Abstract:
The disclosure provides a pixel arrangement structure, a display device and a display method. The pixel arrangement structure comprises at least one pixel unit arranged in parallel along the longitudinal direction, each pixel unit comprising first pixels and second pixels arranged alternately along the horizontal direction; each first pixel comprising a first sub-pixel and a second sub-pixel arranged in turn in a first row along the horizontal direction and a third sub-pixel in a second row along the horizontal direction; each second pixel comprising a third sub-pixel in the first row along the horizontal direction and a first sub-pixel and a second sub-pixel arranged in turn in the second row along the horizontal direction, sub-pixels located in the first row inclining towards a first direction, sub-pixels located in the second row inclining towards a second direction, wherein the first direction and the second direction are horizontally opposite.
Abstract:
The present invention relates to a display substrate and a method for manufacturing the same, and a display device, wherein the substrate comprises a sealed space formed therein, a quantum dot-polymer composite system is sealed in the sealed space, and the quantum dot-polymer composite system is configured to emit light with a second wavelength and light with a third wavelength when excited by light with a first wavelength.
Abstract:
The present disclosure relates to an image displaying method and a display apparatus wherein each of raw pixels is divided into a plurality of virtual pixels based on desired image resolution for displaying a frame to be displayed; virtual image information for each of the virtual pixels is determined based on weights of the respective sub-pixels in each of the virtual pixels, weights of the respective sub-pixels in the virtual pixels which are adjacent in rows and the received original image information; thus, each of the virtual pixels displays a color(s) which it lacks itself with the aid of the respective sub-pixels in the virtual pixels which are adjacent in rows, so that the same display function as that of each of the raw pixels may be implemented, and thus the image resolution of the frame to be displayed is increased.
Abstract:
The invention discloses a display substrate and a driving method thereof, and a display device. The display substrate includes a plurality of rows or columns of pixel units, wherein each row or column of pixel units include first pixel units and second pixel units which are arranged alternately, one first pixel unit and one second pixel unit are composed of three sub-pixels, and wherein the first pixel unit includes a first sub-pixel and a second sub-pixel, the second pixel unit includes the second sub-pixel and a third sub-pixel, and the first, second and third sub-pixels are arranged in turn. In the invention, three sub-pixels form two pixel units, thus the number of the sub-pixels needed to form a certain number of pixel units is decreased, and the manufacturing process is simplified and the defective rate of product is decreased.
Abstract:
The invention provides a display method and a display device. The display method in the invention is applicable to a display panel comprising multiple rows of sub-pixels, each row of sub-pixels are formed of sub-pixels of various colors which are alternately and circularly arranged, the sub-pixels in each row are arranged in the same order, and in column direction, sub-pixels of the same color are not adjacent, wherein the display method comprises steps of: S1, generating a primary image based on image information, the primary image is formed of virtual pixels arranged in a matrix, each virtual pixel is formed of sub-pixels of different colors and size of the virtual pixel is the same as that of the sub-pixel of the display panel; S2, calculating a display component of each sub-pixel by using primary components of sampling virtual sub-pixels of the sub-pixel.
Abstract:
The present invention provides a display device and a method for controlling a grating thereof, and belongs to the field of display technology, and can overcome the problem in which electrodes of the grating substrate require high fabricating accuracy and are difficult to fabricate due to the arrangement of a pixel array. The display device at least comprises a pixel array and a grating, an odd-numbered row of sub-pixels and a neighboring even-numbered row of sub-pixels are offset in a longitudinal direction by a preset length, a first substrate of the grating comprises a plurality of electrodes, each electrode comprises a plurality of segments which are continuous and are offset in a segment-wise manner by a predefined length from an end to the other end of the electrodes. Since the pixels and the grating are arranged in a corresponding manner, the electrodes of the grating substrate have an increased width, requirements for accuracy of the process for fabricating the electrodes are reduced, and the fabrication difficulty is reduced. By turning on and off the grating, a switch of the display device between 2D and 3D display can be realized. (FIG. 3)
Abstract:
The present invention provides a display panel and a display method thereof, and a display device. The display panel comprises a plurality of sub-pixel arrays, each sub-pixel array is composed of eight sub-pixels arranged in two rows and four columns. In each sub-pixel array, four sub-pixels in a same row include three color sub-pixels and one compensation sub-pixel, the three color sub-pixels include one red sub-pixel, one green sub-pixel and one blue sub-pixel, colors of two sub-pixels in a same column are different from each other. The display method comprises: causing a plurality of color sub-pixels with the same color near a sub-pixel position to display, so that the required color component is displayed at the sub-pixel position under an average effect of the color sub-pixels with the same color; and performing display compensation on a sub-pixel position by using a plurality of compensation sub-pixels near the sub-pixel position.
Abstract:
A pixel array, a display device and a display method are provided. The pixel array comprises: a plurality of sub-pixels arranged along a row direction and a column direction, the plurality of sub-pixels being defined by a plurality of data lines and a plurality of gate lines intersecting with each other, the data lines extending along the row direction, and the gate lines extending along the column direction, wherein, each row of sub-pixels include a plurality of repeating units arranged sequentially, the repeating unit including sub-pixels of three different colors; for each column of the sub-pixels, any two adjacent sub-pixels are of different colors; and each of the sub-pixels has a length L along the row direction and a height H along the column direction, the length being less than or equal to the height, and in any two adjacent sub-pixels in each column of the sub-pixels, a lower row sub-pixel shifts by a distance D with respect to a previous row sub-pixel along the row direction, where -L
Abstract:
The present invention provides a driving method of a pixel array, wherein the driving method includes: step 1, obtaining a theoretical brightness value of each sub-pixel for an image to be displayed; step 2, calculating an actual brightness value of each sub-pixel, the actual brightness value of a sub-pixel to be calculated is a sum of a part of the theoretical brightness value of the sub-pixel to be calculated and a part of the theoretical brightness values of a plurality of auxiliary sub-pixels corresponding to the sub-pixel to be calculated; and step 3, outputting a signal to each sub-pixel so that the brightness value of each sub-pixel reaches the actual brightness value thereof which is obtained in the step 2. The present invention further provides a driving module of a pixel array and a display device.
Abstract:
A smart watch is provided, which is used for being worn on a wrist part and includes a main body part, wherein the main body part includes a main display screen used for displaying an operation interface, an auxiliary display screen used for displaying time and a connection display part connected with the main display screen and the auxiliary display screen, the main display screen and the auxiliary display screen are both rigid, and the connection display part is flexible, such that after the smart watch is worn on the wrist part, an angle may be formed between the display surface of the main display screen and the display surface of the auxiliary display screen. The smart watch is convenient for a user to read time, which provides a new choice for users and meets the demand of market diversification.