Abstract:
The present disclosure provides a flexible display device and a method for packaging the same. The flexible display device includes a light-emitting component and a packaging layer for packaging the light-emitting component. The packaging layer includes a patterned first film layer with patterned gaps, and a second film layer at least covering the patterned gaps in the first film layer.
Abstract:
A method for detecting drowning is disclosed. The method includes steps of: collecting a plurality of detection signals; recording the plurality of detection signals and determining whether a drowning is happening or not by calculating and analyzing each of the detection signals; and sending out a drowning signal K when it is determined from all of the detection signals that the drowning is happening. A device for detecting drowning is further disclosed. An intelligent and quick detection for drowning situation is achieved, and an accuracy of drowning detection is improved, since the plurality of detection signals sent by a plurality of sensors worn by a drowner are detected.
Abstract:
A display panel is disclosed. The display panel comprising: two substrates assembled and connected to each other; films adhered to a display region on one surface of the first one of the two substrates facing away the second one and a display region on one surface of the second one of the two substrates facing away the first one respectively; and seal strips provided along the locations at which the substrates adjoin an edge of the films, for sealing the films and the substrates.
Abstract:
A substrate detection device and a substrate direction method are disclosed in the embodiments for achieving a wide-range high-compatibility detection of leads in a peripheral circuit region of a liquid crystal display. The detection device comprises a converting unit configured to calculate a gray scale of a gray image of a circuit lead region of a substrate based on the gray image of the circuit lead region of the substrate, and to convert the gray image into an image of leads in the circuit lead region, based on a difference between the calculated gray scales of the leads and of the substrate in the circuit lead region; and a judging unit configured to judge a state of the leads in the circuit lead region based on the image of the leads in the circuit lead region.
Abstract:
The disclosure relates to a LED lighting device and a packaging method. The LED lighting device comprises a frame and at least one chip fixed in the frame, and further comprises a light emitting layer and a light condensing layer, wherein the light emitting layer wraps the chip, and the light condensing layer is arranged on the light emitting layer and configured for converging light passing through the light emitting layer.
Abstract:
According to an LED packaging structure and packaging method thereof provided by the present disclosure, the LED may comprise a support having a cavity and at least one LED chip placed in the cavity. After the cavity is filled with a fluorescent adhesive, at least one concave lens structure may be formed at a light emitting side of the LED chip.
Abstract:
The present disclosure provides a connector disengagement apparatus and an inspection system for a liquid crystal display module. The connector disengagement apparatus comprises a first member, a second member, a third member, a rotation axle and a stiffener carrying a part of a connector, one end of the first member being connected to one end of the second member, the other end of the first member being arranged towards the stiffener, the other end of the second member being connected to the third member, wherein the second member is rotatable about the rotation axle. The connector disengagement apparatus acts on the stiffener in a down-to-up direction to lift the stiffener to interrupt efficiently the connection of the connector. In the disengagement process, the pins of the connector will not be damaged as the force of the disengagement apparatus is not directly applied onto the connector.
Abstract:
A film stripping mechanism, comprising: a base; a platform disposed on the base and having a substrate to be stripped of film placed thereon; a blade disposed above an upper surface of the platform and capable of contacting the substrate to be stripped of film placed on the platform, the platform and the blade being movable relative to each other so as to strip off a film on the substrate to be stripped of film; an automatic alcohol-spraying module contacting the blade for spraying outwards alcohol and allowing the alcohol to flow toward the substrate to be stripped of film along the blade. The film stripping mechanism can improve the yield rate of film stripping and the stripping efficiency, and reduce breakage rate of the substrates.
Abstract:
An array substrate is provided. The array substrate includes a base substrate; an auxiliary structure in an inter-subpixel region and on the base substrate; and a cathode layer on a side of the auxiliary structure away from the base substrate. The auxiliary structure includes a plurality of groups of auxiliary blocks, a respective group of the plurality of groups of auxiliary blocks including one or more auxiliary blocks protruding away from the base substrate. The plurality of groups of auxiliary blocks are configured to enhance adhesion between an organic layer and an adjacent layer and reduce or eliminate interlayer peeling therebetween.
Abstract:
The present disclosure discloses an encapsulation structure, an encapsulation method and a display apparatus. The encapsulation structure includes at least two encapsulation structure layers that cover an outer side of a device to be encapsulated, at least one of the at least two encapsulation structure layers includes an inorganic layer and an organic layer that are superimposed. The inorganic layer comprises a first sub-inorganic layer and a second sub-inorganic layer that are superimposed, a first opening is in the first sub-inorganic layer, a second opening is in the second sub-inorganic layer, and an elastic structure is disposed in each of the first opening and the second opening.