Abstract:
A touch substrate comprises a first substrate, a second substrate, a first conductive layer and a second conductive layer. When the second substrate is not subjected to a pressure, the second conductive layer is insulatively spaced apart from the first conductive layer; when the second substrate is subjected to a pressure equal to or greater than a predetermined value, the second substrate is deformed so that at least a part of the second conductive layer is contacted with the first conductive layer. A touch display panel and a display device which comprise the touch substrate are also provided.
Abstract:
A smart wearable device and a health monitoring method. The smart wearable device includes: an image acquisition unit configured to acquire a first image of food before a wearer takes the food and a second image of the food after the wearer takes the food; a calories analyzing unit configured to analyze the first image and the second image of the food to determine types of the food and an intake amount, and to determine an amount of intake calories based on the types of the food and the intake amount; and a calculation unit configured to generate a target exercise amount based on the amount of intake calories.
Abstract:
A liquid crystal phase shifter is disclosed. The liquid crystal phase shifter includes a liquid crystal cell, a partition plate, a first microstrip line, a second microstrip line and liquid crystal molecules. The liquid crystal cell includes a first substrate and a second substrate disposed opposite to each other; the partition plate is disposed between the first substrate and the second substrate; the first microstrip line is disposed on a surface of the partition plate away from the second substrate; the second microstrip line is disposed on a surface of the partition plate away from the first substrate; and the liquid crystal molecules are provided between the first substrate and the partition plate, and between the second substrate and the partition plate.
Abstract:
Embodiments of the present disclosure provide a liquid crystal composition and its manufacturing method, a display panel and a display device. The liquid crystal composition includes: at least three organic compounds having a general formula of in which R1 is selected from C1 to C12 alkyl or C2 to C12 alkenyl; R2 is selected from C1 to C12 alkyl, C2 to C12 alkenyl or CF3; are independently selected from j, k and m are independently selected from 0, 1, 2 and 3; 1 and n are independently selected from 1, 2 and 3; and Z is selected from a single bond, C1 to C12 alkyl, C2 to C12 alkenyl, C2 to C12 alkynyl, CF2O or COO.
Abstract:
An array substrate according to an embodiment of the present disclosure may include a base substrate, a gate electrode, a gate insulating layer and an active layer arranged on the base substrate in a laminated way. The array substrate may further include a passivation layer arranged on the active layer, a source electrode, a drain electrode, a first electrode and a second electrode arranged on the passivation layer and on a same layer. A first via hole may be arranged in the passivation layer, and the first via hole may include two sloped lateral faces arranged opposite to each other. The first electrode may at least partially cover one lateral face of the first via hole, the second electrode may at least partially cover the other lateral face of the first via hole. The second electrode may be electrically connected to a common electrode lead. A second via hole may be further arranged in the passivation layer. The source electrode and the drain electrode may be connected to the active layer through the second via hole. And the first electrode may be electrically connected to the source electrode or the drain electrode.
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.
Abstract:
A method for manufacturing an array substrate includes: forming a strip-shaped barrier wall(s) on a base substrate, wherein the width of each barrier wall is less than or equal to a distance between a first metal trace to be formed and a second metal trace to be formed; and forming a first metal trace at one side of each barrier wall located in a direction perpendicular to an extending direction of the barrier wall, and forming a second metal trace at an opposite side of the barrier wall located in the direction perpendicular to the extending direction of the barrier wall.
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 liquid crystal display panel, a liquid crystal display device and a control method thereof are disclosed. The liquid crystal display panel includes a first base substrate, a second base substrate, and a liquid crystal layer provided between the first base substrate and the second base substrate. It further includes: a first electrode and a second electrode, the first electrode and the second electrode being both provided on one side of one of the first base substrate and the second base substrate close to the liquid crystal layer; the first electrode and the second electrode being configured for generating an electric field; and a conductor, located between the first electrode and the second electrode and is configured for generating a magnetic field whose magnetic field direction is perpendicular to a plane of the first base substrate and a plane of the second base substrate.
Abstract:
The present disclosure relates to the technical field of intelligent wearable device, and in particular to a smart eyeshield, in an attempt to improve sleep qualities of sleeping persons. The smart eyeshield comprises: a sleep monitoring system for tracking and monitoring a sleep state of a user; and a gentle wake-up system for wakening the user in a gentle manner depending on a feedback provided by the sleep monitoring system.