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    • 11. 发明授权
    • Device for automatically switching lighting devices in vehicles
    • 自动切换车辆照明装置的装置
    • US06759761B1
    • 2004-07-06
    • US09936700
    • 2002-02-06
    • Patrick SchmittNorbert HogBruno HodappRainer PientkaHans MeierHenry BlizkeManfred Burkart
    • Patrick SchmittNorbert HogBruno HodappRainer PientkaHans MeierHenry BlizkeManfred Burkart
    • B60Q114
    • B60Q1/1423B60Q2300/112B60Q2300/312B60Q2300/314B60Q2300/337Y10T307/74
    • The device has a sensor device (20) and an evaluation device (30). The sensor device (20) has a global sensor (22), by which the general light intensity in the surroundings of the vehicle is detected nondirectionally, and a directional sensor (24), by which the light intensity is detected directionally in the travel direction of the vehicle. By the evaluation device (30), the signals (S1, S2) of the sensors (22, 24) of the sensor device (20) are compared with threshold values (SE), and if at least one threshold value (SE) is undershot, the lighting devices (10, 12) are switched on. A temperature measuring instrument (32) for detecting the temperature of the sensor device (20) is also provided, which supplies the evaluation device with a signal (ST) about the temperature. In the evaluation device (30), temperature-dependent basic signals (S10, S20) that the sensors (22, 24) generate without light incidence are stored in memory. By means of the evaluation device (30), a correction of the current signals (S1, S2) of the sensors (22, 24) of the sensor device (20) and/or of the threshold mn values (SE) is effected as a function of the basic signals (S10, S20).
    • 该装置具有传感器装置(20)和评估装置(30)。 传感器装置(20)具有全球传感器(22),通过该传感器(22)可以非方向地检测车辆周围的一般光强度;以及定向传感器(24),通过该方向传感器在行驶方向上定向地检测光强度 的车辆。 通过评价装置(30)将传感器装置(20)的传感器(22,24)的信号(S1,S2)与阈值(SE)进行比较,如果至少一个阈值(SE)为 照亮装置(10,12)被接通。 还提供了用于检测传感器装置(20)的温度的温度测量仪器(32),其向评估装置提供关于温度的信号(ST)。 在评价装置(30)中,传感器(22,24)在没有发光的情况下产生的与温度有关的基本信号(S10,S20)被存储在存储器中。 通过评估装置(30),对传感器装置(20)的传感器(22,24)和/或阈值mn值(SE)的电流信号(S1,S2)进行校正,作为 基本信号的功能(S10,S20)。
    • 15. 发明授权
    • Circuit arrangement, particularly for a wiper arrangement for motor
vehicle windshields
    • 电路布置,特别是用于汽车挡风玻璃的刮水器布置
    • US5825148A
    • 1998-10-20
    • US765868
    • 1997-01-10
    • Norbert HogRainer PientkaHans MeierGuenther RiehlHenry Blitzke
    • Norbert HogRainer PientkaHans MeierGuenther RiehlHenry Blitzke
    • B60S1/08
    • B60S1/08Y10S318/02
    • A circuit arrangement, in particular for a wiper arrangement for motor vehicle windshields, having an electric wiper motor and a step-switching unit for the wiper motor that can be actuated via a control device, and wherein at least one output of the control device that is assigned to a specific wiper speed is connected to at least one input of the step-switching unit that determines this wiper speed. A switching means (18) is parallel-connected to the outputs (20, 24) of the control device (12), by way of which a voltage source (U.sub.bat) can be connected with the inputs (22, 26) of the step-switching unit (14), which are assigned to the outputs (20, 24) of the control device (12).
    • PCT No.PCT / DE95 / 01636 Sec。 371日期1997年1月10日 102(e)日期1997年1月10日PCT提交1995年11月23日PCT公布。 WO96 / 19366 PCT出版物 日期1996年6月27日一种电路装置,特别是用于机动车辆挡风玻璃的刮水器装置的电路装置,其具有电动刮水器马达和用于可通过控制装置致动的刮水器马达的步进切换装置,并且其中至少一个输出 分配给特定抽头速度的控制装置连接到确定该抽头速度的步进切换单元的至少一个输入。 开关装置(18)并联连接到控制装置(12)的输出端(20,24),通过该开关装置可以将电压源(Ubat)与步骤的输入端(22,26)连接 切换单元(14),其被分配给控制装置(12)的输出(20,24)。
    • 16. 发明授权
    • Device for operating a windshield wiper in intermittent and continuous
modes
    • 用于在间歇和连续模式下操作挡风玻璃刮水器的装置
    • US5694012A
    • 1997-12-02
    • US687340
    • 1996-08-01
    • Rainer PientkaHenry Blitzke
    • Rainer PientkaHenry Blitzke
    • B60S1/08H03K23/64
    • B60S1/0818B60S1/0833
    • Proposed is a device for operating a windshield wiper in the intermittent and continuous modes. To do this, at least one sensor (12) is provided, which emits signals in dependence on the coat of moisture or the amount of rain on a windshield to be cleaned, as well as an electronic control (16) for operating the windshield wiper (11) in dependence of the signal from sensor (12). The number for the sensor signals (E) per wiping interval (WP) is recorded as control signal (n) in one evaluating mechanism (14). Furthermore and depending on whether at least one threshold value (S1, S2) is exceeded or not reached by the control signal (n) or a signal (M1, M2), derived from control signals, there is a changeover between intermittent and continuous modes by means of a changeover device (21, 22).
    • PCT No.PCT / DE95 / 00082 Sec。 371日期:1996年8月1日 102(e)日期1996年8月1日PCT 1995年1月24日PCT PCT。 出版物WO95 / 21078 日期1995年8月10日作为在间歇连续模式下操作挡风玻璃刮水器的装置。 为此,提供至少一个传感器(12),该传感器根据待清洁的挡风玻璃上的水分或雨水的数量,以及用于操作挡风玻璃刮水器的电子控制器(16)发出信号 (11)根据来自传感器(12)的信号。 每个擦拭间隔(WP)中的传感器信号(E)的数量作为控制信号(n)记录在一个评估机构(14)中。 此外,根据由控制信号(n)到达的至少一个阈值(S1,S2)还是从控制信号导出的信号(M1,M2),存在间歇模式和连续模式之间的切换 借助于切换装置(21,22)。
    • 19. 发明授权
    • Sensor device for detecting moisture on a window
    • 用于检测窗户湿度的传感器装置
    • US06455866B1
    • 2002-09-24
    • US09445490
    • 2000-02-28
    • Rainer Pientka
    • Rainer Pientka
    • G01N2149
    • B60S1/0822B60S1/0837
    • A sensor device is described for detecting wetting, in particular rainfall and soiling, on a windshield that has at least two, preferably eight, transmitters and at least one receiver for receiving light emitted by the respective transmitters. The at least two transmitters are arranged concentrically around the at least one receiver. A base area is defined by the at least two transmitters and the at least one receiver, with the base area being at least a sector of a circle. This reduces an outer dimension of the sensor device and improves a ratio of sensitive area to base area of the sensor device.
    • 描述了用于检测具有至少两个,优选八个发射器的挡风玻璃上的润湿特别是降雨和污染的传感器装置,以及用于接收由各个发射器发射的光的至少一个接收器。 所述至少两个发射器围绕所述至少一个接收器同心地布置。 基地区由至少两个发射机和至少一个接收机定义,基地区至少是一个圆的扇区。 这减小了传感器设备的外部尺寸,并提高了传感器设备的敏感区域与基础面积的比率。