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    • 1. 发明授权
    • Circuit for voltage stabilization in an onboard power supply
    • 车载电源电压稳定电路
    • US09240704B2
    • 2016-01-19
    • US12809731
    • 2008-12-22
    • Michael WortbergGunter UhlDieter Grohmann
    • Michael WortbergGunter UhlDieter Grohmann
    • H02J7/00H02J7/14B60R16/03
    • H02J7/1423B60R16/03H02J1/08
    • A circuit (20, 50) for voltage stabilization in an onboard power supply (10), particularly for motor vehicles, which is electrically connected between the onboard power supply (10) to be stabilized and a first energy store (E1) is disclosed. The circuit (20, 50) includes a diode element (24) which contains a plurality of semiconductor switches (34) connected in parallel. The circuit (20, 50) also includes a pilot and control circuit (33). The control circuit (33) determines the level of a current flowing through the diode element (24) and controls the semiconductor switches (34) of the diode element (24) on the basis of the determined current level. The circuit (20, 50) includes a second energy store (E2) which is electrically connected to the diode element (24) and to the onboard power supply (10).
    • 公开了用于电气连接在待稳定的车载电源(10)和第一能量存储(E1)之间的用于车载电源(10)中的电压稳定的电路(20,50),特别是用于机动车辆的电路。 电路(20,50)包括二极管元件(24),其包含并联连接的多个半导体开关(34)。 电路(20,50)还包括导频和控制电路(33)。 控制电路(33)根据确定的电流水平确定流过二极管元件(24)的电流的电平并控制二极管元件(24)的半导体开关(34)。 电路(20,50)包括电连接到二极管元件(24)和板载电源(10)的第二能量存储器(E2)。
    • 2. 发明申请
    • CIRCUIT FOR VOLTAGE STABILIZATION IN AN ONBOARD POWER SUPPLY
    • 电源电压电压稳定电路
    • US20110012424A1
    • 2011-01-20
    • US12809731
    • 2008-12-22
    • Michael WortbergGunter UhlDieter Grohmann
    • Michael WortbergGunter UhlDieter Grohmann
    • B60L1/00
    • H02J7/1423B60R16/03H02J1/08
    • The invention relates to a circuit (20, 50) for voltage stabilization in an onboard power supply (10), particularly for motor vehicles, which is electrically connected between the onboard power supply (10) to be stabilized and a first energy store (E1). The circuit (20, 50) comprises a diode element (24) which contains a plurality of semiconductor switches (34) connected in parallel, a pilot and control circuit (33) which determines the level of a current flowing through the diode element (24) and controls the semiconductor switches (34) of the diode element (24) on the basis of the determined current level, and a second energy store (E2) which is electrically connected to the diode element (24) and to the onboard power supply (10).
    • 本发明涉及一种用于车载电源(10)中的电压稳定的电路(20,50),特别是用于机动车辆,其电连接在待稳定的车载电源(10)和第一能量存储器(E1 )。 电路(20,50)包括二极管元件(24),其包含并联连接的多个半导体开关(34),导频和控制电路(33),其确定流过二极管元件(24)的电流的电平 )并且基于所确定的电流电平来控制二极管元件(24)的半导体开关(34),以及电连接到二极管元件(24)和电路板上电源的第二能量存储器(E2) (10)。
    • 5. 发明授权
    • Method of operating a device for monitoring vehicle-tire pressures and
indicating changes in pressure by radio
    • 操作用于监测车辆轮胎压力并通过无线电指示压力变化的装置的方法
    • US6112165A
    • 2000-08-29
    • US981892
    • 1998-05-11
    • Gunter UhlNorbert NormannGunter Lothar SchulzeRalf Kessler
    • Gunter UhlNorbert NormannGunter Lothar SchulzeRalf Kessler
    • B60C23/04B01C23/02
    • B60C23/0408
    • A method of operating a device for monitoring vehicle-tire pressures and indicating changes in pressure by radio, which is arranged in the valve of the pneumatic tire and contains a power source; a pressure sensor; an analog/digital converter for digitizing the pressure signal obtained from the pressure sensor; a memory for storing the pressure signal; a transmitter; a comparator, in particular in a module with a microprocessor, which compares the pressure signal with a previously stored comparison pressure signal, generates a signal if the deviation of the pressure signal from the comparison pressure signal exceeds a threshold, and activates the transmitter, which thereupon transmits a datum regarding the detected deviation to a receiver arranged in the vehicle; and a timing switch which activates the device at time intervals for a measurement and comparison operation and otherwise keeps it deactivated for purpose of power conservation. The comparator stores the pressure signal and, with said pressure signal, constitutes a new comparison pressure signal which replaces the previous comparison pressure signal.
