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    • 3. 发明申请
    • REARVIEW MIRROR
    • 后视镜
    • US20160368423A1
    • 2016-12-22
    • US14906012
    • 2015-08-19
    • BOE TECHNOLOGY GROUP CO., LTD.CHENGDU BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
    • Shenglin SUNFeng BAIYun QIUZhidong WANGJunguo LIUZhiguo CHENLihua LIU
    • B60R1/08F21V8/00G02B26/00
    • B60R1/088G02B6/0011G02B26/005G02B26/02
    • The present invention provides a rearview mirror comprising a panel and a control circuit, a first substrate in the panel is provided with a planar transparent electrode layer, a second substrate is provided with a transparent hydrophobic material layer and multiple block electrodes, a side of the transparent hydrophobic material layer facing the first substrate is provided with multiple cells, lightproof electro-wetting ink is provided within each cell, the block electrodes are provided on a side of the transparent hydrophobic material layer away from the first substrate and can at least reflect part of light entering the rearview mirror from first substrate side, the control circuit is configured to control area of each cell covered by the electro-wetting ink in the cell by controlling a change in intensity of the electric field between the planar transparent electrode layer and the block electrodes.
    • 本发明提供了一种后视镜,其包括面板和控制电路,面板中的第一基板设置有平面透明电极层,第二基板设置有透明疏水材料层和多个块电极, 面向第一基板的透明疏水材料层设置有多个单元,在每个单元内提供耐光电润湿油墨,所述块电极设置在远离所述第一基板的所述透明疏水材料层的一侧上,并且可以至少反射部分 的光从第一基板侧入射到后视镜中,控制电路被配置为通过控制平面透明电极层和平面透明电极层之间的电场强度的变化来控制电池中的电润湿墨水覆盖的每个单元的面积 块电极。
    • 6. 发明申请
    • ENCAPSULATION SYSTEM AND ENCAPSULATION METHOD
    • 封装系统和封装方法
    • US20160300769A1
    • 2016-10-13
    • US14777596
    • 2015-03-17
    • BOE TECHNOLOGY GROUP CO., LTD.BEIJING BOE OPTOELCTRONICS TECHNOLOGY CO., LTD.
    • Jiuxia YANGFeng BAILiang ZHANGXu CHENAng XIAO
    • H01L21/66H01L51/52H01L51/56
    • H01L22/26B23K26/206G01B11/0616G01B21/02H01L22/10H01L22/12H01L27/32H01L51/5246H01L51/5253H01L51/56H01L2251/558
    • The present disclosure discloses an encapsulation system and an encapsulation method, the encapsulation system comprising a thickness detection unit, an output control unit and an energy output unit, the thickness detection unit being connected with the output control unit, and the output control unit being connected with the energy output unit. The thickness detection unit is configured to detect a thickness of an encapsulant at a to-be-heated location in a component to be encapsulated and generate corresponding thickness information. The output control unit is configured to generate corresponding output control information depending on the thickness information. The energy output unit is configured to output, depending on the output control information, to the encapsulant at the to-be-heated location energy for heating the encapsulant. With the technical solution of the present disclosure, the encapsulant can be heated properly based on its actual state such that the encapsulant at the to-be-heated location can all sufficiently melt, which effectively improves the sealing of the product.
    • 本公开公开了一种封装系统和封装方法,所述封装系统包括厚度检测单元,输出控制单元和能量输出单元,所述厚度检测单元与所述输出控制单元连接,并且所述输出控制单元被连接 与能量输出单元。 厚度检测单元被配置为检测要被封装的部件中的被加热位置处的密封剂的厚度,并且生成相应的厚度信息。 输出控制单元被配置为根据厚度信息产生相应的输出控制信息。 能量输出单元被配置为根据输出控制信息将密封剂输送到加热位置处的密封剂用于加热密封剂的能量。 利用本公开的技术方案,可以基于其实际状态适当地加热密封剂,使得待加热位置处的密封剂可以充分熔化,这有效地改善了产品的密封。
    • 7. 发明申请
    • FUNCTIONAL MATERIAL AND METHOD FOR PREPARING THE SAME, THREE-DIMENSIONAL DISPLAY RASTER AND DISPLAY DEVICE
    • 功能材料及其制备方法,三维显示器和显示装置
    • US20160266395A1
    • 2016-09-15
    • US14769281
    • 2014-11-21
    • BOE TECHNOLOGY GROUP CO., LTD.BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
    • Jiuxia YANGFeng BAIHongbo FENG
    • G02B27/22C09K11/59C09K11/64C09K11/67
    • G02B27/2214C09K11/592C09K11/643C09K11/646C09K11/676C09K11/678G02B27/22H05B33/04
    • The present invention provides a functional material, its preparation method, a three-dimensional display raster and a display device, which belongs to the display technical field and can solve the pollution problem in current three-dimensional display devices. The functional material includes 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, Cr3B4, 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.
