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    • 71. 发明申请
    • Method of locating peripheral component interconnect devices
    • 定位外围组件互连设备的方法
    • US20080201514A1
    • 2008-08-21
    • US11708491
    • 2007-02-21
    • Tao LiuGang ZhouTom ChenWin-Harn Liu
    • Tao LiuGang ZhouTom ChenWin-Harn Liu
    • G06F13/36
    • G06F13/4221
    • A method of locating peripheral component interconnect (PCI) devices is provided. The method includes analyzing peripheral component interconnect spaces (PCI spaces) of peripheral component interconnect-peripheral component interconnect bridges (PCI-PCI bridges) of a 0-numbered bus, so as to obtain a bus number of a next bus connected to each of PCI-PCI bridges and record the bus number in a linked list; continuing to record a bus number of a next bus connected to the PCI-PCI bridges corresponding to the bus number recorded in the linked list; and when no next bus number is found, traversing and locating the PCI devices according to all of the bus numbers recorded in the linked list.
    • 提供了一种定位外围组件互连(PCI)设备的方法。 该方法包括分析O编号总线的外围组件互连 - 外围组件互连桥(PCI-PCI桥)的外围组件互连空间(PCI空间),以获得连接到每个PCI的下一总线的总线号 -PCI桥接并记录在列表中的总线号码; 继续记录连接到与链接列表中记录的总线号相对应的PCI-PCI桥的下一总线的总线; 并且当没有找到下一个总线号码时,根据记录在链表中的所有总线号码遍历和定位PCI设备。
    • 73. 发明授权
    • Supercapacitor having electrode material comprising single-wall carbon nanotubes and process for making the same
    • 具有包含单壁碳纳米管的电极材料的超级电容器及其制造方法
    • US07061749B2
    • 2006-06-13
    • US10609725
    • 2003-06-30
    • Tao LiuSatish Kumar
    • Tao LiuSatish Kumar
    • H01G9/00
    • H01G9/058B82Y10/00H01G9/038H01G9/155H01G11/12H01G11/36H01G11/56Y02E60/13
    • The present invention relates to a supercapacitor, also known as an electrical double-layer capacitor or ultracapacitor, having electrode material comprising single-wall carbon nanotubes. The carbon nanotubes can be derivatized with functional groups. The electrode material is made by preparing a polymer-nanotube suspension comprising polymer and nanotubes, forming the polymer-nanotube suspension into a polymer-nanotube composite of the desired form, carbonizing the polymer-nanotube composite to form a carbonaceous polymer-nanotube material, and activating the material. The supercapacitor includes electrode material comprising activated carbonaceous polymer-nanotube material in contact with current collectors and permeated with an electrolyte, which may be either fluid or solid. In the case of a fluid or compressible electrolyte, an electrolyte-permeable separator or spacer is interposed between the electrodes to keep the electrodes from shorting. The supercapacitor made with electrodes comprising underivatized single-wall carbon nanotubes and polymer that has been carbonized and activated appears to operate as a non-Faradaic supercapacitor.
    • 本发明涉及具有包含单壁碳纳米管的电极材料的超级电容器,也称为双电层电容器或超级电容器。 碳纳米管可以用官能团衍生化。 通过制备包含聚合物和纳米管的聚合物 - 纳米管悬浮液制备电极材料,将聚合物 - 纳米管悬浮液形成为所需形式的聚合物 - 纳米管复合材料,碳化聚合物 - 纳米管复合材料以形成碳质聚合物 - 纳米管材料,以及 激活材料。 超级电容器包括电极材料,其包括与集电体接触并渗透有可以是流体或固体的电解质的活性碳质聚合物 - 纳米管材料。 在流体或可压缩电解质的情况下,在电极之间插入电解质渗透分离器或间隔物以保持电极短路。 由具有未衍生单壁碳纳米管的电极制成的超级电容器和已被碳化和激活的聚合物似乎以非法拉第超电容器的形式运行。