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    • 6. 发明申请
    • Method, system, and program for network design, analysis, and optimization
    • 网络设计,分析和优化的方法,系统和程序
    • US20060105775A1
    • 2006-05-18
    • US10537715
    • 2003-12-16
    • Tim Von KaenelJonathan GoodwinSteven Schattmaier
    • Tim Von KaenelJonathan GoodwinSteven Schattmaier
    • H04Q7/20
    • H04L41/12H04L41/22
    • Provided are a method, system, and program for rendering information on network infrastructure. A selection of customer sites is received and a database is queried to determine geographical locations of the selected network sites. A graphical user interface is rendered including representations of the selected customer sites in a map at the geographical location of the selected sites in the map. Selection is received of at least one network service provider (NSP). The database is queried to determine network infrastructure of the selected NSP and geographical locations of the determined network infrastructure. Representations are rendered of the determined network infrastructure in a map at the determined geographical locations of the determined network infrastructure to render a visualization of the geographical locations of the selected customer sites and network infrastructure of the selected at least one NSP in the map.
    • 提供了一种用于呈现网络基础设施信息的方法,系统和程序。 接收到客户站点的选择,并查询数据库以确定所选网络站点的地理位置。 呈现图形用户界面,包括在地图中所选择的站点的地理位置的地图中所选客户站点的表示。 接收至少一个网络服务提供商(NSP)的选择。 查询数据库以确定所选NSP的网络基础设施和确定的网络基础设施的地理位置。 在所确定的确定的网络基础设施的确定的地理位置的地图中呈现所确定的网络基础设施的表示,以呈现地图中所选择的至少一个NSP的所选客户站点和网络基础设施的地理位置的可视化。
    • 7. 发明申请
    • Covered stent and method of covering a stent
    • 覆盖支架和覆盖支架的方法
    • US20050055081A1
    • 2005-03-10
    • US10972197
    • 2004-10-22
    • Jonathan GoodwinGary JordanPeter Gingras
    • Jonathan GoodwinGary JordanPeter Gingras
    • A61F2/86A61L31/10A61L31/14A61F2/06
    • A61F2/86A61F2/91A61F2002/072A61F2210/0076A61F2220/005A61L31/10A61L31/146C08L27/18
    • A radially deployable covered stent that predictably and dependably expands to an increased diameter state at relatively low deployment pressures while concomitantly minimizing the risk of tearing of the stent covering during expansion. The stent covering includes an inner cover and an outer cover that are bonded together through and around the stent structure to cover the stent. The stent cover is constructed from expanded polytetrafluoroethylene (ePTFE) having a structure of nodes interconnected by fibrils. The stent covering has a radial thickness of at least about 0.008″ and an average internodal distance (IND) of at least about 100 microns when the stent is in the reduced diameter, unexpanded state. The covered stent deploys at an average deployment pressure of less than or equal to about 10 atm. A method for covering a stent structure according to the present invention includes placing a compression member in the form of a tubular sleeve over the outer cover and heating the compressed covered stent to bond the inner cover to the outer cover. An adhesive in the form of an aqueous dispersion of PTFE can be applied to either the inner cover or the outer cover to facilitate bonding of the inner cover to the outer cover.
    • 可径向展开的覆盖支架可预测地且可靠地在相对较低的部署压力下扩张到增加的直径状态,同时最小化扩张期间支架覆盖物撕裂的风险。 支架覆盖物包括通过支架结构并且围绕支架结构粘合在一起以覆盖支架的内盖和外盖。 支架盖由膨胀的聚四氟乙烯(ePTFE)构成,其具有通过纤维互连的节点结构。 当支架处于减小直径,未膨胀状态时,支架覆盖物具有至少约0.008“的径向厚度和至少约100微米的平均间隔距离(IND)。 覆盖的支架以小于或等于约10atm的平均部署压力部署。 根据本发明的覆盖支架结构的方法包括将管状套筒形式的压缩构件放置在外盖上并加热压缩的被覆盖的支架以将内盖结合到外盖。 可以将PTFE的水性分散体形式的粘合剂施加到内盖或外盖上,以便于内盖与外盖接合。
    • 8. 发明授权
    • Board-to-board flex connector
    • 板对板柔性连接器
    • US06790048B2
    • 2004-09-14
    • US10128398
    • 2002-04-23
    • Jonathan GoodwinDonald Amaral, Jr.
    • Jonathan GoodwinDonald Amaral, Jr.
    • H01R1200
    • H01R12/52
    • A flex connector assembly for connecting circuit boards has been provided that includes a housing having at least one cavity holding a preloaded spring exerting an outwardly-directed force toward top and bottom ends of the housing; at least one pressure support member located at one of the top and bottom ends, the pressure support member exerting an inwardly-directed force on the preloaded spring; and at least one flex circuit having a flex array arranged on one of the top and bottom ends; and at least one compressible socket having a socket array overlapping the flex circuit. The preloaded spring acts to compress the flex array and the socket array onto one another.
    • 已经提供了一种用于连接电路板的柔性连接器组件,其包括壳体,该壳体具有至少一个腔体,其保持预先加载的弹簧朝向壳体的顶端和底端施加向外的力; 至少一个压力支撑构件,其位于顶端和底端中的一个处,所述压力支撑构件对所述预加载的弹簧施加向内的力; 以及至少一个具有布置在顶端和底端之一上的柔性阵列的柔性电路; 以及至少一个具有与柔性电路重叠的插座阵列的可压缩插座。 预加载的弹簧用于将柔性阵列和套筒阵列相互压缩。