    • 本发明提供属于显示技术领域的功能材料,其制备方法,三维显示光栅和显示装置,可以解决当前三维显示​​装置中的污染问题。 功能材料包括具有改性层的无机混合粉末,无机混合粉末包含氧化硼,氧化钠,氧化锂,氧化锆,氧化铝,氧化锌,氧化钛,二氧化硅,氧化钙,银络合物,磷酸银 ,硝酸银,电气石,硫代硫酸银,碳纳米管,硫酸铝,锰,氧化锰,铁,氧化铁,钴,氧化钴,镍,氧化镍,铬,氧化铬,铜,氧化铜,氧化镁, ,碳化硅,碳化钛,碳化锆,碳化钽,碳化钼,氮化硼,氮化铬,氮化钛,氮化锆,氮化铝,硼化铬,Cr 3 B 4,硼化钛,硼化锆,二硅化钨,二硅化钛等 ; 所述改性层由二酐与二胺的反应产生。
    • 10. 发明申请
    • FUNCTIONAL MATERIAL AND PREPARATION METHOD THEREOF, DISPLAY STRUCTURE FORMING MATERIAL, COLOR FILM SUBSTRATE, DISPLAY DEVICE
    • 功能材料及其制备方法,显示结构形成材料,彩色薄膜基板,显示装置
    • US20150331315A1
    • 2015-11-19
    • US14758437
    • 2014-10-15
    • BOE TECHNOLOGY GROUP CO., LTD.BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
    • Jiuxia YANGFeng BAIJiantao LIU
    • G03F7/031C08L75/16
    • C03C3/14C03C3/064C03C8/24C03C17/32C08F290/067G03F7/0007G03F7/0047G03F7/027G03F7/028G03F7/029G03F7/031G03F7/032H01L51/5246H01L51/5253C08L75/16C08L63/00
    • An embodiment of the present invention provides an environment-friendly functional material and a preparation method thereof, a display structure forming material, a color film substrate and a display device. The functional material comprises inorganic mixed powder, the inorganic mixed powder comprising a main material and an auxiliary material, the main materials comprising boron oxide, sodium oxide, lithium oxide, and zirconium oxide, the auxiliary materials comprising any one or more of aluminum oxide, zinc oxide, titanium dioxide, silicon dioxide, calcium oxide, silver complex, silver phosphate, silver nitrate, tourmaline, silver thiosulfate, carbon nanotube, aluminum sulfate, manganese, oxides of manganese, iron, oxides of iron, cobalt, oxides of cobalt, nickel, oxides of nickel, chromium, oxides of chromium, copper, oxides of copper, 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, trichromium tetraborate, titanium boride, zirconium boride, tungsten disilicide and titanium disilicide.
    • 本发明的一个实施方案提供了一种环境友好的功能材料及其制备方法,显示结构形成材料,彩色薄膜基材和显示装置。 所述功能材料包括无机混合粉末,所述无机混合粉末包含主要材料和辅助材料,所述主要材料包括氧化硼,氧化钠,氧化锂和氧化锆,所述辅助材料包括氧化铝, 氧化锌,二氧化钛,二氧化硅,氧化钙,银络合物,磷酸银,硝酸银,电气石,硫代硫酸银,碳纳米管,硫酸铝,锰,锰,铁的氧化物,铁,钴,钴的氧化物, 镍,镍的氧化物,铬,铜的氧化物,铜,氧化镁,碳化硼,碳化硅,碳化钛,碳化锆,碳化钽,碳化钼,氮化硼,氮化铬,氮化钛,氮化锆 ,氮化铝,硼化铬,四硼酸三铬,硼化钛,硼化锆,二硅化钨和二硅化钛。