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    • 3. 发明申请
    • COMPACT SWITCHGEAR FOR AN ELECTRICAL CONSUMER
    • COMPACT SWITCHGEAR FOR ELECTRICAL CONSUMER
    • US20110019327A1
    • 2011-01-27
    • US12935089
    • 2009-02-25
    • Josef GrafNorbert MitlmeierLudwig NieblerBernhard Streich
    • Josef GrafNorbert MitlmeierLudwig NieblerBernhard Streich
    • H01H47/00
    • H02P1/02Y10T307/839
    • A switchgear includes a power supply built into a common housing, and at least two drives. The power supply can be fed by an external supply voltage and an external consumer can be connected to the two drives. In at least one embodiment, the switchgear includes, in the same housing, a built-in overload detection for the two drives and/or a built-in circuit breaker function for the two drives, and/or a built-in control circuit for the common control of the two drives. The switchgear can optionally be completed by a transformer providing an additional function of the targeted charging of a buffer capacitor and/or by an energy accumulator providing an additional function of the targeted discharge thereof by temporarily switching on a connected consumer.
    • 开关设备包括内置在公共壳体中的电源,以及至少两个驱动器。 电源可以通过外部电源电压供电,外部消费者可以连接到两个驱动器。 在至少一个实施例中,开关设备在相同的壳体中包括用于两个驱动器的内置过载检测和/或用于两个驱动器的内置断路器功能和/或内置控制电路 两个驱动器的共同控制。 开关设备可以选择性地由变压器完成,该变压器提供缓冲电容器的目标充电的附加功能和/或通过临时接通连接的消费者的能量蓄能器来提供其目标放电的附加功能。
    • 5. 发明授权
    • Compact switchgear for an electrical consumer
    • 紧凑型开关柜用于消费电器
    • US08754597B2
    • 2014-06-17
    • US12935089
    • 2009-02-25
    • Josef GrafNorbert MitlmeierLudwig NieblerBernhard Streich
    • Josef GrafNorbert MitlmeierLudwig NieblerBernhard Streich
    • H01H47/00
    • H02P1/02Y10T307/839
    • A switchgear includes a power supply built into a common housing, and at least two drives. The power supply can be fed by an external supply voltage and an external consumer can be connected to the two drives. In at least one embodiment, the switchgear includes, in the same housing, a built-in overload detection for the two drives and/or a built-in circuit breaker function for the two drives, and/or a built-in control circuit for the common control of the two drives. The switchgear can optionally be completed by a transformer providing an additional function of the targeted charging of a buffer capacitor and/or by an energy accumulator providing an additional function of the targeted discharge thereof by temporarily switching on a connected consumer.
    • 开关设备包括内置在公共壳体中的电源,以及至少两个驱动器。 电源可以通过外部电源电压供电,外部消费者可以连接到两个驱动器。 在至少一个实施例中,开关设备在相同的壳体中包括用于两个驱动器的内置过载检测和/或用于两个驱动器的内置断路器功能和/或内置控制电路 两个驱动器的共同控制。 开关设备可以选择性地由变压器完成,该变压器提供缓冲电容器的目标充电的附加功能和/或通过临时接通连接的消费者的能量蓄能器来提供其目标放电的附加功能。
    • 7. 发明授权
    • Circuit configuration for eliminating EMC interference
    • 消除电磁干扰的电路配置
    • US09083315B2
    • 2015-07-14
    • US12810682
    • 2007-12-28
    • Christian OppermannBernhard Streich
    • Christian OppermannBernhard Streich
    • H03K17/082H03H19/00H02K11/02H05K1/02
    • H03H19/008H02K11/02H05K1/0216
    • A circuit configuration is disclosed for eliminating EMC interference, and a device includes such a circuit configuration, where a damping member is connected to at least one supply line leading to the consumer or consumers. In at least one embodiment optimal elimination of EMC interference of the electrical consumer or consumers is ensured, and overloading the power supply grid is avoided. To this end, in at least one embodiment the damping member is connected in series with a current-limiting element and can be connected to the consumer in parallel. It is thus possible to compensate for the effect of the current-limiting element and short-circuit said element for the operating state by way of a switch, whereby the element does not cause any loss of power outside of the power circuits and nevertheless has a current-limiting, that is, grid-friendly, effect during the power-up and charging process.
    • 公开了用于消除EMC干扰的电路配置,并且设备包括这样的电路配置,其中阻尼构件连接到通向消费者或消费者的至少一个电源线。 在至少一个实施例中,确保了电消费者或消费者的EMC干扰的最佳消除,并且避免了电源网格的过载。 为此,在至少一个实施例中,阻尼构件与限流元件串联连接,并且可以并联连接到消费者。 因此,可以通过开关来补偿限流元件的作用并将所述元件短路到操作状态,由此该元件不会在功率电路外部造成任何功率损耗,并且具有 电流限制,即网格友好,上电和充电过程中的效果。
    • 8. 发明授权
    • Free-wheeling circuit
    • 续流电路
    • US08830649B2
    • 2014-09-09
    • US13498663
    • 2010-08-10
    • Christian OppermannBernhard Streich
    • Christian OppermannBernhard Streich
    • H01H1/00
    • H01F7/1811H01F7/1883
    • A free-wheeling circuit is disclosed for the rapid reduction of a shutdown overvoltage of an inductive load when the latter is shut down. The free-wheeling circuit includes a switching threshold component by which the free-wheeling circuit becomes active more rapidly compared to a free-wheeling circuit without said switching threshold component, thereby ensuring a more rapid reduction of the shutdown overvoltage. If a control voltage provided by a control voltage source falls below a threshold voltage set by the switching threshold component, a capacitive energy accumulator is immediately discharged and not only when the control voltage is reduced to near zero, and the energy accumulator then activates the free-wheeling circuit for reducing the shutdown overvoltage, when in the nearly discharged state.
    • 公开了一种续流电路,用于当电感负载关闭时快速降低感性负载的关断过电压。 续流电路包括切换阈值分量,与没有所述切换阈值分量的续流电路相比,续流电路更快地起作用,从而确保关闭过电压的更快速的降低。 如果由控制电压源提供的控制电压低于由开关阈值分量设定的阈值电压,则电容性蓄能器不仅在控制电压降至接近零时立即放电,并且能量蓄能器然后激活自由 用于减小关断过电压的电机,处于近放电状态。