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    • 3. 发明授权
    • Method for function monitoring of a sensor
    • 传感器功能监控方法
    • US07957928B2
    • 2011-06-07
    • US11793824
    • 2005-11-29
    • Axel TischendorfHermann StraubTorsten Pechstein
    • Axel TischendorfHermann StraubTorsten Pechstein
    • G01D18/00
    • G01N27/4163G01D3/08
    • A method for monitoring a sensor function by repeatedly acquiring data records including sensor-specific calibration data; by storing the acquired data records; by analyzing changes of the calibration data over time using the stored data records; and by determining time or time weighted with a load factor until the next calibration is due, using at least the changes of the calibration data over time. The resulting time or the determined time weighted with a load factor can, for example, be output in suitable form directly after determination, thereby allowing for a long-term planning of calibration, and/or it can be stored as a date or a remaining time. A comparison with a time signal or a count-down of the remaining time allows at the due date to output a request, or prompt, signal, optionally with a desired lead time.
    • 一种用于通过重复获取包括传感器特定校准数据的数据记录来监视传感器功能的方法; 通过存储获取的数据记录; 通过使用存储的数据记录分析随时间的校准数据的变化; 并且通过确定用负载因子加权的时间或时间,直到下一次校准到期为止,至少使用校准数据随时间的变化。 所得到的时间或以负载因子加权的确定时间可以例如在确定之后直接以适当的形式输出,从而允许长期规划校准,和/或可以将其存储为日期或剩余的 时间。 与时间信号的比较或剩余时间的倒计时允许在到期日期输出请求或提示信号,可选地具有期望的交货时间。
    • 4. 发明申请
    • Method for Function Monitoring of a Sensor
    • 传感器功能监控方法
    • US20090132194A1
    • 2009-05-21
    • US11793824
    • 2005-11-29
    • Axel TischendorfHermann StraubTorsten Pechstein
    • Axel TischendorfHermann StraubTorsten Pechstein
    • G01D18/00
    • G01N27/4163G01D3/08
    • A method for monitoring sensor function comprises the following steps: repeatedly acquiring data records comprising sensor-specific calibration data; storing the acquired data records comprising sensor-specific calibration data; analyzing changes of the calibration data over time using the stored data records; and determining time or time weighted with a load factor until the next calibration is due, using at least the changes of the calibration data over time. The resulting time or the determined time weighted with a load factor can, for example, be output in suitable form directly after determination, thereby allowing for a long-term planning of calibration, and/or it can be stored as a date or a remaining time. A comparison with a time signal or a count-down of the remaining time allows at the due date to output a request, or prompt, signal, optionally with a desired lead time.
    • 一种监测传感器功能的方法,包括以下步骤:重复获取包含传感器特定校准数据的数据记录; 存储所获取的包括传感器特定校准数据的数据记录; 使用存储的数据记录分析校准数据随时间的变化; 以及确定用负载因子加权的时间或时间,直到下一个校准到期,至少使用校准数据随时间的变化。 所得到的时间或以负载因子加权的确定时间可以例如在确定之后直接以适当的形式输出,从而允许长期规划校准,和/或可以将其存储为日期或剩余的 时间。 与时间信号的比较或剩余时间的倒计时允许在到期日期输出请求或提示信号,可选地具有期望的交货时间。
    • 5. 发明申请
    • Inductive conductivity sensor for measuring the specific electrical conductivity of a medium
    • 用于测量介质的比电导率的感应电导率传感器
    • US20170003237A1
    • 2017-01-05
    • US14754899
    • 2015-06-30
    • Torsten Pechstein
    • Torsten Pechstein
    • G01N27/02
    • G01N27/023G01N27/02G01N27/06G01R27/2611
    • An inductive conductivity sensor and a method for measuring specific electrical conductivity of a medium, comprising a transmitting coil fed by means of an input signal; coupled with the transmitting coil via the medium; a receiving coil, which delivers an output signal, which is a measure for the conductivity of the medium; and surrounding the transmitting coil and the receiving coil a housing, which has, intended for immersion in the medium, at least one housing section, whose housing wall surrounds the transmitting coil and the receiving coil. The housing section includes at least a first electrically conductive contact intended for contact with the medium and a second electrically conductive contact intended for contact with the medium. The conductivity sensor includes an electrically conductive conductor and the first contact is connected with the second contact via the conductor, wherein the conductor and the electrically conductive contacts are so embodied that they form via an ionic conduction path of the medium a closed electrical current path around the transmitting coil and the receiving coil.
