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    • 12. 发明申请
    • ANNULAR BOURDON TUBE GAUGE ASSEMBLY
    • 环形管E管总成
    • WO2011017397A3
    • 2011-04-28
    • PCT/US2010044349
    • 2010-08-04
    • YSN IMP S INCNEWMAN SHMUEL DOVIDBROWN JEFFREY
    • NEWMAN SHMUEL DOVIDBROWN JEFFREY
    • G01L7/04G01L19/00G01L19/16
    • G01L7/041G01L7/043
    • An annular bourdon tube gauge assembly comprises a bourdon tube member, a first flange element, a second flange element and a pressure level indicator, and is adapted to be mounted externally circumferentially of a portion of a body member that is adapted to confining a pressurized fluid, such as a pressure regulator. The bourdon tube is axially disposed between the first and second flange elements, and has a spiral shape, a radially inner end and a radially outer end. The radially inner end is fixed with respect to the portion of the body member. The radially outer end is free to move circumferentially responsive to changes in the fluid pressure entering a pressure receiving port at the radially inner end. The pressure level indicator is mounted to and moveable with the radially outer end, and is viewable from a position located laterally outward of the first and second flange elements.
    • 环形布尔登​​管规组件包括布尔登管构件,第一法兰元件,第二法兰元件和压力水平指示器,并且适于在本体构件的一部分的外圆周上安装,所述本体构件的一部分适于限制加压流体 ,如压力调节器。 布尔登管轴向设置在第一和第二凸缘元件之间,并且具有螺旋形状,径向内端和径向外端。 径向内端相对于本体构件的部分固定。 响应于在径向内端进入压力接收端口的流体压力的变化,径向外端自由地周向地移动。 压力水平指示器安装到径向外端并且可与径向外端移动,并且可从位于第一和第二凸缘元件的横向外侧的位置观看。
    • 13. 发明申请
    • ANNULAR BOURDON TUBE GAUGE ASSEMBLY
    • 环形管道组件
    • WO2011017397A2
    • 2011-02-10
    • PCT/US2010/044349
    • 2010-08-04
    • YSN IMPORTS, INC.NEWMAN, Shmuel DovidBROWN, Jeffrey
    • NEWMAN, Shmuel DovidBROWN, Jeffrey
    • G01L7/04G01L19/00G01L19/16
    • G01L7/041G01L7/043
    • An annular bourdon tube gauge assembly comprises a bourdon tube member, a first flange element, a second flange element and a pressure level indicator, and is adapted to be mounted externally circumferentially of a portion of a body member that is adapted to confining a pressurized fluid, such as a pressure regulator. The bourdon tube is axially disposed between the first and second flange elements, and has a spiral shape, a radially inner end and a radially outer end. The radially inner end is fixed with respect to the portion of the body member. The radially outer end is free to move circumferentially responsive to changes in the fluid pressure entering a pressure receiving port at the radially inner end. The pressure level indicator is mounted to and moveable with the radially outer end, and is viewable from a position located laterally outward of the first and second flange elements.
    • 一种环形布尔登​​管规组件,包括布尔登管构件,第一凸缘元件,第二凸缘元件和压力水平指示器,并且适于安装在主体构件的一部分的外部圆周上 其适于限制加压流体,例如压力调节器。 布尔登管轴向地设置在第一和第二凸缘元件之间,并且具有螺旋形状,径向内端和径向外端。 径向内端相对于本体构件的部分固定。 径向外端响应于在径向内端处进入压力接收端口的流体压力的变化而自由地沿周向移动。 压力水平指示器安装在径向外端上并可与径向外端一起移动,并且可从位于第一和第二凸缘元件的侧向外侧的位置看到。
    • 14. 发明申请
    • SAFETY RELIEF FILL VALVE ASSEMBLY
    • 安全泄压阀组件
    • WO2010129640A2
    • 2010-11-11
    • PCT/US2010/033670
    • 2010-05-05
    • DAAS IP MANAGEMENT, LLCNEWMAN, Shmuel, DovidBROWN, Jeffrey
    • NEWMAN, Shmuel, DovidBROWN, Jeffrey
    • F16K17/04F16K15/20F16K17/06
    • F16K17/048F16K1/306F16K17/168Y10T137/2605Y10T137/2622Y10T137/3646Y10T137/7779Y10T137/778Y10T137/7794Y10T137/7841Y10T137/88038
    • A safety relief fill valve adapted to being an interface for filling and relieving excess pressure from a closed fluid system. An insert shell retains a piston member for movement between fluid input and fluid holding configurations, the piston member being resiliently biased toward fluid holding configuration. When in fluid holding configuration, the piston member sealingly engages an inlet bore of the insert shell. When in fluid input configuration, the piston member allows fluid flow through the inlet bore. A housing receives the insert shell, thereby limiting relative axial movement and forming a cavity between a portion of the housing the insert shell. This cavity provides mechanical guidance and a flow channel for an overpressure relief system having fluid retaining and fluid relief configurations, the overpressure relief system being elastically biased toward fluid retaining configuration. The elastic bias is overcome responsive to excess pressure within the closed fluid system.
