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    • 1. 发明申请
    • Flow Measuring Device
    • 流量测量装置
    • US20130269448A1
    • 2013-10-17
    • US13996075
    • 2011-12-01
    • Andreas BergerPierre Ueberschlag
    • Andreas BergerPierre Ueberschlag
    • G01F1/66
    • G01F1/662
    • Flow measuring device for ascertaining flow of a measured medium flowing through a measuring tube, which flow measuring device has a first housing for protruding into the measured medium, wherein the first housing has a first surface intended to face the measured medium, wherein the flow measuring device includes a second surface for bounding the measured medium, and wherein each separation between the first surface for bounding the first housing from measured medium, the second surface for bounding the measured medium and the first surface of the first housing amounts to at least 1 mm.
    • 用于确定流过测量管的测量介质的流动的流量测量装置,所述流量测量装置具有用于突出到所述测量介质中的第一壳体,其中所述第一壳体具有旨在面向所述测量介质的第一表面,其中所述流量测量 装置包括用于界定所测量的介质的第二表面,并且其中用于将第一壳体与测量介质结合的第一表面之间的每个间隔,用于限定测量介质的第二表面和第一壳体的第一表面的距离至少为1mm 。
    • 2. 发明授权
    • Flow measuring device
    • 流量测量装置
    • US08939034B2
    • 2015-01-27
    • US13996075
    • 2011-12-01
    • Andreas BergerPierre Ueberschlag
    • Andreas BergerPierre Ueberschlag
    • G01F1/66
    • G01F1/662
    • Flow measuring device for ascertaining flow of a measured medium flowing through a measuring tube, which flow measuring device has a first housing for protruding into the measured medium, wherein the first housing has a first surface intended to face the measured medium, wherein the flow measuring device includes a second surface for bounding the measured medium, and wherein each separation between the first surface for bounding the first housing from measured medium, the second surface for bounding the measured medium and the first surface of the first housing amounts to at least 1 mm.
    • 用于确定流过测量管的测量介质的流动的流量测量装置,所述流量测量装置具有用于突出到所述测量介质中的第一壳体,其中所述第一壳体具有旨在面向所述测量介质的第一表面,其中所述流量测量 装置包括用于界定所测量的介质的第二表面,并且其中用于将第一壳体与测量介质结合的第一表面之间的每个间隔,用于限定测量介质的第二表面和第一壳体的第一表面的距离至少为1mm 。
    • 4. 发明申请
    • PLUG CONNECTOR
    • 插头连接器
    • US20140213089A1
    • 2014-07-31
    • US14345862
    • 2012-09-13
    • Pierre Ueberschlag
    • Pierre Ueberschlag
    • H01R13/58H01R13/648H01R13/52
    • H01R13/582H01R13/5202H01R13/562H01R13/5812H01R13/648
    • A detachable plug connector, in particular a multiple plug connector, comprising a plug side (1) having an insulating plug housing (10) and having a plug element (2) embedded in the plug housing (10) comprising a pin segment (20) and a contact segment (21) for the electrically conductive connection to an external element, in particular a cable, and a socket side (3) having an insulating socket housing (30) and having a socket element (4) embedded in the socket housing (3) having a socket segment (40) and a contact segment (41) for an electrically conductive connection to an external element, in particular a cable (9), wherein the plug housing (10) can be plugged together with the socket housing (30) in a plug direction (S), and whereby the pin segments (20) of the plug elements (2) protrude into the socket segments (40) of the socket elements (4) in a contacting region (K1, K2) in the plugged state so that an electrical contact can be conveyed between the socket side (3) and the plug side (1) via the socket segment (40) and the pin segment (20), wherein a multitude of socket housings (30) are arranged next to one another, wherein at least one physical protective element (5) is arranged in the socket housing (30) and in the plug housing (10) per pairing of plug element (2) and socket element (4), wherein the physical protective element (5) protects the corresponding pair of plug element (2) and socket element (4) from external influences.
