会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 13. 发明申请
    • SIMPLIFIED LOW INSERTION FORCE SEALING DEVICE CAPABLE OF SELF RESTRAINT AND JOINT DEFLECTION
    • 简单的低插入力密封装置可以自动限制和接头偏差
    • US20110285093A1
    • 2011-11-24
    • US13113684
    • 2011-05-23
    • William W. Holmes, IVWilliam H. Owen
    • William W. Holmes, IVWilliam H. Owen
    • F16L21/03F16L21/00
    • F16L17/03F16L37/0845
    • A conduit coupling system, sealing device, bell and method of use are disclosed herein. The system comprises at least two piping components, and a sealing device. A first component has a bell and a second component has a spigot, the spigot is adapted to mate with the bell. The bell comprises a first end and a second end, the first end coupled to the first component. The bell has a concave annular inner surface and a diameter of the annular inner surface adjacent to the first end of the bell is greater than a diameter of the annular inner surface adjacent to the second end of the bell. The sealing device comprises a locking segment comprising a convex outer surface and a K-type gasket coupled to a locking segment or a non-restraining anti-extrusion segment. The sealing device is adapted to fit between the bell and the spigot.
    • 本文公开了导管联接系统,密封装置,钟和使用方法。 该系统包括至少两个管道部件和密封装置。 第一部件具有钟形,第二部件具有插口,该插口适于与钟匹配。 钟形件包括第一端和第二端,第一端联接到第一构件。 钟形件具有凹入的环形内表面,并且与钟形钟的第一端相邻的环形内表面的直径大于与钟形件的第二端相邻的环形内表面的直径。 密封装置包括锁定部分,该锁定部分包括凸出的外表面和联接到锁定部分或非限制性抗挤压部分的K型衬垫。 密封装置适于安装在钟形和插口之间。
    • 14. 发明授权
    • Method of coupling at least two conduits
    • 耦合至少两个导管的方法
    • US08533926B2
    • 2013-09-17
    • US13103126
    • 2011-05-09
    • William W. Holmes, IVWilliam H. Owen
    • William W. Holmes, IVWilliam H. Owen
    • B21D39/00F16L17/02
    • F16L37/52F16L17/035F16L37/0845Y10T29/49872Y10T137/0447
    • A method of use of a conduit coupling system, sealing device, and bell are disclosed herein. The method comprises positioning a sealing device inside a bell coupled to one end of a first conduit, inserting a spigot of a second conduit through the sealing device inside the bell, wherein the sealing device is adapted to move axially within the bell in the direction of the insertion of the spigot and in a radial direction from a centerline of the conduit, and partially removing the spigot from the bell, wherein a segment of the sealing device engages the outer surface of the spigot end as the spigot end is partially removed from the bell. The bell comprises a first end and a second end, the first end coupled to the first conduit. The bell has a concave annular inner surface and a diameter of the annular inner surface adjacent to the first end of the bell is greater than a diameter of the annular inner surface adjacent to the second end of the bell. The sealing device comprises a locking segment comprising a convex outer surface and a K-type gasket coupled to a locking segment or a non-restraining anti-extrusion segment. The sealing device is adapted to fit between the bell and the spigot.
    • 本文公开了一种使用管道联接系统,密封装置和钟的方法。 该方法包括将密封装置定位在与第一导管的一端相连的钟形件的内部,将第二导管的插口通过密封装置插入到钟罩内部,其中密封装置适于在钟形件的轴向方向 从插管的中心线插入插头并沿径向插入插头,并将套管部分地从钟形件上移除,其中当端子部分地从插座端部部分地移除时,密封装置的一部分接合插口端的外表面 钟。 钟形件包括第一端和第二端,第一端联接到第一导管。 钟形件具有凹入的环形内表面,并且与钟形钟的第一端相邻的环形内表面的直径大于与钟形件的第二端相邻的环形内表面的直径。 密封装置包括锁定部分,该锁定部分包括凸出的外表面和联接到锁定部分或非限制性抗挤压部分的K型衬垫。 密封装置适于安装在钟形和插口之间。
    • 15. 发明授权
    • Simplified low insertion force sealing device capable of self restraint and joint deflection
    • 简化的低插入力密封装置,能够自我约束和关节偏转
    • US08511690B2
    • 2013-08-20
    • US13113684
    • 2011-05-23
    • William W. Holmes, IVWilliam H. Owen
    • William W. Holmes, IVWilliam H. Owen
    • F16L17/00
    • F16L17/03F16L37/0845
    • A conduit coupling system, sealing device, bell and method of use are disclosed herein. The system comprises at least two piping components, and a sealing device. A first component has a bell and a second component has a spigot, the spigot is adapted to mate with the bell. The bell comprises a first end and a second end, the first end coupled to the first component. The bell has a concave annular inner surface and a diameter of the annular inner surface adjacent to the first end of the bell is greater than a diameter of the annular inner surface adjacent to the second end of the bell. The sealing device comprises a locking segment comprising a convex outer surface and a K-type gasket coupled to a locking segment or a non-restraining anti-extrusion segment. The sealing device is adapted to fit between the bell and the spigot.
