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    • 1. 发明申请
    • BATTERY CELL OF A CYLINDRICAL LITHIUM ION BATTERY
    • 圆柱形锂离子电池的电池
    • US20100310926A1
    • 2010-12-09
    • US12790248
    • 2010-05-28
    • Yue-li WANGKai WUYun-fei XUWei CHEN
    • Yue-li WANGKai WUYun-fei XUWei CHEN
    • H01M6/08
    • H01M10/0587H01M2/26H01M4/70H01M10/0525
    • A battery cell of a cylindrical lithium ion battery includes an anode plate and a cathode plate wounded together with an insulating separator disposed between the anode plate and the cathode plate. The anode plate includes an anode current collector and an anode film formed on the anode current collector. The anode current collector is formed with an anode exposed portion without the anode film formed thereon. The anode exposed portion is soldered with a number of anode terminals. The cathode plate includes a cathode current collector and a cathode film formed on the cathode current collector. The cathode current collector is provided with a cathode exposed portion without the cathode film formed thereon. The cathode exposed portion is soldered with a number of cathode terminals. The anode terminals and the cathode terminals are disposed at two opposite sides of the battery cell.
    • 圆柱形锂离子电池的电池单元包括与设置在阳极板和阴极板之间的绝缘隔板一起缠绕的阳极板和阴极板。 阳极板包括形成在阳极集电器上的阳极集电器和阳极膜。 阳极集电体形成有阳极暴露部分,而不形成阳极膜。 阳极暴露部分被焊接有多个阳极端子。 阴极板包括形成在阴极集电体上的阴极集电体和阴极膜。 阴极集电体设有阴极暴露部分,而不形成阴极膜。 阴极暴露部分被焊接有多个阴极端子。 阳极端子和阴极端子设置在电池单元的两个相对侧。
    • 7. 发明申请
    • MULTIPROCESSOR METHOD AND SYSTEM USING STACKED PROCESSOR MODULES AND BOARD-TO-BOARD CONNECTORS
    • 使用堆叠处理器模块和板对板连接器的多处理器方法和系统
    • US20100042810A1
    • 2010-02-18
    • US12558255
    • 2009-09-11
    • Li YAOWei CHEN
    • Li YAOWei CHEN
    • G06F15/76G06F9/02
    • G06F15/17
    • A multiprocessor system is provided, comprising a baseboard, for arranging peripheral equipments; and a plurality of processor modules, each equipped with a processor and a board-to-board connector; wherein the plurality of processor modules are stacked up, with board-to-board connectors being electrically connected between the processor modules and between the processor modules and the baseboard; the processors communicate with the peripheral equipments in accordance with a specific bus specification; and the operations of the plurality of processor modules are coordinated by routes provided between the processor modules and between the processor modules and the baseboard.
    • 提供一种多处理器系统,包括用于布置外围设备的基板; 以及多个处理器模块,每个处理器模块配备有处理器和板对板连接器; 其中所述多个处理器模块被堆叠起来,其中板对板连接器电连接在所述处理器模块之间以及所述处理器模块和所述基板之间; 处理器根据特定总线规格与周边设备进行通信; 并且多个处理器模块的操作由设置在处理器模块之间以及处理器模块和基板之间的路由进行协调。
    • 10. 发明申请
    • PROCESSES FOR PRODUCING LIGHT OLEFINS
    • 生产光油的方法
    • US20140186231A1
    • 2014-07-03
    • US14197450
    • 2014-03-05
    • Guozhen QISiqing ZHONGWei CHENZhinan YU
    • Guozhen QISiqing ZHONGWei CHENZhinan YU
    • B01J8/00
    • B01J8/1836B01J8/005C07C1/20C07C2529/85Y02P20/584Y02P30/42C07C11/04C07C11/06
    • A process for producing light olefins is provided. A feedstock enters a pre-reaction zone and contacts a catalyst comprising at least one silicon-aluminophosphate molecular sieve and produces a gas-phase stream; the gas-phase stream and the catalyst enter at least one riser, and the gas-phase stream and the catalyst pass from an outlet of the at least one riser and enter a gas-solid rapid separation zone; the separated gas-phase stream enters a separation section; a first portion of the separated catalyst returns to the pre-reaction zone, and a second portion is regenerated in a regenerator; wherein an inlet of the at least one riser extends into the pre-reaction zone, about 60% to about 90% of the height of the at least one riser passes through a heat exchange zone, and the outlet extends into the gas-solid rapid separation zone.
    • 提供了一种生产轻质烯烃的方法。 原料进入预反应区并与包含至少一个硅铝磷酸盐分子筛的催化剂接触并产生气相流; 所述气相流和所述催化剂进入至少一个提升管,并且所述气相物流和所述催化剂从所述至少一个提升管的出口通过并进入气固快速分离区; 分离的气相流进入分离段; 分离的催化剂的第一部分返回到预反应区,并且第二部分在再生器中再生; 其中所述至少一个提升管的入口延伸到所述预反应区域中,所述至少一个提升管的高度的大约60%至大约90%通过热交换区域,并且所述出口延伸到所述气体 - 固体快速 分离区。