Abstract:
The present disclosure provides a driving method and a display apparatus, including: a display panel; a driving circuit electrically connected to the display panel, and the driving circuit is configured to control, in response to the fact that each of sub-pixels in a photosensitive area of the display panel is controlled to be in a non-light-emitting state in a light-emitting period during a preset display frame, each of photosensitive elements in the photosensitive area to collect a light intensity signal of incident light.
Abstract:
A display module includes; display panel, which has a fingerprint identification region; a first protective layer disposed on a back surface of the display panel, the back surface being a surface of the display panel opposite to a display surface of the display panel, and the first protective layer being provided therein with a first opening for exposing the fingerprint identification region; and a metal protective disposed on a surface of the first protective layer away from the display panel, the metal protective layer being provided therein with a second opening, the second opening exposing the first opening, and an orthographic projection of an edge of the second opening the display panel being located outside an orthographic projection of an edge of the first opening on the display panel.
Abstract:
A display device includes a flexible display panel including a display part, a bonding part, and a substrate bending part connecting the display part and the bonding part, the bonding part being located on the back side of the display part, and a side of the bonding part away from the display part being the bonding side, the driving chip being arranged on the bonding side of the bonding part, and having a first side and a second side opposite in the first direction, where the first side is close to the substrate bending part, and the second side is distal to the substrate bending part, the first direction being perpendicular to the thickness direction; a main flexible circuit board, disposed on the second side of the driving chip and connected to the bonding side of the bonding part; a touch layer; and a control flexible circuit board.
Abstract:
The present invention discloses a flexible display screen and a display device. The flexible display screen includes: a flexible display panel, a first flexible electromagnetic shielding layer and a bottom film disposed in that order on a side, opposite to a light-emitting side, of the flexible display panel; the organic electroluminescent flexible display panel has a bending area, and the bending area is provided with signal lines; the flexible display screen further includes: a second flexible electromagnetic shielding layer disposed on a light-emitting side of the flexible display panel and covering the signal lines, and a colloidal insulating layer covering the second flexible electromagnetic shielding layer; and the materials of the first flexible electromagnetic shielding layer and the second flexible electromagnetic shielding layer are both conductive materials with fluidity.
Abstract:
An array substrate, a manufacture method of the array substrate, and a display panel are configured to achieve a combination of solar energy technology and the OLED display technology. The array substrate includes substrate, scanning lines, data lines, a thin film transistor (TFT), a common electrode and a pixel electrode. The array substrate further includes a light-emitting structure configured to provide a backlight source, a solar cell structure and a power output line. The light-emitting structure is provided between the common electrode and the pixel electrode. The solar cell structure is provided between the substrate and the common electrode. The power output line is provided in a same layer as the common electrode and is electrically connected to the solar cell structure so as to transmit electric energy generated by the solar cell structure to an external circuit.
Abstract:
The present invention discloses an array substrate, comprising a substrate and common signal lines arranged on the substrate. The common signal lines comprise a first common signal line and a second common signal line which are spaced from each other; a first active layer is arranged between the first common signal line and the second common signal to form a first switch transistor; and the second common signal line is connected to a common electrode arranged above the second common signal line. A gate and a second active layer are sequentially arranged above the first active layer; a source signal line and a drain signal line are arranged on the second active layer to form a second switch transistor, and the drain signal line is connected to a pixel electrode arranged above the drain signal line.
Abstract:
An array substrate and a display are provided, and the array substrate includes: a substrate; a pixel region, provided on the substrate; a plurality of data lines, formed on the substrate; a plurality of gate signal lines, formed on the substrate and configured to apply a gate signal; a plurality of pixel units, located in the pixel region and defined by crossing of the plurality of data lines and the plurality of gate signal lines; and at least one leading wire, provided at the periphery of the pixel region and configured to transmit the gate signal, wherein two ends of each of the plurality of gate signal lines near the periphery of the pixel region are connected with one leading wire through a first thin film transistor and a second thin film transistor respectively.
Abstract:
The present invention discloses an array substrate, a preparation method for the array substrate, and a display device, wherein the array substrate comprises a gate electrode, a gate insulation layer, an active layer, a source electrode and a drain electrode, and a pixel electrode arranged on a substrate, the active layer includes an electric conduction area, a coverage area covered by the source electrode and the drain electrode, and an exposure area surrounding the coverage area, and the pixel electrode is lapped on the upper surfaces of the drain electrode, the exposure area of the active layer, and the gate insulation layer. According to the present invention, the pixel electrode breaks in the area, with the large gradient angle, of the drain electrode caused by slip-down due to gravity can be avoided, and the lap joint for the pixel electrode and the drain electrode is effectively facilitated.