Abstract:
A display panel and a display device are provided. The display panel includes a first substrate, a second substrate, and a pixel unit array. The pixel unit array includes multiple pixel units, the pixel unit includes three sub-pixels, the sub-pixel is a first color sub-pixel, a second color sub-pixel, a third color sub-pixel or a fourth color sub-pixel. In any two pixel units adjacent to each other, one of the sub-pixels in one of the two pixel units is different in color from one of the sub-pixels in the other one of the two pixel units, and the other two of the sub-pixels in the one of the two pixel units are the same in color as the other two of the sub-pixels in the other one of the two pixel units respectively.
Abstract:
An image displaying method and system. The method includes: obtaining an image to be displayed, and dividing equally the image to be displayed into a plurality of first sub-images along a first direction; obtaining position information of a view point relative to the flat display and parameter information of a first virtual section line segment of the flat display; calculating a compensation ratio along the first direction for each first sub-image of the image to be displayed, according to the position information of the view point relative to the flat display and the parameter information of the first virtual section line segment; and compensating each first sub-image of the image along the first direction, and displaying the compensated first sub-image on the flat display, so that visual angles at the view point with respect to the compensated first sub-images are the same.
Abstract:
An image displaying system includes: a display device, a detection device and an image compensating chip. The detection device obtains position information of a view point relative to the display device, and an angle of sight line; the image compensating chip divides equally the image to be displayed into a plurality of first sub-images along a first reference direction, calculates a compensation ratio along the first reference direction for each first sub-image, and compensates each first sub-image along the first reference direction; the first virtual section line segment has two endpoints located on the frame of the display device, is extended along the first reference direction, and passes through an intersection of the sight line and the display device; the display device displays the compensated image, so that the compensated first sub-images are viewed as having the same size along the first reference direction.
Abstract:
Embodiments of the invention provide a gate drive apparatus and a display apparatus. With the gate drive apparatus, a clock signal is used in place of a forward scan signal and/or a clock signal is used in place of a backward scan signal and/or a reset signal and a first initial trigger signal (or a second initial trigger signal) are used in place of a low level signal and/or the same signal is used as a first initial trigger signal and a second initial trigger signal to thereby reduce the number of transmission lines for signals driving the gate drive apparatus.
Abstract:
A display panel and a method for forming the same are provided. A display panel includes: a first substrate and a second substrate, which are set corresponding to each other; the first substrate includes multiple pixel regions arranged in a matrix form, and a first black matrix is disposed in intervals between the pixel regions; each of the pixel regions includes a first sub pixel region, a second sub pixel region, a third sub pixel region and a fourth sub pixel region; the first sub pixel region includes a first sub pixel unit, the second sub pixel region includes a second sub pixel unit, the third sub pixel region includes a third sub pixel unit; the fourth sub pixel region includes a fourth sub pixel unit and a second black matrix. Accordingly, the display panel may improve display performance.
Abstract:
A touch display panel and a method for driving the same are provided. The touch display panel includes a first substrate; a plurality of electrode units, a plurality of switches, a touch display circuit and a common lead disposed on the first substrate, wherein the common lead is adapted for transmitting a common signal, each electrode unit is connected with the touch display circuit through one of a plurality of first leads, each of the plurality of electrode units is connected with the common lead through one of a plurality of second leads, and each of the plurality of switches is disposed between one of the plurality of second leads and the common lead, so as to disconnect the common lead and the plurality of second leads during a touch sensing period, and connect the common lead and the plurality of second leads during a display period.
Abstract:
A liquid crystal display panel and a liquid crystal display device, where polarities of signals provided by data lines are inversed when half gate lines are scanned to comply with the driving manners of half column inversion, and gate lines on one side which are sequentially scanned line by line from top to bottom are scanned alternately with gate lines on the other side which are sequentially scanned line by line from bottom to top, thus the effect of the dot inversion is realized, thereby reducing the power consumption.
Abstract:
A pixel structure and manufacturing method therefor, an array structure, a display panel and a display device. And the pixel structure includes data lines; scan lines; pixel units formed by intersecting the data lines with the scan lines, where each pixel unit corresponds to one data line and one scan line; a TFT and a pixel electrode disposed in each of pixel units, where the pixel electrode includes slits, at least one of which includes at least one corner area at an end thereof; where the pixel electrode in a row is electrically connected to a TFT in a pixel unit, the pixel unit is disposed in the same row as and adjacently at one side of the pixel electrode, and at least one corner area of the pixel electrode extends toward the TFT electrically connected to the pixel electrode.
Abstract:
Functional component, forming method thereof and electronic device are provided. The functional component includes a packaging substrate and a connecting wire. The packaging substrate includes a through-hole wire-bonding area including a first insulating layer and a wire-bonding electrode sequentially formed on the substrate. The first insulating layer includes a first through hole, and the wire-bonding electrode covers the first through hole. In an area corresponding to the first through hole, the packaging substrate has wire-bonding bump electrodes on a side of the wire-bonding electrode away from the first insulating layer. The connecting wire includes a wire-bonding connection portion and a wire-bonding extension portion connected to the wire-bonding connection portion. The wire-bonding connection portion is fixedly connected to the wire-bonding electrode. The wire-bonding connection portion extends to cover at least a partial area of a side of at least one of the wire-bonding bump electrodes.
Abstract:
A display module includes: a heating circuit, a gating circuit and a plurality of heating lines. The heating circuit includes a first type of heating signal output terminal and a second type of heating signal output terminal, and the gating circuit includes a gating unit. The first type of heating signal output terminal is electrically connected to a first type of signal input terminal of the gating unit, and a first type of signal output terminal of the gating unit is electrically connected to a first terminal of a heating line; and/or the second type of heating signal output terminal is electrically connected to a second type of signal input terminal of the gating unit, and a second type of signal output terminal of the gating unit is electrically connected to a second terminal of the heating line.