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    • 1. 发明授权
    • Operation of a half-bridge, in particular a field-effect transistor half-bridge
    • 半桥的工作,特别是场效应晶体管半桥
    • US07332942B2
    • 2008-02-19
    • US10546075
    • 2004-02-16
    • Martin GötzenbergerMichael KirchbergerWolfgang Speigl
    • Martin GötzenbergerMichael KirchbergerWolfgang Speigl
    • H03K3/353H03K3/02
    • H03K17/08122H03K17/6871H03K17/6877
    • The invention relates to a circuit configuration (1) for controlling the operation of a half-bridge (13) by pulse-width modulation, especially in a synchronous rectifier mode. Said circuit configuration comprises a first terminal connection (23, 25) for electrically connecting the circuit configuration (1) to an insulated gate terminal of a bridge valve (15, 17) of the half-bridge (13), a second terminal connection (20, 22) for electrically connecting the circuit configuration (1) to an additional terminal of the bridge valve (15, 17), a lead (16, 18) electrically connecting the first terminal connection (23, 25) to the second terminal connection (20, 22), and an electric valve (43, 45) that can be switched on and off by pulse-width modulated signals. Said electric valve (43, 45) is disposed in the lead (16, 18) so that a flow of current through the lead (16, 18) can be released and blocked. The invention is specifically characterized in that at least one inductive component (35, 37) is provided in the lead (16, 18) so that a time course of an electric current flow in the lead (16, 18) is influenced by the inductance of the inductive component (35, 37), in addition to the influence of a possibly present parasitic inductance.
    • 本发明涉及一种用于通过脉宽调制来控制半桥(13)的操作的电路配置(1),特别是在同步整流模式中。 所述电路结构包括用于将电路结构(1)电连接到半桥(13)的桥式阀(15,17)的绝缘栅极端子的第一端子连接(23,25),第二端子连接 用于将电路配置(1)电连接到桥式阀(15,17)的附加端子的引线(16,18),用于将第一端子连接件(23,25)电连接到第二端子连接 (20,22),以及可以通过脉冲宽度调制信号接通和断开的电动阀(43,45)。 所述电动阀(43,45)设置在所述引线(16,18)中,使得能够释放和阻止通过所述引线(16,18)的电流。 本发明的特征在于,在引线(16,18)中提供至少一个电感元件(35,37),使得引线(16,18)中的电流流动的时间过程受电感 的电感元件(35,37),除了可能存在的寄生电感的影响之外。
    • 3. 发明授权
    • Onboard power supply and method for operating an onboard power supply
    • 车载电源和操作车载电源的方法
    • US08614524B2
    • 2013-12-24
    • US12681644
    • 2008-09-19
    • Stephan BolzCarsten GötteMartin Götzenberger
    • Stephan BolzCarsten GötteMartin Götzenberger
    • B60L1/00B60L3/00H02G3/00
    • H02J7/14H02J1/00
    • An onboard power supply, contains a starter power supply having a high-power load, particularly a starter and a first energy storage, particularly a double-layer capacitor. The onboard power supply further has an intermediate power supply with a second energy storage, particularly a rechargeable lithium polymer battery and a load power supply with at least one electric load. The starter power supply is electrically coupled to the intermediate power supply via a first voltage converter. The intermediate power supply is electrically coupled to the load power supply via a second voltage converter, and the onboard power supply has a controller, which controls or regulates the electric voltage in the intermediate power supply in dependence on a parameter of the second energy storage.
    • 车载电源包含具有高功率负载的起动器电源,特别是启动器和第一能量存储器,特别是双层电容器。 车载电源还具有具有第二能量存储器的中间电源,特别是可充电锂聚合物电池和具有至少一个电负载的负载电源。 启动器电源经由第一电压转换器电耦合到中间电源。 中间电源经由第二电压转换器电耦合到负载电源,并且车载电源具有控制器,该控制器根据第二能量存储器的参数来控制或调节中间电源中的电压。
    • 6. 发明授权
    • Device for charging and discharging at least one piezoactuator for an injection valve of an internal combustion engine
    • 用于对至少一个用于内燃机的喷射阀的压电致动器进行充放电的装置
    • US07729848B2
    • 2010-06-01
    • US11995897
    • 2006-06-29
    • Martin Götzenberger
    • Martin Götzenberger
    • G06F19/00F02M51/00H01L41/09
    • F02D41/2096F02D41/221H02N2/065
    • A device for controlling at least one piezoactuator for an injection valve of an internal combustion engine, including a microcontroller that controls an output stage which generates the load current for charging and discharging the piezoactuator. The microcontroller controls the output stage through an integrated circuit. A discharge circuit interacts with the integrated circuit to reliably discharge the piezoactuator in case of a failure of the output stage and/or of a safety path of the microcontroller. The load current during the discharge is controlled by a control circuit having a controller which is part of the integrated circuit. The discharge circuit has emergency discharge elements that are activated in case of a failure of the controller or of the integrated circuit.
