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    • 2. 发明授权
    • Conductivity sensor with switching between transmitting and receiving coil
    • 电感传感器,在发射和接收线圈之间切换
    • US08581575B2
    • 2013-11-12
    • US12801557
    • 2010-06-15
    • Andreas EberheimThomas NagelAndre ThiemeHendrik Zeun
    • Andreas EberheimThomas NagelAndre ThiemeHendrik Zeun
    • G01R33/12
    • G01N27/023G01N27/74
    • An inductively working sensor for determining the conductivity of a liquid medium. The sensor includes: at least one transmitting circuit, which is designed to deliver an input signal for a transmitting coil, in order to produce in the transmitting coil an alternating electromagnetic field, which causes a ring-shaped electrical current in the liquid medium; at least one receiving circuit, which is designed to evaluate a received signal produced by the ring-shaped electrical current in a receiving coil; a first coil; a second coil, which is arranged at a distance from the first coil; a switching means for switching between a first switch state and a second switch state, wherein, in the first switch state, the first coil, serving as transmitting coil, is coupled with one of the transmitting circuits; and the second coil, serving as receiving coil, is coupled with one of the receiving circuits, and wherein, in the second switch state, the second coil, serving as transmitting coil, is coupled with one of the transmitting circuits, and the first coil, serving as receiving coil, is coupled with one of the receiving circuits.
    • 一种感应工作传感器,用于确定液体介质的导电性。 该传感器包括:至少一个发射电路,其被设计成输送用于发射线圈的输入信号,以便在发射线圈中产​​生交变电磁场,该电磁场引起液体介质中的环形电流; 至少一个接收电路,其被设计为评估由接收线圈中的环形电流产生的接收信号; 第一线圈; 第二线圈,其布置成距离所述第一线圈一定距离; 用于在第一开关状态和第二开关状态之间切换的切换装置,其中,在所述第一开关状态下,用作所述发送线圈的所述第一线圈与所述发送电路中的一个耦合; 并且用作接收线圈的第二线圈与接收电路之一耦合,并且其中,在第二开关状态下,用作发射线圈的第二线圈与发射电路中的一个耦合,并且第一线圈 作为接收线圈,与其中一个接收电路耦合。
    • 3. 发明申请
    • Conductivity sensor with switching between transmitting and recieving coil
    • 电导率传感器,在传输线圈和接收线圈之间切换
    • US20110001490A1
    • 2011-01-06
    • US12801557
    • 2010-06-15
    • Andreas EberheimThomas NagelAndre ThiemeHendrik Zeun
    • Andreas EberheimThomas NagelAndre ThiemeHendrik Zeun
    • G01R27/28
    • G01N27/023G01N27/74
    • An inductively working sensor for determining the conductivity of a liquid medium. The sensor includes: at least one transmitting circuit, which is designed to deliver an input signal for a transmitting coil, in order to produce in the transmitting coil an alternating electromagnetic field, which causes a ring-shaped electrical current in the liquid medium; at least one receiving circuit, which is designed to evaluate a received signal produced by the ring-shaped electrical current in a receiving coil; a first coil; a second coil, which is arranged at a distance from the first coil; a switching means for switching between a first switch state and a second switch state, wherein, in the first switch state, the first coil, serving as transmitting coil, is coupled with one of the transmitting circuits; and the second coil, serving as receiving coil, is coupled with one of the receiving circuits, and wherein, in the second switch state, the second coil, serving as transmitting coil, is coupled with one of the transmitting circuits, and the first coil, serving as receiving coil, is coupled with one of the receiving circuits.
    • 一种感应工作传感器,用于确定液体介质的导电性。 该传感器包括:至少一个发射电路,其被设计成输送用于发射线圈的输入信号,以便在发射线圈中产​​生交变电磁场,该电磁场引起液体介质中的环形电流; 至少一个接收电路,其被设计为评估由接收线圈中的环形电流产生的接收信号; 第一线圈; 第二线圈,其布置成距离所述第一线圈一定距离; 用于在第一开关状态和第二开关状态之间切换的切换装置,其中,在所述第一开关状态下,用作所述发送线圈的所述第一线圈与所述发送电路中的一个耦合; 并且用作接收线圈的第二线圈与接收电路之一耦合,并且其中,在第二开关状态下,用作发射线圈的第二线圈与发射电路中的一个耦合,并且第一线圈 作为接收线圈,与其中一个接收电路耦合。
    • 4. 发明授权
    • Ion sensitive sensor with multilayer construction in the sensor region
    • 离子敏感传感器在传感器区域具有多层结构
    • US08519447B2
    • 2013-08-27
    • US13389627
    • 2010-07-21
    • Hendrik Zeun
    • Hendrik Zeun
    • G01N27/403H01L27/14H01L21/00H01L21/336
    • G01N27/414
    • An ion sensitive sensor having an EIS structure, including: a semiconductor substrate, on which a layer of a substrate oxides is produced; an adapting or matching layer, which is prepared on the substrate oxide; a chemically stable, intermediate insulator, which is deposited on the adapting or matching layer; and an ion sensitive, sensor layer, which is applied on the intermediate insulator. The adapting or matching layer differs from the intermediate insulator and the substrate oxide in its chemical composition and/or structure. The adapting or matching layer and the ion sensitive, sensor layer each have an electrical conductivity greater than that of the intermediate insulator. There is an electrically conductive connection between the adapting or matching layer and the ion sensitive, sensor layer.
