Abstract:
Disclosed are a backlight module and a display apparatus. The backlight module includes an infrared light source, an optical fiber and a conversion component. The infrared light source is connected with an input end of the optical fiber and configured to provide infrared light to the input end of the optical fiber. An output end of the optical fiber is connected with the conversion component and configured to transmit the infrared light to the conversion component. The conversion component includes a tube body, and a plurality of light emitting elements are arranged along an extending direction of the tube body successively in the tube body. The light emitting elements are configured to emit visible light under the irradiation of the infrared light.
Abstract:
The present disclosure discloses an electroluminescent display and the encapsulation method thereof. The electroluminescent display comprises: a substrate having encapsulation units provided on a side surface of the substrate; a cover plate covering the substrate, wherein the cover plate together with the encapsulation units defines a first chamber and a second chamber, the second chamber surrounds the first chamber; an electronic device provided on the substrate and located within the first chamber, wherein the first chamber is filled with inert gas and the second chamber is filled with a hydrophobic liquid. The electroluminescent display according to an embodiment of the present disclosure can prevent water vapor and oxygen from entering the electronic device. The entire system has a good sealing performance, such that a service life of the electronic device can be greatly extended.
Abstract:
The present invention provides a frame assembly, which comprises a first frame and a second frame provided to surround the first frame. The first frame and the second frame are configured to support mesh fabric therebetween.
Abstract:
A base material for a display device, a display device and a method for fabricating the display device are disclosed. One or more grooves are disposed on a bonding surface of the base material, the grooves are configured for accommodating at least a portion of adhesive coated to the bonding surface. The grooves on the base material can accommodate redundant adhesive, thereby effectively preventing the adhesive overflow and air bubble defects during the bonding process, and increasing the yield ratio of bonding.
Abstract:
The present invention belongs to the field of display technology, particularly relates to an attaching device and a corresponding attaching method for forming a curved display panel. The attach device is used for a curved surface attachment between a display substrate and a touch substrate, comprises a base station, a curvature adjusting bench and an attaching roller, wherein, the base station is fixed, the curvature adjusting bench includes a plurality of sub-benches with different heights and being capable of moving with respect to each other within the base station, the plurality of sub-benches are used for making the display substrate and the touch substrate to be attached, which are provided within the base station and located on the curvature adjusting bench, have a preset curvature, the attaching roller is used for rolling on the display substrate and the touch substrate to be attached to form a curved display panel.
Abstract:
A display apparatus includes a display panel having an image acquisition region within a display area. The display panel includes a substrate and a plurality of light-emitting elements over the substrate. The plurality of light-emitting elements include one or more first light-emitting elements positionally within the image acquisition region. At least one first light-emitting element includes a non-transparent electrode provided with at least one through-hole configured to allow the lights from the outside pattern to pass through the display panel.
Abstract:
A display apparatus includes a display panel having an image acquisition region within a display area, and an image acquisition device over a side of the display panel opposing to its display surface. The image acquisition device is at a position corresponding to the image acquisition region, and is configured to capture an image based on lights from an outside pattern over a side of the display panel proximal to the display surface. The display panel includes a substrate and a plurality of light-emitting elements over the substrate. The plurality of light-emitting elements comprises one or more first light-emitting elements positionally within the image acquisition region. At least one first light-emitting element includes a non-transparent electrode provided with at least one through-hole configured to allow the lights from the outside pattern to pass through the display panel.
Abstract:
The present disclosure relates to a backlight module and a display device. The backlight module comprises a light guide plate and a light-emitting assembly configured to emit light rays and cause the light rays as emitted to be incident to the light guide plate in parallel. The light guide plate further comprises a light incident surface, a bottom surface, a light emitting surface on the top thereof, and at least one reflective sloped surface. The reflective sloped surface is positioned between the bottom surface and the light emitting surface, and an angle between the at least one reflective sloped surface and a plane of the bottom surface extending in a direction away from the light incident surface is less than 90°. The light incident surface is located on a side of the light guide plate.
Abstract:
A package structure of an organic light emitting diode display panel includes a display substrate, a glass cover plate and a package portion. The display substrate and the glass cover are arranged opposite to each other. The package portion is provided between a non-display region of the display substrate and a portion of the glass cover plate corresponding to the non-display region. The display substrate includes organic light emitting diode elements. The organic light emitting diode elements are located in a sealed cavity enclosed by the display substrate, the glass cover plate and the package portion. The package portion includes a first concavo-convex structure provided at a surface of the display substrate facing the glass cover plate; a second concavo-convex structure provided at a surface of the glass cover plate close to the display substrate; and a package material is provided between the first concavo-convex structure and the second concavo-convex structure.
Abstract:
A display module is divided into a display area and a non-display area surrounding a periphery of the display area, comprises a touch panel and a liquid crystal panel which are assembled, an optical processing film is provided between the touch panel and the liquid crystal panel, wherein the optical processing film is provided in the display area, an adhesive block, which is provided in an area corresponding to the non-display area between the touch panel and the liquid crystal panel, surrounds a periphery of the optical processing film and is provided in the same layer as the optical processing film, has the same thickness as the optical processing film, the adhesive block is configured to adhere the touch panel to the liquid crystal panel as a whole. Thinness of the display module can be achieved and the corresponding display device can achieve the effect of narrow frame.