    • 本文公开了导管联接系统,密封装置,钟和使用方法。 该系统包括至少两个管道部件和密封装置。 第一部件具有钟形,第二部件具有插口,该插口适于与钟匹配。 钟形件包括第一端和第二端,第一端联接到第一构件。 钟形件具有凹入的环形内表面,并且与钟形钟的第一端相邻的环形内表面的直径大于与钟形件的第二端相邻的环形内表面的直径。 密封装置包括锁定部分,该锁定部分包括凸出的外表面和联接到锁定部分或非限制性抗挤压部分的K型衬垫。 密封装置适于安装在钟形和插口之间。
    • 18. 发明授权
    • Tunnel device level shift circuit
    • 隧道装置电平移位电路
    • US07345523B2
    • 2008-03-18
    • US11525792
    • 2006-09-22
    • William H. Owen
    • William H. Owen
    • H03L5/00
    • G11C16/10G11C7/062G11C7/067G11C7/14G11C2207/2254H03K5/08H03K5/2481
    • A floating gate circuit having a floating gate and a level shift circuit. A first tunneling device formed between a first and second tunnel electrode is included for removing electrons from the floating gate. Electrons are injected onto the floating gate without the use of a tunneling device, e.g., using avalanche injection. A first circuit is coupled to the floating gate for generating an output voltage at an output terminal. The level shift circuit has a second tunnel device coupled between the output terminal and the first tunnel electrode. The second tunnel device is for tracking changes in the characteristics of the first tunneling device connected to the floating gate. The level shift circuit level shifts the output of the floating gate circuit to a voltage that enables the tunnel device coupled to a floating gate to precisely set the floating gate to a desired voltage during a set mode.
    • 具有浮动栅极和电平移位电路的浮动栅极电路。 包括形成在第一和第二隧道电极之间的第一隧穿装置,用于从浮动栅极去除电子。 电子注入到浮动栅上,而不需要使用隧道装置,例如使用雪崩注入。 第一电路耦合到浮动栅极,用于在输出端产生输出电压。 电平移位电路具有耦合在输出端子和第一隧道电极之间的第二隧道装置。 第二隧道装置用于跟踪连接到浮动栅极的第一隧道装置的特性的变化。 电平移位电路电平将浮动栅极电路的输出移动到使得能够在设定模式期间使与浮动栅极耦合的隧道器件将浮动栅极精确地设置为期望电压的电压。
    • 20. 发明授权
    • Apparatus for feedback using a tunnel device
    • 使用隧道装置进行反馈的装置
    • US06847551B2
    • 2005-01-25
    • US10353403
    • 2003-01-28
    • William H. Owen
    • William H. Owen
    • G11C16/04G11C16/34G11C27/00H01L20060101
    • G11C16/3468G11C16/0408G11C27/005
    • An apparatus for using feedback to set a floating gate to a desired voltage during a set mode is disclosed. The apparatus includes a floating gate, a first and second tunnel device formed respectively between the floating gate and a first and second electrode, a first circuit coupled to the floating gate for comparing the voltage on the floating gate to a third voltage and for generating an output voltage at an output terminal, and a feedback circuit coupled between the output terminal and the floating gate. The feedback circuit includes the first tunnel device and a third tunnel device for causing the floating gate voltage to be modified as a function the output voltage until the floating gate voltage, the third voltage and the output voltage are approximately equal.
    • 公开了一种在设定模式期间使用反馈来将浮动栅极设置为期望电压的装置。 该装置包括浮动栅极,分别形成在浮动栅极和第一和第二电极之间的第一和第二隧道装置,耦合到浮动栅极的第一电路,用于将浮动栅极上的电压与第三电压进行比较, 输出端子处的输出电压,以及耦合在输出端子和浮动栅极之间的反馈电路。 反馈电路包括第一隧道装置和第三隧道装置,用于使浮动栅极电压作为直到浮置栅极电压,第三电压和输出电压近似相等的输出电压的函数来修改。