    • 一种可拆卸的插头连接器,特别是多插头连接器,包括具有绝缘插头壳体(10)并且具有嵌入插头壳体(10)中的插头元件(2)的插头侧(1),包括插脚段(20) 以及用于与外部元件,特别是电缆的导电连接的接触段(21)和具有绝缘插座壳体(30)的插座侧(3),并且具有嵌入在插座壳体中的插座元件(4) (3)具有插座段(40)和用于与外部元件,特别是电缆(9)的导电连接的接触段(41),其中插头壳体(10)可与插座壳体 (S)的插头部分(30)中,并且由此插头元件(2)的销部分(20)在接触区域(K1,K2)中突出到插座元件(4)的插座段(40) 处于堵塞状态,使得可以在插座侧(3)和插头之间传送电接触 (1)经由插座段(40)和销部分(20),其中多个插座壳体(30)彼此相邻布置,其中至少一个物理保护元件(5)布置在插座 每个插头元件(2)和插座元件(4)的外壳(30)和插头壳体(10)中,其中物理保护元件(5)保护相应的一对插头元件(2)和插座元件(4) )从外部影响。
    • 5. 发明申请
    • Measuring System for Determining and/or Monitoring Flow of a Measured Medium Through a Measuring Tube
    • 用于通过测量管确定和/或监测测量介质的流量的测量系统
    • US20110132102A1
    • 2011-06-09
    • US12996065
    • 2009-06-02
    • Pierre Ueberschlag
    • Pierre Ueberschlag
    • G01F1/66
    • G01F1/662G01F1/663
    • Measuring system for determining and/or monitoring flow of a measured medium through a measuring tube, including: At least one ultrasonic transducer; and at least one control/evaluation unit, which, on the basis of measurement signals or on the basis of measurement data derived from the measurement signals, ascertains volume- and/or mass-flow of the medium flowing in the measuring tube; wherein the ultrasonic transducer has at least one electromechanical transducer element, which sends and/or receives ultrasonic signals; and at least one coupling layer in the region between electromechanical transducer element and measured medium, which coupling layer conducts the ultrasonic signals, and which ultrasonic transducer is acoustically coupleable with the measuring tube and at least partially fittable on the outer shape of the measuring tube and which electromechanical transducer element is flexible.
    • 用于通过测量管确定和/或监测测量介质的流量的测量系统,包括:至少一个超声换能器; 以及至少一个控制/评估单元,其基于测量信号,或者基于从测量信号导出的测量数据,确定在测量管中流动的介质的体积和/或质量流量; 其中所述超声换能器具有发送和/或接收超声信号的至少一个机电换能器元件; 以及在机电换能器元件和测量介质之间的区域中的至少一个耦合层,该耦合层传导超声波信号,并且哪个超声波换能器与测量管声学耦合并且至少部分地可装配在测量管的外形上,以及 哪个机电换能器元件是灵活的。
    • 6. 发明授权
    • Measuring device and method having superimposed reflected first measurement signal with a second measurement signal
    • 具有叠加的第一测量信号与第二测量信号的测量装置和方法
    • US08881603B2
    • 2014-11-11
    • US13377204
    • 2010-05-17
    • Pierre Ueberschlag
    • Pierre Ueberschlag
    • G01F1/66G01F23/284G01F23/296G01S15/12
    • G01S15/12G01F1/667G01F23/284G01F23/2962
    • Method and measuring device for measuring at least one measured variable. A first sensor transmits a first measurement signal, which includes at least one half-wave of a mechanical wave or an electromagnetic wave, and, at a time t from the first measurement signal, transmits at least a second measurement signal. At least a second sensor receives the measurement signals. The travel time and TOF1 of the first measurement signal between transmitting of the first measurement signal and receiving of the first measurement signal is known, wherein the time t is so selected that it is a whole numbered multiple of the travel time TOF1 of the first measurement signal or that it is a whole numbered multiple of the average value of the travel times TOF1 and TOF2, wherein the travel time and TOF2 between transmitting a third measurement signal from the second sensor and receiving of the third measurement signal by the first sensor is known.
