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    • 1. 发明申请
    • METHOD FOR TESTING A POWER DISTRIBUTION SYSTEM AND A POWER DISTRIBUTION SYSTEM ANALYZER DEVICE
    • 用于测试功率分配系统和功率分配系统分析仪器的方法
    • US20110316559A1
    • 2011-12-29
    • US13210522
    • 2011-08-16
    • Ken Yves HAFFNEROlivier SteigerPeter KrippnerBernhard Deck
    • Ken Yves HAFFNEROlivier SteigerPeter KrippnerBernhard Deck
    • G01R27/28
    • G01R31/11
    • A method and analyzer device are provided for testing a power distribution system of a power supply network. A first electrical signal is transmitted into the power distribution system to be tested, the first electrical signal is propagated along the power distribution system to be tested, and a second electrical signal, which is a portion of the first electrical signal reflected within the power distribution system, is received. A signal variation parameter is measured between the first electrical signal and the second electrical signal, and a location of a critical conducting section within the power supply network is obtained from the measured signal variation parameter. A maximum load rating of the critical conducting section is determined, and a control signal for controlling the power supply network such that the power transferred on the critical conducting section does not exceed the maximum load rating.
    • 提供了一种用于测试供电网络的配电系统的方法和分析装置。 第一电信号被传送到要测试的配电系统中,第一电信号沿着要测试的配电系统传播,并且第二电信号是在功率分配内反映的第一电信号的一部分 系统,被接收。 在第一电信号和第二电信号之间测量信号变化参数,并且根据测量的信号变化参数获得供电网络内的临界导电部分的位置。 确定临界导电部分的最大额定载荷,以及用于控制供电网络的控制信号,使得在临界导电部分上传递的功率不超过最大额定载荷。
    • 6. 发明授权
    • Set of multiaxial force and torque sensor and assembling method
    • 多轴力矩传感器和组合方法
    • US08726741B2
    • 2014-05-20
    • US13204129
    • 2011-08-05
    • Peter KrippnerPaul SzaszManfred WetzkoTorgny Brogardh
    • Peter KrippnerPaul SzaszManfred WetzkoTorgny Brogardh
    • G01L5/10G01L1/04
    • G01L3/1457
    • A multiaxial force/torque sensor assembly and method for assembling such a sensor assembly are disclosed. The sensor assembly includes a set of at least two sensors each being made of strain gauges, which are each arranged at a definite angle and distance relative to each other and which are each fixed to a transducer body, which is mechanical contact with a printed circuit board. The printed circuit board includes clearances for each strain gauge as well as associated electronic components and wiring located on the remaining area of the printed circuit board which will monitor compressive and tensile stresses in the measurement directions of the sensors. The method includes positioning the strain gauges on the plane measurement surface of a transducer body in a definite arrangement; fixing the strain gauges to the transducer body by means of adhesives, and connecting the strain gauges to respective conductors by means of electrically bonding.
    • 公开了用于组装这种传感器组件的多轴力/扭矩传感器组件和方法。 传感器组件包括一组至少两个传感器,每个传感器由应变计制成,每个传感器各自以相对于彼此以确定的角度和距离布置,并且各自固定到与印刷电路机械接触的换能器主体 板。 印刷电路板包括每个应变计的间隙以及位于印刷电路板的剩余区域上的相关联的电子部件和布线,其将监测传感器的测量方向上的压缩和拉伸应力。 该方法包括将应变仪定位在换能器本体的平面测量表面上; 通过粘合剂将应变片固定到换能器主体上,并通过电粘合将应变仪连接到相应的导体。
    • 10. 发明授权
    • Differential pressure sensor
    • 差压传感器
    • US06640640B2
    • 2003-11-04
    • US10172235
    • 2002-06-14
    • Wolfgang ScholzAlbrecht VogelPeter Krippner
    • Wolfgang ScholzAlbrecht VogelPeter Krippner
    • G01L1500
    • G01L19/0618G01L9/0055G01L9/0073G01L13/026
    • A differential pressure sensor has a first and a second measuring chamber. Each measuring chamber is limited by a rigid carrier plate and a diaphragm plate, which is formed in the region of the measuring chamber as a pressure-sensitive measuring diaphragm. To design the differential pressure sensor to be resistant to overloading, the carrier plate is arranged between a first and a second diaphragm plate and has congruent concave depressions on opposite sides in the plane of the plate. The depressions are connected to one another by a central duct, penetrating the carrier plate perpendicularly to the plane of the plates. In the region of the measuring chambers, the diaphragm plates are formed congruently in relation to the depressions as pressure-sensitive measuring diaphragms. The measuring chambers are coupled to one another by a ram guided axially movably in the duct.
    • 差压传感器具有第一和第二测量室。 每个测量室由刚性载体板和隔膜板限制,该板在测量室的区域中形成为压敏测量膜片。 为了设计差压传感器以防止过载,承载板布置在第一和第二隔膜板之间,并且在板的平面的相对侧上具有一致的凹陷。 凹陷通过中心导管彼此连接,垂直于板的平面穿过载体板。 在测量室的区域中,隔板相对于凹陷形成为压敏测量隔膜。 测量室通过在管道中可轴向移动的冲头彼此联接。