摘要:
A touch substrate, a method of driving the same, and a touch display device are provided, and the touch substrate includes: a plurality of emitting electrode patterns arranged along a first direction, wherein the emitting electrode patterns includes an emitting electrode sub-pattern or a plurality of electrically connected emitting electrode sub-patterns; a plurality of first receiving electrode patterns arranged along a Y-direction, wherein the first receiving electrode patterns includes a plurality of electrically connected first receiving electrode sub-patterns; a plurality of second receiving electrode patterns arranged along an X-direction and insulated from the first receiving electrode pattern, and the second receiving electrode pattern includes a plurality of second receiving electrode sub-patterns electrically connected in sequence; the first direction intersecting both the X-direction and the Y-direction.
摘要:
Embodiments of the present invention provide a display substrate, a fabricating method thereof, and a display panel. The display substrate includes a substrate, a display structure layer disposed on the substrate, and an alignment layer. A grating polarizing layer is disposed in the display structure layer, and an optical alignment direction of the alignment layer is parallel to or perpendicular to a transmission axis direction of the grating polarizing layer.
摘要:
The present disclosure provides a method for manufacturing a thermal insulation film, a thermal insulation structure, and a display device. The method for manufacturing the thermal insulation film includes: providing a substrate; forming a sacrificial layer on the substrate; forming a thermal insulation layer on the sacrificial layer, the thermal insulation layer including at least one opening capable of exposing a portion of the sacrificial layer; and etching the sacrificial layer through the opening, so as to form a plurality of hollow holes between the thermal insulation layer and the substrate. A method for manufacturing the thermal insulation film according to the present disclosure is used for manufacturing a thermal insulation film.
摘要:
The present invention provides a manufacturing method of an array substrate, an array substrate and a display apparatus. The manufacturing method comprises steps of: forming a thin film transistor and a signal line on a glass substrate, and forming an organic insulating layer above the thin film transistor and the signal line correspondingly; forming a passivation insulating layer on the organic insulating layer, wherein, before forming the passivation insulating layer, the manufacturing method further comprises a step of: performing a pre-heating process on the glass substrate on which the organic insulating layer is formed.
摘要:
An array substrate includes a base substrate (10) and a gate line (11) and a data line (12) provided on the base, the gate line (11) and the data line (12) define a pixel unit, and in the pixel unit, a thin film transistor (13) is provided, the thin film transistor (13) includes a gate electrode (131), a gate insulation layer (132), an active layer (133), a source electrode (134) and a drain electrode (135). The gate insulation layer (132) includes a first gate insulation portion (1321) and a second gate insulation portion (1322), the gate electrode (131) is located between the first gate insulation portion (1321) and the second gate insulation portion (1322), and the second gate insulation portion (1322) is located between the gate electrode (131) and the active layer (133). The array substrate further includes a conductive pad (114), and a first via (15) corresponding to the conductive pad (114) is provided in the gate insulation layer (132) at both sides of the gate line (11), and the data line (12) is connected to the conductive pad (114) through the first via (15). The array substrate is capable of improving the definition, the resolution and the aperture ratio of a display device. A manufacturing method for an array substrate and a display device including such an array substrate are also disclosed.
摘要:
The present invention discloses an array substrate and a manufacturing method thereof, and a liquid crystal display device, which relate to the field of liquid crystal display technology and may keep patterns at the slit tail ends of slit electrodes consistent with predesigned patterns so as to avoid a trace mura phenomenon. The array substrate includes a plurality of sub-pixel units defined by crossing of a plurality of gate lines and a plurality of data lines, wherein a first electrode is arranged in each sub-pixel unit, the first electrode is a slit electrode, and a common electrode line is arranged below the first electrode. In each sub-pixel unit, a light blocking layer is arranged between the common electrode line and the first electrode, and both the slit tail end of the first electrode and the common electrode line are positioned in the area of the light blocking layer.
摘要:
An array substrate, a liquid crystal display panel and a display device are disclosed. The array substrate includes a base substrate, a plurality of pixel units disposed on the base substrate, a drive module providing each of the pixel units with a display signal; a photovoltaic battery component electrically connected to the drive module, which includes a plurality of photovoltaic sub-batteries, each of the photovoltaic sub-batteries including a first transparent electrode, a photovoltaic thin film and a second transparent electrode; the orthographic projection of the photovoltaic thin film on the base substrate lies within the light blocking region. Because the orthographic projection of the photovoltaic thin film on the base substrate lies within the light blocking region, aperture ratio of each pixel unit in the array substrate will not be affected.
摘要:
A backlight module and a display apparatus are provided. The backlight module comprises a backlight source and optical sheets, wherein the backlight source is an organic electroluminescent device, the optical sheets are directly adhered to a light emitting side of the organic electroluminescent device facing a display panel. The light emitted by the organic electroluminescent device is directed emitted after passing through the optical sheets. The display apparatus comprises such a backlight module. A thickness of such backlight module can be efficiently reduced.
摘要:
An array substrate, a manufacturing method thereof and a display device are provided; in the array substrate, two adjacent rows of the pixel units (200) are taken as a group of pixel unit rows; in each group of the pixel unit rows, since the pixel electrodes in two adjacent pixel units (200) of a same column are all electrically connected with one composite transistor (300), and the composite transistor (300) can be turned on or off under the control of different levels of control voltages, to charge the pixel electrodes in two adjacent pixel units (200) of the same column at different times, each group of the pixel unit row can share a gate line located between the two rows of the pixel units, as compared with the conventional array substrate, the number of the gate lines disposed on the array substrate is reduced by half, so that the aperture ratio of the array substrate can be improved, and the brightness of the display panel can be further improved.
摘要:
According to embodiments of the invention, a TFT array substrate, a manufacturing method of the TFT array substrate and a display device are provided. The method comprises: depositing a metal film on a substrate, and forming a gate electrode and a gate line; forming a gate insulating layer and a passivation layer on the substrate; depositing a transparent conductive layer, a first source/drain metal layer and a first ohmic contact layer, and forming a drain electrode, a pixel electrode, a data line, and a first ohmic contact layer pattern provided on the drain electrode; and depositing a semiconductor layer, a second ohmic contact layer and a second source/drain metal layer, and forming a source electrode, a second ohmic contact layer pattern provided below the source electrode, and a semiconductor channel between the source electrode and the drain electrode.