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    • 2. 发明申请
    • WINDSCREEN WIPER CONTROL
    • WINISCREEN WIPER控制
    • WO1996030237A1
    • 1996-10-03
    • PCT/GB1996000714
    • 1996-03-25
    • WYNN MARINE LTD.ELMHIRST, John
    • WYNN MARINE LTD.
    • B60S01/08
    • B60S1/3404B60S1/08
    • A windscreen wiper control system (PCB) suitable for use with heavy duty windscreen wipers (5) such as are used on ships, in which the motor drives a continuous belt system (1, 2, 3) for providing to and fro movement across a screen and a speed control function is applied to the motor to reduce end of travel shocks, and the system includes a central processing unit (C.P.U.) attached within or to a casing for the motor, and controls the speed control function as well as ancillary functions such as a windscreen wiper heater and a screen wash system.
    • 适用于船上使用的重型挡风玻璃刮水器(5)的风挡玻璃刮水器控制系统(PCB),其中电动机驱动连续带系统(1,2,3),用于提供往复运动 屏幕和速度控制功能被应用于电动机以减少行驶冲击的结束,并且系统包括附接到电动机壳体内或其中的中央处理单元(CPU),并且控制速度控制功能以及辅助功能 例如挡风玻璃刮水器加热器和洗屏系统。
    • 4. 发明申请
    • WINDSHIELD WIPER SYSTEM HAVING REDUCED WIPE SPEED AT REVERSAL POINTS USING VARIABLE FREQUENCY INDUCTION MOTOR CONTROL
    • 使用可变频率感应电动机控制在逆向点上减少擦拭速度的WINDSHIELD刮水器系统
    • WO1996010499A1
    • 1996-04-11
    • PCT/US1995012007
    • 1995-09-21
    • ITT AUTOMOTIVE ELECTRICAL SYSTEMS, INC.
    • ITT AUTOMOTIVE ELECTRICAL SYSTEMS, INC.McCANN, Roy, A.SURIANO, John, R.COOK, Keith, R.
    • B60S01/08
    • B60S1/08
    • A windshield wiper system (10) having variable frequency induction motor control for reducing wipe speed at reversal points includes an induction motor (12), a wiper and blade assembly (14) operatively connected to the motor (12), a sensing means (22) for detecting when the position of the wiper and blade assembly (14) is within a preselected range of one of the reversal points, and a motor control (18) responsive to the control signal (S2) generated by the sensing means for causing the motor (12) to reduce wipe speed during the preselected range prior to the reversal point to reduce pattern growth, noise, and water expulsion. The sensing means (22) takes the form of a cam or plate operated switch driven by the induction motor. The control signal (S2) derived from the cam operated switch is provided as an input to a voltage controlled oscillator (18), whose variable frequency output is used to vary the frequency of the excitation voltage applied to the windings of the three phase induction motor (12).
    • 具有用于降低反转点的擦拭速度的变频感应电动机控制的风挡刮水器系统(10)包括可操作地连接到电动机(12)的感应电动机(12),刮水器和叶片组件(14),感测装置 ),用于检测刮水器和叶片组件(14)的位置何时在反转点之一的预选范围内;以及响应于由感测装置产生的控制信号(S2)的马达控制(18),用于使 马达(12)在反转点之前的预选范围内减少擦拭速度,以减少图案生长,噪音和水的排出。 感测装置(22)采用由感应电动机驱动的凸轮或板操作的开关的形式。 将从凸轮操作的开关导出的控制信号(S2)作为输入提供给压控振荡器(18),其可变频率输出用于改变施加到三相感应电动机的绕组的激励电压的频率 (12)。
    • 5. 发明申请
    • SENSOR
    • 测量装置
    • WO1996005087A1
    • 1996-02-22
    • PCT/DE1995000699
    • 1995-05-30
    • ROBERT BOSCH GMBHKLAPPENBACH, ChristophBURKART, Manfred
    • ROBERT BOSCH GMBH
    • B60S01/08
    • B60S1/0822B60S1/0833B60S1/0881
    • The invention concerns a sensor (10) with a light transmitter and a light receiver located on opposite sides of a vehicle windscreen (18) in the region wiped by a windscreen wiper. The zone between the transmitter and the receiver forms a measurement path for a beam of light transmitted by the transmitter into the windscreen (18), at an angle such that it will undergo total internal reflection, and received by the receiver and fed to a processor. Both the transmitter and receiver are mounted in a housing (12) fitted against the inside of the windscreen (18) and are held in place in the housing by a preferably common mounting (14). Particularly high sensor reliability is ensured by virtue of the fact that the side of the housing (12) facing the windscreen (18) is at least partly open, and mounted in the housing (12) is a heatable component (30) made of material which conducts heat well, the component having panel-shaped area (40) facing directly towards the measurement path.
