Abstract:
A light guiding structure, a backlight source and a display device are provided. The light guiding structure includes a light guiding plate, wherein at least one side end surface of the light guiding plate is provided with a fixing mechanism configured to fix a light bar. In the above-described light guiding structure, since the fixing mechanism provided on the side end surface of the light guiding plate is fixed to the light bar, the light guiding plate is accurately aligned with the light bar. The operation difficulty of fixing the light guiding plate to the light bar by the fixing mechanism is reduced, thus, it is easy to achieve the accurate alignment between the light guiding plate and the light bar.
Abstract:
The present application discloses a light guide plate comprising a light incident portion having a light incident surface for receiving light from a plurality of light sources, and a plurality of closed cavities proximal to the light incident surface and within a plurality of dark regions of the light guide plate.
Abstract:
The present application discloses a thin film transistor comprising a source electrode; a drain electrode; an active layer; a first connecting layer connecting the active layer to the source electrode; a second connecting layer connecting the active layer to the drain electrode; and an insulating layer between the first connecting layer and the second connecting layer.
Abstract:
Provided are a semiconductor device and a method for manufacturing the same. The semiconductor device comprises an insulating layer and a metal oxide semiconductor layer which are adjacent to each other, and the insulating layer is formed by steps of: forming a first silicon oxide film; and stabilizing the first silicon oxide film by filling a silicon dangling bond therein with a filling atom capable of being bonded to the silicon dangling bond.
Abstract:
The present invention provides a method for manufacturing an array substrate comprising: sequentially forming an adhesion enhancement layer, a copper-bearing metal layer and a photoresist layer on a substrate, and respectively forming a reserved region and a removal region by performing exposure and development on the photoresist layer using a mask plate, simultaneously processing the adhesion enhancement layer, the copper-bearing metal layer and the photoresist layer in the removal region by a single wet etching process, to form an adhesion enhancement intermediate layer corresponding to the adhesion enhancement layer, a copper-bearing metal intermediate layer corresponding to the copper-bearing metal layer and the photoresist layer thereon in the reserved region; simultaneously processing the adhesion enhancement intermediate layer, the copper-bearing metal intermediate layer and the photoresist layer by a dry etching process, then stripping off the photoresist layer, to form a patterned adhesion enhancement layer and a patterned copper-bearing metal layer respectively.
Abstract:
The present invention discloses a thin-film transistor (TFT), a manufacturing method thereof, an array substrate and a display device. The present invention is used for improving the electrical properties of the TFT and the image quality of the display device. The TFT provided by the present invention comprises: a gate electrode, a source electrode, a drain electrode, a semiconductor layer, a gate electrode insulating layer and a first metal barrier layer, which are disposed on a substrate; the gate electrode insulating layer is disposed between the gate electrode and the semiconductor layer; and the first metal barrier layer is disposed between the source/drain electrodes and the gate electrode insulating layer, and the first metal barrier layer is arranged on the same layer as the semiconductor layer and configured to prevent interdiffusion between the material for forming the source/drain electrodes and the material for forming the gate electrode.
Abstract:
A TFT-LCD assembly substrate comprises an array structure layer, comprising a plurality of first signal lines and a plurality of second signal lines. Adjacent first signal lines and adjacent second signal lines cross each other to define a plurality of combination pixel regions, and each of the combination pixel regions comprises two pixel regions juxtaposed along a direction of the first signal line, and there are a thin film transistor and a pixel electrode formed in one pixel region of the two pixel regions and there is a common electrode formed in the other pixel region.
Abstract:
Embodiments of the present disclosure provide a display substrate having a display region and a frame region. The display substrate includes a plurality of display pixels and a plurality of dummy pixels arranged in an array; the display pixels are distributed in the display region; the dummy pixels are distributed in the frame region. Each display pixel includes a first pixel electrode and a first common electrode; and a first voltage difference exists between the first pixel electrode and the first common electrode. Each dummy pixel includes a second pixel electrode and a second common electrode; and a second voltage difference exists between the second pixel electrode and the second common electrode. A difference between the first voltage difference and the second voltage difference is less than a set value. Embodiments of the present disclosure further provides a display panel and a display apparatus.
Abstract:
A substrate inspection device includes a laser emitting unit, arranged at one side of a transmission device, and configured to emit a laser beam to each substrate to be inspected on the transmission device when the substrate to be inspected is moved to an inspection position; a laser receiving unit, arranged at the other side of the transmission device, and configured to receive the laser beam transmitted through the substrate to be inspected; and a calculation unit, configured to calculate transmissibility of the laser beam relative to the substrate to be inspected based on an intensity of the laser beam emitted by the laser emitting unit and an intensity of the laser beam received by the laser receiving unit, and determine whether a line width of a black matrix in the substrate to be inspected is within a predetermined range of the line width based on the transmissibility.
Abstract:
A light guiding structure, a backlight source and a display device are provided. The light guiding structure includes a light guiding plate, wherein at least one side end surface of the light guiding plate is provided with a fixing mechanism configured to fix a light bar. In the above-described light guiding structure, since the fixing mechanism provided on the side end surface of the light guiding plate is fixed to the light bar, the light guiding plate is accurately aligned with the light bar. The operation difficulty of fixing the light guiding plate to the light bar by the fixing mechanism is reduced, thus, it is easy to achieve the accurate alignment between the light guiding plate and the light bar.