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    • 5. 发明授权
    • Magic cube input system
    • 魔方输入系统
    • US09547376B1
    • 2017-01-17
    • US14809799
    • 2015-07-27
    • Chien-Wen Li
    • Chien-Wen Li
    • G06F3/023G06F3/0346G06F3/0354G06F3/02G06F3/041G06F3/0362G06F3/01G06F3/0488G06F3/0485G06F3/16G06F17/27
    • G06F3/0236G06F3/04883G06F3/04886G06F17/274G06F2203/0381G06F2203/04802
    • A magic cube input system comprises a control module, a page module, a quick pick module, and a function module; the function module performs selection of a character input mode or a screen keyboard change mode. Under the character input mode, the control module receives voice instructions or motion instructions to control page scrolling of the page module, pick an initial character and subsequent characters successively after the initial character being picked, and the quick pick module presents commonly used characters or vocabularies to be picked up quickly through the control module. Under the screen keyboard change mode, the control module receives the voice instructions or motion instructions to control the page scrolling of the page module and select a suitable screen keyboard via the page scrolling so as to perform character or symbol input or the screen keyboard quick change.
    • 魔方输入系统包括控制模块,页面模块,快速拾取模块和功能模块; 功能模块执行字符输入模式或屏幕键盘更改模式的选择。 在字符输入模式下,控制模块接收语音指令或运动指令以控制页面模块的页面滚动,在初始字符被拾取之后连续选择初始字符和后续字符,快速拾取模块呈现常用字符或词汇 通过控制模块快速拾取。 在屏幕键盘更换模式下,控制模块接收语音指令或运动指令,以控制页面模块的页面滚动,并通过页面滚动选择合适的屏幕键盘,以便执行字符或符号输入或屏幕键盘快速更改 。
    • 7. 发明授权
    • Mobile telecommunication terminal
    • 移动电信终端
    • US09337527B2
    • 2016-05-10
    • US12736339
    • 2008-03-31
    • Wei YuWen Li
    • Wei YuWen Li
    • H01Q1/24H01Q9/42H01Q21/28
    • H01Q1/243H01Q1/245H01Q9/42H01Q19/28H01Q21/28
    • A mobile communication terminal comprises a shell, and a backfire antenna which includes a main board disposed in the shell and having a transmitting circuit and a receiving circuit on the main board; a main antenna element coupled to the transmitting circuit and the receiving circuit on the main board; and a backfire resonator located at a side of the shell deviated from a user's head, and coupled to the main board and the main antenna element, in which the backfire resonator is fed by the main board from a position on the main board deviated from a center of the main board. The mobile communication terminal according to embodiment of the present disclosure may cause most electromagnetic waves to radiate towards a direction deviated form the user, thus reducing radiation and harm thereof to the user, strengthening the signal received by the base station, and improving the communication quality.
    • 移动通信终端包括外壳和反火天线,其包括设置在外壳中的主板,并且在主板上具有发送电路和接收电路; 耦合到主板上的发射电路和接收电路的主天线元件; 位于壳体一侧的回火共振器偏离用户的头部,并且耦合到主板和主天线元件,其中回火谐振器由主板从主板上的位置偏离 主板中心。 根据本公开的实施例的移动通信终端可以使得大多数电磁波朝向从用户偏离的方向辐射,从而减少对用户的辐射和伤害,加强基站接收的信号,并提高通信质量 。
    • 10. 发明申请
    • SEPARATORS FOR LITHIUM-SULFUR BATTERIES
    • 锂离子电池分离器
    • US20140217992A1
    • 2014-08-07
    • US13760043
    • 2013-02-05
    • Wen LIPing LIUJocelyn HICKS-GARNER
    • Wen LIPing LIUJocelyn HICKS-GARNER
    • H01M2/16H02J7/00
    • H01M2/1646H01M2/145H01M2/1686H01M10/052H01M10/44H02J7/00Y02T10/7011
    • This invention, in some variations, provides a separator for a lithium-sulfur battery, comprising a porous substrate that is permeable to lithium ions; and a lithium-ion-conducting metal oxide layer on the substrate, wherein the metal oxide layer includes deposits of sulfur that are intentionally introduced prior to battery operation. The deposits of sulfur may be derived from treatment of the metal oxide layer with one or more sulfur-containing precursors (e.g., lithium polysulfides) prior to operation of the lithium-sulfur battery. Other variations provide a method of charging a lithium-sulfur battery that includes the disclosed separator, the charging being accomplished by continuously applying a substantially constant voltage to the lithium-sulfur battery until the battery charging current is at or below a selected current.
    • 本发明在一些变型中提供了一种用于锂硫电池的隔板,其包括可渗透锂离子的多孔基底; 以及在所述基板上的锂离子传导金属氧化物层,其中所述金属氧化物层包括在电池操作之前有意引入的硫的沉积物。 硫的沉积物可以来源于在操作锂硫电池之前用一种或多种含硫前体(例如多聚硫化锂)处理金属氧化物层。 其他变形例提供了对包含所公开的隔板的锂硫电池进行充电的方法,该充电是通过对锂硫电池持续施加基本上恒定的电压直到电池充电电流等于或低于选定电流来实现的。