    • 一种具有EIS结构的离子敏感传感器,包括:半导体衬底,其上产生一层衬底氧化物; 在衬底氧化物上制备的适配或匹配层; 化学稳定的中间绝缘体,其沉积在适配层或匹配层上; 以及施加在中间绝缘体上的离子敏感传感器层。 适应或匹配层的化学成分和/或结构与中间绝缘体和基底氧化物不同。 适应或匹配层和离子敏感传感器层的导电率都大于中间绝缘体的电导率。 在适配层或匹配层与离子敏感传感器层之间有导电连接。
    • 9. 发明申请
    • ION SENSITIVE SENSOR WITH MULTILAYER CONSTRUCTION IN THE SENSOR REGION
    • 传感器区域多层结构的离子敏感传感器
    • US20120139011A1
    • 2012-06-07
    • US13389627
    • 2010-07-21
    • Hendrik Zeun
    • Hendrik Zeun
    • H01L29/772
    • G01N27/414
    • An ion sensitive sensor having an EIS structure, including: a semiconductor substrate, on which a layer of a substrate oxides is produced; an adapting or matching layer, which is prepared on the substrate oxide; a chemically stable, intermediate insulator, which is deposited on the adapting or matching layer; and an ion sensitive, sensor layer, which is applied on the intermediate insulator. The adapting or matching layer differs from the intermediate insulator and the substrate oxide in its chemical composition and/or structure. The adapting or matching layer and the ion sensitive, sensor layer each have an electrical conductivity greater than that of the intermediate insulator. There is an electrically conductive connection between the adapting or matching layer and the ion sensitive, sensor layer.
    • 一种具有EIS结构的离子敏感传感器,包括:半导体衬底,其上产生一层衬底氧化物; 在衬底氧化物上制备的适配或匹配层; 化学稳定的中间绝缘体,其沉积在适配层或匹配层上; 以及施加在中间绝缘体上的离子敏感传感器层。 适应或匹配层的化学成分和/或结构与中间绝缘体和基底氧化物不同。 适应或匹配层和离子敏感传感器层的导电率都大于中间绝缘体的电导率。 在适配层或匹配层与离子敏感传感器层之间有导电连接。
    • 10. 发明申请
    • MEASURING SYSTEM FOR DETERMINING A VALUE OF A PHYSICAL OR CHEMICAL, MEASURED VARIABLE OF A MEDIUM AND METHOD FOR OPERATION OF THE MEASURING SYSTEM
    • US20110153259A1
    • 2011-06-23
    • US12971190
    • 2010-12-17
    • Ronny MichaelHermann GüntherSven-Matthias ScheibeHendrik Zeun
    • Ronny MichaelHermann GüntherSven-Matthias ScheibeHendrik Zeun
    • G06F19/00
    • G01N27/286
    • A measuring system for determining a value of a physical or chemical, measured variable of a medium, comprises: a base unit; at least one relay unit connected with the base unit and a sensor unit connected with the relay unit. The relay unit is especially embodied to receive from the base unit, and to forward to the sensor unit, data, especially measurement data, operating data, commands or software modules, and/or to receive from the sensor unit, and to forward to the base unit, data, especially measurement data, operating data, commands or software modules wherein the sensor unit comprises a circuit having at least one microcontroller, at least a first memory region, in which a basic software of the sensor unit is stored, and a second memory region, in which an upload software of the sensor unit is stored. The upload software of the sensor unit is embodied, in interaction with the microcontroller, to perform an updating of the basic software of the sensor unit with at least one software module provided from the base unit. The relay unit comprises a circuit having at least one microcontroller, and at least a first memory region in which a basic software of the relay unit is stored. The circuit of the relay unit further comprises a second memory region, in which an upload software of the relay unit is stored, which is embodied, in interaction with the microcontroller of the relay unit, to perform an updating of the basic software of the relay unit with at least one software module provided from the base unit, and the upload software of the sensor unit, for execution by the microcontroller of the sensor unit, is activatable based on a comparison of a data sequence sent from the base unit with a first password assigned to the sensor unit, and the upload software of the relay unit, for execution by the microcontroller of the relay unit, is activatable based on a comparison of a data sequence sent from the base unit with a second password assigned to the relay unit. The second password is different from the first password.