Abstract:
The present disclosure relates to the field of display technology, and provides a substrate, a method for manufacturing the same and a display device. The substrate includes a signal line and a GND line configured to remove static charges on the signal line.
Abstract:
An array substrate and a fabrication method thereof are provided. The array substrate comprises a plurality of wiring regions (S-S′) disposed in a non-display region, a plurality of signal lines (111, 112) is provided in the wiring regions (S-S′), at least part of the signal lines (111, 112) within each of the wiring regions (S-S′) are respectively formed by connecting conducting wires (121, 123) located in different layers in series; and any two of the signal lines (111, 112) within a same wiring region (S-S′) have a resistance difference within a threshold range. The same signal line (111, 112) is disposed in different layers, so that the signal line (111, 112) is bent in a plane perpendicular to the array substrate, which achieves of the extension of a length of the signal line (111, 112), and thus increases the length and resistance of the signal line (111, 112), the resistance of which needs to be increased. At the same time, the width taken by the signal line (111, 112) is not increased, so that the signal line (111, 112) has a greater density in the wiring region (S-S′), which achieves the reduction in the number of drivers and the fabrication costs, and meanwhile avoids a problem that it is not conducive to realize a narrow frame due to a large area of the non-display region, resulted from a large area taken by a single signal line (111, 112).
Abstract:
An array substrate is disclosed. The array substrate comprises a base substrate (4) and signal lines on the base substrate (4). The signal lines comprises a plurality of conductive layers (11, 12) in different layers, and the plurality of conductive layers (11, 12) are provided with insulation layers (21) therebetween, and are connected in parallel through one or more vias (3). Embodiments of the present disclosure further disclose a method for manufacturing the array substrate.
Abstract:
A touch panel, a manufacturing method thereof, and a display device are provided, and relates to the field of display technology. The touch panel includes a display area and a non-display area. The touch panel further includes: a base substrate; a metal bezel disposed above the base substrate and located in the non-display area; a transparent protective layer disposed above the metal bezel; and a touch function layer disposed above the transparent protective layer; wherein a side where the base substrate is located is a display side of the touch panel.
Abstract:
The embodiments of the present disclosure provide a flexible touch substrate and a method for fabricating the same, and a touch display device and relate to touch control technology. Deformation or crack of the touch electrode pattern when the flexible touch substrate is bent, and can realize large curvature bending. The flexible touch substrate includes a flexible base substrate, touch electrode patterns disposed on a first surface of the flexible base substrate, and at least one groove on at least one of the first surface and a second surface opposite the first surface of the flexible base substrate, wherein a projection of the groove on the base substrate is within a projection of a gap between the touch electrode patterns on the base substrate.
Abstract:
The embodiments of the present disclosure provide an OLED display panel, a fabrication method thereof and an OLED display device, which improve optical, mechanical, and electrical characteristics of the OLED display panel. The OLED display panel includes an OLED light-emitting layer and touch electrodes. The touch electrode includes a first touch electrode layer and a second touch electrode layer, and the OLED light-emitting layer is disposed between the first touch electrode layer and the second touch electrode layer.
Abstract:
The disclosure provides a touchpad and a display screen thereof. The touchpad includes a first touch electrode assembly and a second touch electrode assembly; the first touch electrode assembly includes a first touch electrode and a first organic insulating layer covering the first touch electrode; and the second touch electrode assembly includes a second touch electrode and a second organic insulating layer covering the second touch electrode. The touch electrode includes a metal layer, a buffer layer and a low reflection layer, the buffer layer being disposed below the metal layer, and the low reflection layer being disposed above the metal layer.
Abstract:
This disclosure discloses a touch panel, a method for fabricating the same, a display panel, and a display device, and the touch panel includes: a substrate; touch electrodes on the substrate, wherein the touch electrodes include a first electrode in a first direction, and a second electrode perpendicular to the first direction, and the first electrode includes a plurality of first electrode blocks; and a plurality of bridge structures on the substrate, configured to electrically connect adjacent first electrode blocks of the plurality of first electrode blocks, wherein each of the plurality of bridge structures includes: at least two metal bridge points, and an electrode connection bridge and a first protection layer overlying the at least two metal bridge points successively, wherein the electrode connection bridge includes via holes corresponding to the metal bridge points in a one-to-one manner.
Abstract:
A touch screen includes an array substrate and a color filter substrate disposed opposite to each other, the color filter substrate including an active area and a bezel area located at a periphery of the active area; a touch element layer disposed at a side of the color filter substrate facing away from the array substrate or a side of the color filter substrate facing towards the array substrate, the touch element layer including a number of metal pads disposed in its peripheral region; and a light shielding layer disposed on a side of at least one of the number of metal pads facing away from the array substrate. The bezel of the touch screen is narrow, so that a larger screen can be housed in a limited machine body, with cost advantages and a stylish appearance.
Abstract:
Provided is a naked-eye three dimensional display device including: a third substrate, a second liquid crystal layer, a first electrode and a second electrode and a two dimensional display panel including a first substrate, a second substrate and a first liquid crystal layer disposed between the first substrate and the second substrate; the third substrate is disposed opposite to the second substrate on a side of the second substrate away from the first substrate; the second liquid crystal layer is disposed between the second substrate and the third substrate; the first electrode and the second electrode are disposed between the second substrate and the third substrate, and the first electrode and the second electrode are configured to apply an electric field to liquid crystal in the second liquid crystal layer to form a light splitting device for three dimensional display.