Abstract:
A narrow frame liquid crystal display, comprising: an array substrate comprising a first mounting area and a second mounting area; a color film substrate mounted on the first mounting area; a first chip bonded onto the second mounting area of the array substrate; a first flexible circuit board bonded onto the second mounting area of the array substrate; a first lead configured to electrically connect the first chip and the first flexible circuit board; and a second lead configured to electrically connect a display region of the array substrate and the first chip. The first chip, the first lead and the first flexible circuit board are sequentially arranged on the second mounting area in a first direction away from the color film substrate. A distance between the first chip and the first flexible circuit board is set to be less than 10 mm. The size of the area for mounting the chip can be reduced, and the frame of the liquid crystal display can become narrower. The present invention further provides a method of producing narrow frame liquid crystal displays.
Abstract:
A method and a system for repairing a defective pixel, and a display panel are provided, the method including: positioning a center of the defective pixel to obtain a center coordinate of the defective pixel; and repairing the defective pixel according to the center coordinate. By the method, the conventional manual alignment operation is replaced with the automatic positioning of the center coordinate, which not only accelerates repairing of the defective pixel, but also improves repairing efficiency, enhances overall efficiency and productivity of the device, and meanwhile, can solve the problem of unsuccessful repairing due to error in manual operation; and the accuracy of the repairing can be improved by automatically positioning the center.
Abstract:
The embodiments of the present disclosure disclose a touch display panel and a touch display apparatus and relate to the technical field of display, which can realize the function of preventing the static damage without affecting the touch control function. The touch display panel in the present disclosure is arranged with driving electrodes and sensing electrodes, and is further arranged with an anti-static layer which is correspondingly distributed in regions of the touch display panel other than sensing regions including overlapped regions of the driving electrodes and the sensing electrodes; and a controllable switch through which the anti-static layer is grounded.
Abstract:
The present disclosure provides an array substrate, which includes a flexible substrate and an array layer formed on the flexible substrate. The array layer includes: data lines, gate lines, thin film transistors and a driving unit. The driving unit is configured to output data driving signals to connected data lines. The data lines includes a first data line connected to thin film transistors of a first number and a second data line connected to thin film transistors of a second number. The number of sub-signals in a data driving signal outputted to the first data line by the driving unit within a time period of one frame is the first number. The number of sub-signals in a data driving signal outputted to the second data line by the driving unit within a time period of one frame is the second number.
Abstract:
An array substrate provided by an embodiment of the present invention may include a flexible substrate and an array layer formed on the flexible substrate. The array layer may includes signal transmission lines, which include a plurality of data lines and a plurality of gate lines intersected with each other on the flexible substrate to form a plurality of sub-pixel regions; and thin film transistors, each of which is provided in a corresponding sub-pixel region of the plurality of sub-pixel regions and connected to a corresponding data line and a corresponding gate line. An angle between at least a portion of the signal transmission lines and any one edge of the flexible substrate may not be substantially equal to 90°.
Abstract:
A fabricating method of an array substrate, an array substrate and a display device are provided. The array substrate includes a substrate; a plate electrode, a gate electrode, a gate line, a gate insulating film, semiconductor silicon islands, a source electrode, a drain electrode, a data line, a slit electrode formed on the substrate, and the substrate is also provided with a gate line through hole and a data line through hole. The gate electrode and the gate line include the first transparent conductive material and gate metal material stacked sequentially; the slit electrode is directly connected to the drain electrode; a second transparent conductive material is connected to the gate line through the gate line through hole; and connected to the data line through the data line through hole.
Abstract:
A narrow frame liquid crystal display, comprising: an array substrate comprising a first mounting area and a second mounting area; a color film substrate mounted on the first mounting area; a first chip bonded onto the second mounting area of the array substrate; a first flexible circuit board bonded onto the second mounting area of the array substrate; a first lead configured to electrically connect the first chip and the first flexible circuit board; and a second lead configured to electrically connect a display region of the array substrate and the first chip. The first chip, the first lead and the first flexible circuit board are sequentially arranged on the second mounting area in a first direction away from the color film substrate. A distance between the first chip and the first flexible circuit board is set to be less than 10 mm. The size of the area for mounting the chip can be reduced, and the frame of the liquid crystal display can become narrower. The present invention further provides a method of producing narrow frame liquid crystal displays.
Abstract:
An array substrate, a touch panel and a driving method thereof, and a display device are disclosed. The array substrate comprises a base substrate (1) which is formed with gate lines, data lines (8), first common electrodes (5) and second common electrodes (6) thereon, and the second common electrodes (6) comprise: transverse electrode groups (601) located in the same row and metal jumper wires (302) connecting two adjacent transverse electrode groups (601) in the same row; the first common electrodes (5) comprise longitudinal electrode groups (501), and switch circuits (701, 702) are provided between the first common electrodes (5) and the data lines (8). At the touch scanning phase, the conduction of the switch circuits (701, 702) renders the parallel connection between the first common electrodes (5) and the data lines (8), and then results in the reduction of the equivalent resistance of the first common electrodes (5), and the signal-to-noise ratio of the first common electrodes (5) is indirectly enhanced, thus the present invention achieves more accurate monitoring of voltage signals coupled by touch sensing electrodes and precise positioning of a touch point.
Abstract:
The present disclosure relates to a display panel and a terminal device. The display panel includes a display region. At least a part of the display region is a transparent region. The transparent region has a plurality of pixel rows distributed along a column direction, and each of the plurality of pixel rows includes pixels and transparent portions arranged in a row direction. The pixel rows include first pixel rows and second pixel rows, transparent portions each arranged between two adjacent pixels in each of the first pixel rows are first transparent portions, and transparent portions each arranged between two adjacent pixels in each of the second pixel rows are second transparent portions. A width of each of the first transparent portions in the row direction is greater than a width of each of the second transparent portions in the row direction.
Abstract:
A display apparatus and a driving method therefor. The driving method includes: determining a gaze area and a non-gaze area of a user on a display apparatus in real time (S10); and driving the gaze area for image displaying at a first resolution, and driving the non-gaze area for image displaying at a second resolution, wherein the first resolution is higher than the second resolution. By using of the display apparatus, image resolution can be adjusted according to different areas, so as to realize high-resolution image display in a display area at which a user gazes and realize low-resolution image display in other areas, thereby reducing power consumption and achieving reasonable allocation of resources on the premise of ensuring the user experience.