    • 本发明涉及一种测量设备(10),包括一个发射器和从其位于接收器的距离,这两者的光学耦合,在区域内的扫过由刮水器装置擦拭面积与机动车辆的盘(18)的一个表面,其之间 发射机和接收机befindlicher区域形成在全反射的角度为所述发射机的测量部分中的窗格(18)中引入的,其由接收器接收并提供给评价装置,光束,其中,所述发射器和在内侧上的接收器两者 保持的盘(18)外壳(12)和通过在其中保持的优选公共支撑元件(14)容纳。 特别可靠的测量装置(10)中,在正对面的板(18)至少部分地打开壳体(12)与所述测量部分(的板状部(40)实现的,由高导热材料,加热件30的 布置),其被支撑在所述壳体(12)上。
    • 7. 发明申请
    • DEVICE FOR THE AUTOMATIC CONTROL OF A WINDSCREEN WIPER MOTOR
    • DEVICE FOR A雨刮电机的自动控制
    • WO1995010434A1
    • 1995-04-20
    • PCT/DE1994001134
    • 1994-09-27
    • ETABLISSEMENT VORALPDRÖGE, Bernhard
    • ETABLISSEMENT VORALP
    • B60S01/08
    • B60S1/0818Y10S15/15Y10S318/02
    • The invention relates to a device for the automatic control of a windscreen wiper motor. Said device has a moisture sensor which emits a signal depending on the moisture on the windscreen or another point on a motor vehicle so that this signal to some extent produces an analog reflection of the moisture varying in time. The output signal of the sensor is evaluated in such a way that it is continuously compared with a threshold value which can be altered. Every time this threshold value is reached or exceeded by a pulse-like change in the sensor output signal, this event is counted. After a given number Z of such events the windscreen wiper motor is switched on.
    • 本发明涉及一种用于风挡玻璃刮水器电机的自动控制的装置。 该设备具有一个湿度传感器,其输出信号响应于位于所述挡风玻璃或在机动车辆上的湿度的任何其它机构,使得该信号在一定程度上可变的随时间水分的模拟示图。 该传感器的输出信号,它被不断地可以改变阈值进行比较的方式进行评价。 每当由脉冲状变化到达传感器的输出信号或超过此阈值,这个事件进行计数。 如果发生了某些数Z这样的事件,雨刮电机接通。
    • 8. 发明申请
    • DEVICE FOR CONTROLLING A WINDSCREEN-WASHER INSTALLATION
    • 一种用于控制雨刮器系统
    • WO1995001270A1
    • 1995-01-12
    • PCT/DE1994000710
    • 1994-06-18
    • REIME, Gerd
    • B60S01/08
    • G01V8/20B60S1/0818G01N21/43G01N21/55G01N21/8422G01N2021/551
    • The windscreen-washer control device proposed has a sensor (12) disposed in the area (10a) swept by a wiper, the wiper passing over the sensor at each stroke. The control device also has a counter assembly (15) whose counter recognizes the signals produced by the sensor (12) when the wiper passes over the sensor during each stroke, and counts these signals (Es). If the count exceeds a given value (Z), and additional stroke is initiated. This value is greater than the number of signals generated by the sensor (12) during one stroke of the wiper. This device provides a simple and inexpensive way of controlling a windscreen-wiper installation.
