Abstract:
The present disclosure relates to the field of display technologies, and specifically relates to a remote controller shell, a remote controller, a display system and a control system. The shell includes a control surface provided with at least one function key and a holding surface disposed opposite to the control surface, wherein at least part of the control surface is, a curved surface structure. Full thought is given to a position where a user holds the remote controller, the control surface is designed to be a curved surface structure, so that a top surface area (an intrados) of the function key is increased, thereby making it convenient for the user's thumb operation. Alternatively further, the holding surface is also designed to be a curved surface structure, thereby making it convenient for holding (an extrados) and ensuring a grip comfort.
Abstract:
A liquid crystal panel and a liquid crystal display device are provided. The liquid crystal panel includes a color filter substrate and an array substrate disposed opposite to each other, and a liquid crystal layer (170) located between the color filter substrate and the array substrate, and liquid crystals in the liquid crystal layer are vertically aligned. A protrusive structure (150, 55) is provided on the color filter substrate and/or the array substrate, and a recess (160, 65) is provided around the protrusive structure (150, 55).
Abstract:
A substrate and a display device are disclosed. The substrate includes a plurality of common electrode lines that are spaced at an interval, configured for providing corresponding pixel units with a common voltage; at least two connecting lines, each of which is located in a display region, and which are configured for achieving mutual electrical connection between at least two of the common electrode lines that are adjacent.
Abstract:
A barrier film layer, a photoelectric device comprising the barrier film layer and a manufacturing method of the photoelectric device are provided. A material forming the barrier film layer includes a topological insulator, and the barrier film layer is formed on a surface of an base plate which is patterned. In this way, a better package of the photoelectric device can be achieved.
Abstract:
An array substrate, a manufacturing method thereof and a display device are provided. The array substrate comprises a plurality of gate lines (102) and a plurality of data lines (101); a region defined by adjacent data lines (101) and adjacent gate lines (102) is a pixel unit; the pixel unit includes a common electrode line (103), a pixel electrode (104), a thin film transistor (105) and an auxiliary electrode (202); a first end of the auxiliary electrode (202) is electrically connected with a drain electrode (203) of the thin film transistor (105); and a second end of the auxiliary electrode (202) is electrically connected with the pixel electrode (104). The array substrate is used for enhancing an electric field within the peripheral range of the pixel electrode (104) of the pixel unit and avoiding the phenomenon of light leakage at an edge of the pixel unit.
Abstract:
An array substrate and a display device are provided. A common electrode line with the same extending direction as a gate line is disposed at one end near a thin film transistor, and forms a storage capacitor with a drain electrode of the thin film transistor. As compared with the case in the prior art that a common electrode line and a thin film transistor in an array substrate are disposed at both ends of a pixel, respectively, and it is necessary to separately provide a storage capacitance electrode useful for forming a storage capacitor with the common electrode line, the pixel region occupied by the thin film transistor and the common electrode line can be effectively decreased. Thus, the aperture ratio is increased, and the display brightness of an IPS liquid crystal display device is enhanced.
Abstract:
The present disclosure provides an array substrate, which includes a flexible substrate and an array layer formed on the flexible substrate. The array layer includes: data lines, gate lines, thin film transistors and a driving unit. The driving unit is configured to output data driving signals to connected data lines. The data lines includes a first data line connected to thin film transistors of a first number and a second data line connected to thin film transistors of a second number. The number of sub-signals in a data driving signal outputted to the first data line by the driving unit within a time period of one frame is the first number. The number of sub-signals in a data driving signal outputted to the second data line by the driving unit within a time period of one frame is the second number.
Abstract:
The invention provides an array substrate and a display device. The array substrate comprises a plurality of gate lines and a plurality of data lines which are arranged crosswise and are insulated from each other, and a plurality of pixel units, wherein each pixel unit comprises a control section and a display section, each of which is symmetrically distributed with the central line of a corresponding gate line as a symmetry axis, the control section is located at a cross-point of the gate line and the data line, and is at least partially overlapped with the gate line and the data line, the display section is located at a region defined by the gate line and the data line; and the control section is connected to the display section to control the display section for display. In the present invention, the aperture ratio of the array substrate is increased.