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    • 32. 发明申请
    • Antenna apparatus and method
    • 天线装置及方法
    • US20050219137A1
    • 2005-10-06
    • US11140758
    • 2005-05-31
    • Peter HeisenJulio NavarroMing Chen
    • Peter HeisenJulio NavarroMing Chen
    • H01Q13/02H01Q21/00H01Q3/22
    • H01Q13/02H01Q3/22H01Q21/0025
    • A phased array antenna module for use in the gigahertz bandwidth. The module includes a metallic core with a pair of chip carrier assemblies secured to opposite sides of the core. The core has an internal waveguide with a signal splitter for directing electromagnetic wave energy evenly to the two chip carrier assemblies. A flexible, cylindrical connector assembly electrically couples the chip carrier assemblies to an aperture board. The aperture board includes a plurality of dipole antenna radiating elements. The module core is coupled directly to a cold plate. A direct thermal path is created between the chip carrier assemblies, the module core and the cold plate for highly efficient cooling of the electronic components on the chip carrier assemblies.
    • 用于千兆赫兹带宽的相控阵天线模块。 模块包括金属芯,其具有固定到芯的相对侧的一对芯片载体组件。 芯具有带有信号分离器的内部波导,用于将电磁波能量均匀地引导到两个芯片载体组件。 柔性圆柱形连接器组件将芯片载体组件电耦合到孔板。 孔板包括多个偶极天线辐射元件。 模块芯直接连接到冷板。 在芯片载体组件,模块芯和冷板之间产生直接热路径,用于高效地冷却芯片载体组件上的电子部件。
    • 37. 发明授权
    • Pushrod-type tent frame
    • Pushrod型帐篷框架
    • US09169665B1
    • 2015-10-27
    • US14325362
    • 2014-07-07
    • Nanqing ZhouMing ChenMuhua Mao
    • Nanqing ZhouMing ChenMuhua Mao
    • E04H15/48E04H15/46
    • E04H15/48E04H15/06E04H15/56
    • A pushrod-type tent frame includes a base, a frame linkage and a controlling mechanism. The frame linkage has two support sets arranged in parallel, each having a supporting pole, an upper supporting pole and a lower supporting pole pivotally connected in sequence. The supporting pole has an outer end pivotally connected to a front edge of the base, and the lower supporting pole has an outer end pivotally connected to a rear edge of the base. The controlling mechanism has two rod-pushing mechanisms pivotally connected to the two support sets, respectively. Each of the rod-pushing mechanisms has a driving device for driving a telescopic rod assembly to change its reach and thereby prop up or release the frame linkage, so as to expand the tent frame or allow the tent frame to be retracted.
    • 推杆型帐篷框架包括基座,框架连杆机构和控制机构。 框架连杆机构具有平行布置的两个支撑组,每个具有支撑杆,上支撑杆和下支撑杆,依次枢转地连接。 支撑杆具有可枢转地连接到基座的前边缘的外端,并且下支撑杆具有枢转地连接到基座的后边缘的外端。 控制机构具有分别枢转地连接到两个支撑组的两个推杆机构。 每个推杆机构具有用于驱动伸缩杆组件以改变其距离的驱动装置,从而支撑或释放框架连杆机构,以便展开帐篷框架或使帐篷框架缩回。
    • 38. 发明授权
    • Composite glass seal for a solid oxide electrolyser cell stack
    • 用于固体氧化物电解池电池堆的复合玻璃密封
    • US08828196B2
    • 2014-09-09
    • US12933157
    • 2009-03-20
    • Nadja LönnrothAnne HauchMogens MogensenMing Chen
    • Nadja LönnrothAnne HauchMogens MogensenMing Chen
    • C25B9/18C25B1/06H01M2/08
    • H01M8/0282H01M8/0286Y02E60/366
    • The present invention provides a solid oxide cell stack, comprising: —at least two cells which each comprise a first electrode layer, an electrolyte layer, a second electrode layer, —gas passage ways, and—sealing components, wherein the sealing components comprise a glass component and a component comprising a metal oxide or metal oxide precursor, and wherein the component comprising the metal oxide or metal oxide precursor is located at least in between the glass component and a gas passage way. The present invention further provides a method of producing the above solid oxide cell stack, comprising the steps of: —providing at least two SOC cells comprising each a first electrode layer or electrode precursor layer, an electrolyte layer, a second electrode layer or electrode precursor layer; —stacking at least two cells so as to form a cell stack including gas passage ways; and—sealing said cell stack with sealing components, wherein the sealing components comprise a glass component and a component comprising a metal oxide or metal oxide precursor, and wherein the component comprising the metal oxide or metal oxide precursor is at least located in between the glass component and a gas passage way.
    • 本发明提供了一种固体氧化物电池堆,包括: - 至少两个电池,每个电池包括第一电极层,电解质层,第二电极层,气体通路和密封部件,其中密封部件包括 玻璃组分和包含金属氧化物或金属氧化物前体的组分,并且其中包含金属氧化物或金属氧化物前体的组分至少位于玻璃组分和气体通道之间。 本发明还提供了一种制备上述固体氧化物电池堆的方法,包括以下步骤: - 提供至少两个SOC电池,每个SOC电池包括第一电极层或电极前体层,电解质层,第二电极层或电极前体 层; - 堆叠至少两个电池,以形成包括气体通道的电池堆; 并用密封部件密封所述电池组,其中所述密封部件包括玻璃组分和包含金属氧化物或金属氧化物前体的组分,并且其中包含所述金属氧化物或金属氧化物前体的组分至少位于所述玻璃 组件和气体通道。
    • 40. 发明申请
    • GROUP BASED MULTICAST STREAMING SYSTEMS AND METHODS
    • 基于组的多媒体流媒体系统和方法
    • US20140033243A1
    • 2014-01-30
    • US13561804
    • 2012-07-30
    • Ming ChenGeorge L. Hughes
    • Ming ChenGeorge L. Hughes
    • H04N21/2668
    • H04N21/2668H04N21/252
    • Group based multicast streaming systems and methods are disclosed. An exemplary method includes a group based multicast streaming system defines a media multicast streaming event, determines that a group of users satisfies a minimum participation level associated with the media multicast streaming event, and executes, based on the determined satisfaction of the minimum participation level by the group of users, the media multicast streaming event by multicast streaming a media program to the group of users during a timeslot, and provides an incentive to the group of users for participation in the multicast streaming of the media program during the timeslot. Corresponding systems and methods are also disclosed.
    • 公开了基于组播的多播流系统和方法。 一种示例性方法包括基于组的多播流系统定义媒体多播流事件,确定一组用户满足与媒体多播流事件相关联的最小参与级别,并且基于所确定的最小参与级别的满足度执行 所述用户组,所述媒体多播流事件通过在时隙期间将媒体节目组播到所述用户组,并且在所述时隙期间向所述用户群体提供参与所述媒体节目的多播流的激励。 还公开了相应的系统和方法。