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    • 5. 发明申请
    • LIGHT GUIDE PLATE AND MANUFACTURING METHOD THEREOF, BACKLIGHT MODULE
    • 光导模块及其制造方法,背光模块
    • US20160356946A1
    • 2016-12-08
    • US14785601
    • 2015-05-07
    • BOE TECHNOLOGY GROUP CO., LTD.BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO. , LTD.
    • Rui LiHongjun YuHong ZhuYong SongHongkun ZhangJun LongGang Yang
    • F21V8/00B29D11/00B29C35/08
    • G02B6/0061B29C35/0805B29C59/16B29C2791/009B29D11/00663B29L2011/0075G02B6/00G02B6/0021G02B6/0041G02B6/0055G02B6/0065
    • The present invention relates to the field of display techniques, and discloses a light guide plate and a manufacturing method thereof, as well as a backlight module; the light guide plate comprises a light guide plate body and lattice points, wherein the light guide plate body is provided with a light output surface, and a receiving groove for receiving a light source is formed in a surface of the light guide plate body facing away from the light output surface thereof, and a side surface and a bottom surface of the receiving groove form a light input surface. The lattice points are distributed inside the light guide plate body along a plane parallel with the light output surface; the further the lattice points are distanced from the light input surface, the more densely they are distributed. When the above light guide plate is in use, the light source is situated in the receiving groove, and light emitted from the light source is directed into the light guide plate through the side surface and the bottom surface of the receiving groove. Besides, since the further the lattice points are distanced from the light input surface, the more densely they are distributed, the uniformity of light emitted from the light output surface of the light guide plate body can be ensured; in addition, since the lattice points are located inside the light guide plate body, friction is avoided between the lattice points of the light guide plate and the reflecting sheet of the backlight module, which prolongs the life time of the backlight module.
    • 本发明涉及显示技术领域,并且公开了一种导光板及其制造方法以及背光模块; 导光板包括导光板体和格点,其中导光板主体设置有光输出表面,并且在导光板主体的面向外的表面上形成有用于接收光源的接收槽 从其光输出表面和接收槽的侧表面和底表面形成光输入表面。 格子点沿着与光输出面平行的平面分布在导光板主体的内部; 格点越远离光输入表面,其分布越密集。 当使用上述导光板时,光源位于接收槽中,并且从光源发射的光通过接收槽的侧表面和底表面引导到导光板中。 此外,由于晶格点远离光输入面,因此分布越密集,可以确保从导光板本体的光输出面发射的光的均匀性; 此外,由于格子点位于导光板体的内部,因此避免了导光板的格子点与背光模块的反射片之间的摩擦,延长了背光模块的使用寿命。
    • 6. 发明申请
    • METHOD, DEVICE AND SYSTEM OF TOUCH PANEL DISPLAY CONTROL
    • 方法,触摸屏显示控制的设备和系统
    • US20150277640A1
    • 2015-10-01
    • US14344848
    • 2013-12-17
    • BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.BOE TECHNOLOGY GROUP CO., LTD.
    • Hao WuHongjun YuZiwei Cui
    • G06F3/041G06F3/044
    • G06F3/0416G06F3/0412G06F3/044G06F2203/04104G06F2203/04105
    • The embodiments of the present invention disclose a method, a device and a system of touch panel display control. The method of touch panel display control comprises: acquiring the changes of the capacitances at respective positions of coupling capacitors, and determining pressed pixel units; determining the pressure on the pressed pixel units according to a first corresponding relationship between the changes and the pressure; and according to a second corresponding relationship between the pressure and a current gray level and a compensation signal, outputting a compensation signal corresponding to the pressure on the pressed pixel units, and the compensation signal is used for keeping the consistency of the light transmittance of the pressed pixel units with that of non-pressed pixel units. The method of the present invention keeps a consistent light transmittance between the liquid crystal molecules of the pressed pixel units and the liquid crystal molecules of the non-pressed pixel units, so that the image display of the overall touch panel keeps consistent, and the quality of the image displayed by the touch panel is improved.
    • 本发明的实施例公开了触摸屏显示控制的方法,装置和系统。 触摸面板显示控制的方法包括:获取耦合电容器的各个位置处的电容的变化,以及确定按压的像素单元; 根据变化和压力之间的第一对应关系确定按压像素单元上的压力; 并且根据压力和当前灰度级与补偿信号之间的第二对应关系,输出与压缩像素单元上的压力相对应的补偿信号,并且补偿信号用于保持压缩像素单元的透光率的一致性 按下像素单位与未按下的像素单位。 本发明的方法在受压像素单元的液晶分子与非压制像素单元的液晶分子之间保持一致的透光率,使得整个触摸面板的图像显示保持一致,并且质量 改善了触摸面板显示的图像。
    • 10. 发明申请
    • MICROELECTRONIC SWITCH AND ACTIVE MATRIX ORGANIC LIGHT EMITTING DISPLAY DEVICE
    • 微电子开关和有源矩阵有机发光显示装置
    • US20160155594A1
    • 2016-06-02
    • US14801213
    • 2015-07-16
    • BOE TECHNOLOGY GROUP CO., LTD.BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
    • Ziwei CuiHao WuHong ZhuHongjun YuHailin XueLuyang Wang
    • H01H59/00H01L27/32
    • H01H59/0009H01H2001/0084H01L27/3262
    • The embodiments of the present invention discloses a microelectronic switch comprising: a gate electrode; a source electrode; a drain electrode; a first electrostatic electrode; a cantilever with two working positions of an open position and a close position; a connecting portion arranged at the cantilever; a second electrostatic electrode arranged at the cantilever, the second electrostatic electrode is electrically connected with the gate electrode and is arranged opposite to the first electrostatic electrode; an insulating dielectric layer arranged between the first electrostatic electrode and the second electrostatic electrode; the cantilever is located at one working position of the two working positions when the voltage applied by the gate electrode to the second electrostatic electrode is less than a preset threshold, the cantilever is switched to the other working position of the two working positions when said voltage is greater than the preset threshold.
    • 本发明的实施例公开了一种微电子开关,包括:栅电极; 源电极; 漏电极; 第一静电电极; 具有两个工作位置的悬臂,处于打开位置和关闭位置; 布置在悬臂的连接部分; 布置在所述悬臂上的第二静电电极,所述第二静电电极与所述栅电极电连接并且与所述第一静电电极相对地布置; 布置在所述第一静电电极和所述第二静电电极之间的绝缘介电层; 当由栅电极施加到第二静电电极的电压小于预设阈值时,悬臂位于两个工作位置的一个工作位置,当所述电压在两个工作位置时,悬臂被切换到两个工作位置的另一个工作位置 大于预设阈值。