Abstract:
The supporting sheet assembly comprises several supporting sheets. Each supporting sheet includes a supporting sheet body and a nut installed on one side of the supporting sheet body. A protective layer is provided on the side of the supporting sheet body where the nut is installed. An opening is dug in the protective layer at the top part of the nut so as to expose the nut. Along the axis direction of the nut, the height of the protective layer is greater than the height of the nut, which reduces problems such as poor attachment and the generation of air bubbles caused by the difference in force between the position of the nut and the position without the nut on the supporting sheet.
Abstract:
An array substrate, a display panel and a manufacturing method thereof are provided. The array substrate includes a base substrate including a peripheral region; and a lead region located in the peripheral region, the lead region including a plurality of leads, wherein a main plane of the base substrate provided with the plurality of leads includes a first side edge, and the plurality of leads extend to the first side edge, a lateral surface of the base substrate at the first side edge is provided with a concave portion, and an electrode electrically connected with the plurality of leads is disposed in the concave portion.
Abstract:
A method for manufacturing a display panel, a display panel, and a transferring device are provided. Metal liquid is formed on a side surface of the base substrate to form a first region to be bonded. After curing, the second connecting lines are formed by etching such that the second connecting lines correspond to and connect to the first connecting lines disposed on the front surface of the base substrate, thereby providing the side bonding of the display panel. By using an integral transferring and etching method, the line width and pitch of the connecting lines in the region to be bonded can be reduced, which makes it suitable for full-size display panels with a wider range of applications, especially for products with high resolution.
Abstract:
The present disclosure relates to a display panel and a method for manufacturing a display panel. The display panel includes a first substrate having a first wiring, a second substrate having a second wiring, the first substrate, and the second substrate being laminated on each other to form a laminated structure, and a third wiring located on a side surface of the laminated structure, wherein the third wiring connects the first wiring and the second wiring.
Abstract:
A method of manufacturing a low temperature polycrystalline silicon thin film and a thin film transistor, a thin film transistor, a display panel and a display device are provided. The method includes: forming an amorphous silicon thin film (01) on a substrate (1); forming a pattern of a silicon oxide thin film (02) covering the amorphous silicon thin film (01), a thickness of the silicon oxide thin film (02) located at a preset region being larger than that of the silicon oxide thin film (02) located at other regions; and irradiating the silicon oxide thin film (02) by using excimer laser to allow the amorphous silicon thin film (01) forming an initial polycrystalline silicon thin film (04), the initial polycrystalline silicon thin film (04) located at the preset region being a target low temperature polycrystalline silicon thin film (05). The polycrystalline silicon thin film has more uniform crystal size.