会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明授权
    • Magnetic bearing control device having a three-phase converter, and use of a three-phase converter for controlling a magnetic bearing
    • 具有三相转换器的磁性轴承控制装置,以及使用三相转换器来控制磁性轴承
    • US08294314B2
    • 2012-10-23
    • US12665506
    • 2007-10-02
    • Joachim DenkHans-Georg KöpkenDietmar StoiberBernd Wedel
    • Joachim DenkHans-Georg KöpkenDietmar StoiberBernd Wedel
    • H02K7/09
    • F16C32/0457
    • The invention relates to a magnetic bearing control device and the use of a three-phase converter for controlling a magnetic bearing. According to the invention, a three-phase converter (70) is used for controlling a magnetic bearing (10, 66, 68), all three phase currents (40, 42, 44) of the converter (70) being used for controlling the magnetic bearing (10, 66, 68). A first solenoid of a couple of solenoids (10) of the magnetic bearing (10, 66, 68) is connected to a first (U) and a third (W) phase current output of the converter (70) while a second solenoid of the couple of solenoids (10) is connected to the first (U) and a second (V) phase current output of the converter such that the couple of solenoids (10) can be differently controlled by means of said one converter (70). The converter (70) can also be connected to magnetic bearings that already have a bias winding, which is advantageous for retrofitting such existing magnetic bearings, for example.
    • 本发明涉及磁轴承控制装置和三相转换器用于控制磁轴承的用途。 根据本发明,三相转换器(70)用于控制磁轴承(10,66,68),转换器(70)的所有三相电流(40,42,44)用于控制 磁性轴承(10,66,68)。 磁性轴承(10,66,68)的一对螺线管(10)的第一螺线管连接到转换器(70)的第一(U)和第三(W)相电流输出端,而第二螺线管 螺线管(10)的一对连接到转换器的第一(U)和第二(V)相电流输出,使得可以通过所述一个转换器(70)不同地控制螺线管(10)的对。 转换器(70)也可以连接到已经具有偏置绕组的磁性轴承,这对于改进现有的磁性轴承是有利的。
    • 2. 发明申请
    • MAGNETIC BEARING CONTROL DEVICE HAVING A THREE-PHASE CONVERTER, AND USE OF A THREE-PHASE CONVERTER FOR CONTROLLING A MAGNETIC BEARING
    • 具有三相转换器的磁性轴承控制装置,以及用于控制磁力轴承的三相转换器的使用
    • US20100181855A1
    • 2010-07-22
    • US12665506
    • 2007-10-02
    • Joachim DenkHans-Georg KöpkenDietmar StoiberBernd Wedel
    • Joachim DenkHans-Georg KöpkenDietmar StoiberBernd Wedel
    • H02K7/09
    • F16C32/0457
    • The invention relates to a magnetic bearing control device and the use of a three-phase converter for controlling a magnetic bearing. According to the invention, a three-phase converter (70) is used for controlling a magnetic bearing (10, 66, 68), all three phase currents (40, 42, 44) of the converter (70) being used for controlling the magnetic bearing (10, 66, 68). A first solenoid of a couple of solenoids (10) of the magnetic bearing (10, 66, 68) is connected to a first (U) and a third (W) phase current output of the converter (70) while a second solenoid of the couple of solenoids (10) is connected to the first (U) and a second (V) phase current output of the converter such that the couple of solenoids (10) can be differently controlled by means of said one converter (70). The converter (70) can also be connected to magnetic bearings that already have a bias winding, which is advantageous for retrofitting such existing magnetic bearings, for example.
    • 本发明涉及磁轴承控制装置和三相转换器用于控制磁轴承的用途。 根据本发明,三相转换器(70)用于控制磁轴承(10,66,68),转换器(70)的所有三相电流(40,42,44)用于控制 磁性轴承(10,66,68)。 磁性轴承(10,66,68)的一对螺线管(10)的第一螺线管连接到转换器(70)的第一(U)和第三(W)相电流输出端,而第二螺线管 螺线管(10)的一对连接到转换器的第一(U)和第二(V)相电流输出,使得可以通过所述一个转换器(70)不同地控制螺线管(10)的对。 转换器(70)也可以连接到已经具有偏置绕组的磁性轴承,这对于改进现有的磁性轴承是有利的。
    • 7. 发明授权
    • Drive system
    • 驱动系统
    • US07800334B2
    • 2010-09-21
    • US11569375
    • 2005-05-18
    • Jens HamannUwe LadraDietmar StoiberBernd Wedel
    • Jens HamannUwe LadraDietmar StoiberBernd Wedel
    • G05B1/06
    • H02P27/00F16C32/0457F16C32/0493F16C2380/26Y10T409/306664
    • The invention relates to a drive system comprising a control unit (1), which is connected to drive units (3a, 3b, 3c, 3d, 3e, 3f, 3g) via a data bus (2) for the exchange of data. According to the invention, one drive unit (3a, 3b) is connected to the drive motor (7a, 7b) in order to control the latter (7a, 7b) and an additional drive unit (3c, 3d, 3e, 3f, 3g) is connected to a magnetic bearing (11c, 11d, 11e, 11f, 11g) of a magnetic spindle bearing arrangement (23) in order to control said bearing (11c, 11d, 11e, 11f, 11g). The invention thus provides a drive system, in which a magnetic spindle bearing arrangement (23) is integrated.
    • 本发明涉及一种包括控制单元(1)的驱动系统,控制单元(1)经由用于交换数据的数据总线(2)连接到驱动单元(3a,3b,3c,3d,3e,3f,3g)。 根据本发明,为了控制驱动马达(7a,7b)和驱动马达(7a,7b),驱动单元(3a,3b)和驱动马达(7a,7b) )连接到磁性主轴轴承装置(23)的磁性轴承(11c,11d,11e,11f,11g),以便控制所述轴承(11c,11d,11e,11f,11g)。 因此,本发明提供了一种驱动系统,其中磁主轴轴承装置(23)被集成。
    • 10. 发明申请
    • PIEZOELECTRIC ACTUATOR
    • 压电致动器
    • US20090309454A1
    • 2009-12-17
    • US12307328
    • 2007-04-13
    • Uwe LadraElmar SchäfersDietmar StoiberBernd Wedel
    • Uwe LadraElmar SchäfersDietmar StoiberBernd Wedel
    • H02N2/06
    • H02N2/0075
    • A piezo actuator includes an adaptation element, which is configured to adapt the piezo actuator to a controller for inductive loads, particularly to a converter for actuating inductive loads. The adaptation element allows use of controllers or converters of numerical control systems, which normally are used for actuating servo motors. Therefore it is no longer necessary to provide specially designed hardware for the actuation of piezo actuators, but instead the above-mentioned controllers can be used. Furthermore, as a result of the adaptation element, the piezo actuators can be integrated in the bus of the numerical control system. This allows communication in real time via the NC bus.
    • 压电致动器包括适配元件,该适配元件被配置为使压电致动器适应感应负载的控制器,特别是用于致动感应负载的转换器。 适应元件允许使用通常用于启动伺服电机的数控系统的控制器或转换器。 因此,不再需要提供用于致动压电致动器的专门设计的硬件,而是可以使用上述控制器。 此外,由于适应元件的结果,压电致动器可以集成在数控系统的总线中。 这允许通过NC总线实时通信。