Abstract:
The embodiments of the present disclosure provide a display device, which relates to the display technology field and can alleviate or mitigate the problem that noise is generated by the rear housing due to vibration when the display device is displaying a picture with sound. The display device includes a display module and a rear housing cooperating with the display module. The display module includes a display surface and a non-display surface opposite to the display surfaced. The display device includes a buffer between the non-display surface of the display module and the rear housing.
Abstract:
The present invention discloses an array substrate and a display device. The array substrate comprises a data line and a gate line arranged crossly, a thin film transistor being arranged in vicinity of a cross position of the data line and the gate line, the thin film transistor comprising a gate and a source, the gate being connected with the gate line, the source being connected with the data line, an orthographic projection of the source on a base substrate of the array substrate partly overlapping with an orthographic projection of the gate on the base substrate of the array substrate. The array substrate provided by the present invention can reduce the parasitic capacitance generated between the source and the gate of the thin film transistor, thereby being capable of reducing delay of the gate line signal so as to improve the display quality.
Abstract:
A pixel structure, an array substrate and a display device. The pixel substrate comprises a first pixel electrode and a second pixel electrode arranged in a first direction, and a thin film transistor (TFT) disposed between the first pixel electrode and the second pixel electrode. The TFT includes a comb-shaped source, a comb-shaped first drain and a comb-shaped second drain; and a channel region of the TFT is defined by the comb-shaped source respectively and the comb-shaped first drain and the comb-shaped second drain. The channel region has a greater ratio of width to length, thus improving the driving capability of the TFT for driving the first pixel electrode and the second pixel electrode.
Abstract:
An array substrate and a liquid crystal display device are provided. The array substrate comprises a plurality of columns of pixel units (102) defined by adjacent data lines (101, 111); each column of pixel units (102) includes a plurality of pixel units (102), each pixel unit 102 includes a first subpixel electrode (103), a second subpixel electrode (104), a first thin film transistor (107), a second thin film transistor (108) and a third thin film transistor (109); each pixel unit (102) further includes: a gate line (100) arranged between the first subpixel electrode (103) and the second subpixel electrode (104); the gate line (100) being electrically connected with a gate electrode of the first thin film transistor (107), a gate electrode of the second thin film transistor (108) and a gate electrode of the third thin film transistor (109) respectively. The array substrate provided by the embodiment of the disclosure can be applied to a liquid crystal display device in a vertical-alignment mode, and can realize charging the subpixel electrodes in a same pixel unit by using only one data line, so as to simply the array substrate and improve the aperture ratio of the pixel unit.
Abstract:
The present invention discloses a television pedestal and a television applying the same, and relates to the technical field of televisions. The television pedestal comprises a base comprising a base body in a shape of a plate. The base body is provided with a first threaded through hole and connected with a holding block via a bolt. A bottom surface of the holding block is provided with a second threaded hole which corresponds to the first threaded through hole. When the television pedestal is connected with the television body, the holding block is connected with a backplane arranged in the television body. The holding block is disposed inside a back cover of the television body. The television pedestal can be applied to a television for enhancing the convenience and comfort for the user during usage of the television and improving the overall appearance of the television.
Abstract:
A reflective sheet, a backlight module and a display device are disclosed. The reflective sheet includes a reflective sheet body provided with a plurality of opening areas and an open-closed structure located in each of the opening areas. The open-closed structure comprises at least a movable type vane, and one side of the movable type vane is connected with an edge of the opening area of the reflective sheet body. The movable type vane has a reflective surface, and the reflective surface of the movable type vane is disposed on the same side as a reflective surface of the reflective sheet body. The reflective sheet body is able to alleviate the interference in reflection effect of light ray due to the positioning posts, thus, a good display quality can be achieved.
Abstract:
An electrical connection structure with a via hole, an array substrate and a display device are provided, and the electrical connection structure with the via hole includes: a first insulating layer disposed on a first electrical conductor and under a second electrical conductor and provided with a first via hole which overlaps the first electrical conductor and the second electrical conductor; and a conductive connection portion which passes through the first via hole, electrically connects the first electrical conductor to the second electrical conductor, and is electrically connected with at least one lateral surface of the first electrical conductor. The electrical connection structure with the via hole can solve the problem of a poor contact between the first electrical conductor and the conductive connection portion which is formed in the via hole.
Abstract:
The present invention provides a thin film transistor, an array substrate and a display device. The thin film transistor comprises an active layer, a source electrode and a drain electrode. The active layer comprises a source electrode contact region and a drain electrode contact region, and a semiconductor channel region arranged between the source electrode contact region and the drain electrode contact region. A conductive layer is provided on the semiconductor channel region and is spaced apart from the source electrode and the drain electrode.
Abstract:
Provided is a substrate. The substrate includes a base substrate; and a plurality of sub-pixel structures arranged in an array on the base substrate, wherein the sub-pixel structure comprises: a thin film transistor disposed on the base substrate, the thin film transistor comprising a source and a drain; an insulating layer disposed on a side of the thin film transistor distal from the base substrate, a first via hole being formed in the insulating layer; a pixel electrode disposed on a side of the insulating layer distal from the base substrate, the pixel electrode being electrically connected to either the source or the drain through the first via hole; and a filling block disposed at the first via hole.
Abstract:
An array substrate (10) and a display device (16) are provided, and the array substrate includes a base substrate (1) and includes a pixel array (1) and an auxiliary conductive structure (3) which are on the base substrate (1); the pixel array includes a plurality of pixel units (2) arranged in an array and a plurality of pixel electrodes (21), and each of the plurality of pixel units (2) includes at least one of the plurality of pixel electrodes (21); the auxiliary conductive structure (3) surrounds at least one of the plurality of pixel electrodes (21) and is insulated from the plurality of pixel electrodes (21); a resistivity of a material of the auxiliary conductive structure (3) is less than or equal to a resistivity of a material of the at least one of the plurality of the pixel electrodes (21). The auxiliary conductive structure (3) receives and transmits interfering charges around the pixel electrode (21), so that the interfering charges are kept away from the pixel electrode (21), and thereby interference of the interfering charges on the pixel electrode (21) is prevented or reduced.