摘要:
A method and a device for synchronously performing an operation on contents. The method comprises: sending a synchronization instruction to one or more terminals, the synchronization instruction being used for instructing the one or more terminals to synchronously perform an operation on contents to be operated in synchronization. According to the embodiments of the present disclosure, respective terminals that have received the synchronization instruction, such as mobile terminals, are enabled to synchronously perform an operation on the contents to be operated in synchronization, which effectively achieves consistency of synchronization time.
摘要:
The present invention provides a functional material, its preparation method, an alignment material and a liquid crystal substrate, which belong to the display technical field and can solve the problem that current liquid crystal display devices will produce pollution. The functional material of the present invention comprises an inorganic powder whose surface has a modified layer, wherein the inorganic powder comprises any one or more of aluminum oxide, magnesium oxide, zinc oxide, zirconium oxide, silicon dioxide, titanium dioxide, boron oxide, diiron trioxide, calcium oxide, potassium oxide, sodium oxide and lithium oxide; the modified layer is generated via cyclization by dehydrating the reaction product of a dianhydride and a diamine. The alignment material of the present invention comprises the above functional material. The liquid crystal display substrate of the present invention comprises an alignment layer made from the above alignment material.
摘要:
The present disclosure discloses a method and a device for adjusting indoor brightness and a smart home control system. The method includes: detecting a display device to obtain brightness of the display device; generating indoor brightness based on the brightness of the display device; and adjusting brightness of an indoor lighting device based on the indoor brightness. In the technical schemes of the method and device for adjusting indoor brightness and the smart home control system provided by the present disclosure, the brightness of the display device is obtained by detecting the display device, the indoor brightness is generated based on the brightness of the display device, and the brightness of the indoor lighting device is adjusted based on the indoor brightness. By the present disclosure, a real-time adjustment of indoor brightness may be realized, so as to reduce the irritation to the human eyes caused by the brightness variation of the display device, thereby reducing the harm made to the human eyes.
摘要:
The present invention provides a functional material and a method for preparing the same, as well as a sealing material and a display panel, which belong to the display technical field and can solve the problem that existing display devices will produce pollution. The functional material of the present invention comprises an inorganic powder whose surface has a modified layer, wherein the inorganic powder comprises: any one or more of aluminum oxide, magnesium oxide, zinc oxide, zirconium oxide, silicon dioxide, titanium dioxide, boron oxide, diiron trioxide, calcium oxide, potassium oxide, sodium oxide and lithium oxide; the modified layer is generated by a reaction of a dianhydride and a diamine. The sealing material of the present invention comprises the above functional material. The display panel of the present invention comprises a sealing structure made of the above functional material.
摘要:
The present invention provides a functional material, its preparation method, and an organic light emitting diode display panel, which belongs to the display technical field and can solve the pollution problem in current organic light emitting diode display panels. The functional material comprises an inorganic mixed powder with a modified layer, the inorganic mixed powder comprising boron oxide, sodium oxide, lithium oxide, zirconium oxide, aluminum oxide, zinc oxide, titanium oxide, silicon dioxide, calcium oxide, silver complexes, silver phosphate, silver nitrate, tourmaline, silver thiosulfate, carbon nanotubes, aluminum sulfate, manganese, manganese oxide, iron, iron oxide, cobalt, cobalt oxide, nickel, nickel oxide, chromium, chromium oxide, copper, copper oxide, magnesium oxide, boron carbide, silicon carbide, titanium carbide, zirconium carbide, tantalum carbide, molybdenum carbide, boron nitride, chromium nitride, titanium nitride, zirconium nitride, aluminum nitride, chromium boride, Cr 3 B 4 , titanium boride, zirconium boride, tungsten disilicide, titanium disilicide and the like; the modified layer being generated by a reaction of a dianhydride and a diamine.