Abstract:
The present invention provides a touch-screen remote controller and a remote control method thereof, relates to the field of remote control technology, and can solve the problem of limited functions of the existing touch-screen remote controller. The touch-screen remote controller of the present invention comprises a microprocessor module, a touch-control module, a power supply module, a storage module and a program classification module, wherein, the power supply module provides power for the microprocessor module, the touch-control module achieves a touch-control function under the control of the microprocessor module, the storage module stores TV listings therein and is connected with the microprocessor module, and the program classification module is used for classifying TV programs contained in the TV listings stored in the storage module under the control of the microprocessor module.
Abstract:
Disclosed is a watch which includes: 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. The watch has not only a classical appearance of a conventional watch but also smart functionality.
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:
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 in an embodiment a self-capacitive touch panel, including: switching units; and touch electrodes which are arranged in a matrix form and in a plurality of rows and a plurality of columns. Each touch electrode in at least one row of the touch electrodes may be connected to a touch electrode in a same column but in another row of the touch electrodes through a corresponding switching unit; and the switching units may be configured to control corresponding touch signals to be inputted into the touch electrodes in the plurality of rows in a time-division manner in a touch time period; or each touch electrode in at least one column of the touch electrodes may be connected to a touch electrode in a same row but in another column of the touch electrodes through a corresponding switching unit; and the switching units may be configured to control corresponding touch signals to be inputted into the touch electrodes in the plurality of columns in a time-division manner in the touch time period.