    • 在用于控制风挡刮雨器系统的装置,传感器装置(12),在擦拭区域(10A)被设置的擦拭器,其由所述刮水器的擦拭操作期间扫过。 的计数装置(15)设置,所述计数器的计数值作为检测由所述扫描信号诱发的装置的传感器设备(12)的信号(ES),其中,超过所述计数器(Z)的一特定值的擦拭操作时,在切换具有进一步 擦拭触发器。 该值比从所述传感器设备(12)的信号的数量大至少刮水器的扫描期间产生的。 通过这种布置,风挡刮雨器系统的控制可以以简单和成本有效的方式来实现。
    • 9. 发明申请
    • VEHICLE INTERFACE FOR MOISTURE-SENSITIVE WIPER CONTROL
    • 水敏感雨刮器控制的车辆界面
    • WO1993017897A1
    • 1993-09-16
    • PCT/US1993002348
    • 1993-03-03
    • LIBBEY-OWENS-FORD CO.
    • LIBBEY-OWENS-FORD CO.TEDER, Rein, S.
    • B60S01/08
    • B60S1/0818Y10S318/02
    • A combination manual and automatic vehicle windshield wiper control system is provided which integrates a windshield moisture-sensing based wiper control system (20, 22) into an existing design of original equipment wiper system (16, 18, 24) with minimum impact on manufacture and retrofit by using the existing vehicle wiring harness (12) and existing connectors. The invention provides easy integration of a moisture-sensitive wiper control system (20, 22) into a class of vehicles in a manner which does not interfere with the operation of the standard or pulse-wipe systems (16, 18, 24) already existing in the manual mode even if the moisture-sensitive system (20, 22) should fail for any reason. The moisture-sensing mode of operation replaces the delay or pulse mode.
    • 提供组合手动和自动车辆挡风玻璃刮水器控制系统,其将基于挡风玻璃湿度的刮水器控制系统集成到原始设备刮水器系统的现有设计中,通过使用现有的车辆线束和现有连接器对制造和改造的影响最小。 本发明可以以不影响已经存在于手动模式中的标准或脉冲擦拭系统的操作的方式将湿度敏感的雨刮器控制系统容易地集成到一类车辆中,即使湿度敏感系统应当 由于任何原因失败 湿度感测操作模式替代延迟或脉冲模式。
    • 10. 发明申请
    • CONTROL SYSTEM FOR WINDSCREEN WIPING
    • WINISCREEN WIPING控制系统
    • WO1992018358A1
    • 1992-10-29
    • PCT/AU1992000156
    • 1992-04-09
    • INTROLAB PTY LIMITEDSTANTON, Peter, Robert
    • INTROLAB PTY LIMITED
    • B60S01/08
    • B60S1/08B60S1/0818
    • An electronic controller (7) receives a signal from a moisture sensor (6) which indicates the amount of moisture that has accumulated on the windscreen (1) since the last wiping action of the blade (2). The controller (7) receives or retains information which indicates the rate or delay of wiping action as is currently set. The motor controller (4) is then signalled so as to retain the current wiping rate, or alternatively determine, as a future wiping rate for the next wiping action. The future wiping rate is determined on the basis of the signal from the sensor (6), the current wiping rate and programmed criteria.
    • 电子控制器(7)接收来自湿度传感器(6)的信号,该信号指示自叶片(2)的最后擦拭动作以来累积在挡风玻璃(1)上的水分量。 控制器(7)接收或保留指示当前设置的擦拭动作的速率或延迟的信息。 然后发信号通知电动机控制器(4)以保持当前擦拭速率,或者替代地确定作为下一次擦拭动作的将来擦拭速率。 基于来自传感器(6)的信号,当前擦拭率和编程标准来确定未来擦拭速率。