SENSOR DEVICE AND A METHOD FOR MANUFACTURING THE SAME
    82.
    发明申请
    SENSOR DEVICE AND A METHOD FOR MANUFACTURING THE SAME 有权
    传感器装置及其制造方法

    公开(公告)号:US20080083742A1

    公开(公告)日:2008-04-10

    申请号:US11469245

    申请日:2006-08-31

    CPC classification number: G01R33/093 B82Y25/00 G01R33/095 H01L43/08

    Abstract: Embodiments discussed herein relate to sensor devices and processes of producing them. Some embodiments include a sensor device with a substrate with a sensing element mounted above the substrate, with a heating element, mounted substantially coplanar to the sensing element; and with a heat spreading element, the heat spreading element thermally coupling the sensing element and the heating element.

    Abstract translation: 本文讨论的实施例涉及传感器装置及其制造方法。 一些实施例包括传感器装置,其具有安装在基板上方的感测元件的基板,其中加热元件基本上共面地安装到感测元件; 并且具有散热元件,热扩散元件热耦合感测元件和加热元件。

    Apparatus and method for detecting a tire deformation of a vehicle tire
    83.
    发明授权
    Apparatus and method for detecting a tire deformation of a vehicle tire 有权
    用于检测车辆轮胎的轮胎变形的装置和方法

    公开(公告)号:US07343790B2

    公开(公告)日:2008-03-18

    申请号:US11467392

    申请日:2006-08-25

    CPC classification number: B60C23/0408

    Abstract: An apparatus for detecting a tire deformation of a vehicle tire includes a tire pressure sensor for sensing a tire pressure, a signal processor configured to provide a signal indicating the tire deformation based on a difference between the tire pressure at a first time and the tire pressure at a second time. What is achieved thereby is that a tire deformation may efficiently be sensed.

    Abstract translation: 用于检测车辆轮胎的轮胎变形的装置包括:用于感测轮胎压力的轮胎压力传感器;信号处理器,其被配置为基于第一时间的轮胎压力与轮胎压力之间的差异提供表示轮胎变形的信号 在第二时间。 因此,可以有效地感测到轮胎变形。

    Magnetic field sensor device
    84.
    发明申请
    Magnetic field sensor device 有权
    磁场传感器装置

    公开(公告)号:US20080012558A1

    公开(公告)日:2008-01-17

    申请号:US11462150

    申请日:2006-08-03

    CPC classification number: G01R33/093 B82Y25/00 G01R33/07 G01R33/095 H01L43/08

    Abstract: A magnetic field sensor device includes at least two magneto-resistive sensor elements and one switch which is connected to the at least two magneto-resistive sensor elements, and makes at least one magneto-resistive sensor element of the at least two magneto-resistive sensor elements electrically connectable into a magnetic field detection arrangement.

    Abstract translation: 磁场传感器装置包括至少两个磁阻传感器元件和连接到至少两个磁阻传感器元件的一个开关,并且使至少两个磁阻传感器的至少一个磁阻传感器元件 可电连接到磁场检测装置中的元件。

    Method for determining residual error compensation parameters for a magnetoresistive angle sensor and method for reducing a residual angle error in a magnetoresistive angle sensor
    85.
    发明授权
    Method for determining residual error compensation parameters for a magnetoresistive angle sensor and method for reducing a residual angle error in a magnetoresistive angle sensor 有权
    用于确定用于磁阻角度传感器的残余误差补偿参数的方法和用于减小磁阻角度传感器中的残余角度误差的方法

    公开(公告)号:US07288931B2

    公开(公告)日:2007-10-30

    申请号:US11421308

    申请日:2006-05-31

    CPC classification number: H03M1/06 G01D5/2448 H03M1/303

    Abstract: In a method of determining residual error compensation parameters for a magnetoresistive angle sensor providing a first measurement signal depending on a rotational angle the step of generating a plurality of value pairs for a plurality of rotational angle values is provided, wherein each value pair has a rotational angle value and an associated measurement signal value. The method further includes ascertaining a sinusoidal fit function the course of which is adapted to the plurality of value pairs. Finally, residual error compensation parameters can be generated from a difference between the ascertained sinusoidal fit function and the associated measurement signal values of the measurement signal for the plurality of rotational angle values.

