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    • 2. 发明授权
    • Device and method for a wiping system
    • 擦拭系统的装置和方法
    • US6150783A
    • 2000-11-21
    • US341059
    • 1999-07-02
    • Gebhard MichenfelderMichael May
    • Gebhard MichenfelderMichael May
    • B60S1/08H02P1/04
    • B60S1/08Y10S318/02
    • A regulated windshield wiper device (10), in particular for motor vehicles, is proposed, which predetermines a corrected guidance variable (F) by determining a correction variable (K) so that the regulating deviation of the control circuit becomes approximately zero. In order to regulate the position (X) of at least one wiper (16) that oscillates between two end positions (18.1, 18.2, 18.3), the windshield wiper device (10) includes an electronically reversible drive motor (14) and a regulating unit (12), which compares a regulation variable (R) to a guidance variable (F) and regulates the motor (14) by means of a control variable (S), wherein the deviation between the guidance variable (F) and the regulation variable (R) and/or other parameters, e.g. the control variable (S) or variables derived from the regulation variable (R), is used to calculate a correction variable (K) with which the guidance variable (F) can be corrected.
    • PCT No.PCT / DE97 / 02920 Sec。 371日期:1999年7月2日 102(e)1999年7月2日PCT 1997年12月16日PCT PCT。 公开号WO98 / 30422 PCT 日期1998年7月16日提出了一种特别用于机动车辆的调节风挡刮水器装置(10),其通过确定校正变量(K)来确定校正引导变量(F),使得控制电路的调节偏差变为 大约为零。 为了调节在两个端部位置(18.1,18.2,18.3)之间振荡的至少一个擦拭器(16)的位置(X),挡风玻璃刮水器装置(10)包括电子可逆驱动马达(14)和调节 单元(12),其将调节变量(R)与引导变量(F)进行比较,并通过控制变量(S)来调节电机(14),其中引导变量(F)和调节 变量(R)和/或其他参数,例如 控制变量(S)或从调节变量(R)导出的变量)用于计算可以校正引导变量(F)的校正变量(K)。
    • 3. 发明授权
    • Windshield wiper system
    • 挡风玻璃刮水器系统
    • US06690130B2
    • 2004-02-10
    • US09864986
    • 2001-05-24
    • Hans-Georg KlugGebhard MichenfelderHans MeierHenry BlitzkeMichael May
    • Hans-Georg KlugGebhard MichenfelderHans MeierHenry BlitzkeMichael May
    • H02P104
    • B60S1/0818B60S1/0833
    • Operation of a windshield wiper system for cleaning a windshield of a motor vehicle includes driving at least one wiper by an electric drive motor so that the at least one wiper shifted between two terminal positions, processing by a control unit as the input variable the output signals of a rain quantity and the switching signals of a manually controllable switch mechanism, and processing as the output variable a supply voltage of the electric drive motor so as to control the wiper speed, operating the at least one wiper (8) with variable intermittent interval times and at variable wiper speeds, as a function of a rain quantity detected by the rain sensor (12), so that the precisely one wiper speed and precisely one intermittent interval time are associated with each measured rain quantity, and moving the at least one wiper (8) in an intermittent mode with a lower speed than in a continuous mode.
    • 用于清洁机动车辆的挡风玻璃的风挡刮雨器系统的操作包括通过电驱动马达驱动至少一个刮水器,使得至少一个刮水器在两个端子位置之间移动,由控制单元进行处理作为输入变量, 以及手动可控开关机构的切换信号,并且作为输出变量处理电动驱动马达的供给电压以便控制刮水器速度,以可变间歇间隔操作至少一个刮水器(8) 以及雨量传感器(12)检测到的雨量的函数,以可变的雨刮器速度,使得精确地一个雨刷器速度和精确地一个间歇间隔时间与每个测量的雨量相关联,并且移动至少一个 刮水器(8)处于间歇模式,速度低于连续模式。
    • 7. 发明申请
    • Comparative signal strength detection
    • 比较信号强度检测
    • US20070223631A1
    • 2007-09-27
    • US11388675
    • 2006-03-24
    • Matthew FelderMichael May
    • Matthew FelderMichael May
    • H04L27/08
    • H04L27/14H03F3/189H03F3/343H03G3/3068
    • A method for signal strength detection begins by comparing a signal strength representation of a signal with a signal strength representation of a reference signal. The method continues by adjusting, when the signal strength representation of the signal compares unfavorably with the signal strength representation of the reference signal, at least one of the signal strength representation of the signal and the signal strength representation of the reference signal until the signal strength representation of the signal compares favorably with the signal strength representation of the reference signal. The method continues by determining signal strength of the signal based on the adjusting of the signal strength representation of the signal and signal strength of the reference signal.
    • 用于信号强度检测的方法开始于将信号的信号强度表示与参考信号的信号强度表示进行比较。 该方法通过调节信号的信号强度表示与参考信号的信号强度表示不利地相比较,信号的信号强度表示和参考信号的信号强度表示中的至少一个直到信号强度 信号的表示与参考信号的信号强度表示相当。 该方法通过基于信号的信号强度表示和参考信号的信号强度的调整来确定信号的信号强度来继续。
    • 8. 发明申请
    • Integrated circuit having radio receiver and methods for use therewith
    • 具有无线电接收机的集成电路及其使用方法
    • US20070160167A1
    • 2007-07-12
    • US11328830
    • 2006-01-09
    • Michael MayErich Lowe
    • Michael MayErich Lowe
    • H04L27/00
    • H04B1/406H03D5/00H04B1/0003
    • An integrated circuit includes a radio receiver for receiving a received radio signal having a plurality of channel signals, each of the plurality of channel signals being modulated at one of a corresponding plurality of carrier frequencies. The radio receiver converts a selected one of the plurality of channel signals into a demodulated signal. An interface clock generator generates a first interface clock at a first interface clock frequency that varies based on the selected one of the plurality of channel signals. The first interface clock frequency, and integer multiples of the first clock frequency are not substantially equal to the carrier frequency of the selected one of the plurality of channel signals. A driver module drives a device interface with a device based on the first interface clock.
    • 一种集成电路包括用于接收具有多个信道信号的接收无线电信号的无线电接收机,多个信道信号中的每一个被以相应的多个载频中的一个调制。 无线电接收机将所选择的多个信道信号转换为解调信号。 接口时钟发生器以基于多个信道信号中选择的一个信道信号而变化的第一接口时钟频率生成第一接口时钟。 第一接口时钟频率和第一时钟频率的整数倍基本上不等于多个信道信号中所选择的一个的载波频率。 驱动器模块基于第一接口时钟驱动与设备的设备接口。