    • 用于测量至少一个测量变量的方法和测量装置。 第一传感器发送包括机械波或电磁波的至少一个半波的第一测量信号,并且在距离第一测量信号的时刻t发送至少第二测量信号。 至少第二传感器接收测量信号。 在第一测量信号的发送与第一测量信号的接收之间的第一测量信号的行进时间和TOF1是已知的,其中时间t如此选择,使得它是第一测量的行进时间TOF1的整数倍 信号,或者是行进时间TOF1和TOF2的平均值的整数倍数,其中从第二传感器发送第三测量信号和由第一传感器接收第三测量信号之间的行进时间和TOF2是已知的 。
    • 7. 发明授权
    • Measuring system for determining and/or monitoring flow of a measured medium through a measuring tube
    • 用于通过测量管确定和/或监测测量介质的流量的测量系统
    • US08468897B2
    • 2013-06-25
    • US12996065
    • 2009-06-02
    • Pierre Ueberschlag
    • Pierre Ueberschlag
    • G01F1/66
    • G01F1/662G01F1/663
    • A measuring system for determining and/or monitoring flow of a measured medium through a measuring tube, including: at least one ultrasonic transducer; and at least one control/evaluation unit, which, on the basis of measurement signals or on the basis of measurement data derived from the measurement signals, ascertains volume- and/or mass-flow of the medium flowing in the measuring tube; wherein the ultrasonic transducer has at least one electromechanical transducer element, which sends and/or receives ultrasonic signals; and at least one coupling layer in the region between electromechanical transducer element and measured medium, which coupling layer conducts the ultrasonic signals, and which ultrasonic transducer is acoustically coupleable with the measuring tube and at least partially fittable on the outer shape of the measuring tube and which electromechanical transducer element is flexible.
    • 一种用于通过测量管确定和/或监测测量介质的流量的测量系统,包括:至少一个超声换能器; 以及至少一个控制/评估单元,其基于测量信号,或者基于从测量信号导出的测量数据,确定在测量管中流动的介质的体积和/或质量流量; 其中所述超声换能器具有发送和/或接收超声波信号的至少一个机电换能器元件; 以及在机电换能器元件和测量介质之间的区域中的至少一个耦合层,该耦合层传导超声波信号,并且哪个超声波换能器与测量管声学耦合并且至少部分地可装配在测量管的外形上,以及 哪个机电换能器元件是灵活的。
    • 9. 发明申请
    • Method for Ascertaining Flow by Means of Ultrasound
    • 通过超声波确定流量的方法
    • US20140195173A1
    • 2014-07-10
    • US14235950
    • 2012-07-23
    • Michal BezdekPierre UeberschlagOliver Brumberg
    • Michal BezdekPierre UeberschlagOliver Brumberg
    • G01F1/66
    • G01F1/66
    • A method for ascertaining flow of a fluid, which is a gas mixture, through a circularly cylindrical measuring tube having a straight, measuring tube, longitudinal axis and an inner diameter DI, wherein at least one component of the gas mixture is a hydrocarbon. The steps comprise: ascertaining a first average flow velocity vL by means of travel-time difference measurement of acoustic signals along a signal path; ascertaining a modified Reynolds number Remod according to the formula Remod=(vL*DI)/vkin, wherein the kinematic viscosity vkin of the fluid is known; and ascertaining a second average flow velocity vA by means of a known function vA=f(Remod) as a function of the modified Reynolds number Remod, wherein the method step of ascertaining the modified Reynolds number Remod precedes the method step of ascertaining the kinematic viscosity vkin of the fluid.
    • 通过具有直的,测量管,纵向轴线和内径DI的圆形圆柱形测量管确定作为气体混合物的流体的流动的方法,其中气体混合物的至少一种组分是烃。 步骤包括:通过沿着信号路径的声信号的行进 - 时间差测量来确定第一平均流速vL; 根据公式Remod =(vL * DI)/ vkin确定修改的雷诺数Remod,其中流体的运动粘度vkin是已知的; 并且通过已知函数vA = f(Remod)确定作为修改的雷诺数Remod的函数的第二平均流速vA,其中确定修改的雷诺数Remod的方法步骤先于确定运动粘度的方法步骤 流体的液体。