Abstract:
The disclosure provides a display panel and a method for driving the display panel. The display panel includes a display area and a peripheral area surrounding the display area, and the display area includes one first display area and at least one second display area. The design according to embodiments of the disclosure release enough space occupied by the peripheral area at one side of the at least one second display area far away from the first display area, thus increasing display area in desired direction and a screen-to-total face ratio.
Abstract:
A touch array substrate includes a substrate and a touch sensing electrode layer including a plurality of touch sensing electrodes; a touch sensing electrode line layer includes a plurality of touch sensing electrode lines and a plurality of virtual touch sensing electrode lines; each of the touch sensing electrodes is electrically connected with at least one of the touch sensing electrode lines; at least one of the touch sensing electrodes includes a first slot and a second slot; a third region which represents a projection of the second slot on the substrate is separated from a projection of each of the touch sensing electrode lines, and the third region is at least partially overlapped with a projection of the respective one of the virtual touch sensing electrode lines on the substrate.
Abstract:
A display panel and a display apparatus are provided. The display panel includes: a first edge and a second edge configured along a first direction and facing opposite to each other; a third edge and a fourth edge configured along a second direction and facing opposite to each other; a display area; and a non-display area surrounding the display area and including a binding area disposed adjacent to the first edge. The binding area includes a first sub-area adjacent to the third edge and a second sub-area adjacent to the fourth edge. Each of the first and second sub-areas includes a plurality of binding soldering pads arranged along the second direction. Each of the plurality of binding soldering pads includes a first section, a second section, and a third section.
Abstract:
A touch array substrate includes a substrate and a touch sensing electrode layer including a plurality of touch sensing electrodes; a touch sensing electrode line layer includes a plurality of touch sensing electrode lines and a plurality of virtual touch sensing electrode lines; each of the touch sensing electrodes is electrically connected with at least one of the touch sensing electrode lines; at least one of the touch sensing electrodes includes a first slot and a second slot; a third region which represents a projection of the second slot on the substrate is separated from a projection of each of the touch sensing electrode lines, and the third region is at least partially overlapped with a projection of the respective one of the virtual touch sensing electrode lines on the substrate.
Abstract:
A touch device includes a plurality of touch electrodes and a touch circuit. The touch electrodes are respectively connected with a plurality of interfaces on the touch circuit by touch detection lines and a switch is provided on the touch detection line corresponding to each of at least one of the touch electrodes. The switch has a first work state in which the switch is turned on and a second work state in which the switch is turned off.
Abstract:
A touch array substrate, a liquid crystal display panel and a liquid crystal display device. The touch array substrate includes: a substrate; a touch sensing electrode layer including a plurality of touch sensing electrodes insulated from each other, each of which is electrically connected with one touch sensing electrode line; where, the touch sensing electrode includes a first slot, and a first region, which represents a projection of the first slot onto the substrate in a direction perpendicular to the substrate and is at least partially overlapped with a second region which represents a projection of the touch sensing electrode line onto the substrate in the direction perpendicular to the substrate.
Abstract:
A touch device includes a plurality of touch electrodes and a touch circuit. The touch electrodes are respectively connected with a plurality of interfaces on the touch circuit by touch detection lines and a switch is provided on the touch detection line corresponding to each of at least one of the touch electrodes. The switch has a first work state in which the switch is turned on and a second work state in which the switch is turned off.
Abstract:
A display panel having a plurality of pixel units arranged in an array includes an array substrate and a color filter substrate which are arranged opposite to each other. The array substrate includes a first electrode, and multiple second electrodes arranged corresponding to the respective pixel units, the first electrode and second electrodes are insulated from each other by an insulation layer; and the color filter substrate includes multiple black matrixes and multiple color resists arranged corresponding to the respective pixel units. The array substrate further includes multiple third electrodes arranged in boundary areas between two adjacent pixel units and opposite to the black matrixes. The third electrodes and the first electrode are disposed in different layers and have a same potential.
Abstract:
A touch array substrate, a liquid crystal display panel and a liquid crystal display device. The touch array substrate includes: a substrate; a touch sensing electrode layer including a plurality of touch sensing electrodes insulated from each other, each of which is electrically connected with one touch sensing electrode line; where, the touch sensing electrode includes a first slot, and a first region, which represents a projection of the first slot onto the substrate in a direction perpendicular to the substrate and is at least partially overlapped with a second region which represents a projection of the touch sensing electrode line onto the substrate in the direction perpendicular to the substrate.