    • 一种安全释放填充阀,适于作为用于填充和释放来自封闭流体系统的过量压力的界面。 插入壳体保持用于在流体输入和流体保持构造之间移动的活塞构件,活塞构件被弹性地偏压到流体保持构型。 当处于流体保持构造时,活塞构件密封地接合插入壳体的入口孔。 当处于流体输入构型时,活塞构件允许流体流过入口孔。 壳体接收插入壳体,从而限制相对的轴向移动并且在壳体的一部分插入壳体之间形成空腔。 该空腔提供机械引导和用于具有流体保持和流体释放构造的超压释放系统的流动通道,该超压释放系统被弹性地偏向流体保持构型。 响应于封闭流体系统内的过压而克服弹性偏压。
    • 16. 发明申请
    • COMPRESSED GAS REGULATOR APPARATUS
    • 压缩气体调节器装置
    • WO2010083358A1
    • 2010-07-22
    • PCT/US2010/021110
    • 2010-01-15
    • YSN IMPORTS, INC.NEWMAN, Shmuel, DovidBROWN, Jeffrey, O.
    • NEWMAN, Shmuel, DovidBROWN, Jeffrey, O.
    • F17C13/04F16K17/00G05D16/02
    • G05D16/103F41B11/723Y10T137/7793Y10T137/7826
    • Regulators for regulating gas that is delivered in discrete charges from a tank that contains compressed gas to a paintball gun, marker, or other application that utilizes or is activated by pressure controlled discrete charges of gas. The regulator has holding, discharge, and fill configurations, controlled by the movement of a piston member in a pressurized chamber, and the activation of a poppet valve on the discharge of the system. One or two low side pressure relief members are provided to prevent the over-pressurization of the pressurized chamber. An externally threaded sleeve member is non-rotatably, but axially slidably received on a distal portion of the body of the regulator. The sleeve and regulator body are non-rotatably interengaged through one or more mating spline-groove sets, one or more stud-socket sets, frictional engagement or polygonal socket engagement. The spline-groove or stud- socket sets are symmetrically arrayed around a longitudinal axis of the regulator so that the sleeve member and distal portion may be axially slidably disengaged, and rotation of the regulator to a desired rotational position may be accomplished. In other embodiments, axially tapered surface engagement between the sleeve and regulator, or polygonal socket engagement between the sleeve and regulator, allow the initial rotation of the regulator to a desired rotational position. The regulator is then locked in the desired rotational position by sliding the sleeve member axially onto the distal portion of the regulator. In this way a pressure gauge mounted in a port in the body of the regulator may be positioned for ease of viewing by an operator.
    • 调节器,用于调节从包含压缩气体的罐中以不同的电荷输送到彩弹枪,标记或其他通过压力控制的离散电荷使用或激活的应用的气体。 调节器具有保持,排出和填充构造,由活塞构件在加压室中的运动控制,并且在系统的排出物上启动提升阀。 提供一个或两个低压泄压构件以防止加压室的过度加压。 外螺纹套筒构件是不可旋转的,但轴向可滑动地容纳在调节器主体的远端部分上。 套管和调节器主体通过一个或多个配合花键槽组,一个或多个螺柱插座组,摩擦接合或多边形插座接合而不可转动地相互接合。 花键槽或螺柱插座组围绕调节器的纵向轴线对称地排列,使得套筒构件和远侧部分可以轴向滑动地脱离,并且可以实现调节器到期望的旋转位置的旋转。 在其他实施例中,套筒和调节器之间的轴向锥形表面接合或套筒和调节器之间的多边形插座接合允许调节器的初始旋转到期望的旋转位置。 然后通过将套筒构件轴向滑动到调节器的远端部分上将调节器锁定在期望的旋转位置。 以这种方式,安装在调节器主体中的端口中的压力计可以被定位以便于操作者观看。
    • 20. 发明申请
    • PRESENTATION OF VIRTUAL ARRAYS USING N-PORT ID VIRTUALIZATION
    • 使用N端口ID虚拟化的虚拟阵列的呈现
    • WO2007076382A2
    • 2007-07-05
    • PCT/US2006062353
    • 2006-12-20
    • EMC CORPOFER ADIMADNANI KIRANBROWN JEFFREY A
    • OFER ADIMADNANI KIRANBROWN JEFFREY A
    • G06F3/0637G06F3/0605G06F3/0689
    • A storage array presents virtual arrays to hosts through use of virtual port IDs. The storage array includes groups of logical units of storage. The groups are coupled to a switch through at least one physical port. Each group is assigned a unique virtual port ID for each physical port to which it is coupled. The virtual port IDs are assignable by the switch. The virtual port IDs are used by hosts coupled to the switch to exchange data with the groups to which the virtual port IDs are assigned. Further, a zoning table in the switch can associate each virtual port ID to a host facing port on the switch. In this case each host can communicate only with groups of logical units that are assigned virtual IDs associated with the host facing port to which it is coupled.
    • 存储阵列通过使用虚拟端口ID向主机呈现虚拟阵列。 存储阵列包括逻辑存储单元组。 这些组通过至少一个物理端口耦合到交换机。 为每个组分配与其耦合的每个物理端口唯一的虚拟端口ID。 虚拟端口ID可由交换机分配。 虚拟端口ID由耦合到交换机的主机用于与分配了虚拟端口ID的组交换数据。 此外,交换机中的分区表可以将每个虚拟端口ID与交换机上面向主机的端口相关联。 在这种情况下,每个主机只能与被分配与其所耦合的面向主机的端口相关联的虚拟ID的逻辑单元组通信。