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    • 3. 发明授权
    • Sensor element
    • 传感器元件
    • US07315165B2
    • 2008-01-01
    • US10992637
    • 2004-11-18
    • Alfred KleinenPeter SchreuderMatthias HenschelBernd Juergen Lahn
    • Alfred KleinenPeter SchreuderMatthias HenschelBernd Juergen Lahn
    • G01B7/14G01B7/30G01F23/30G01F23/32
    • G01R33/07G01F23/38
    • A sensor element (30) measures a Hall voltage generated by a movable magnet (16). For this purpose, the sensor element (30) comprises a ceramic base element (40) which has connected therewith a detector element (46). The detector element (46) is protected with the aid of a cover element (42) against an aggressive environment produced by fuel or fuel vapors in a fuel tank (34) of a motor vehicle. The detector element (46) has connected therewith electric conductors (60) which are routed through the cover element (42) and/or the base element (40) for connecting the detector element (46) with a voltage source and/or an evaluation unit. The cover element (42) and possibly the base element (40) reliably encapsulate the detector element (46) against the aggressive environment such that by simple constructive measures the service life of the sensor element (30) is increased.
    • 传感器元件(30)测量由可动磁铁(16)产生的霍尔电压。 为此,传感器元件(30)包括与其连接有检测器元件(46)的陶瓷基座元件(40)。 检测器元件(46)借助于盖元件(42)被抵抗由机动车辆的燃料箱(34)中的燃料或燃料蒸气产生的侵蚀性环境的保护。 检测器元件(46)连接有通过覆盖元件(42)和/或基座元件(40)布线的电导体(60),用于将检测器元件(46)与电压源和/或评估 单元。 覆盖元件(42)和可能的基座元件(40)可靠地将检测器元件(46)封装在侵略性环境上,使得通过简单的建设性措施,传感器元件(30)的使用寿命增加。
    • 5. 发明申请
    • Sensor element
    • 传感器元件
    • US20050146323A1
    • 2005-07-07
    • US10992637
    • 2004-11-18
    • Alfred KleinenPeter SchreuderMatthias HenschelBernd Lahn
    • Alfred KleinenPeter SchreuderMatthias HenschelBernd Lahn
    • G01F23/38G01R33/07G01R33/09G01B7/14
    • G01R33/07G01F23/38
    • A sensor element (30) measures a Hall voltage generated by a movable magnet (16). For this purpose, the sensor element (30) comprises a ceramic base element (40) which has connected therewith a detector element (46). The detector element (46) is protected with the aid of a cover element (42) against an aggressive environment produced by fuel or fuel vapors in a fuel tank (34) of a motor vehicle. The detector element (46) has connected therewith electric conductors (60) which are routed through the cover element (42) and/or the base element (40) for connecting the detector element (46) with a voltage source and/or an evaluation unit. The cover element (42) and possibly the base element (40) reliably encapsulate the detector element (46) against the aggressive environment such that by simple constructive measures the service life of the sensor element (30) is increased.
    • 传感器元件(30)测量由可动磁铁(16)产生的霍尔电压。 为此,传感器元件(30)包括与其连接有检测器元件(46)的陶瓷基座元件(40)。 检测器元件(46)借助于盖元件(42)被抵抗由机动车辆的燃料箱(34)中的燃料或燃料蒸气产生的侵蚀性环境的保护。 检测器元件(46)连接有通过覆盖元件(42)和/或基座元件(40)布线的电导体(60),用于将检测器元件(46)与电压源和/或评估 单元。 覆盖元件(42)和可能的基座元件(40)可靠地将检测器元件(46)封装在侵略性环境上,使得通过简单的建设性措施,传感器元件(30)的使用寿命增加。
    • 7. 发明授权
    • Fuel level sensor calibration
    • 燃油液位传感器校准
    • US07299675B2
    • 2007-11-27
    • US11311953
    • 2005-12-20
    • Matthias HenschelPeter Schreuder
    • Matthias HenschelPeter Schreuder
    • G01F25/00
    • G01F25/0061G01F23/32
    • A method of calibrating a level sensor installed in an empty tank. In the tank, the level sensor includes a float that is allowed to rest against a first stop, such as the tank bottom or tank top. This position of the float is stored as a first level, such as a minimum level, in memory of sensor electronics of the level sensor. The float is thereafter moved, such as under the force of gravity by inverting the tank, against a second stop such as the tank top or the tank bottom. This position of the float is stored as a second level, such as a maximum level.
    • 校准安装在空罐中的液位传感器的方法。 在油箱中,液位传感器包括一个允许静止在第一个挡块(例如油箱底部或油箱顶部)上的浮子。 浮子的这个位置作为液位传感器的传感器电子元件的存储器存储为第一级,例如最低级别。 此后,浮子例如在重力的作用下,通过将油箱倒转而抵靠诸如油罐顶部或油箱底部的第二挡块而移动。 浮点的这个位置被存储为第二级,例如最大级别。