    Abstract translation: 在确定根据旋转角度提供第一测量信号的磁阻角度传感器的残余误差补偿参数的方法中,提供为多个旋转角度值产生多个值对的步骤,其中每个值对具有旋转 角度值和相关的测量信号值。 该方法还包括确定正弦曲线拟合函数,该正弦曲线拟合函数适合多个值对。 最后,可以根据确定的正弦拟合函数和多个旋转角度值的测量信号的相关测量信号值之间的差异来产生残余误差补偿参数。

    Method for determining the angular position of a rotating object and rotary encoder
    86.
    发明申请
    Method for determining the angular position of a rotating object and rotary encoder 有权
    用于确定旋转物体和旋转编码器的角位置的方法

    公开(公告)号:US20060071659A1

    公开(公告)日:2006-04-06

    申请号:US11235712

    申请日:2005-09-26

    CPC classification number: G01D5/2492 F02D41/009

    Abstract: A method for determining the angular position of a rotating object and rotary encoder is disclosed. In one embodiment, the method includes a method for determining the angular position of an object rotating about a rotation axis in a rotation direction and having a coding pattern, using a sensor that senses the coding pattern, including ascertaining the coarse angular position of the rotating object with respect to the sensor whilst taking account of the coding pattern at a first instant. The exact angular position of the rotating object is ascertained with respect to the sensor whilst taking account of the coarsely ascertained angular position and also whilst taking account of at least one section of the coding pattern which extends counter to the rotation direction proceeding from that location of the coding pattern which is assigned to the coarse angular position. An output signal is provided containing items of information about the exact angular position of the rotating object with respect to the sensor.

    Abstract translation: 公开了一种用于确定旋转物体和旋转编码器的角位置的方法。 在一个实施例中,该方法包括一种方法,用于使用感测编码图案的传感器来确定围绕旋转轴线在旋转方向上旋转并且具有编码图案的物体的角位置,包括确定旋转的粗略角位置 对象,同时在第一时刻考虑编码模式。 旋转对象的精确角位置相对于传感器确定,同时考虑到粗略确定的角位置,并且还考虑到编码模式的至少一个部分,其延伸与从该位置的位置开始的旋转方向相反 分配给粗角位置的编码图案。 提供输出信号,其包含关于旋转物体相对于传感器的精确角位置的信息的项目。

    In-operation test of a signal path
    87.
    发明申请
    In-operation test of a signal path 有权
    信号路径的工作测试

    公开(公告)号:US20050038623A1

    公开(公告)日:2005-02-17

    申请号:US10916950

    申请日:2004-08-12

    CPC classification number: G01R31/2829 G01D3/08

    Abstract: A device for generating a sensor signal suitable for an in-operation test of a signal path from a sensor cell to an evaluation location. The sensor cell provides a sensor cell output signal depending on a physical magnitude to be detected which is changed in means for changing the sensor cell output signal according to a predetermined change regulation based on a test signal in order to obtain the sensor signal. A signal derived from the sensor signal is detected by a device for an in-operation test of the signal path and is evaluated.

    Abstract translation: 一种用于产生适合于从传感器单元到评估位置的信号路径的工作中测试的传感器信号的装置。 传感器单元根据要检测的物理量值提供传感器单元输出信号,该物理大小在基于测试信号的根据预定变化规则改变传感器单元输出信号的装置中改变,以获得传感器信号。 由传感器信号导出的信号由用于信号路径的工作中测试的装置进行检测,并被评估。

    Sensor interface with variable control coefficients
    89.
    发明授权
    Sensor interface with variable control coefficients 有权
    具有可变控制系数的传感器接口

    公开(公告)号:US09148709B2

    公开(公告)日:2015-09-29

    申请号:US13197288

    申请日:2011-08-03

    Abstract: The present disclosure is directed towards a sensor interface module that delivers a supply voltage to a plurality of sensors, and which exchanges data signals between the plurality of sensors and a control unit (e.g., an ECU). The sensor interface often employs a single-bit comparator (or a coarse analog to digital converter (ADC), e.g., a 2-bit or 3-bit ADC) to track signals to be exchanged between the sensors and controller over the sensor interface. Compared to power hungry ADC with more bits (e.g., 32 bit ADC), the single-bit comparator/coarse ADC limits hardware complexity and power consumption. In addition, in some embodiments the sensor interface module can include an estimator and assist comparators to speed up the tracking ability of the sensor interface module. In this way, techniques provided herein facilitate reliable, low-power communication between a control unit (e.g., an ECU) and its corresponding sensors.

    Abstract translation: 本公开针对传感器接口模块,其向多个传感器传送电源电压,并且在多个传感器与控制单元(例如,ECU)之间交换数据信号。 传感器接口通常采用单比特比较器(或粗略的模数转换器(ADC),例如2位或3位ADC)来跟踪通过传感器接口传感器和控制器之间要交换的信号。 与功耗更大的ADC(例如32位ADC)相比,单比特比较器/粗略ADC限制了硬件复杂性和功耗。 此外,在一些实施例中,传感器接口模块可以包括估计器和辅助比较器,以加速传感器接口模块的跟踪能力。 以这种方式,本文提供的技术便于控制单元(例如,ECU)与其对应的传感器之间的可靠的低功率通信。

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