Abstract:
The embodiments of the disclosure provide a display substrate, a manufacturing method for the same, and a display device. The display substrate comprises a base substrate and a plurality of electrically conductive layers insulated from one another on the base substrate, wherein each of at least two of the plurality of electrically conductive layers insulated from one another includes a ground wire, and each ground wire is grounded.
Abstract:
Provided in embodiments of the disclosure are a driving method for a display panel, and a display apparatus. A display frame includes a data refresh phase and a blanking time phase. The driving method for the display panel includes: in the data refresh phase, loading a clock signal including an active level and an inactive level to a gate driving circuit in a display panel to cause a gate line to load a gate-on signal, loading display data to a source driving circuit in the display panel to cause a data line to load a data voltage, and determining a current operating state of the display panel; and in the blanking time phase, loading a clock signal including an inactive level to the gate driving circuit in the display panel to cause the gate line to load a gate-off signal, and sending the current operating state of the display panel.
Abstract:
A display panel and a display device are provided. The display panel includes: a first substrate, a second substrate cell-aligned with the first substrate, a first electrode, a second electrode, the first electrode and the second electrode being used to provide an electric field, and a dimming layer between the first substrate and the second substrate, the dimming layer comprising a two-dimensional material deflected between a direction perpendicular to the first substrate and a direction parallel to the first substrate under the action of the electric field.
Abstract:
The present disclosure relates to the field of display technology, and provides an electronic paper, a manufacturing method thereof, and a handwriting electronic paper device. The electronic paper includes: a first electrode; a second transparent electrode arranged opposite to the first electrode and at a display side of the electronic paper; and an electronic ink layer arranged between the first electrode and the second transparent electrode. Microcapsules are distributed in the electronic ink layer, and each microcapsule is provided therein with charged magnetic particles which are capable of being used to display at least one color.
Abstract:
A display panel and a display device are provided. The display panel includes: a first substrate, a second substrate cell-aligned with the first substrate, a first electrode, a second electrode, the first electrode and the second electrode being used to provide an electric field, and a dimming layer between the first substrate and the second substrate, the dimming layer comprising a two-dimensional material deflected between a direction perpendicular to the first substrate and a direction parallel to the first substrate under the action of the electric field.
Abstract:
The present disclosure provides a display panel, its driving method, and a display device. The display panel includes a first substrate and a second substrate arranged opposite to each other to form a cell, a liquid crystal layer arranged between the first substrate and the second substrate, and a pixel electrode arranged on the second substrate. A sensing electrode to which an external voltage is to be applied is arranged at a region of the first substrate corresponding to the liquid crystal layer. At a display stage, an electric field is generated between the sensing electrode to which the external voltage is applied and the pixel electrode to which a data voltage is applied, so as to drive liquid crystal molecules in the liquid crystal layer to deflect. The sensing electrode is a black matrix and/or color filter made of a conductive material and arranged on the first substrate.
Abstract:
A display panel and a display device are provided. The display panel includes an array substrate and an opposite substrate arranged oppositely; a sealant disposed in non-display areas; and a peripheral wiring disposed in the non-display areas of the array substrate and/or the opposite substrate and including at least one electrostatic discharge (ESD) structure.
Abstract:
An array substrate and a method of manufacturing the same, and a display device are disclosed. The array substrate includes a base substrate; a pixel electrode, a thin film transistor, a gate line and a data line that are provided on the base substrate; and an electrostatic shielding layer provided on the base substrate. The electrostatic shielding layer is configured for electrostatic protection during production of the array substrate.
Abstract:
The present invention provides a manufacturing method of an array substrate, comprising steps of: forming a gate and a gate line on a substrate; forming a gate insulating layer on the gate and the gate line; forming a pixel electrode on the gate insulating layer; and forming a first connecting via in a portion of the gate insulating layer in a non-display region and corresponding to the gate line, wherein the first connecting via is configured to connect a scanning signal trace to the gate line.
Abstract:
The invention provides an array substrate, a method for manufacturing the array substrate, and a display panel, the array substrate includes a plurality of thin film transistors, and the method includes: S1. preparing a base substrate on which sources and drains of the thin film transistors are formed; S2. forming an insulation layer on the base substrate such that the insulation layer includes spacer regions and a plurality of strip-shaped electrode regions, and every two adjacent strip-shaped electrode regions are separated from each other by the spacer region; S3. forming a spacer layer on the spacer regions of the insulation layer; S4. forming a pattern including strip-shaped electrodes on the strip-shaped electrode regions of the insulation layer; S5. peeling off the spacer layer on the spacer region. The invention can prevent every two adjacent strip-shaped electrodes from interconnecting due to etching residues, so as to improve product performance.