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    • 1. 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)。
    • 2. 发明授权
    • Device for checking the evaluation circuit for automatic switching operations of illumination device in vehicles
    • 用于检查车辆中照明装置的自动切换操作的评估电路的装置
    • US06525478B2
    • 2003-02-25
    • US09808753
    • 2001-03-15
    • Patrick SchmittNorbert HogBruno HodappRainer PientkaHans MeierHenry BlitzkeManfred Burkart
    • Patrick SchmittNorbert HogBruno HodappRainer PientkaHans MeierHenry BlitzkeManfred Burkart
    • H05B3702
    • B60Q1/1423B60Q2300/146B60Q2300/314Y10T307/773
    • A device for checking the evaluation circuit for automatic switching operations of the illumination devices in vehicles. A sensor device contains a global sensor for detecting the light conditions in the environment of the vehicle and a directional sensor for the directed detection of the light conditions in the direction of travel in front of the vehicle. The signals of the sensor device are supplied to the evaluation circuit, to determine whether a change in the switching state of the illumination devices is necessary. In order to check the evaluation circuit which is designed using analog technology, in the operating state, the voltage supply to the sensor unit is briefly interrupted at predetermined intervals, as a result of which the condition “night” is simulated. When the evaluation circuit is functioning correctly, this is detected by it as such. When the evaluation circuit is not functioning correctly, a signal is generated, directing attention to the faulty functioning and causing further steps to be initiated. In an embodiment, the checking operation and the voltage interruption are carried out by a microcontroller. In a second checking operation, it is established, in particular in the software, whether the emitted signal values of the evaluation circuit do not exceed a lower value that is determined by the hardware. In a third checking operation, the correct functioning of the A/D converter unit is ascertained.
    • 一种用于检查用于车辆中的照明装置的自动切换操作的评估电路的装置。 传感器装置包括用于检测车辆环境中的光条件的全球传感器和用于有针对性地检测车辆前方的行驶方向上的光条件的方向传感器。 传感器装置的信号被提供给评估电路,以确定是否需要改变照明装置的切换状态。 为了检查使用模拟技术设计的评估电路,在操作状态下,以预定的间隔短暂地中断对传感器单元的电压供应,结果是模拟了“夜”状态。 当评估电路正常工作时,可以这样检测。 当评估电路运行不正常时,产生信号,引导注意功能失效,并引发进一步的步骤。 在一个实施例中,检查操作和电压中断由微控制器执行。 在第二检查操作中,特别是在软件中建立评估电路的发射信号值是否不超过由硬件确定的较低值。 在第三检查操作中,确定A / D转换器单元的正确功能。
    • 7. 发明授权
    • System for automatic switching of lighting devices in vehicles
    • 车辆照明装置自动切换系统
    • US06727653B2
    • 2004-04-27
    • US09979501
    • 2002-03-04
    • Patrick SchmittNorbert HogBruno HodappRainer PientkaHans MeierHenry BlitzkeManfred Burkart
    • Patrick SchmittNorbert HogBruno HodappRainer PientkaHans MeierHenry BlitzkeManfred Burkart
    • H05B3700
    • B60Q1/0023B60Q1/1423B60Q2300/112B60Q2300/314B60Q2300/3321B60Q2300/337
    • A sensor device, by which the light intensity in the surroundings of the vehicle is detected and which is connected to an evaluation device, by which the signals (S) of the sensor device for the light intensity are compared with at least one threshold value, and from that it is ascertained whether a change in the switching state of the lighting devices is necessary. The evaluation device evaluates signals (S) of the sensor device for the presence of at least one periodically variable signal component (Sk), and in the presence of such a signal component (Sk), the lighting devices are either turned on at a certain level, or remain turned on at that level. By this evaluation, light originating from artificial light sources and having a variable intensity depending on the alternating voltage with which these sources are operated, are detected and assure that the lighting devices will be turned on or will remain turned on if the vehicle is driving in a tunnel or underground garage, for instance, where lighting is provided by artificial light sources.
