Abstract:
The present invention provides an organic electroluminescent device packaging structure, comprising a first substrate, a second substrate and an organic electroluminescent device, the organic electroluminescent device being arranged on the first substrate, and the second substrate and the first substrate being spaced apart to arrange the organic electroluminescent device in a sealed space between the first substrate and the second substrate, wherein the organic electroluminescent device packaging structure further comprises a first barrier layer and filling oil filled in the sealed space, and the first barrier layer covers the outer surface of the organic electroluminescent device.
Abstract:
A display substrate is provided, which includes a first display area (A1). The first display area (A1) includes a plurality of display island areas (A11), which are arranged in an array, and light-transmitting areas (A121, A122), which are located between adjacent display island areas (A11). The display island areas (All) each includes: a plurality of first pixel circuits (11) and a plurality of first light-emitting elements (13), which are provided on a base. At least one first pixel circuit (11) is electrically connected to at least one first light-emitting element (13) and is configured to drive the at least one first light-emitting element (13) to emit light. The first pixel circuits (11) in adjacent display island areas (A11) are connected by means of a plurality of first signal traces in a first direction (X).
Abstract:
Provided are a display substrate, a preparation method thereof, and a display device. The display substrate includes a display region and a bonding region on one side of the display region. The bonding region at least includes a lead area; the display region includes a plurality of data lines and a plurality of data fanout lines, the lead area includes a plurality of lead wires, and orthographic projections of the plurality of data lines and the plurality of data fanout lines on a plane of the display substrate are at least partially overlapped. At least one lead wire is connected to the data line through the data fanout line. In the lead area, an orthographic projection of any one of the lead wires on the plane of the display substrate and orthographic projections of other lead wires on the plane of the display substrate have no overlap region.
Abstract:
An array substrate and a fabrication method thereof, and a display panel are provided. The array substrate includes: a base substrate; a first electrode layer and a first pixel defining layer, on the base substrate; a light emitting layer, on the first electrode layer; and a second pixel defining layer, on the first pixel defining layer and the light emitting layer, wherein, the second pixel defining layer overlaps with the light emitting layer in a direction perpendicular to the base substrate
Abstract:
A support frame and a display assembly are provided in the present disclosure. The support frame includes a connection frame, a first support plate at a top of the connection frame, and a second support plate and a third support plate respectively at two branches at a bottom of the connection frame. When the display device is on a support plane, the first support plate is connected to a bottom plate of the display device, and the second and the third support plates are connected to the support plane. When the display device is suspended on a suspension wall, the second and the third support plates are connected to a back plate of the display device, and the first support plate is connected to the suspension wall.
Abstract:
A device and method for recording and reproducing holographic information, and a display apparatus are disclosed. The device for recording holographic information comprises an electro-optical regulating element, which is arranged in a light path between an object to be reproduced and a recording medium, receives an object beam scattered by the object to be reproduced, and regulates an outgoing direction and a focal distance of the object beam to irradiate the recording medium. The recording medium is configured to receive the reference beam from the light source and the object beam regulated by the electro-optical regulating element. The reference beam and the object beam form information relevant with the object to be reproduced in the recording medium. By regulating the outgoing direction and focal distance of beam with the electro-optical regulating element, it is unnecessary to rotate the recording medium for recording and reproducing the holographic information.
Abstract:
The present invention provides an outer frame and a display device. The outer frame is configured to package an edge of a liquid crystal module and includes at least one sub frame, the sub frame comprises a side plate, a first packaging plate, a second packaging plate and a supporting plate, the side plate, the first packaging plate, the second packaging plate and the supporting plate are formed integrally, a first accommodation groove for accommodating an edge of the liquid crystal module is formed by the side plate, the first packaging plate and the supporting plate, and a second accommodation groove for accommodating an edge of the back cover plate configured to cover the back surface of the liquid crystal module is formed by the side plate, the supporting plate and the second packaging plate.
Abstract:
A diffusion sheet, a backlight module and a liquid crystal module are disclosed. The diffusion sheet comprises a paper fiber layer (1) with surfaces on two sides both disposed with a light-transmissive protection layer (2, 3). The diffusion sheet can well diffuse light passing through the diffusion sheet, and hence improve uniformity of light passing through the diffusion sheet. A paper fiber layer (1) is employed in the diffusion sheet for diffusion, which makes a paper fiber layer (1) be prepared at a low cost and have a small weight, and hence reduce the preparation cost and weight of a diffusion sheet to provided convenience for transfer of a product.
Abstract:
The present invention provides a display substrate and a manufacturing method thereof, and a flexible display device including the display substrate, which belong to the field of display technology, and can solve the problem of poor reliability of an existing display substrate due to damage to thin film transistors when the display substrate is bent. In the display substrate provided by the present invention, by providing the stress absorbing units made of a resin material in the display substrate, the stress generated during bending of the display substrate is released through the transparent resin material and the thin film transistors on the display substrate are unlikely to be damaged, thereby improving the reliability of the whole display substrate.
Abstract:
An electroluminescent device and manufacturing method thereof are provided. The electroluminescence device comprises an array substrate (10). The array substrate (10) comprises a substrate (11); and a thin film transistor (12), a protection layer (13) and a connection electrode (14) provided in turn on the substrate (11). The protection layer (13) covers the thin film transistor (12); and the connection electrode (14) is provided on the protection layer (13). The protection layer (13) below the connection electrode (14) protrudes towards a side away from the substrate (11) to form a boss (131). The protection layer (13) comprises a via hole (132) provided at a position corresponding to a drain electrode (122) of the thin film transistor (12). The connection electrode (14) is connected with the drain electrode (122) of the thin film transistor (12) through the via hole (132). The electroluminescent device and manufacturing method thereof shorten the film formation time, reduce the etching difficulty and accordingly improves the production efficiency in the process of manufacturing the connection electrode while the reliability of electrical connection between a thin film transistor and a second electrode is improved.