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    • 67. 发明授权
    • Rotation angle sensor
    • 旋转角传感器
    • US07855552B2
    • 2010-12-21
    • US11646885
    • 2006-12-28
    • Klaus Manfred Steinich
    • Klaus Manfred Steinich
    • G01B7/30
    • G01D5/04G01D5/145
    • A rotation angle sensor is provided for determining mechanical angular positions and transposing them into signals transferable through electricity. The sensor includes a housing (2), a rotation indicator (4) located outside of the sensor housing (2a) so that it can rotate and coupled with the sensor element (3) so it operates in a non-contracting manner through the wall of the housing (2). A sensor element (3) is located in the interior of the housing (2). An intermediary element (5) is rotationally supported in the interior of the housing (2) between the sensor element (3) and the rotation indicator (4) and coupled to the rotation indicator (4) in a rotationally fixed, but non-contacting manner.
    • 提供旋转角度传感器用于确定机械角位置并将其转换成可通过电传递的信号。 传感器包括壳体(2),位于传感器壳体(2a)外部的旋转指示器(4),使得其可以与传感器元件(3)旋转并联接,使得其以非收缩的方式通过壁 (2)。 传感器元件(3)位于壳体(2)的内部。 中间元件(5)旋转地支撑在传感器元件(3)和旋转指示器(4)之间的壳体(2)的内部,并以旋转固定但不接触的方式联接到旋转指示器(4) 方式。
    • 69. 发明授权
    • Sensor according to the runtime principle with a detector unit for mechanical-elastic waves
    • 传感器根据运行原理用机械弹性波的检测器单元
    • US07808231B2
    • 2010-10-05
    • US11047430
    • 2003-07-25
    • Klaus Manfred SteinichLiu Jigou
    • Klaus Manfred SteinichLiu Jigou
    • G01B7/14G01R33/038
    • G01D5/485
    • A detector unit apparatus and method for operating and producing a detector unit to be adapted to varying environmental influences or to its own, in particular mechanical, electrical or magnetic parameters of the detector unit, which are dependent on measuring lengths. An inventive positional sensor operating according to the running time principle of a mechanically elastic shaft and comprising a waveguide, a positional element, e.g. a positional magnet, which can be displaced in particular along the waveguide, in addition to a detector assembly that is located on the waveguide and comprises a detector coil wherein the detector assembly has a current source so that a current can flow through the detector coil.
    • 一种用于操作和产生检测器单元的检测器单元装置和方法,所述检测器单元适于改变取决于测量长度的检测器单元的环境影响或其本身,特别是机械,电或磁参数。 本发明的位置传感器根据机械弹性轴的运行时间原理进行操作,并且包括波导,位置元件 除了位于波导上的检测器组件之外,还包括检测器线圈,其中检测器组件具有电流源,使得电流可以流过检测器线圈,定位磁体可特别地沿着波导位移。
    • 70. 发明授权
    • Inclination sensor
    • 倾角传感器
    • US07555841B2
    • 2009-07-07
    • US11809101
    • 2007-05-31
    • Klaus Manfred Steinich
    • Klaus Manfred Steinich
    • G01C9/06G01C9/12G01C9/20
    • G01C9/12G01C9/06G01C9/20G01C2009/064G01C2009/187
    • Inclination sensors with magnetic XMR- or Hall-sensor-principles were implemented in the past by the pivotably supported indicator magnet being supported on the front face of the axle of a pendulum, with the consequence that the static friction of the support had to be overcome first, before the inclination sensor would react. Thereby very small and very slow inclinations often could not be detected. These designs always have a large amount of hysteresis. According to the invention this problem is being solved by the indicator magnet being mounted either on a float, or on a pendulum that is being supported ferrofluidic, whereby the static friction is much smaller or eliminated entirely.
    • 具有磁性XMR或霍尔传感器原理的倾角传感器在过去由可摆动地支撑的指示器磁体实现,该磁体被支撑在摆锤轴的前表面上,结果是必须克服载体的静摩擦力 首先,在倾角传感器反应之前。 因此,经常无法检测到非常小而非常缓慢的倾向。 这些设计总是具有大量滞后。 根据本发明,这个问题是通过将指示器磁体安装在浮子上或安装在被支撑的铁磁流体的摆锤上来解决的,由此静摩擦力要小得多或完全消除。