Abstract:
The present disclosure provides a display panel and a method for producing the same. An area where two sides of a first corner of a display area are located is set as a non-wiring area, an area where two sides of a second corner of the display area in an diagonal direction of the first corner are located is set as a wiring area, and peripheral wirings and peripheral arrangements of the display panel are provided in a part of the wiring area, at least one of the two sides of the second corner is located in the part of the wiring area, so that display screens with different size can be produced in a case of using only one set of mask plate, capable of saving the cost of developing and producing display panel products and shortening the development and design cycle thereof.
Abstract:
A touch unit, a touch substrate and a manufacturing method thereof, and a flexible touch display device are disclosed. The touch unit comprises a composite graphene layer which at least comprises a first graphene layer and a second graphene layer. An inorganic material layer is disposed between the first graphene layer and the second graphene layer and reduces the impedance of the first graphene layer and the second graphene layer. The touch unit has good mechanical and electrical properties and hence can be well applied to flexible touch display products.
Abstract:
A black photoresist composition capable of emitting infrared light, a method of preparing the black photoresist composition capable of emitting infrared light, a color filter comprising a Black Matrix formed from the black photoresist composition capable of emitting infrared light, and a display device including the color filter. The black photoresist composition capable of emitting infrared light includes, based on the total weight of the composition, 2% to 15% of a color mixed material, 30% to 90% of a solvent, 2% to 20% of an alkali-soluble resin, 2% to 20% of an ethenoid unsaturated monomer, 0.01% to 1% of photoinitiator, and 0.005% to 0.02% of other additives; wherein the color mixed material includes a colorant and a surface-modified infrared light-emitting material at a weight ratio of 19:1 to 1:1.
Abstract:
The present invention provides a method and an apparatus for forming an oriented nanowire material as well as a method for forming a conductive structure, which can be used to solve the problem of imperfect process for forming oriented nanowire material in prior art. The method for forming an oriented nanowire material of the present invention comprises: forming a liquid film in a closed frame by a dispersion containing nanowires; expanding the closed frame in a first direction so that the liquid film expands in the first direction along with the closed frame; contracting the closed frame in the first direction so that the liquid film contracts in the first direction along with the closed frame; transferring the contracted liquid film to a substrate; and curing the liquid film to form an oriented nanowire material on the substrate.
Abstract:
The present invention provides a touch element and a manufacturing method thereof, and a touch screen. The touch element includes a substrate and a touch layer arranged on the substrate, the touch layer is made of a doped carbon nanotube material, and the doped carbon nanotube material is formed by doping and modifying a carbon nanotube material with a strong oxidizing material. The touch element has higher conductivity and lower sheet resistance, which makes the touch element have a good touch performance, thus making a touch product with the touch element achieve the same touch performance while reducing the cost of the touch product; at the same time, the touch layer made of the doped carbon nanotube material has good characteristics of bending resistance, scratch resistance and knocking resistance, so that the touch element can be well applied to the touch of a flexible display product. ea
Abstract translation:本发明提供一种触摸元件及其制造方法以及触摸屏。 触摸元件包括衬底和布置在衬底上的触摸层,触摸层由掺杂的碳纳米管材料制成,掺杂的碳纳米管材料通过用强氧化材料掺杂和改性碳纳米管材料形成。 触摸元件具有更高的导电性和更低的薄层电阻,这使得触摸元件具有良好的触摸性能,从而使得触摸元件的触摸产品在降低触摸产品的成本的同时实现相同的触摸性能; 同时,由掺杂的碳纳米管材料制成的触摸层具有良好的耐弯曲性,耐擦伤性和耐敲击性,因此触摸元件可以很好地应用于柔性显示产品的触感。 ea
Abstract:
The present disclosure discloses an intelligent nursing care device, which is a wearable nursing care device and comprises a monitoring unit that acquires a position information and a health condition information of a wearer in real time, and a control unit that determines, based on the position information and the health information acquired by the monitoring unit, a safety condition and a health condition of the wearer, and transmits a determination result to at least one of a cloud server and a monitoring terminal. By wearing the intelligent nursing care device, an intelligent nursing care service and safety tracking service are provided to a wearer.
Abstract:
The present invention provides a display panel, a manufacturing method thereof, and a display device. The display panel is divided into display areas and non-display areas, and comprises an upper base plate and a lower base plate which is aligned with the upper base plate to form a cell, a control structure and a display structure are arranged in the display area on the lower base plate, a sensing structure is further arranged in the display area on the upper base plate and/or the lower base plate, the sensing structure and the display structure are correspondingly arranged, and a stabilizer sub-structure is arranged in the sensing structure.
Abstract:
The embodiment of the present invention relates to the field of display technology, and provides a backlight source, a liquid crystal display panel and a liquid crystal display device. The backlight source comprises at least two light guide plates and a light source corresponding to the respective light guide plate. The light guide plates are joined to form a light guide plane, and the light source is arranged at the periphery of the corresponding light guide plate and does not transmit light to the other light guide plate. The light source corresponding to the respective light guide plate can be controlled by a control circuit. According to the present invention, it is able to reduce the power consumption of the screen and the backlight source and improve the endurance of the backlight source.
Abstract:
Provided are a display substrate and a preparation method thereof, and a display apparatus. The display substrate includes a display region and at least one hole region located in the display region, the hole region includes a function hole and a partition region surrounding the function hole, the partition region is provided with at least one partition dam surrounding the function hole; the partition dam includes a first partition layer disposed on a base substrate and a second partition layer disposed on a side of the first partition layer away from the base substrate, at least one partition layer includes a second sub-layer and a third sub-layer disposed on a side of the second sub-layer away from the base substrate, the third sub-layer has a protrusion with respect to a sidewall of the second sub-layer, and the protrusion and the sidewall of the second sub-layer form an inwardly recessed structure.
Abstract:
A display substrate, a manufacturing method and a display device are provided. The display substrate includes: a base substrate and a plurality of sub-pixels; a pixel definition layer arranged on the base substrate and including a plurality of pixel openings, a region where the pixel opening is located being an active light-emitting region of a corresponding sub-pixel; a plurality of post spacers arranged at a side of the pixel definition layer away from the base substrate and configured to support a mask in an evaporation process of the display substrate; and a reflection layer arranged between the post spacer and the base substrate. An orthogonal projection of each post spacer onto the base substrate at least partially overlaps an orthogonal projection of the reflection layer onto the base substrate.