Abstract:
Provided are a display substrate and a manufacturing method thereof, and a visible light communication apparatus. The display substrate includes a substrate, and the substrate includes a display region and a peripheral region surrounding the display region; the peripheral region includes a visible light signal receiving region surrounding the display region; the display substrate further includes a photosensitive sensing unit, the photosensitive sensing unit is located in the visible light signal receiving region and is configured to receive a visible light signal and convert the visible light signal into an electrical signal to achieve visible light communication.
Abstract:
A manufacturing method of a template includes: providing a base; forming a photoresist pattern on the base and patterning the base by using the photoresist pattern as a mask, and the forming the photoresist pattern includes: forming a plurality of first patterns spaced apart from each other on the base; forming a first material layer on the plurality of first patterns; patterning the at least one first pattern by using the first material layer as a mask so that the first pattern is formed into at least one first sub-pattern; and removing the first material layer; and the first material layer at least cover one side of at least one of the plurality of first patterns in a direction perpendicular to a surface on which the base is located.
Abstract:
A carrying table and a cutting method are disclosed. The carrying table includes: a carrying table body including a carrying table surface provided with a plurality of openings; and a plurality of pistons respectively disposed in at least part of openings and configured to conduct reciprocating movement relative to the carrying table surface along side walls of the openings. The carrying table and the cutting method can reduce or eliminate the local deformation of a membrane object to be cut during cutting in the use process, and reduce or avoid the poor processes such as widened cutting line and reduced cutting precision in the cutting process.
Abstract:
A transfer apparatus includes a supporting member, a free electron excitation device and a detection device; the free electrons excitation device is configured to excite semiconductor material of an object to be transferred to generate free electrons, and the detection device is configured to detect whether material of a surface of the transferred object in contact with the support surface of the supporting member is conductive under excitation by the free electron excitation device. A laser annealing apparatus comprising the transfer apparatus is further provided.
Abstract:
A dual-mode liquid crystal display device, a color filter substrate and an array substrate are provided. The display device comprises: a color filter substrate, an array substrate assembled with the color filter substrate, and a liquid crystal layer between the color filter substrate and the array substrate. The pixel area of the array substrate comprises red, green, blue and white sub-pixels; and the color filter substrate or the array substrate is provided with a fluorescent layer at the position corresponding to the white sub-pixels.
Abstract:
The present disclosure provides a method for manufacturing a thin-film solar cell, and the thin-film solar cell. The method includes steps of: forming a first electrode on a substrate; forming an N-type doped layer and an intrinsic semiconductor film on the first electrode; doping ions into the intrinsic semiconductor film, and subjecting the ion-doped intrinsic semiconductor film to activation treatment using an excimer laser annealing (ELA) process, so as to form a P-type doped layer at an upper layer of the intrinsic semiconductor film; and forming a second electrode on the P-type doped layer.
Abstract:
Disclosed are a touch display panel and a manufacturing method thereof, the touch display panel includes an array substrate and an opposed substrate disposed oppositely; a set of first electrode lines parallel to each other disposed on the array substrate or the opposed substrate; a set of second electrode lines parallel to each other disposed on the array substrate or the opposed substrate and arranged to cross the first electrode lines. The first electrode lines and the second electrode lines have no electrical connection therebetween, and the array substrate or the opposed substrate comprises a black matrix; the first electrode lines and/or the second electrode lines correspond to positions of the black matrix and the first electrode lines and/or the second electrode lines corresponding to positions of the black matrix are metal electrode lines.