Abstract:
The invention relates to the display technology field, and particularly to a wire grid polarizer, a manufacturing method thereof, a display panel and a display device. The wire grid polarizer comprises a substrate, in which wire grid structures are arranged at intervals in an array, to allow light to penetrate from the grid pitches thereof, with the other area except the wire grid structures of the substrate being a continuous opaque area. Due to the wire grid polarizer being provided with the wire grid structures arranged at intervals in a array, local light transmitting areas can be formed, and light emergence can be controlled more flexibly. A display panel using the wire grid polarizer can effectively lower the light absorption rate, also avoid peripheral light leakage in a non-subpixel area, and prevent the light leakage of the pixels themselves; correspondingly, a display device using the display panel can improve the light utilization rate, and achieve a good display effect.
Abstract:
The present disclosure provides a securing method and securing apparatus for an application, as well as an electronic device. The method comprises the steps of: after receiving a touch-sensitive instruction triggered by a user for opening a first application, displaying a first display frame for prompting the user to input a fingerprint key in an electronic device interface; receiving the fingerprint key input through the first display frame by the user; comparing the received fingerprint key with a preset encryption fingerprint key to obtain a matching result, the encryption fingerprint key being a key preset by the user for protecting the first application; and determining whether or not to open the first application according to the matching result. The method is capable of setting different encryption fingerprint keys for individual applications of the electronic device, so as to better protect the user information and improve user experiences.
Abstract:
A watch including: a rear cover; a dial fixedly connected with the rear cover, the dial and the rear cover defining a first cavity; a transparent touch screen located on a side of the dial facing away from the rear cover and fixedly connected with the dial, the transparent touch screen and the dial defining a second cavity; at least one pointer located in the second cavity and being rotatable relative to the dial; and a driving system located in the first cavity and configured to drive the at least one pointer to rotate and the transparent touch screen to operate.
Abstract:
An electromagnetic touch three-dimensional grating comprising: an upper substrate and a lower substrate opposite to each other; a plurality of first strip electrodes located on a side of the lower substrate facing the upper substrate; and a plurality of second strip electrodes located on a side of the upper substrate facing the lower substrate and intersected with the first strip electrodes; wherein, during a touching period, the plurality of first strip electrodes are used as first electromagnetic touch electrodes, and the plurality of second strip electrodes are used as second electromagnetic touch electrodes; and during a three-dimensional displaying period, the plurality of first strip electrodes are used as first three-dimensional driving electrodes, and the second strip electrodes are used as a surface electrode, or, the plurality of second strip electrodes are used as second three-dimensional driving electrodes, and the first strip electrodes are used as a surface electrode.
Abstract:
A liquid crystal display device includes a liquid crystal panel, a polaroid for polarizing light positioned on a light incident side of the liquid crystal panel, and a polarization analyzer positioned on a light emission side of the liquid crystal panel. The polarization analyzer includes a transparent plate. The transparent plate being arranged at a set angle with a light emission surface of the liquid crystal panel, such that the transparent plate analyzes polarization of light emitted from the light emission surface of the liquid crystal panel. Because the polaroid is used only on the light incident side of the liquid crystal panel, while the transparent plate is used instead of a polaroid on the light emission side of the liquid crystal panel,a reduction in the material cost of the liquid crystal display device can be achieved.
Abstract:
A display device and an adjustment method thereof are provided. The display device includes a display panel, a base configured to support the display panel, a sensor fixedly arranged on a bezel of the display panel, a controller, and an execution member cooperating with the base. The controller is electrically connected to the sensor and the execution member. The sensor is configured to collect user state data in real time. The controller is configured to acquire the user state data collected by the sensor, analyze the user state data acquired within a predetermined time period, determine a current state of a user, generate a control instruction in accordance with the current state of the user, and send the control instruction to the execution member. The execution member is configured to drive the base to move in accordance with the control instruction.
Abstract:
An electromagnetic touch three-dimensional grating comprising: an upper substrate and a lower substrate opposite to each other; a plurality of first strip electrodes located on a side of the lower substrate facing the upper substrate; and a plurality of second strip electrodes located on a side of the upper substrate facing the lower substrate and intersected with the first strip electrodes; wherein, during a touching period, the plurality of first strip electrodes are used as first electromagnetic touch electrodes, and the plurality of second strip electrodes are used as second electromagnetic touch electrodes; and during a three-dimensional displaying period, the plurality of first strip electrodes are used as first three-dimensional driving electrodes, and the second strip electrodes are used as a surface electrode, or, the plurality of second strip electrodes are used as second three-dimensional driving electrodes, and the first strip electrodes are used as a surface electrode.
Abstract:
The embodiments of the present invention provide a substrate and a manufacturing method thereof, as well as a display device. The substrate comprises: a base substrate, a plurality of gate lines arranged in parallel, a first insulating layer that covers the gate lines, a plurality of data lines located on the first insulating layer and perpendicular to the gate lines, a second insulating layer that covers the data lines, and pixel electrodes of sub-pixel areas enclosed by the data lines and the gate lines; polarizing films that cover the pixel electrodes; and first auxiliary gate lines arranged on the second insulating layer and parallel to the gate lines, at least two portions on each of the first auxiliary gate lines being electrically connected with at least two corresponding portions on the gate line through via holes that penetrate the first insulating layer and the second insulating layer, the first auxiliary gate lines and the polarizing films are formed by performing a same patterning process to a same layer of transparent conductive material. The embodiments of the present invention can reduce signal delay in a display device, and can be used for manufacture of a display.
Abstract:
A liquid crystal display device includes a liquid crystal panel, a polaroid for polarizing light positioned on a light incident side of the liquid crystal panel, and a polarization analyzer positioned on a light emission side of the liquid crystal panel. The polarization analyzer includes a transparent plate. The transparent plate being arranged at a set angle with a light emission surface of the liquid crystal panel, such that the transparent plate analyzes polarization of light emitted from the light emission surface of the liquid crystal panel. Because the polaroid is used only on the light incident side of the liquid crystal panel, while the transparent plate is used instead of a polaroid on the light emission side of the liquid crystal panel, a reduction in the material cost of the liquid crystal display device can be achieved.
Abstract:
The embodiments of the present invention provide a substrate and a manufacturing method thereof, as well as a display device. The substrate comprises: a base substrate, a plurality of gate lines arranged in parallel, a first insulating layer that covers the gate lines, a plurality of data lines located on the first insulating layer and perpendicular to the gate lines, a second insulating layer that covers the data lines, and pixel electrodes of sub-pixel areas enclosed by the data lines and the gate lines; polarizing films that cover the pixel electrodes; and first auxiliary gate lines arranged on the second insulating layer and parallel to the gate lines, at least two portions on each of the first auxiliary gate lines being electrically connected with at least two corresponding portions on the gate line through via holes that penetrate the first insulating layer and the second insulating layer, the first auxiliary gate lines and the polarizing films are formed by performing a same patterning process to a same layer of transparent conductive material. The embodiments of the present invention can reduce signal delay in a display device, and can be used for manufacture of a display.