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    • 112. 发明公开
    • Wireless fuel sensor system
    • Drahtloses Kraftstoffsensorsystem
    • EP2816330A1
    • 2014-12-24
    • EP14173321.2
    • 2014-06-20
    • Simmonds Precision Products, Inc.
    • Hicks, BrandonKline, Bruce R
    • G01F23/00G01F23/18G01F23/296
    • Embodiments of the disclosure include wireless fuel systems (100) for an aircraft. The system includes wireless fuel sensors (106;200;300) having a sensor (202;310) configured to measure an indication of an amount of fuel in a fuel tank (104), a transmitter (206) coupled to the sensor, an antenna (316) coupled to the transmitter and a generator (204;312) configured to provide power to the sensor and the transmitter. The system also includes a controller (108) configured to receive data from each of the plurality of wireless fuel sensors and to responsively calculate the amount of fuel in a fuel tank.
    • 本公开的实施例包括用于飞行器的无线燃料系统(100)。 该系统包括无线燃料传感器(106; 200; 300),其具有被配置成测量燃料箱(104)中的燃料量的指示的传感器(202; 310),耦合到传感器的发射器(206) 耦合到所述发射机的天线(316)和被配置为向所述传感器和所述发射机提供电力的发电机(204; 312)。 该系统还包括被配置为从多个无线燃料传感器中的每一个接收数据并且响应地计算燃料箱中的燃料量的控制器(108)。
    • 114. 发明公开
    • FÜLLSTANDSGEBER
    • EP2800953A1
    • 2014-11-12
    • EP12812251.2
    • 2012-12-20
    • Continental Automotive GmbH
    • JÄGER, WighardPFEIFFER, Karl-Friedrich
    • G01F23/296G01F25/00
    • G01F23/296G01F23/2962G01F25/0061
    • The invention relates to a level transmitter 3 having a sound-carrying tube 10 and a level sensor 4 with an ultrasound transceiver 8 and sensor electronics 9. The sound-carrying tube 10 has two reflectors 12, 14 which are arranged at a distance from one another, wherein the first reflector 12 is designed to deflect the ultrasound in the direction of the second reflector 14 and the second reflector 14 is designed to deflect the ultrasound in the direction of the surface of the liquid, and wherein a third reflector 16 is arranged in the second reflector 14 in such a manner that ultrasound impinging on said third reflector is reflected in the direction of the first reflector 12.
    • 本发明涉及具有传声管10和具有超声波收发器8和传感器电子设备9的液位传感器4的液位传感器3.传声管10具有两个反射器12,14, 另一个,其中第一反射器12被设计成使超声波在第二反射器14的方向上偏转,并且第二反射器14被设计成使超声波在液体的表面的方向上偏转,并且其中设置第三反射器16 在第二反射器14中以这样的方式照射到所述第三反射器上的超声波在第一反射器12的方向上被反射。
    • 118. 发明授权
    • VON EINER EXTERNEN ELEKTRISCHEN ENERGIEVERSORGUNG GESPEISTE FELDGERÄT-ELEKTRONIK
    • 的外部电能的供电的现场设备电子器件
    • EP2036196B1
    • 2013-12-25
    • EP07730310.5
    • 2007-06-27
    • Endress+Hauser Flowtec AG
    • LALLA, Robert
    • G01F15/02H02M11/00G01F23/284G01F23/296G01N9/36G01F1/84
    • G01N9/36G01F1/8409G01F1/8413G01F1/8418G01F1/8422G01F1/8431G01F1/8436G01F1/849G01F15/024G01F23/284G01F23/2966Y02P80/11
    • The invention relates to an electronic system for a field device comprising a current controller, through which a supply current flows, for setting and/or modulating the supply current, the latter being driven by an supply voltage that is provided by means of the external energy supply. The electronic system for a field device also comprises an internal operating and evaluation circuit for controlling the field device, in addition to an internal supply circuit that is applied to an internal input voltage of the field device electronic system, is separate from the supply voltage and feeds the internal operating and evaluation circuit. A useful voltage controller, through which a first partial current of the supply current flows at least intermittently, is provided in the supply circuit, said controller providing an essentially constantly controlled first internal useful voltage at a predeterminable first voltage level in the electronic system of the field device. In addition, the supply current comprises a second useful voltage controller, through which a second partial current of the supply current flows at least intermittently, said controller providing a second internal useful voltage in the electronic system of the field device that can be varied within a prededeterminable voltage range and a voltage controller, through which a third partial current of the supply current flows at least intermittently, for setting and maintaining the internal input voltage of the field device electronic system at a predeterminable voltage level. According to the invention, both a first useful current that is driven by the first useful voltage and a second useful current that is driven by the second useful voltage flow through the operating and evaluation circuit at least intermittently.