 100. In the illustrated embodiment, the first direction can be perpendicular to the second direction so as to cause the first driving lines 311-31n to be orthogonal to the second driving lines 321-32m. In the illustrated embodiment, the first direction is vertical while the second direction is horizontal. The first driving circuit 10 can be a source driving circuit while the second driving circuit 12 can be a gate driving circuit. In at least one embodiment, the first driving circuit 10 can be a gate driving circuit while the second driving circuit 12 can be a source driving circuit.
The plurality of TFTs 211-2mn is arranged at an intersection of the first driving lines 311-31n and the second driving lines 321-32m. Gates of the TFTs 211-2mn can be electrically coupled to the first driving lines 311-31n, grids of the TFTs 211-2mn can be electrically coupled to the second driving lines 32a-32m, and drains of the TFTs 211-2mn can be electrically coupled to the pixel electrodes 411-4mn. In the illustrated embodiment, the source of each of the TFTs 211-2mn can be coupled to a first driving line which is positioned at a left side of the TFT. For example, the source of the first TFT 211 is coupled to the first driving line which is positioned at the left side of the first TFT 211, the source of the nth TFT 21n is coupled to the first driving line which is positioned at the left side of the nth TFT 21n, and the source of the mnth TFT 2mn is coupled to the first driving line which is positioned at the left side of the mnth TFT 2mn.
As illustrated in
As illustrated in
The first driving lines 311-31n can be divided into a plurality of first driving groups 34 and a plurality of second driving groups 35. The plurality of first driving groups 34 and the plurality of second driving groups 35 can be alternatively arranged and can be driven by the first driving circuit 10 to remain different polarity, for example, the polarity of the first driving groups 34 is positive (+) while the polarity of the second driving groups 35 is negative (−); the polarity of the first driving groups 34 is negative (−) while the polarity of the second driving groups 35 is positive (+).
For example, in the illustrated embodiment, the first driving circuit 10 and the second driving circuit 12 can drive the first pixel units 42 to be positive (+), and drive the second pixel units 43 to be negative (−). When the first driving circuit 10 and the second driving circuit 12 change output voltages thereof, the polarity of the first and second driving groups 34 and 35 changes accordingly so as to cause the polarity of the first pixel units 42 to be negative (−) and the second pixel units to be positive (+). Thus, the polarity of the first and second pixel units 42, 43 remain different at any time. When the LCD device 100 displays an image in a single color, for example, blue, red, white or green, the polarity of pixel electrodes with same color in two adjacent pixel units along the second direction is different.
For example, in the illustrated embodiment, the first driving circuit 10 and the second driving circuit 12 can drive the first pixel groups 44 to be positive (+), and drive the second pixel groups 45 to be negative (−). When the first driving circuit 10 and the second driving circuit 12 change output voltages thereof, the polarity of the first and second driving groups 34 and 35 changes accordingly so as to cause the polarity of the first pixel groups 44 to be negative (−) and the second pixel groups 45 to be positive (+). Thus, the polarity of the first and second pixel groups 44, 45 remain different at all time. When the LCD device 400 displays an image in a single color, for example, blue, red, white or green, the polarity of pixel electrodes with same color in two adjacent pixel units along the second direction is different.
As illustrated in
The first driving circuit 50 can be electrically coupled to the plurality of first driving lines 331-33n to drive the LCD device 500. The second driving circuit 52 can be electrically coupled to the plurality of second driving lines 341-34m to drive the LCD device 500. In the illustrated embodiment, the first direction can be perpendicular to the second direction so as to cause the first driving lines 331-33n to be orthogonal to the second driving lines 341-34m. In the illustrated embodiment, the first direction is vertical while the second direction is horizontal. The first driving circuit 50 can be a source driving circuit while the second driving circuit 52 can be a gate driving circuit. In at least one embodiment, the first driving circuit 50 can be a gate driving circuit while the second driving circuit 52 can be a source driving circuit.
The plurality of TFTs 611-6mn is arranged at an intersection of the first driving lines 331-33n and the second driving lines 341-34m. Gates of the TFTs 611-6mn can be electrically coupled to the first driving lines 331-33n, grids of the TFTs 611-6mn can be electrically coupled to the second driving lines 34a-34m, and drains of the TFTs 611-6mn can be electrically coupled to the pixel electrodes 711-7mn. In the illustrated embodiment, the source of two adjacent TFTs arranged along the first direction can be coupled to first driving lines which are respectively positioned at different sides of the TFTs. For example, the source of the first TFT 611 is coupled to the first driving line which is positioned at the left side of the first TFT 611, the source of the second TFT 621 is coupled to the first driving line which is positioned at the right side of the second TFT 621.
As illustrated in
As illustrated in
The first driving lines 331-33n can be divided into a plurality of first driving groups 36 and a plurality of second driving groups 37. The plurality of first driving groups 36 and the plurality of second driving groups 37 can be alternatively arranged and can be driven by the first driving circuit 50 to remain different polarity, for example, the polarity of the first driving groups 36 is positive (+) while the polarity of the second driving groups 37 is negative (−); the polarity of the first driving groups 36 is negative (−) while the polarity of the second driving groups 37 is positive (+).
For example, in the illustrated embodiment, the first driving circuit 50 and the second driving circuit 52 can drive the first pixel units 72 to be positive (+), and drive the second pixel units 73 to be negative (−). When the first driving circuit 50 and the second driving circuit 52 change output voltages thereof, the polarity of the first and second driving groups 36 and 37 changes accordingly so as to cause the polarity of the first pixel units 72 to be negative (−) and the second pixel units 73 to be positive (+). Thus, the polarity of the first and second pixel units 72, 73 remain different at all time. When the LCD device 500 displays an image in a single color, for example, blue, red, white or green, the polarity of pixel electrodes with same color in two adjacent pixel units along the second direction is different.
For example, in the illustrated embodiment, the first driving circuit 50 and the second driving circuit 52 can drive the first pixel groups 74 to be positive (+), and drive the second pixel groups 75 to be negative (−). When the first driving circuit 50 and the second driving circuit 52 change output voltages thereof, the polarity of the first and second driving groups 74 and 75 changes accordingly so as to cause the polarity of the first pixel groups 74 to be negative (−) and the second pixel groups 75 to be positive (+). Thus, the polarity of the first and second pixel groups 74, 75 remain different at all time. When the LCD device 800 displays an image in a single color, for example, blue, red, white or green, the polarity of pixel electrodes with same color in two adjacent pixel units along the second direction is different
The embodiments shown and described above are only examples. Even though numerous characteristics and advantages of the present technology have been set forth in the foregoing description, together with details of the structure and function of the present disclosure, the disclosure is illustrative only, and changes may be made in the detail, including in matters of shape, size and arrangement of the parts within the principles of the present disclosure up to, and including, the full extent established by the broad general meaning of the terms used in the claims.
Number | Date | Country | Kind |
---|---|---|---|
201510701254.0 | Oct 2015 | CN | national |