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    • 2. 发明申请
    • COUPLING LOOP, CABLE ASSEMBLY AND METHOD FOR POSITIONING COUPLING LOOP
    • 耦合环,电缆组件和定位耦合环路的方法
    • WO2007008493A1
    • 2007-01-18
    • PCT/US2006/026015
    • 2006-06-30
    • CARDIOMEMS, INC.KROH, JasonELLIS, MichaelMILLER, DonaldREFERMAT, Robert
    • KROH, JasonELLIS, MichaelMILLER, DonaldREFERMAT, Robert
    • H04B5/00A61B5/00G01R33/00
    • A61B5/02014A61B5/0031A61B5/064A61B5/07A61B2560/0219H01B11/20H04B5/0043Y10S128/903
    • A coupling loop or antenna is provided that can be used with a system that determines the resonant frequency of a sensor by adjusting the phase and frequency of an energizing signal until the frequency of the energizing signal matches the resonant frequency of the sensor. The coupling loop includes multiple loops. Preferably two tuned loops are used for transmitting the energizing signal to the sensor and an un-tuned loop is used for receiving the sensor signal from the sensor. A cable attached to the coupling loop provides maximum isolation between the energizing signal and the sensor signal by maximizing the distance between the coaxial cables that carry the signals and maintaining the relative positions of the coaxial cables throughout the cable assembly. Orientation features on the housing for the coupling loop and the sensor are provided to assist in positioning the coupling loop relative to the sensor to maximize the coupling between the sensor signal and the coupling loop.
    • 提供耦合环路或天线,其可以与通过调节激励信号的相位和频率来确定传感器的谐振频率的系统一起使用,直到通电信号的频率与传感器的谐振频率匹配。 耦合回路包括多个回路。 优选地,两个调谐回路用于将激励信号传输到传感器,并且未调谐回路用于从传感器接收传感器信号。 连接到耦合回路的电缆通过使承载信号的同轴电缆之间的距离最大化并且保持同轴电缆在整个电缆组件中的相对位置来提供激励信号和传感器信号之间的最大隔离。 提供用于耦合回路和传感器的壳体上的定向特征以帮助相对于传感器定位耦合回路,以使传感器信号和耦合回路之间的耦合最大化。
    • 6. 发明申请
    • A WATERJET ASSEMBLY COMPRISING A STRUCTURAL WATERJET NOZZLE
    • 一个包含结构水喷嘴的水套装置
    • WO2011070154A1
    • 2011-06-16
    • PCT/EP2010/069381
    • 2010-12-10
    • FINECUT ABMILLER, Donald
    • MILLER, Donald
    • B24C1/04B24C5/02
    • B24C5/02B24C1/045B24C5/04
    • The invention pertains to a waterjet assembly (61; 72; 101; 129; 151, 52) for an entrainment waterjet cutting head device (100; 120; 150; 155; 203). Said waterjet assembly (61; 72; 101; 129; 151, 52) comprises a passaged component (61; 72; 101; 129; 151) adapted to be connected to a source (2) of pressurised water and a waterjet nozzle (52) for converting water pressure energy to kinetic energy to form a high velocity waterjet (10), which waterjet nozzle (52) consists of superhard material and comprises a contracting bore (55). The passaged component (61; 72; 101; 129; 151) and the waterjet nozzle (52) are arranged such that pressurised water from the source (2) can flow through the passaged component (61; 72; 101; 129; 151) to and through the contracting bore (55) in the waterjet nozzle (52) to generate said high speed waterjet (10). In use of the waterjet assembly (61; 72; 101; 129; 151, 52), the outlet face of the passaged component (61; 72; 101; 129; 151) is sealingly forced against the upstream face of the waterjet nozzle (52).
    • 本发明涉及一种用于夹带水刀切割头装置(100; 120; 150; 155; 203)的水射流组件(61; 72; 101; 129; 151,52)。 所述水刀组件(61; 72; 101; 129; 151,52)包括适于连接到加压水源(2)的传送部件(61; 72; 101; 129; 151)和水射流喷嘴 ),用于将水压能转换成动能以形成高速水刀(10),该水刀喷嘴(52)由超硬材料组成并且包括收缩孔(55)。 传热部件(61; 72; 101; 129; 151)和水射流喷嘴(52)被布置成使得来自源(2)的加压水可以流过被传送部件(61; 72; 101; 129; 151) 到达并穿过水刀喷嘴(52)中的收缩孔(55)以产生所述高速水刀(10)。 在使用水刀组件(61; 72; 101; 129; 151,52)时,传送部件(61; 72; 101; 129; 151)的出口面被密封地压在水刀喷嘴的上游面 52)。