Abstract:
An array substrate and a display device are provided. The array substrate includes: a gate driving circuit, no pixel electrode layer being provided on a position of the array substrate corresponding to the gate driving circuit, the array substrate being made of a flexible material, wherein, the gate driving circuit is disposed on a position of a central axis of the array substrate and extends along a direction of the central axis; the gate driving circuit is configured for providing a driving signal to a gate line of the array substrate.
Abstract:
There is provided a display device, including a first display panel and a second display panel, the first display panel is flexibly connected with the second display panel, a light-exiting surface of the first display panel may be arranged to be directly adjacent to and face the first surface of the second display panel, the second pixel panel forms light-blocking regions and light-transmitting regions; the first display panel forms a left image for a left eye of a viewer and a right image for a right eye of the viewer, so that the left image is only seen by the left eye and the right image is only seen by the right eye through the light-blocking regions and the light-transmitting regions, the second display panel is capable of being folded to the first display panel along a second direction opposite to the first direction to perform a double-sided display.
Abstract:
The present disclosure discloses an array substrate, a display device and a fault repair method for an array substrate, and belongs to the field of display technology. The array substrate includes a pixel array, a gate driver array including a plurality of gate driver units and configured to output drive signals to pixels in the pixel array, and a repair line overlapping with and insulated from the gate driver units, wherein the repair line is configured to be coupled to the failed gate driver unit and transmits a repair signal to cause the failed gate driver unit to output a normal drive signal, when any gate driver unit fails. The added repair line can realize the function of repairing when the gate driver unit fails, and improve the production efficiency of the array substrate.
Abstract:
The present disclosure discloses an array substrate, a display device and a fault repair method for an array substrate, and belongs to the field of display technology. The array substrate includes a pixel array, a gate driver array including a plurality of gate driver units and configured to output drive signals to pixels in the pixel array, and a repair line overlapping with and insulated from the gate driver units, wherein the repair line is configured to be coupled to the failed gate driver unit and transmits a repair signal to cause the failed gate driver unit to output a normal drive signal, when any gate driver unit fails. The added repair line can realize the function of repairing when the gate driver unit fails, and improve the production efficiency of the array substrate.
Abstract:
A display screen and a display device are provided. The display device includes: a first display screen; a display screen group arranged on a back surface of the first display screen, the display screen group including at least one second display screen, and a display surface of the second display screen facing the first display screen; and a rotating shaft, the rotating shaft connecting a first side edge of each of the second display screens in the display screen group with a first side edge of the first display screen and being perpendicular to the first display screen and the second display screen. The display device has characteristics of adjustable display screen size and strong flexibility in use.
Abstract:
The present application discloses a display apparatus comprising a flexible display panel capable of undergoing deformation between a flat configuration in which the flexible display panel is substantially flat and a curved configuration in which the flexible display panel is curved; and a first arm section and a second arm section for deforming the flexible display panel between the flat configuration and the curved configuration. Each of the first arm section and the second arm section comprises a first terminal and a second terminal, the first terminal of the first arm section and the first terminal of the second arm section coupled to each other, and the second terminal of the first arm section and the second terminal of the second arm section coupled to the flexible display panel on a side distal to a light emitting surface of the flexible display panel and at two opposite margins of the flexible display panel, respectively; the first arm section is a retractable arm section capable of retracting and extending between the first terminal and the second terminal of the first arm section, having an extended state corresponding to the flexible display panel in a flat configuration and a retracted state corresponding to the flexible display panel in a curved configuration; and the second arm section is a retractable arm section capable of retracting and extending between the first terminal and the second terminal of the second arm section, having an extended state corresponding to the flexible display panel in the flat configuration and a retracted state corresponding to the flexible display panel in the curved configuration.
Abstract:
The present disclosure discloses a wiring board used to connect a driving chip and a display panel, a flexible display panel and a display device. Signal output ends on the driving chip and signal input ends on the display panel may be arranged in pairs; and the wiring board may include fanout lines each of which is configured to connect a pair of signal output end and the signal input end. The wiring board may include a substrate; a plurality of segments of first connection lines having first resistivity is arranged on a first surface of the substrate; a plurality of segments of second connection lines having second resistivity is arranged on a second surface of the substrate opposite to the first surface. At least parts of the fanout lines are formed by connecting the first connection lines and the second connection lines.
Abstract:
The present disclosure provides a shift register unit, its driving method, a gate driver circuit and a display device. The shift register unit includes a first output module, a second output module, an input module and a control module. The first output module is connected to a first signal end, a first node and an output end. The second output module is connected to the output end, a second node and a second signal end. The control module is connected to the first node, the second node, the first signal end, the second signal end, a first clock signal end and a second clock signal end. The input module is connected to an input end, the second node and the second clock signal end.
Abstract:
A display device including a display panel and a touch panel is provided. At least one of the display panel and the touch panel is made of a flexible material. The display device is capable of being switched between a first usage state where a portion of the touch panel overlaps a portion of the display panel so that a touch operation is capable of being performed, through the touch panel, on at least a portion of an image displayed on the display panel, and a second usage state where the display panel is located at a side of the touch panel and does not overlap the touch panel and a button pattern is formed on the touch panel through which an operation is performed on the image displayed on the display panel.
Abstract:
The present invention discloses a GOA circuit and a driving method thereof, a display panel and a display apparatus. The GOA circuit comprises a plurality of GOA cell groups arranged to be interconnected in series, each of the GOA cell groups comprising at least one stage of GOA cells arranged to be interconnected in series; the GOA circuit further comprises a control unit; the control unit is connected with a first stage of GOA cell in each of the GOA cell groups, for inputting a frame start signal to the first stage of GOA cell in a first GOA cell group in the display region. The GOA circuit is capable of effectively reducing the power consumption of the display product.