Abstract:
The present disclosure provides an array substrate, a method of manufacturing the same, and a display panel. The array substrate includes a base substrate, a thin film transistor disposed at a side of the base substrate. The thin film transistor includes a first electrode, a second electrode, and a gate electrode. The array substrate includes a data line disposed at the side of the base substrate The array substrate includes a connection electrode electrically connecting the first electrode of the thin film transistor to the data line. An orthographic projection of an active layer of the thin film transistor on the base substrate is located within an orthographic projection of the gate electrode of the thin film transistor on the base substrate.
Abstract:
Embodiments of the present disclosure provide a thin film transistor and a method of manufacturing the same, and a display device. In an embodiment, the thin film transistor includes a gate, a gate insulation layer, an active layer, a source electrode and a drain electrode, and further includes a heat source disposed above or below the active layer and configured to heat a channel region of the active layer.
Abstract:
The present disclosure relates to the field of display technology, and provides a liquid crystal display panel, a method for manufacturing the same and a liquid crystal display device. The liquid crystal display panel includes a screen body including a plurality of pixel units arranged in an array form, and a plurality of light sources arranged at a peripheral region of the screen body so as to provide back light to the pixel units. An aperture ratio of the pixel unit increases along with an increase in a distance between the pixel unit and the light source arranged at the peripheral region.
Abstract:
An array substrate and a display device that comprises the array substrate are disclosed. The array substrate comprises a base substrate, a plurality of scan lines (Ga, 21) and a plurality of data lines (Dr, 4) that are provided on the base substrate and intersect with each other, and a plurality of sub-pixel regions arranged evenly; sub-pixel regions in two adjacent rows are configured as one pixel row group, so that a plurality of pixel row groups are arranged longitudinally, and between two rows of sub-pixel regions within each of the pixel row groups and/or between every two adjacent pixel row groups, there are provided two scan lines (Ga, 21), which overlap in partial (22b) and are insulated from each other; or, sub-pixel regions in two adjacent columns are configured as one pixel column group, so that a plurality of pixel column groups are arranged transversely, and between two columns of sub-pixel regions within each of the pixel column groups or between every two adjacent pixel column groups, there are provided two data lines (Dr), which overlap in partial and are insulated from each other. The array substrate has a relatively high aperture ratio.
Abstract:
The present disclosure provides an array substrate, a method of manufacturing the same, and a display panel. The array substrate includes a base substrate, a thin film transistor disposed at a side of the base substrate. The thin film transistor includes a first electrode, a second electrode, and a gate electrode. The array substrate includes a data line disposed at the side of the base substrate The array substrate includes a connection electrode electrically connecting the first electrode of the thin film transistor to the data line. An orthographic projection of an active layer of the thin film transistor on the base substrate is located within an orthographic projection of the gate electrode of the thin film transistor on the base substrate.
Abstract:
A fingerprint identification circuit, a method for manufacturing the fingerprint identification circuit, and a display device are provided. The fingerprint identification circuit includes: an array substrate and an opposite substrate arranged opposite to the array substrate; a fingerprint identification member arranged at a side of the array substrate proximate to the opposite substrate; and a backlight source arranged at a side of the array substrate distal to the opposite substrate. A light-shielding member and a partially-transparent member are arranged on the opposite substrate. An orthogonal projection of the partially-transparent member onto the array substrate at least partially overlaps an orthogonal projection of the fingerprint identification member onto the array substrate.
Abstract:
A fingerprint identification device includes a base substrate, a plurality of photosensitive elements and an elastically deformable layer arranged at a first side of the base substrate, and a backlight source arranged at a second side of the base substrate. A light beam from the backlight source is capable of passing through a gap between two adjacent photosensitive elements toward the elastically deformable layer. The elastically deformable layer is nontransparent in the case of not being pressed by a finger, and capable of being deformed in such a manner as to correspond to valleys and ridges of the finger in the case of being pressed by the finger.
Abstract:
The present invention relates to an array substrate, a method for manufacturing the same and a display device. The array substrate comprises a substrate, and a first region and a second region that are provided on the substrate and adjacent to each other and a difference in level between the two exceeds a threshold, a difference-in-level compensation pattern is provided on the substrate, which overlaps with both the first region and the second region in a direction perpendicular to the substrate and does not exceed the first region and the second region. By the technical solution of the present invention, the difference in level between the data line and an adjacent region on the array substrate is reduced, so that during a rubbing process, the rubbing area of a polyimide solution is increased, and the risk of light leakage is reduced without a decrease of the pixel aperture ratio.
Abstract:
An array substrate and a display device that comprises the array substrate are disclosed. The array substrate comprises a base substrate, a plurality of scan lines (Ga, 21) and a plurality of data lines (Dr, 4) that are provided on the base substrate and intersect with each other, and a plurality of sub-pixel regions arranged evenly; sub-pixel regions in two adjacent rows are configured as one pixel row group, so that a plurality of pixel row groups are arranged longitudinally, and between two rows of sub-pixel regions within each of the pixel row groups and/or between every two adjacent pixel row groups, there are provided two scan lines (Ga, 21), which overlap in partial (22b) and are insulated from each other; or, sub-pixel regions in two adjacent columns are configured as one pixel column group, so that a plurality of pixel column groups are arranged transversely, and between two columns of sub-pixel regions within each of the pixel column groups or between every two adjacent pixel column groups, there are provided two data lines (Dr), which overlap in partial and are insulated from each other. The array substrate has a relatively high aperture ratio.
Abstract:
The present invention discloses an array substrate comprising: a first substrate on which a thin film transistor and a data line are formed; and a shield metal layer comprising a first shield metal zone positioned at a location corresponding to a channel of the thin film transistor and a second shield metal zone positioned at a location corresponding to the data line. The present invention also discloses a display panel and a method for manufacturing the array substrate. The shield metal layer formed at the location on the array substrate corresponding to the data line, there is no any black matrix region between a color filter units along a direction corresponding to the data line. The display panel comprising the array substrate has increased aperture ratio of pixel, and difficulty of manufacturing the display panel is decreased.