Abstract:
The array substrate comprises: data lines and scanning lines in an insulating crossing arrangement, where the data lines comprise first data lines and second data lines, the first data lines are arranged in a same layer with the scanning lines; the second data lines electrically connecting the first data lines via first via holes; first signal lines and common electrodes arranged on a substrate, where the first signal lines are arranged insulating from and in a same layer with the second data lines, the first signal line comprises a main portion and a bending portion which is arranged adjacently to the second data line; and a second insulating layer arranged between the first signal lines and the common electrodes, where second via holes are arranged in the second insulating layer, and the common electrodes are electrically connected to the first signal lines via the second via holes.
Abstract:
An array substrate is disclosed. The Array substrate includes gate and data lines, where the gate lines and the data lines cross each other. The pixel units include pixel electrodes and common electrodes, and the common electrode comprises a first slot extending in a direction of the data lines. The first slot at least partially overlaps at least one of the pixel electrodes. In addition, the gate lines each include an aperture region, where the aperture region of each gate line at least partially overlaps at least one of the first slots. Furthermore, shielding electrodes and shielding branch electrodes are provided in the direction of the data lines, where the shielding electrodes at least partially overlap the data lines, and where the shielding branch electrodes are provided in the aperture region, and the shielding branch electrodes at least partially overlap the gate lines.
Abstract:
A touch display panel and a touch display device are provided. The touch display panel includes: a substrate, a light-emitting device layer arranged on the substrate, and multiple touch electrodes arranged on the side of the light-emitting device layer away from the substrate. The light-emitting device layer includes multiple pixels, and each of the pixels has a light-emitting region and a non-light-emitting region on the periphery of the light-emitting region. Each of the touch electrodes has a structure of a metal grid. The pixels include first color pixels, and grid lines of the metal grid are arranged in each of the non-light-emitting regions of at least a part of the first color pixels.
Abstract:
The present application discloses a touch panel and a display device. The touch panel includes first touch electrodes arranged in a first direction and second touch electrodes arranged in a second direction in a touch area of a substrate, first touch electrode lines and second touch electrode lines, and the first touch electrode lines are at least partially arranged in a touch area, the first touch electrode and/or the second touch electrode has an opening area, and an orthographic projection of the first touch electrode line to the substrate overlaps with that of the opening area to the substrate.
Abstract:
Disclosed are a display panel and an electronic device. In a fingerprint recognition stage, at least one of the first and second organic light-emitting structures function as a light source of the fingerprint recognition unit; the emergent light of the at least one of the first and second organic light-emitting structures has a first spectral range, the transmission spectral range of the first color filter film is a second spectral range, and the spectral range corresponding to visible light and near-infrared light is a third spectral range. The first spectral range is located within the second spectral range which is located within the third spectral range, light from at least a part of the wave band located within the third spectral range and outside the second spectral range is absorbed or reflected by the first color filter film.
Abstract:
Embodiments of the present disclosure provide a display apparatus, a fingerprint identification method thereof, and an electronic device. The display apparatus includes: an organic light emitting layer and a fingerprint identification array. The organic light emitting layer includes a plurality of organic light emitting configurations. In a fingerprint identification phase, the plurality of organic light emitting configurations are arranged to emit light according to a first light emitting lattice and shift. A distance between any two adjacent organic light emitting configurations in the first light emitting lattice is greater than or equal to a minimum crosstalk-free distance. The minimum crosstalk-free distance is a maximum radius of a covering region formed on the fingerprint identification array by the light emitted from any organic light emitting configuration and then reflected through the first surface of the cover plate.
Abstract:
A touch display panel is disclosed. The touch display panel includes a first substrate, a second substrate disposed opposite to the first substrate, and a plurality of touch electrodes disposed on a side of the first substrate facing the second substrate. The plurality of touch electrodes are disposed in an array. The touch display panel also includes a conductive layer disposed on the second substrate, where the conductive layer includes a plurality of openings, and where portions of the touch electrodes are exposed through the openings. In addition, a projection of the conductive layer on the second substrate overlaps the touch electrodes, and the conductive layer is grounded or connected to a constant potential during a touch period.
Abstract:
The array substrate comprises: data lines and scanning lines in an insulating crossing arrangement, where the data lines comprise first data lines and second data lines, the first data lines are arranged in a same layer with the scanning lines; the second data lines electrically connecting the first data lines via first via holes; first signal lines and common electrodes arranged on a substrate, where the first signal lines are arranged insulating from and in a same layer with the second data lines, the first signal line comprises a main portion and a bending portion which is arranged adjacently to the second data line; and a second insulating layer arranged between the first signal lines and the common electrodes, where second via holes are arranged in the second insulating layer, and the common electrodes are electrically connected to the first signal lines via the second via holes.
Abstract:
An array substrate is disclosed. The array substrate includes a non-display region surrounding a display region. The array substrate also includes gate lines in the display region, and a gate drive circuit and a bus electrically insulated from the gate lines and a gate drive circuit in the non-display region. The gate lines extend into the non-display region and are electrically connected to the gate drive circuit, and each of the gate lines crosses the bus in a first overlap region. The array substrate also includes auxiliary electrode line segments between the bus and the display region. The auxiliary electrode line segments are electrically insulated from one another and from the gate lines, and the auxiliary electrode line segments are disposed in either of a same conductive layer as the bus, or a layer between the conductive layer of the bus and a conductive layer of the gate lines are disposed.
Abstract:
A display panel and a display apparatus are provided. The display panel includes a display area, a bezel area, and a hole area. The bezel area includes an inner bezel area surrounding the hole area and an outer bezel area surrounding the display area, and the display area surrounds the hole area and is disposed between the inner bezel area and the outer bezel area. The display panel further includes a substrate layer, a light-emitting layer, an encapsulation layer and a touch layer, that are sequentially stacked; a detection line including a first detection line. The first detection line includes a first detection segment disposed in the inner bezel area, a third detection segment disposed in outer bezel area, and a second detection segment electrically connecting the first detection segment and the third detection segment. The second detection segment is disposed in the touch layer.