    • 感应电导率传感器和用于测量介质的特定导电性的方法,包括通过输入信号馈送的发射线圈; 通过介质与发射线圈耦合; 接收线圈,其传送输出信号,其是介质的电导率的量度; 并且围绕所述发射线圈和所述接收线圈具有用于浸没在所述介质中的至少一个壳体部分的壳体,所述壳体部分的壳体壁围绕所述发射线圈和所述接收线圈。 壳体部分包括用于与介质接触的至少第一导电触头和用于与介质接触的第二导电触头。 电导率传感器包括导电导体,并且第一触点经由导体与第二触点连接,其中导体和导电触点被实施成使得它们通过介质的离子传导路径形成封闭的电流路径 发射线圈和接收线圈。
    • 6. 发明申请
    • METHOD FOR START-UP OF A MEASURING DEVICE
    • 测量装置启动方法
    • US20120144894A1
    • 2012-06-14
    • US13324066
    • 2011-12-13
    • Thilo TrappTorsten Pechstein
    • Thilo TrappTorsten Pechstein
    • G01N33/00
    • G01N35/00693G01N27/4165G01N35/00712
    • A method for start-up of a measuring device, which is embodied to monitor by means of at least one measuring transducer in contact with the interior of a process container, especially of a single-use container, a measured variable of a medium contained in the process container, wherein, for ascertaining a measured value, at least one measurement signal of the measuring transducer is mapped to a measured value of the measured variable according to a predetermined characteristic curve, wherein the method includes: introducing a process medium into the process container; bringing the measuring transducer in contact with the process medium; and performing a one-point calibrating of the measuring device based on a measurement signal registered by the measuring transducer in the process medium or a measured value derived therefrom based on the characteristic curve.
    • 一种用于启动测量装置的方法,其被实施为通过与处理容器,特别是一次性容器的内部接触的至少一个测量传感器来监测包含在其中的介质的测量变量 所述处理容器,其中,为了确定测量值,所述测量传感器的至少一个测量信号根据预定特性曲线被映射到所述测量变量的测量值,其中所述方法包括:将处理介质引入所述过程 容器; 使测量传感器与处理介质接触; 并且基于由所述测量换能器在所述处理介质中登记的测量信号或基于所述特性曲线从其导出的测量值,对所述测量装置进行一点校准。
    • 8. 发明授权
    • Inductive conductivity sensor
    • 感应电导率传感器
    • US08633703B2
    • 2014-01-21
    • US13058882
    • 2009-08-03
    • Andreas EberheimTorsten PechsteinMarco Volker
    • Andreas EberheimTorsten PechsteinMarco Volker
    • G01N27/02
    • G01N27/025
    • A conductivity sensor for measuring conductivity of a medium surrounding the conductivity sensor, including: a first toroidal coil, which surrounds a first traversing opening for accommodating the medium and which serves for inducing an electrical current in the medium, a second toroidal coil, which surrounds a second traversing opening for accommodating the medium and which serves for registering a magnetic field produced by the induced electrical current. At least one of the toroidal coils has a plurality of first conductor sections, which extend in a plane of a multi-ply circuit card, a plurality of second conductor sections, which extend in a second plane of the circuit card, and a plurality of first vias, which connect the first conductor sections with the second conductor sections. The first conductor sections, the second conductor sections and the vias together form the windings of a toroidal coil, wherein at least one toroidal coil is surrounded by a plurality of internally metallized bores, which are arranged in such a manner, that they act as electrical shielding of the toroidal coil.
