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    • 1. 发明授权
    • Optoelectronic monitoring device for a motor vehicle
    • 汽车光电监控装置
    • US06452148B1
    • 2002-09-17
    • US09508023
    • 2000-03-06
    • Norbert BendicksFrank BlasingDetlef KerkmannThomas WeberRalf BobelHarald Donner
    • Norbert BendicksFrank BlasingDetlef KerkmannThomas WeberRalf BobelHarald Donner
    • H01L2700
    • H04N5/2254B60S1/0844G01J1/0407G01J1/4228G01N33/0031
    • An optoelectronic monitoring device for a vehicle includes a single optical sensor array having a grid of optical sensor elements. Each optical sensor element generates an electronic signal in response to optical signals imaged onto the optical sensor elements. Optical imaging systems image respective optical signals onto the optical sensor array. The optical signals of each optical imaging system is representative of a monitored condition of a vehicle. The optical imaging systems form a single physical unit which is fixed with respect to the optical sensor array. Each optical imaging system is associated with a respective optical sensor element group of the optical sensor array such that the respective optical signal of each optical imaging system is imaged onto the respective optical sensor element group. The optical sensor elements are configurable by a processor to be arranged in optical sensor element groups for being associated with respective optical imaging systems.
    • 一种用于车辆的光电监控装置包括具有光学传感器元件格栅的单个光学传感器阵列。 每个光学传感器元件响应于成像在光学传感器元件上的光学信号产生电子信号。 光学成像系统将相应的光信号映射到光学传感器阵列上。 每个光学成像系统的光学信号代表车辆的监视状态。 光学成像系统形成相对于光学传感器阵列固定的单个物理单元。 每个光学成像系统与光学传感器阵列的相应光学传感器元件组相关联,使得每个光学成像系统的相应光学信号被成像到相应的光学传感器元件组上。 光学传感器元件可由处理器配置以被布置在光学传感器元件组中,用于与相应的光学成像系统相关联。
    • 2. 发明授权
    • Sensor device for detecting a physical measured quantity
    • 用于检测物理测量量的传感器装置
    • US06867581B1
    • 2005-03-15
    • US09857551
    • 1999-12-15
    • Norbert BendicksDetlef Kerkmann
    • Norbert BendicksDetlef Kerkmann
    • G01D3/08G01D18/00G01D21/00G01P21/02G01R33/02G01R33/06
    • G01P21/02G01D3/08
    • A sensor device for measuring a physical value includes a sensor element for generating an output signal in response to measuring a physical value. A processor is operable with the sensor element for comparing the output signal to a reference signal in order to generate a primary signal indicative of the measured physical value. The processor is further operable with the sensor element for generating a secondary signal based on the output signal which is indicative of the operating condition of the sensor device. A switch or logic block is operable for receiving the primary and secondary signals from the processor. The switch and the logic block are switchable between a first state in which the primary signal is output and a second state in which the secondary signal is output.
    • 用于测量物理值的传感器装置包括用于响应于测量物理值而产生输出信号的传感器元件。 处理器可与传感器元件一起操作,用于将输出信号与参考信号进行比较,以便产生指示所测量的物理值的主信号。 处理器还可以与传感器元件一起操作,用于基于表示传感器装置的操作状态的输出信号产生辅助信号。 开关或逻辑块可操作用于从处理器接收主信号和次信号。 开关和逻辑块可在其中输出主信号的第一状态和次信号被输出的第二状态之间切换。
    • 4. 发明授权
    • Method for detecting objects located on a transparent panel, and corresponding device
    • 用于检测位于透明面板上的物体的方法及相应的装置
    • US06323477B1
    • 2001-11-27
    • US09555532
    • 2000-05-30
    • Frank BlasingNorbert Bendicks
    • Frank BlasingNorbert Bendicks
    • H01L2700
    • G06T7/0008B60S1/0844G01N21/94G01V8/10G06K9/00791G06T7/13G06T2207/10012G06T2207/30252
    • The invention relates to a method for detecting objects which are located on a transparent panel and which produce light reflexes when illuminated, using a detector unit containing one or more optical sensor arrays. The inventive method comprises the following steps: illuminating the panel in order to produce light reflexes in or on the objects which are located on the panel, from the side of the panel behind which the detector unit is located; image detection of an illuminated section of the panel using the detector unit by preparing two panel section images which together form an image pair, the light reflexes(es) of an object located on the transparent panel produced through illumination being located at differently-positioned image points in each of said panel section images; determining the differential image of the two images of an image pair by subtracting the contents of identically positioned image points of one panel section image from those of the other panel section image and evaluating the differential image determined in terms of the contents corresponding to the individual image points.