    • 一种传感器装置,通过该传感器装置检测车辆周围的光强度并将其连接到评估装置,通过该评估装置将用于光强度的传感器装置的信号(S)与至少一个阈值进行比较, 从而确定是否需要改变照明装置的切换状态。 评价装置评估传感器装置的信号(S),以存在至少一个周期性可变信号分量(Sk),并且在存在这样的信号分量(Sk))的情况下,照明装置以某种方式被接通 级别,或在该级别保持打开状态。 通过该评估,检测到源自人造光源并且具有取决于操作这些源的交流电压的可变强度的光,并且确保照明装置将被打开或者如果车辆正在行驶则保持打开 例如,隧道或地下车库,其中照明由人造光源提供。
    • 8. 发明授权
    • Arrangement for operating a wiper
    • 操作刮水器的布置
    • US5789888A
    • 1998-08-04
    • US652649
    • 1996-05-28
    • Rainer PientkaHans MeierHenry Blitzke
    • Rainer PientkaHans MeierHenry Blitzke
    • B60S1/08
    • B60S1/0818Y10S318/02
    • An arrangement for operating a wiper includes a sensor for detecting a wetting state of a pane and outputting a sensor signal based thereon, an evaluator for receiving the sensor signal from the sensor, and evaluating the sensor signal, and an actuator for actuating the wiper, the actuator being actuated by the evaluator to produce one of a plurality of wiping modes, including a stage II wiping mode for heavy wetting conditions. The evaluator includes an evaluation stage for determining whether a degree of wetting corresponding to a stage II wiping condition occurs after a prolonged wiping break, for example after passing through a tunnel, and a processing stage. If a degree of wetting corresponding to a stage II wiping condition is determined to occur after a prolonged wiping break, the processing stage is actuated by the evaluation stage to cause a change-over to stage II wiping within a shorter time period than in a case where a prolonged wiping break is not present for a comparable degree of wetting.
    • 用于操作刮水器的装置包括:传感器,用于检测玻璃板的润湿状态并输出传感器信号,用于从传感器接收传感器信号并评估传感器信号的评估器,以及用于致动刮水器的致动器, 致动器由评估器致动以产生多个擦拭模式中的一个,包括用于重度润湿条件的阶段II擦拭模式。 评估器包括评估阶段,用于确定在延长的擦拭间隔之后,例如在通过隧道之后是否发生对应于阶段II擦除状况的润湿度,以及处理阶段。 如果在延长的擦拭断裂之后确定对应于阶段II擦拭条件的润湿度,则通过评估阶段来启动处理阶段,以在比在这种情况下更短的时间段内进行II阶段的擦拭 对于相当程度的润湿,不存在长时间的擦拭断裂。
    • 9. 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)。
    • 10. 发明授权
    • Method and device for monitoring an electronic computing unit
    • 用于监视电子计算单元的方法和装置
    • US6003140A
    • 1999-12-14
    • US913406
    • 1997-09-17
    • Rainer PientkaHans MeierHenry Blitzke
    • Rainer PientkaHans MeierHenry Blitzke
    • G06F11/30G06F1/24G06F11/00G06F11/16
    • G06F11/0763G06F11/0754G06F11/167
    • The invention concerns a method and an arrangement for monitoring a computing unit, such as is used, for example, in control devices. The monitoring device generates a reset signal if the supply voltage drops below a voltage level, below which a defined operation is not ensured. Following the occurrence of a reset signal, a fixedly predetermined code is compared with the content of a volatile memory unit and a signal is emitted based on the comparison result, which determines the further process sequence. A fast and secure determination of the continued optimum process sequence is obtained by continuing with the control of the operating state as it exists at the time when the reset signal occurs, provided the content of the volatile memory unit coincides with the code, whereas a new initialization is carried out if the content of the volatile memory unit deviates from the code.
    • PCT No.PCT / DE97 / 00006 Sec。 371日期1997年9月17日 102(e)1997年9月17日PCT PCT 1997年1月2日PCT公布。 公开号WO97 / 26598 日期1997年7月24日本发明涉及用于监视诸如在控制装置中使用的计算单元的方法和装置。 如果电源电压低于电压电平,则监控装置产生一个复位信号,低于该值时,不能保证定义的操作。 在发生复位信号之后,将固定预定的代码与易失性存储器单元的内容进行比较,并且基于比较结果发出信号,其确定进一步的处理顺序。 通过继续对复位信号发生时存在的运行状态进行控制,只要易失性存储器单元的内容与代码一致,就可以快速而安全地确定持续的最佳处理顺序,而新的 如果易失性存储器单元的内容偏离代码,则执行初始化。