Abstract:
A display panel includes a plurality of primary pixel units. Each primary pixel unit includes two primary pixels arranged horizontally. Each of the primary pixels comprises a plurality of subpixels arranged vertically and comprising different colors, and arrangements of the plurality of subpixels with different colors of the adjacent primary pixels being different. The result of the arrangement is neutralization of the adjacent primary pixels, and the neutral effect is “red with white tone.” So color shift caused by the overloaded data line is prevented, which effectively improves color shift occurring in the 3G1D LCD panel and enhances the display effect of the LCD panel.
Abstract:
The present invention provides a liquid crystal display panel and manufacturing method thereof. The manufacturing method comprises: coating a photoresist layer; exposing the photoresist layer through a first mask and a second mask such that the black matrices with different widths are formed, wherein, along a direction extended from a middle area to a two-side area of the liquid crystal display panel, transmittances of the second transparent regions of the second mask are successively increased such that the width of the black matrices are successively increased. By doing so, the present invention makes the brightness displayed by the liquid crystal display panel be uniform such that the two-side whitening occurred while displaying on the liquid crystal display panel can be reduced or eliminated.
Abstract:
The present invention provides an array substrate and a liquid crystal display panel. In the array substrate, as to thin film transistors connected with one scan line, a width-to-length ratio of the thin film transistor(s) corresponding to the middle of the scan line is larger than the width-to-length ratio of the thin film transistors corresponding to two ends of the scan line, and thereby when data lines input voltage signals, a voltage difference between a pixel electrode(s) connected with the thin film transistor(s) corresponding to the middle of the scan line and the pixel electrodes connected with the thin film transistors corresponding to the two ends of the scan line is smaller than a threshold value. By the above described manner, the present invention can improve the uniformity of image brightness.
Abstract:
The present invention provides an array substrate and a liquid crystal display panel. In the array substrate, with regard to storage capacitors corresponding to one scan line, a capacitance value of the storage capacitor(s) corresponding to the middle of the scan line is smaller than the capacitance value of each of the storage capacitors corresponding to two ends of the scan line, and thereby when data lines input voltage signals, a voltage difference between a pixel electrode(s) of the storage capacitor(s) corresponding to the middle of the scan line and the pixel electrodes of the storage capacitors corresponding to the two ends of the scan line is smaller than a threshold value. By the above described manner, the present invention can improve the uniformity of image brightness.
Abstract:
A displaying method of an LCD panel includes: dividing pixel units of the LCD panel into groups on row basis; realizing an allocation condition of colors of the sub-pixel units included in each row of the pixel units in each group, and specifying a number n of consecutive rows of pixel units having the same allocation condition of colors; defining n rows of the pixel units as a display unit and defining k display units, and sequentially inverting the display units when k is an even number to make the allocation conditions of colors are identical to the ones when k is an odd number; and presetting activation orders, and driving the pixel units in each group for charging, wherein each activation order corresponds to a charging timing of a sub-pixel for displaying a frame. Further with a driving device of an LCD panel and an LCD device, the problems of horizontal bright/dark lines of a frame of mixed colors occurring in the prior art can be solved.
Abstract:
A display panel includes a plurality of primary pixel units. Each primary pixel unit includes two primary pixels arranged horizontally. Each of the primary pixels comprises a plurality of subpixels arranged vertically and comprising different colors, and arrangements of the plurality of subpixels with different colors of the adjacent primary pixels being different. The result of the arrangement is neutralization of the adjacent primary pixels, and the neutral effect is “red with white tone.” So color shift caused by the overloaded data line is prevented, which effectively improves color shift occurring in the 3G1D LCD panel and enhances the display effect of the LCD panel.
Abstract:
A liquid crystal panel and an array substrate are disclosed. The array substrate includes a plurality of pixel cells. Pixel electrodes of each of the pixel cells connect to at least one scanning line and two data lines correspondingly. The two data lines are parallel and spaced apart from each other, and each of the pixel cells is arranged symmetrically along an axis parallel to the two data lines. In this way, the ports corresponding to the intersection of the scanning lines and the adjacent data lines are at the same height to ensure that the pixel cells may be precisely engaged with each other so as to enhance the flexibility of the pixel arrangement.
Abstract:
The present invention provides a pixel structure and a liquid crystal panel having the pixel structure. The pixel structure includes a plurality of sub pixel units, a plurality of data lines respectively supplying data signals to the sub pixel units, and a black matrix (8) arranged to correspond to the data lines and the sub pixel units. The plurality of sub pixel units is arranged in multiple columns of which two adjacent columns of the sub pixel units are sequentially grouped and defined as a sub-pixel-unit-column pair (20). Each of the sub-pixel-unit-column pairs (20) shows mirror symmetry. The data lines are respectively arranged in the sub-pixel-unit-column pairs (20). The black matrix (8) includes first portions (82) located above the data lines, second portions (84) each located between two adjacent ones of the first portions (82), and third portions (86) respectively and perpendicularly connected to opposite ends of the first portions (82) and the second portions (84). The first portions (82) have a width that is greater than the width of the second portions (84).
Abstract:
A liquid crystal panel in the technical field of display is proposed. The liquid crystal panel comprises a liquid crystal layer, and an array substrate and a color filter substrate respectively disposed on both sides of the liquid crystal layer. A gate line is arranged at an end of each pixel unit in a first direction of the array substrate. Two adjacent pixel units in the first direction are configured such that their gate lines are adjacent to each other or away from each other in opposite directions. A corresponding liquid crystal device is further proposed.
Abstract:
An array substrate comprising a plurality of sub-pixel unit pairs and a display device are provided. Each sub-pixel unit pair comprises two adjacent sub-pixel units located in a same row. Two sub-pixel units in a same sub-pixel unit pair are mirror-symmetrical with respect to each other in structure, and a first common electrode forming an opaque region is arranged between said two sub-pixel units.