    • 本发明涉及一种用于检测物体的方法,所述物体位于透明面板上,并且在使用包含一个或多个光学传感器阵列的检测器单元照射时产生光反射。 本发明的方法包括以下步骤:照亮面板,以便在位于面板上的物体中或其上的物体上产生来自检测器单元所在的面板侧面的光反射; 使用检测器单元通过制备两个面板部分图像一起形成图像对的面板的照明部分的图像检测,位于通过照明产生的透明面板上的物体的光反射位于不同位置的图像 每个所述面板部分图像中的点; 通过从另一个面板部分图像中减去一个面板部分图像的相同位置的图像点的内容来确定图像对的两个图像的差分图像,并且评估根据与各个图像相对应的内容确定的差分图像 积分
    • 5. 发明授权
    • Optoelectronic sensor for detecting moisture on a windshield with means
to compensate for a metallic layer in the windshield
    • 用于检测挡风玻璃上的水分的光电传感器,用于补偿挡风玻璃中的金属层
    • US5498866A
    • 1996-03-12
    • US194254
    • 1994-02-10
    • Norbert BendicksRalf Bartling
    • Norbert BendicksRalf Bartling
    • B60S1/08G01N21/43H01J5/16
    • B60S1/0822B60S1/0837G01N21/43Y10S318/02
    • A sensor device for detecting the degree of wetting of a multi-layer transparent pane, made in particular of glass, by an, in particular, drop-shaped precipitation. The sensor device is provided with a beam guide element which comprises two beam windows and cooperates with a beam transmitter and a beam receiver. In order to prevent spurious beams caused by an extremely thin intermediate layer located in the pane from having a noticeable influence on the signal used to control the windscreen wiper system, the beam guide element comprises a further beam exit window in the central region of its rear surface facing away from the pane. The region is located between the two beam windows. The further beam exit window is allocated to the measuring path and cooperates with an additional beam detector. Only those irrelevant beams reflected at the extremely thin metallic intermediate layer located in the pane exit therefrom. The signal resulting from the existing irrelevant beams which is detected by the additional beam detector is used to correct the signal supplied by the actual beam detector. Alternatively; signal correction can be achieved by an electrical circuit.
    • 一种用于检测特别是玻璃制成的多层透明板的润湿程度的传感器装置,特别是滴形沉淀。 传感器装置设有一个光束引导元件,它包括两个光束窗口,并与光束发射器和光束接收器配合。 为了防止由位于窗格中的非常薄的中间层引起的杂散光束对用于控制风挡玻璃刮水器系统的信号具有明显的影响,光束引导元件在其后部的中心区域中包括另外的光束出射窗口 表面背离窗格。 该区域位于两个梁窗之间。 另外的光束出射窗口被分配给测量路径并且与另外的光束检测器配合。 只有位于玻璃板中的极薄的金属中间层反射的那些不相关的光束从其中排出。 由附加光束检测器检测到的现有不相关光束产生的信号用于校正由实际光束检测器提供的信号。 或者; 信号校正可以通过电路实现。
    • 6. 发明授权
    • Lens system for moisture sensor device
    • 透湿系统湿度传感器装置
    • US5278425A
    • 1994-01-11
    • US5582
    • 1993-01-19
    • Norbert Bendicks
    • Norbert Bendicks
    • B60S1/08G02B3/02G01N15/06
    • B60S1/0837B60S1/0822G02B3/02
    • A moisture sensor device for detecting the degree of wetting of a transparent pane by drop-shaped precipitation. The sensor device is provided with a beam guide element, which is affixed to the pane by an optical adhesive. A beam transmitter and a beam receiver are each associated with a lens. Such a sensor device solves the problem of guaranteeing optimum conditions for the generation and output of rays into and out of a beam guide element. Aspherical lenses are associated with and arranged at a short distance from the beam transmitter and the beam receiver. Each lens has a surface facing the beam transmitter or beam receiver which in outline is fashioned according to a polynomial selected to be equal to or greater than the third degree and is developed to form a body of rotation.
    • 一种湿度传感器装置,用于通过液滴形沉淀来检测透明板的润湿度。 传感器装置设置有光束引导元件,光束引导元件通过光学粘合剂固定到玻璃板上。 光束发射器和光束接收器各自与透镜相关联。 这种传感器装置解决了保证射束进入和离开光束引导元件的产生和输出的最佳条件的问题。 非球面透镜与光束发射器和光束接收器相关联并布置在距离光束发射器和光束接收器短的距离处。 每个透镜具有面向波束发射器或波束接收器的表面,其在轮廓中根据选择为等于或大于第三度的多项式形成,并且被展开以形成旋转体。