Abstract:
A array substrate is disclosed. The array substrate includes: a substrate (10); and a first gate metal layer (111), a first gate insulating layer (121), a semiconductor layer (13) and a source-drain electrode layer (14) disposed in this order on the substrate from bottom to top. The array substrate (10) further includes a second gate insulating layer (122) disposed on the source-drain electrode layer (14); and a second gate metal layer (112) disposed on the second gate insulating layer (122). A method of manufacturing an array substrate is also disclosed.
Abstract:
Embodiments of the present invention disclose a thin film transistor array substrate, a method of manufacturing the same, and display device. A method of manufacturing a thin film transistor array substrate, comprises: forming a resin layer on a substrate formed with a thin film transistor array, patterning the resin layer by using a mask process to form a spacer and a contact hole filling layer, the contact hole filing layer is used for filling contact holes on the thin film transistor array substrate; forming an alignment film on the substrate patterning with the spacer and the contact hole filing layer.
Abstract:
The present application discloses a display panel and a method of manufacturing a display panel. The display panel comprises a substrate and a signal line arranged on the substrate, wherein the substrate comprises at least one display area, each display area comprises a plurality of pixel areas and a spacing area located between any two adjacent pixel areas of the plurality of pixel areas, the signal line is located within the spacing area, wherein the display panel further comprises an organic film layer, the organic film layer is arranged on a side of the signal line away from the substrate, and an orthographic projection of the organic film layer on the substrate covers an orthographic projection of the signal line on the substrate.
Abstract:
A liquid crystal display panel includes an array substrate and an opposite substrate that are disposed opposite to each other; the liquid crystal display panel has a display region and at least one non-display region disposed beside the display region. The array substrate is of a multi-layer structure and includes a pixel electrode layer and a plurality of protrusions disposed in the at least one non-display region, and the opposite substrate includes a common electrode layer. A protrusion has a structure including at least one film, and a film of the at least one film is located in a layer included in the array substrate.
Abstract:
The present application relates to a shelf interaction method and a shelf. The shelf is provided with at least one image capturing device. The method includes: capturing an image of the shelf through the at least one image capturing device; in response to detecting that a first position on the shelf is changed from presence of a first item of goods to absence of the first item of goods according to the image, identifying a first category of the taken-away first item of goods; in response to that a second goods category associated with the first position is the same as or different from the first category of the taken-away first item of goods, sending first prompt information to indicate that the first item of goods is taken away.
Abstract:
A liquid crystal display panel includes a first substrate and a second substrate that are disposed opposite to each other; the liquid crystal display panel has a display region and at least one non-display region disposed beside the display region. One of the first substrate and the second substrate includes a plurality of protrusions disposed in the at least one non-display region, and the other of the first substrate and the second substrate includes a plurality of grooves disposed in the at least one non-display region, each protrusion of the plurality of protrusions is corresponding to one groove of the plurality of grooves, and the protrusion is matched with the corresponding groove.
Abstract:
Provided are an array substrate and a display panel. The array substrate includes: gate lines and data lines on a substrate, the gate lines extending in a first direction, the data lines extending in a second direction, and the gate lines and the data lines crossing over each other to define pixel regions arranged in a matrix; pixel electrodes respectively in the plurality of pixel regions and on a side of the gate lines away from the substrate; common electrode lines at least partially surrounding the plurality of pixel regions; and a shielding electrode on a side of the gate lines away from the substrate and electrically connected to the common electrode lines, an orthographic projection of the shielding electrode on the substrate covering an orthographic projection of a portion, between the pixel electrodes adjacent in the second direction, of at least one of the gate lines on the substrate.
Abstract:
A touch display substrate including: a base substrate having a plurality of pixel regions arranged in the form of an array; a common electrode layer on the base substrate, divided into a plurality of self-capacitive electrodes independent from each other, an orthogonal projection of each of the self-capacitive electrodes on the base substrate covering more than one of the pixel regions; a plurality of touch data lines, arranged in a different layer from the self-capacitive electrodes and each connected with a corresponding one of the self-capacitive electrodes, orthogonal projections of the touch data lines on the base substrate being located within gaps between the plurality of pixel regions; a touch detection chip, connected with each of the self-capacitive electrodes through a corresponding one of the touch data lines, and configured to load a common electrode signal to each of the self-capacitive electrodes in a display period through the corresponding touch data line, and to determine a touch position in a touch period by detecting a change in a capacitance of each of the self-capacitive electrodes through the corresponding touch data line.
Abstract:
A shift register unit, a gate drive circuit, a display device and a driving method are disclosed. A shift register unit includes an input circuit, a first node reset circuit, an output circuit and a touch noise reduction circuit. The input circuit is configured to control a level of a first node in response to an input signal; the first node reset circuit is configured to reset the first node in response to a reset signal; the output circuit is configured to output a driving signal to an output terminal under control of the level of the first node; and the touch noise reduction circuit is configured to reset the first node in response to a touch start signal.
Abstract:
An array substrate including a plurality of terminals, a first conductive layer and a second conductive layer, wherein the first conductive layer and the second conductive layer include an insulating layer therebetween, wherein a plurality of first electrode plates and a plurality of second electrode plates are formed in the first conductive layer and the second conductive layer, respectively, the first electrode plates and the second electrode plates are opposite to each other to constitute a capacitor structure, the terminals are provided in the same layer as the first conductive layer or the second conductive layer, or the terminals are provided in the same layer as a third conductive layer between the first conductive layer and the second conductive layer. A method of manufacturing an array substrate and a display device is provided.