Abstract:
This disclosure relates to a camera device and a method for capturing images by using the same. The camera device includes a liquid crystal lens array composed of a plurality of liquid crystal sub-lenses, an image sensor and a drive module. A preset distance is provided between the liquid crystal lens array and the image sensor, and the drive module is electrically connected with the liquid crystal lens array. The drive module is configured to adjust a focus of each liquid crystal sub-lens during capturing based on a distance between an object to be captured and a corresponding liquid crystal sub-lens, such that light rays from each object are focused respectively in a plane where the image sensor is located after passing through the corresponding liquid crystal sub-lens.
Abstract:
A backlight module comprises a light source, a light guide plate and at least one transparent light guide structure. Each transparent light guide structure comprises a first surface adjacent to a side of the light guide plate and a second surface far away from the light guide plate, a light emitted by the light source is directed into the first surface of the transparent light guide structure through the light guide plate. Each transparent light guide structure is configured to change a propagation direction of a first light in the light emitted by the light source, so that an emergence angle of the first light emitted from the second surface is smaller than an incidence angle of the first light incident from the first surface. The incidence angle of the first light onto the first surface is less than 90 degrees.
Abstract:
A color filter substrate, a display panel and a display device are provided. The color filter substrate includes a plurality of edge pixels. Each edge pixel includes a plurality of subpixels. Each subpixel is divided by the border line into a display portion at the display region and a non-display portion beyond the display region. The non-display portion is covered with a light-shielding layer. The plurality of subpixels includes a standard subpixel and a plurality of to-be-adjusted subpixels. For each to-be-adjusted subpixel, an additional light-shielding layer is provided at the display portion of the to-be-adjusted subpixel, or the light-shielding layer covering the non-display portion of the to-be-adjusted subpixel is provided with at least one aperture.
Abstract:
The present invention provides a glass powder blend comprising glass powder and additives, wherein the additives comprise copper powder, and the copper powder accounts for 2-3 mass % based on the total amount of the glass powder blend in 100 mass %. The present invention also provides a glass powder paste and a photoelectric package. Due to the addition of copper powder to the glass powder, the melting point of the glass powder blend can be decreased, thereby lowering the temperature for melting the glass powder blend by using laser, and reducing the thermal stress generated during encapsulation.
Abstract:
A packaging structure and a packing method for a display panel are provided, the display panel includes a display panel body (201) and a circuit board (202), and the packaging structure of the display panel includes: a box body (301) including an inner chamber and an opening at an upper surface of the box body (301); and at least one support division plate (302) provided in the inner chamber of the box body. The support division plate (302) is configured to be perpendicular to the upper surface of the box body (301) and to divide the inner chamber of the box body (301) into a plurality of vertical placement spaces, so that each of the placement spaces is configured for the display panel (20) to be vertically placed therein with a display surface of the display panel body (201) placed in the placement space being perpendicular to the upper surface (w) of the box body. The packaging structure of the display panel can increase the number of placed display panels (20), and decrease the damage to the display panels (20).
Abstract:
A curved display panel, a curved display device, and a method for fabricating the same are disclosed. Both the light output face and the light input face of the curved display panel are continuously curved surfaces. The curved display panel with a continuously curved surface has a bending degree which is closer to the natural bending degree of a liquid crystal panel, so that a relatively small stress is generated on the curved display panel, and the problem of serious peripheral light leakage caused by deformation of the curved display panel is alleviated. Besides, since the curvature radius of each point on the continuously curved surface changes slowly, the problem of serious peripheral light leakage caused by deformation of the curved display panel is alleviated, the complexity of the fabricating process is reduced, the fabricating process is simplified, and the production of the product is improved.
Abstract:
The present invention discloses a packaging device and a packaging method and relates to a field of manufacturing technique of a display panel. The packaging device is used to package a display panel, the display panel comprising a first substrate and a second substrate that are arranged opposed to each other and are able to be packaged by a sealing material, the packaging device comprising a first adsorption part and a second adsorption part that are able to attract each other through a magnetic force, one of the first adsorption part and the second adsorption part configured to be detachably arranged on the outside of the first substrate, and the other of the first adsorption part and the second adsorption part configured to be detachably arranged on the outside of the second substrate.
Abstract:
A liquid crystal display is provided. The liquid crystal display includes a position limiting structure, and further includes a TFT substrate, a CF substrate adhered to an internal surface of the TFT substrate, and an adhesive layer disposed at partial or entire area except a specific area on the internal surface of the TFT substrate. The TFT substrate is fixed on the position limiting structure through the adhesive layer. The internal surface of the CF substrate is adhered to the internal surface of the TFT substrate. The specific area on the internal surface of the TFT substrate includes an overlapped area of the internal surface of the TFT substrate and the internal surface of the CF substrate and an area, for connecting a flexible circuit board, on the internal surface of the TFT substrate.
Abstract:
According to the present disclosure, there are provided a liquid crystal display substrate, a liquid crystal display panel and a liquid crystal display device. The liquid crystal display substrate comprises: a base substrate; a planarizing layer disposed on the base substrate; and a liquid crystal aligning layer disposed on the planarizing layer. As regards the liquid crystal display substrate, in a place in the planarizing layer that is close to its edge, there is provided a recess.
Abstract:
Embodiments of the invention provide a transparent electrode, an array substrate and a liquid crystal display device. The transparent electrode includes a first-domain display region and a second-domain display region that are adjacent to each other, openings are respectively formed in the first-domain display region and the second-domain display region of the transparent electrode so that the transparent electrode has a first slit extending in a first direction in the first-domain display region and a second slit extending in a second direction different from the first direction in the second-domain display region. Additional openings are further formed at a region between the first-domain display region and the second-domain display region of the transparent electrode, so that a third slit extending in a third direction and a fourth slit extending in a fourth direction different from the third direction are formed at this region.