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    • 51. 发明申请
    • Minimization of cooling air preheat for maximum packaging density
    • 最小化冷却空气预热,最大限度地提高包装密度
    • US20060104024A1
    • 2006-05-18
    • US10992451
    • 2004-11-18
    • David WangP. Muller
    • David WangP. Muller
    • H05K7/20
    • H05K7/20572
    • An electronic hardware cabinet includes a forced-air component positioned to force a stream of air to move through the cabinet and at least two electronic assemblies mounted within the cabinet, each of which includes a heat-generating component. The electronic assemblies are positioned so that a portion of the stream of air is heated by a first one of the heat-generating components and, thereafter, that portion of the stream of air moves toward a second one of the heat-generating components. An airflow diverter is positioned between the electronic assemblies to deflect that portion of the stream of air heated by the first heat-generating component to prevent it from reaching the second heat-generating component.
    • 电子硬件柜包括强制空气部件,该强制空气部件被定位成迫使空气流移动通过机壳,以及安装在机柜内的至少两个电子组件,每个电子组件包括发热部件。 电子组件被定位成使得空气流的一部分被第一个发热部件加热,此后,空气流的那部分向第二个发热部件移动。 气流分流器定位在电子组件之间,以偏转由第一发热部件加热的空气流的部分,以防止其到达第二发热部件。
    • 53. 发明申请
    • Joining Tubular Members
    • 加入管子会员
    • US20050200127A1
    • 2005-09-15
    • US10708517
    • 2004-03-09
    • Craig JohnsonMatthew HackworthMichael LanglaisDavid WangLaurent AlteiracStephane VirallyJason BigelowKerby DufreneBruno KhanMartin PradoAshish Sharma
    • Craig JohnsonMatthew HackworthMichael LanglaisDavid WangLaurent AlteiracStephane VirallyJason BigelowKerby DufreneBruno KhanMartin PradoAshish Sharma
    • E21B17/02E21B17/08E21B17/18E21B43/04F16L15/08F16L35/00
    • E21B43/04E21B17/02E21B17/18
    • An apparatus includes a first connector and a member. The first connector connects a first tubing section and a second tubing section together. The member is adapted to be moved from a retracted to an extended position to form a sealed connection between a first tubular member that is connected to the first tubing section and a second tubular member that is connected to the second tubing section. In another embodiment of the invention, an apparatus includes a first connector and a member. The first connector forms a connection between a first tubing section and the second tubing section and leaves a gap between a first end of a first tubular member that is connected to the first tubing section and a second end of a second tubular member that is connected to the second tubing section. The member is inserted into the gap to seal the first tubular member and the second tubular member together. In another embodiment of the invention, an apparatus includes a pin end that includes a first passageway in communication with a first tubular member and a second passageway in communication with a first tubing section. The apparatus also includes a box end that is adapted to receive a pin end. The box end includes a third passageway that is in communication with a second tubular member and a fourth passageway that is in communication with a second tubing section. The apparatus includes a locking mechanism to secure the pin end and the box end together.
    • 一种装置包括第一连接器和构件。 第一连接器将第一管段和第二管段连接在一起。 该构件适于从缩回位置移动到延伸位置,以在连接到第一管段的第一管状构件和连接到第二管段的第二管状构件之间形成密封连接。 在本发明的另一个实施例中,装置包括第一连接器和构件。 第一连接器形成第一管段和第二管段之间的连接,并且在连接到第一管段的第一管状构件的第一端和连接到第二管段的第二端之间留下间隙 第二管段。 将构件插入到间隙中以将第一管状构件和第二管状构件密封在一起。 在本发明的另一个实施例中,一种装置包括一个销端,该销端包括与第一管状构件连通的第一通道和与第一管段连通的第二通道。 该装置还包括适于接收销端的盒端。 盒端部包括与第二管状构件连通的第三通道和与第二管道部分连通的第四通道。 该装置包括锁定机构,以将销端和箱端固定在一起。
    • 57. 发明申请
    • Rack architecture and management system
    • 机架架构与管理系统
    • US20050050272A1
    • 2005-03-03
    • US10783687
    • 2004-02-20
    • Edward BehrensTho TuVan HuaDavid Wang
    • Edward BehrensTho TuVan HuaDavid Wang
    • A47B20060101G06F13/00H02B1/20H05K7/14
    • H05K7/1492G06F1/18G06F1/189G06F1/26
    • One embodiment of the invention provides a fully distributed, scaleable and modular rack architecture and management system. One feature of the invention provides device management throughout the rack system with a vertical interface column integrated into the rack cabinet. Within each rack unit (U) of the vertical interface column, the vertical interface column may deliver connectivity to a device housed within the rack cabinet thereby eliminating runs of cable typically necessary for management of such devices. The vertical interface column can be expanded as necessary to provide connectivity to more devices using hot-swappable interface modules. A rack management system allows both local and remote management access to all devices mounted in the rack cabinet and coupled to the vertical interface column. The rack management system may also access to devices mounted in other rack cabinets.
    • 本发明的一个实施例提供了完全分布的,可扩展的和模块化的机架架构和管理系统。 本发明的一个特征提供了整个机架系统中的设备管理,其具有集成到机架机柜中的垂直接口列。 在垂直接口列的每个机架单元(U)内,垂直接口列可以连接到容纳在机架柜内的设备,从而消除了管理这些设备通常所需的电缆运行。 可以根据需要扩展垂直接口列,以使用热插拔接口模块提供与更多设备的连接。 机架管理系统允许本地和远程管理访问安装在机架式机柜中的所有设备,并连接到垂直接口列。 机架管理系统还可以访问安装在其他机柜中的设备。
    • 59. 发明授权
    • Tap water temperature measuring device
    • 自来水温度测量装置
    • US06641305B2
    • 2003-11-04
    • US10075298
    • 2002-02-15
    • David Wang
    • David Wang
    • G01K102
    • G01K13/02E03C2001/0418
    • A tap water temperature measuring device. The device includes a tube device having first and second ends and a straight bore there through, a multi-connector attached to the first end of the tube device, a filter attached to the second end of the tube device 20, and an integrated circuit board connected to the tube device 20. A circuit activation probe is connected to the integrated circuit board. The circuit activation probe includes a water sensing probe and a temperature probe. The water sensing probe and the temperature probe extend into the straight bore of the tube device such that the circuit activation probe is only activated when the water sensing probe detects the presence of water in the bore of the tube device, after which, the temperature probe is activated to transmit a temperature reading to the integrated circuit board.
    • 自来水温度测量装置。 该装置包括管装置,其具有第一端和第二端以及其中的直孔,连接到管装置的第一端的多连接器,附接到管装置20的第二端的过滤器和集成电路板 连接到管装置20.电路激活探针连接到集成电路板。 电路激活探头包括水传感探头和温度探头。 水传感探针和温度探头延伸到管装置的直孔中,使得仅当水传感探针检测到管装置的孔中存在水时,电路激活探针才被激活,之后温度探针 被激活以将温度读数传输到集成电路板。