    • 一种用于测量围绕电导率传感器的介质的电导率的电导率传感器,包括:第一环形线圈,其围绕用于容纳介质的第一横向开口并用于在介质中感应电流,第二环形线圈围绕 用于容纳介质并用于对准由感应电流产生的磁场的第二横向开口。 环形线圈中的至少一个具有在多层电路卡的平面中延伸的多个第一导体部,在电路卡的第二平面中延伸的多个第二导体部, 第一通孔,其将第一导体部分与第二导体部分连接。 第一导体部分,第二导体部分和通孔一起形成环形线圈的绕组,其中至少一个环形线圈由多个内部金属化的孔围绕,这些孔以这样的方式布置,使得它们充当电 环形线圈的屏蔽。
    • 9. 发明申请
    • Method for Operating An ISFET Sensor
    • 操作ISFET传感器的方法
    • US20110147232A1
    • 2011-06-23
    • US12971050
    • 2010-12-17
    • Torsten Pechstein
    • Torsten Pechstein
    • G01N27/414
    • G01N27/227
    • A method for operating an ion-sensitive sensor with a measurement circuit which includes an ion-sensitive electrolyte-insulator-semiconductor structure (EIS);wherein the measurement circuit is embodied to issue an output signal which is dependent on ion concentration, especially a pH value, of a measured liquid; wherein the method comprises steps of: Introducing the ion-sensitive electrolyte-insulator-semiconductor structure into a measured liquid; accelerating charging processes in the region of an insulator layer of the ion-sensitive electrolyte-insulator-semiconductor structure by operating the sensor over a predetermined time span at least a first working point, dynamically adapting the working point to set a second working point, and registering and processing the output signal of the measurement circuit at the second working point.
    • 一种使用包括离子敏感电解质 - 绝缘体 - 半导体结构(EIS)的测量电路操作离子敏感传感器的方法; 其中所述测量电路被实施为发出取决于测量液体的离子浓度,特别是pH值的输出信号; 其中所述方法包括以下步骤:将离子敏感的电解质 - 绝缘体 - 半导体结构引入测量的液体中; 通过在至少第一工作点上预定的时间跨度操作所述传感器,动态地调节所述工作点以设定第二工作点,从而在所述离子敏感的电解质 - 绝缘体 - 半导体结构的绝缘体层的区域中加速充电过程,以及 在第二工作点登记和处理测量电路的输出信号。
    • 10. 发明申请
    • Inductive Conductivity Sensor
    • 感应电导率传感器
    • US20110140718A1
    • 2011-06-16
    • US13058882
    • 2009-08-03
    • Andreas EberheimTorsten PechsteinMarco Volker
    • Andreas EberheimTorsten PechsteinMarco Volker
    • G01R27/28
    • G01N27/025
    • A conductivity sensor for measuring conductivity of a medium surrounding the conductivity sensor, including: a first toroidal coil, which surrounds a first traversing opening for accommodating the medium and which serves for inducing an electrical current in the medium, a second toroidal coil, which surrounds a second traversing opening for accommodating the medium and which serves for registering a magnetic field produced by the induced electrical current. At least one of the toroidal coils has a plurality of first conductor sections, which extend in a plane of a multi-ply circuit card, a plurality of second conductor sections, which extend in a second plane of the circuit card, and a plurality of first vias, which connect the first conductor sections with the second conductor sections. The first conductor sections, the second conductor sections and the vias together form the windings of a toroidal coil, wherein at least one toroidal coil is surrounded by a plurality of internally metallized bores, which are arranged in such a manner, that they act as electrical shielding of the toroidal coil.
    • 一种用于测量围绕电导率传感器的介质的电导率的电导率传感器,包括:第一环形线圈,其围绕用于容纳介质的第一横向开口并用于在介质中感应电流,第二环形线圈围绕 用于容纳介质并用于对准由感应电流产生的磁场的第二横向开口。 环形线圈中的至少一个具有在多层电路卡的平面中延伸的多个第一导体部,在电路卡的第二平面中延伸的多个第二导体部, 第一通孔,其将第一导体部分与第二导体部分连接。 第一导体部分,第二导体部分和通孔一起形成环形线圈的绕组,其中至少一个环形线圈由多个内部金属化的孔围绕,这些孔以这样的方式布置,使得它们充当电 环形线圈的屏蔽。