    • 一种用于控制内燃机的喷射阀的至少一个压电致动器的装置,包括控制产生用于对压电致动器进行充放电的负载电流的输出级的微控制器。 微控制器通过集成电路控制输出级。 放电电路与集成电路相互作用,以便在输出级和/或微控制器的安全路径失效的情况下可靠地放电压电致动器。 放电期间的负载电流由具有作为集成电路的一部分的控制器的控制电路控制。 放电电路具有在控制器或集成电路发生故障的情况下被激活的紧急放电元件。
    • 8. 发明授权
    • Circuit arrangement and method for producing a pulse width modulated signal
    • 用于产生脉宽调制信号的电路布置和方法
    • US07002385B2
    • 2006-02-21
    • US10753508
    • 2004-01-08
    • Martin Götzenberger
    • Martin Götzenberger
    • H03K3/07
    • H03K7/08
    • A circuit arrangement for producing a PWM signal (x) having a prescribed PWM frequency from two signals (a, b) which are input into the circuit arrangement, where the PWM signal (x) has a duty ratio which varies with the difference between the signals (a, b) comprises a signal generator (16) for producing a cyclic comparison signal, particularly an essentially trapezoidal signal (d), whose frequency is the same as the PWM frequency and whose shape is dependent on one (a) of the two signals (a, b), and a comparator (18) for comparing the other (b) of the two signals (a, b) with the comparison signal (d) and for providing the PWM signal (x) at the output of the comparator.
    • 一种用于从输入到电路装置的两个信号(a,b)产生具有规定的PWM频率的PWM信号(x)的电路装置,其中PWM信号(x)的占空比随着 信号(a,b)包括用于产生循环比较信号的信号发生器(16),特别是基本上梯形信号(d),其频率与PWM频率相同,并且其形状取决于 两个信号(a,b)和用于将两个信号(a,b)中的另一个(b)与比较信号(d)进行比较的比较器(18),并用于在 比较器。
    • 9. 发明授权
    • Method and device for controlling a capacitive load
    • 用于控制容性负载的方法和装置
    • US07825637B2
    • 2010-11-02
    • US11793991
    • 2005-11-11
    • Christian AugeskyMartin Götzenberger
    • Christian AugeskyMartin Götzenberger
    • H02J7/00
    • F02D41/2096F02D2041/2024H02N2/067
    • A capacitive load is controlled by charging and respectively discharging by way of a load current, which is allowed to oscillate between a maximum default and a minimum default. The maximum default increases monotonously in a first step, remains essentially constant in a second step, and decreases monotonously in a third step during a charging process. The minimum default decreases monotonously in a first step, remains essentially constant in a second step, and increases monotonously in a third step during a discharging process. A variable temporal overlap of the third step of the charging process and the first step of the subsequent discharging process is provided to set a required degree of charging. This results in a high level of resolution and reproducibility of the control.
    • 容性负载通过充电控制,并通过允许在最大默认值和最小默认值之间振荡的负载电流分别放电。 最大默认值在第一步骤中单调增加,在第二步中保持基本恒定,并且在充电过程中在第三步骤中单调减少。 最小默认值在第一步骤中单调减少,在第二步骤中基本保持不变,并且在放电过程中在第三步骤中单调增加。 提供充电过程的第三步骤和随后的放电过程的第一步骤的可变时间重叠以设定所需的充电程度。 这导致控制的高水平的分辨率和再现性。
    • 10. 发明申请
    • Onboard Power Supply and Method for Operating an Onboard Power Supply
    • 车载电源和操作车载电源的方法
    • US20100244556A1
    • 2010-09-30
    • US12681644
    • 2008-09-19
    • Stephan BolzCarsten GötteMartin Götzenberger
    • Stephan BolzCarsten GötteMartin Götzenberger
    • B60L1/00
    • H02J7/14H02J1/00
    • An onboard power supply, contains a starter power supply having a high-power load, particularly a starter and a first energy storage, particularly a double-layer capacitor. The onboard power supply further has an intermediate power supply with a second energy storage, particularly a rechargeable lithium polymer battery and a load power supply with at least one electric load. The starter power supply is electrically coupled to the intermediate power supply via a first voltage converter. The intermediate power supply is electrically coupled to the load power supply via a second voltage converter, and the onboard power supply has a controller, which controls or regulates the electric voltage in the intermediate power supply in dependence on a parameter of the second energy storage.
    • 车载电源包含具有高功率负载的起动器电源,特别是启动器和第一能量存储器,特别是双层电容器。 车载电源还具有具有第二能量存储器的中间电源,特别是可充电锂聚合物电池和具有至少一个电负载的负载电源。 启动器电源经由第一电压转换器电耦合到中间电源。 中间电源通过第二电压转换器电耦合到负载电源,并且车载电源具有控制器,该控制器根据第二能量存储器的参数来控制或调节中间电源中的电压。