Abstract:
The present disclosure provides a display panel, a method of driving the display panel and a display device. Each signal input sub-circuitry of the display panel includes at least two transistors. A same control signal is applied to control signal lines corresponding to a same signal input sub-circuitry, different control signals are applied to control signal lines corresponding to different signal input sub-circuitries, and time periods within which the different control signals are at active levels are staggered from each other. A sum of width-to-length ratios of channels of the at least two transistors is equal to a first predetermined value, and an overlapping area of the gate electrode of each of the at least two transistors relative to an active layer of the transistor is smaller than a second predetermined value in a direction perpendicular to a base substrate of the display panel.
Abstract:
The present disclosure provides a conductive agent and a module bonding method. In the method, a conductive agent is sprayed to a bonding region. The conductive agent comprising a liquid ultraviolet curable adhesive and conductive particles dispersed in the ultraviolet curable adhesive. A module layer is pre-pressed onto the bonding region with the conductive agent between the module layer and the bonding region. The conductive agent is cured by irradiating the conductive agent with ultraviolet rays and pressurizing the conductive agent, so that the module layer is electrically connected and bonded to the bonding region.
Abstract:
Provided are an image display method and a display apparatus, wherein the method comprises comparing the image within the sampling area with each of the at least one preset characteristic pattern, respectively (101); when the image within the sampling area matches any of the at least one preset characteristic pattern, obtaining a gray scale value for at least one monochromatic sub-pixel among multiple monochromatic sub-pixels corresponding to the sampling area in a value assignment manner corresponding to the preset characteristic pattern, and marking the at least one monochromatic sub-pixel in a state marking matrix as gray scale value being determined and unchangeable (102); otherwise, calculating gray scale values for multiple monochromatic sub-pixels corresponding to the sampling area according to the markings of the multiple monochromatic sub-pixels corresponding to the sampling area in the state marking matrix and the image within the sampling area, and marking the monochromatic sub-pixels in the state marking matrix as gray scale value being determined and changeable or being processed but gray scale value to be determined (103). The present disclosure can complete an image conversion flow integrated with particular pattern processing in one traversal without repetition or missing.
Abstract:
The present disclosure relates to a method and an apparatus for discriminating luminance backgrounds for images and a display apparatus thereof. The method comprises the steps of: receiving image information that is to be discriminated, the image information comprising gray scale values for respective sub-pixels in each pixel; forming the gray scale values for specific sub-pixels of pixels within the s±mth row and the t±nth column in the image information, having a pixel of the sth row, tth column as the center, into a digit group, and arranging the digit group in order, wherein s, m, t and n are natural numbers; if the gray scale values for N greater specific sub-pixels in the digit group are all greater than a given gray scale value, and a variance is less than or equal to a specified threshold, it is determined that the specific sub-pixels within the s±mth row and the t±nth column are a high-luminance background region; otherwise, it is determined that the specific sub-pixels within the s±mth row and the t±nth column are a non-high-luminance background region. By means of the method of the present disclosure, an image region can be discriminated as a high-luminance region or a non-high-luminance region.
Abstract:
An in-cell touch display panel includes a display area. The display area includes a plurality of touch zones arranged in an array, one or more touch scanning lines corresponding to a respective row of the touch zones, and touch reading lines that have a one-to-one correspondence with the touch zones. Each of the touch zones includes at least one touch module, each touch module includes a photosensitive unit and a touch reading unit, an output end of the photosensitive unit is connected to an input end of the touch reading unit, a control end of the touch reading unit is connected to a corresponding touch scanning line, and an output end of the touch reading unit is connected to a corresponding touch reading line.
Abstract:
Disclosed are a respirator and a head-mounted protection apparatus. The respirator includes a respirator body. A breathing passage is formed in the respirator body for airflow when a user breathes. The respirator further includes a filter layer switching device and at least two filter layers of different filtering properties, and the filter layer switching device is installed on the respirator body and is configured to switch filter layers below the breathing passage according to requirements. In use of the respirator, the user can transfer a filter layer of a required performance to a region below the breathing passage using the filter layer switching device based on his requirement for air filtration.
Abstract:
The present invention relates to a display method of a display panel, a display panel and a display device, and the display method of a display panel is used for enabling each row of N pixel units in the display panel to display an image having 2N+x-1 pixel points. The display method comprises steps of: acquiring an image, each row of which comprises 2N+x-1 pixel points corresponding to the N pixel units; and determining a display parameter of each sub-pixel according to the components, which have the same color as the sub-pixel, in the pixel points corresponding to the sub-pixel.
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:
The present disclosure provides a model establishing method based on a virtual algorithm, comprising: a) simulating a single subpixel; b) simulating a subpixel array of a single color; c) overlaying subpixel arrays of different colors; and d) deriving a virtual signal.
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 ten sub-pixels arranged in two rows and five columns, the ten sub-pixels of each sub-pixel array include six color sub-pixels and four compensation sub-pixels, the six color sub-pixels include two red sub-pixel, two green sub-pixel and two blue sub-pixel, the four compensation sub-pixels include two brightness compensation sub-pixels and two chromaticity compensation sub-pixels, and the sub-pixels with the same color are not adjacent to each other in a row direction and a column direction.