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    • 3. 发明授权
    • Circuit and method for component communication
    • 组件通信的电路和方法
    • US07982483B2
    • 2011-07-19
    • US11466579
    • 2006-08-23
    • Wolfgang Scherr
    • Wolfgang Scherr
    • G01R31/02G01R31/26G01R31/28
    • G11C29/48G11C29/028G11C29/1201
    • A circuit has a supply voltage terminal for receiving a supply voltage of the circuit, wherein a trigger impulse is superimposed on the supply voltage. Further, the circuit has a signal terminal for outputting an output signal voltage of the circuit, wherein a bit of a data signal is superimposed on the output signal voltage. Further, the circuit has a detector for detecting the trigger impulse and for providing a trigger signal in response to the trigger impulse. An adjustment device of the circuit is implemented to extract the bit from the output signal voltage in response to the trigger signal, to receive the bit or to superimpose the output signal voltage with the bit of the data signal to output the bit.
    • 电路具有用于接收电路的电源电压的电源电压端子,其中触发脉冲叠加在电源电压上。 此外,电路具有用于输出电路的输出信号电压的信号端子,其中数据信号的位被叠加在输出信号电压上。 此外,电路具有用于检测触发脉冲并响应于触发脉冲提供触发信号的检测器。 实现电路的调整装置,以响应于触发信号从输出信号电压提取位,以接收该位或将输出信号电压与数据信号的位叠加以输出该位。
    • 4. 发明授权
    • Current sensor
    • 电流传感器
    • US08878531B2
    • 2014-11-04
    • US12949419
    • 2010-11-18
    • Udo AusserlechnerWolfgang Scherr
    • Udo AusserlechnerWolfgang Scherr
    • G01R31/02G01R33/07G01R15/20
    • G01R33/07G01R15/207
    • Embodiments of the invention provide a current sensor including a conductive element and at least two magnetic field sensors. The conductive element includes at least three terminal areas and a common conductive area, wherein each of the at least three terminal areas is connected to the common conductive area to guide a current applied to the respective terminal area into the common conductive area. The at least two magnetic field sensors are arranged at different geometric positions adjacent to the common conductive area, wherein each of the at least two magnetic field sensors is configured to sense a magnetic field component of each current flowing into the common conductive area to provide a sensor signal based on the sensed magnetic field component.
    • 本发明的实施例提供一种包括导电元件和至少两个磁场传感器的电流传感器。 导电元件包括​​至少三个端子区域和公共导电区域,其中至少三个端子区域中的每一个连接到公共导电区域,以将施加到相应端子区域的电流引导到公共导电区域中。 所述至少两个磁场传感器布置在与所述公共导电区域相邻的不同几何位置处,其中所述至少两个磁场传感器中的每一个被配置为感测流入所述公共导电区域的每个电流的磁场分量,以提供 基于感测的磁场分量的传感器信号。
    • 5. 发明申请
    • Current Sensor
    • 电流传感器
    • US20120126805A1
    • 2012-05-24
    • US12949419
    • 2010-11-18
    • Udo AusserlechnerWolfgang Scherr
    • Udo AusserlechnerWolfgang Scherr
    • G01R33/02
    • G01R33/07G01R15/207
    • Embodiments of the invention provide a current sensor including a conductive element and at least two magnetic field sensors. The conductive element includes at least three terminal areas and a common conductive area, wherein each of the at least three terminal areas is connected to the common conductive area to guide a current applied to the respective terminal area into the common conductive area. The at least two magnetic field sensors are arranged at different geometric positions adjacent to the common conductive area, wherein each of the at least two magnetic field sensors is configured to sense a magnetic field component of each current flowing into the common conductive area to provide a sensor signal based on the sensed magnetic field component.
    • 本发明的实施例提供一种包括导电元件和至少两个磁场传感器的电流传感器。 导电元件包括​​至少三个端子区域和公共导电区域,其中至少三个端子区域中的每一个连接到公共导电区域,以将施加到相应端子区域的电流引导到公共导电区域中。 所述至少两个磁场传感器布置在与所述公共导电区域相邻的不同几何位置处,其中所述至少两个磁场传感器中的每一个被配置为感测流入所述公共导电区域的每个电流的磁场分量,以提供 基于感测的磁场分量的传感器信号。
    • 9. 发明申请
    • Circuit and method for component communication
    • 组件通信的电路和方法
    • US20070050690A1
    • 2007-03-01
    • US11466579
    • 2006-08-23
    • Wolfgang Scherr
    • Wolfgang Scherr
    • G11C29/00
    • G11C29/48G11C29/028G11C29/1201
    • A circuit has a supply voltage terminal for receiving a supply voltage of the circuit, wherein a trigger impulse is superimposed on the supply voltage. Further, the circuit has a signal terminal for outputting an output signal voltage of the circuit, wherein a bit of a data signal is superimposed on the output signal voltage. Further, the circuit has a detector for detecting the trigger impulse and for providing a trigger signal in response to the trigger impulse. An adjustment device of the circuit is implemented to extract the bit from the output signal voltage in response to the trigger signal, to receive the bit or to superimpose the output signal voltage with the bit of the data signal to output the bit.
    • 电路具有用于接收电路的电源电压的电源电压端子,其中触发脉冲叠加在电源电压上。 此外,电路具有用于输出电路的输出信号电压的信号端子,其中数据信号的位被叠加在输出信号电压上。 此外,电路具有用于检测触发脉冲并响应于触发脉冲提供触发信号的检测器。 实现电路的调整装置,以响应于触发信号从输出信号电压提取位,以接收该位或将输出信号电压与数据信号的位叠加以输出该位。
    • 10. 发明申请
    • Holding Device for a Sensor Signal, Method for Forwarding a Sensor Signal and Computer Program
    • 用于传感器信号的保持装置,用于转发传感器信号和计算机程序的方法
    • US20070010967A1
    • 2007-01-11
    • US11428167
    • 2006-06-30
    • Wolfgang Scherr
    • Wolfgang Scherr
    • G06F11/30
    • H04Q9/00
    • A holding device for a sensor signal comprises a signal input receiving a sensor signal, a signal output and a storage device coupled to the signal input and output. The storage device is designed to store a signal value in a first state and to update it based on the sensor signal in a second state. The storage device stores the signal value for a time period which is greater than a first predetermined time duration, independently of a supply voltage of the storage device. The holding device outputs the signal value present in the storage device. The holding device furthermore comprises a monitoring device, which is effectively coupled to the storage device and determines whether the sensor signal present at the signal input is valid. The monitoring device ensures that the storage device is in the second state only when the monitoring device identifies that the sensor signal is valid.
    • 用于传感器信号的保持装置包括接收传感器信号的信号输入,信号输出和耦合到信号输入和输出的存储装置。 存储装置被设计为将信号值存储在第一状态并且在第二状态下基于传感器信号来更新它。 存储装置将信号值存储大于第一预定持续时间的时间段,而与存储装置的电源电压无关。 保持装置输出存储装置中存在的信号值。 保持装置还包括监视装置,其被有效地耦合到存储装置,并且确定存在于信号输入端的传感器信号是否有效。 只有当监控设备识别出传感器信号有效时,监控设备才能确保存储设备处于第二状态。