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    • 3. 发明申请
    • Sensor arrangement and method for operating a sensor arrangement
    • 用于操作传感器装置的传感器布置和方法
    • US20060057025A1
    • 2006-03-16
    • US10530882
    • 2003-10-14
    • Bjorn-Oliver EversmannChristian PaulusRoland Thewes
    • Bjorn-Oliver EversmannChristian PaulusRoland Thewes
    • G01N27/00
    • G01N27/4145G01N33/48728
    • A sensor arrangement and method of operating the sensor arrangement are described. The sensor arrangement has sensor devices formed on or in a substrate and a calibration device for calibrating a respective sensor device. Each sensor device has an electrical signal converter which is a field-effect transistor (FET) having a gate terminal coupled to a sensor element that is coupled to the signal converter, a device that keeps constant the electrical voltage between source and drain terminals of the FET, and a device for detecting the value of the electric current flowing through the signal converter. The sensor element characteristically influences the electrical conductivity of the signal converter on account of a sensor event on the sensor element. The calibration device brings the gate region of the FET to an electrical calibration potential such that the electric current is independent of parameter fluctuations of the FET.
    • 描述了传感器装置和操作传感器装置的方法。 传感器装置具有形成在基板上或基板中的传感器装置和用于校准相应传感器装置的校准装置。 每个传感器装置具有电信号转换器,该电信号转换器是具有耦合到耦合到信号转换器的传感器元件的栅极端子的场效应晶体管(FET),保持恒定的源极和漏极端子之间的电压的装置 FET和用于检测流过信号转换器的电流值的装置。 传感器元件由于传感器元件上的传感器事件而特征地影响信号转换器的电导率。 校准装置使FET的栅极区域达到电校准电位,使得电流与FET的参数波动无关。
    • 4. 发明授权
    • Event detection—apparatus and method for measuring the activity of neural networks
    • 事件检测装置和测量神经网络活动的方法
    • US07809432B2
    • 2010-10-05
    • US10964560
    • 2004-10-12
    • Bjorn-Oliver EversmannMartin JenknerChristian PaulusRoland Thewes
    • Bjorn-Oliver EversmannMartin JenknerChristian PaulusRoland Thewes
    • A61B5/00
    • A61B5/7264A61B5/04001A61B5/7203A61B5/7232A61B5/7282A61B2562/0209A61B2562/046G06N3/061
    • Apparatus for measuring neural network activity with a textured semiconductor substrate. Sensor elements have a respective detection electrode on the substrate surface for detecting neural network signals, and the detected neural signals are a basis for outputting electrical sensor output signals via respective sensor element outputs. Each amplifier element has an input and an output. Each of the sensor elements has associated therewith one of the amplifier elements whose input is connected to the sensor output of the respective sensor element. The amplified sensor output signal is output the amplifier output as an amplifier output signal. An activity evaluator has an input, which is connected to at least one of the amplifier outputs, and an output. The activity evaluation device produces an activity signal, which is a measure of activity of the neural network, based on the amplifier output signal, and outputs the amplifier output signal via the evaluation output.
    • 用纹理化半导体衬底测量神经网络活动的装置。 传感器元件在基板表面上具有检测电极,用于检测神经网络信号,检测到的神经信号是经由各个传感器元件输出输出电传感器输出信号的基础。 每个放大器元件都有一个输入和一个输出。 每个传感器元件都具有一个放大器元件,其输入端连接到相应传感器元件的传感器输出端。 放大的传感器输出信号作为放大器输出信号输出放大器输出。 活动评估器具有连接到至少一个放大器输出的输入和输出。 活动评估装置基于放大器输出信号产生作为神经网络的活动度量的活动信号,并通过评估输出输出放大器输出信号。
    • 5. 发明授权
    • Sensor arrangement
    • 传感器布置
    • US07470352B2
    • 2008-12-30
    • US10826881
    • 2004-04-16
    • Bjorn-Oliver EversmannChristian PaulusGuido StrombergRoland Thewes
    • Bjorn-Oliver EversmannChristian PaulusGuido StrombergRoland Thewes
    • G01N27/403G01N27/327G01N27/414G01D18/00C12Q1/68G11C11/36
    • G06K9/0002G01N27/4145G01N33/4836
    • Sensor arrangement having row and column lines arranged in first and second directions, respectively, sensor arrays arranged in crossover regions of the row and column lines, a detector, and a decoding device. The sensor arrays have a coupling device for electrically coupling respective row and column lines, and a sensor element to influence electric current flow through the coupling device. The detector is electrically coupled to a respective end section of at least a portion of the row and column lines, and detects a respective accumulative current flow from the individual electrical current flows provided by the sensor arrays of the respective lines. The decoding device is coupled to the row and column lines, and evaluates at least a portion of the accumulative electric current flows fed to the decoding device via the row and column lines to determine at which of the sensor elements a sensor signal is present.
    • 分别具有沿第一和第二方向布置的行和列线的传感器布置,布置在行和列线的交叉区域中的传感器阵列,检测器和解码装置。 传感器阵列具有用于电耦合相应的行和列线的耦合装置和用于影响通过耦合装置的电流的传感器元件。 检测器电耦合到行和列线的至少一部分的相应端部,并且检测来自各线的传感器阵列提供的各个电流的相应的累积电流。 解码装置耦合到行和列线,并且通过行和列线评估馈送到解码装置的累积电流的至少一部分,以确定在哪个传感器元件处存在传感器信号。
    • 6. 发明申请
    • Sensor arrangement
    • 传感器布置
    • US20050029099A1
    • 2005-02-10
    • US10826881
    • 2004-04-16
    • Bjorn-Oliver EversmannChristian PaulusGuido StrombergRoland Thewes
    • Bjorn-Oliver EversmannChristian PaulusGuido StrombergRoland Thewes
    • G01N27/414G01N33/487G06K9/00G01N27/26
    • G06K9/0002G01N27/4145G01N33/4836
    • Sensor arrangement having row and column lines arranged in first and second directions, respectively, sensor arrays arranged in crossover regions of the row and column lines, a detector, and a decoding device. The sensor arrays have a coupling device for electrically coupling respective row and column lines, and a sensor element to influence electric current flow through the coupling device. The detector is electrically coupled to a respective end section of at least a portion of the row and column lines, and detects a respective accumulative current flow from the individual electrical current flows provided by the sensor arrays of the respective lines. The decoding device is coupled to the row and column lines, and evaluates at least a portion of the accumulative electric current flows fed to the decoding device via the row and column lines to determine at which of the sensor elements a sensor signal is present.
    • 分别具有沿第一和第二方向布置的行和列线的传感器布置,布置在行和列线的交叉区域中的传感器阵列,检测器和解码装置。 传感器阵列具有用于电耦合相应的行和列线的耦合装置和用于影响通过耦合装置的电流的传感器元件。 检测器电耦合到行和列线的至少一部分的相应端部,并且检测来自各线的传感器阵列提供的各个电流的相应的累积电流。 解码装置耦合到行和列线,并且通过行和列线评估馈送到解码装置的累积电流的至少一部分,以确定在哪个传感器元件处存在传感器信号。