    • PCT No.PCT / EP96 / 02304 Sec。 371日期:1998年5月11日 102(e)日期1998年5月11日PCT提交1996年5月29日PCT公布。 出版物WO97 / 00784 日期1997年1月9日一种操作装置,用于监测车辆轮胎压力并通过无线电指示压力变化,该方法布置在充气轮胎的阀中并包含动力源; 压力传感器; 用于数字化从压力传感器获得的压力信号的模拟/数字转换器; 用于存储压力信号的存储器; 发射机 比较器,特别是在具有微处理器的模块中,其将压力信号与先前存储的比较压力信号进行比较,如果压力信号与比较压力信号的偏差超过阈值,则产生信号,并激活发射器,其中 然后将关于检测到的偏差的数据传送到布置在车辆中的接收器; 以及定时开关,其以时间间隔激活器件用于测量和比较操作,并且为了节能目的而使其停止。 比较器存储压力信号,并且利用所述压力信号构成替换先前比较压力信号的新的比较压力信号。
    • 6. 发明申请
    • Electronic Battery Safety Switch
    • 电子电池安全开关
    • US20080151454A1
    • 2008-06-26
    • US11569137
    • 2005-05-25
    • Gunter Uhl
    • Gunter Uhl
    • B60R21/01H02H3/08
    • B60R21/017B60R16/03B60R21/01
    • The invention relates to an electronic battery safety switch which facilitates a reliable and reversible disconnection of the motor vehicle on-board network from the battery. For this purpose an electronic solid-state switch is used which facilitates an unlimited number of switching cycles. The solid-state switch electrically disconnects the motor vehicle on-board network and the battery with the application of a crash signal or an overcurrent signal or when the ignition is switched off. With a parked vehicle an impermissibly high idle current and a discharge of the battery can be reliably prevented in an effective and simple manner. If the current flows from the on-board network in the direction of the battery, then the solid-state switch is switched actively conducting. Thus, damage to the switch in the inverse mode can be prevented.
    • 本发明涉及一种电子电池安全开关,其有助于机动车辆车载网络与电池的可靠和可逆的断开。 为此,使用电子固态开关,其有助于无限数量的开关周期。 固态开关通过应用碰撞信号或过电流信号或当点火开关断开时,电动断开车载网络和电池。 对于停放的车辆,可以以有效和简单的方式可靠地防止电池的不可容许的高空闲电流和放电。 如果电流从车载网络沿电池方向流动,则固态开关切换主动导通。 因此,可以防止在逆模式下对开关的损坏。
    • 8. 发明申请
    • Semiconductor Switch with Integrated Delay Circuit
    • 具有集成延迟电路的半导体开关
    • US20080266016A1
    • 2008-10-30
    • US12107322
    • 2008-04-22
    • Gunter UhlSteffen Wandres
    • Gunter UhlSteffen Wandres
    • H03K7/08
    • H03K17/687F02P19/023H03K17/08H03K17/162H03K17/284
    • For controlling a multi-stage load with pulsewidth modulation (PWM), the individual stages have normally separately applied thereto load currents which are clocked in a phase-shifted mode so as to avoid load peaks. An output stage for PWM control of a load stage with a delay circuit which, in addition to the load current modulated by a PWM input signal, supplies a PWM output signal that is delayed by a predetermined fraction of the period duration relative to the PWM input signal. The output stage can especially be realized by integrating the delay circuit together with the actual power semiconductor switch and an associated monitoring and control circuit in a single component. By cascading such output stages, a controller for phase-shifted PWM control of multi-stage loads, which is independent of a precise time base, can be realized in a simple manner.
    • 为了控制具有脉冲宽度调制(PWM)的多级负载,各级通常分别施加以相移模式计时的负载电流,以避免负载峰值。 用于具有延迟电路的负载级的PWM控制的输出级,该延迟电路除了由PWM输入信号调制的负载电流之外还提供相对于PWM输入延迟周期持续时间的预定分数的PWM输出信号 信号。 输出级可以通过将延迟电路与实际的功率半导体开关和相关的监视和控制电路集成在一个单独的部件中来实现。 通过级联这种输出级,可以以简单的方式实现用于独立于精确时基的多级负载的相移PWM控制的控制器。
    • 9. 发明授权
    • Glow plug with electronic component for switching between heating and
ion sensing functions
    • 具有电子元件的辉光插头,用于在加热和离子传感功能之间切换
    • US6150634A
    • 2000-11-21
    • US440265
    • 1999-11-15
    • Michael HaussnerHeinz-Georg SchmitzGunter Uhl
    • Michael HaussnerHeinz-Georg SchmitzGunter Uhl
    • F23Q7/00
    • F23Q7/001
    • A glow plug comprises a heating rod with an inner heater coil and optionally at least one control coil, the heating rod being insulated from the glow plug body and is provided with a plug-type or screw terminal for the power supply voltage. Furthermore, the terminal (4) has an electronic component (6), preferably a chip, with a terminal (7) connected to the power supply voltage, a terminal (8) connected to the glow tube (1.3) and a terminal (9) connected to the body (3). The electronic component (6) is designed as a control element for switching the functioning of the glow plug between a heating function and a sensing function for measuring the ion flow in the combustion space area in proximity to the heating rod (1).
    • 电热塞包括具有内加热器线圈和可选的至少一个控制线圈的加热棒,加热棒与电热塞主体绝缘,并且设置有用于电源电压的插头式或螺钉端子。 此外,端子(4)具有电子部件(6),优选为芯片,端子(7)连接到电源电压,连接到辉光管(1.3)的端子(8)和端子(9) )连接到主体(3)。 电子部件(6)被设计为用于在加热功能和用于测量靠近加热棒(1)的燃烧空间区域中的离子流的感测功能之间切换电热塞的功能的控制元件。