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    • 2. 发明授权
    • Piezoelectric actuator
    • 压电执行器
    • US08040017B2
    • 2011-10-18
    • US12307328
    • 2007-04-13
    • Uwe LadraElmar SchäfersDietmar StoiberBernd Wedel
    • Uwe LadraElmar SchäfersDietmar StoiberBernd Wedel
    • H01L41/09
    • 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。
    • 3. 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。
    • 7. 发明授权
    • Control method for guided movement of an X-ray examination system
    • X射线检查系统引导运动的控制方法
    • US07874727B2
    • 2011-01-25
    • US11918691
    • 2006-04-18
    • Gerhard ForsterJens HamannUwe LadraClaus-Günter SchliermannElmar Schäfers
    • Gerhard ForsterJens HamannUwe LadraClaus-Günter SchliermannElmar Schäfers
    • H05G1/02
    • E06B9/264
    • According to the invention, an X-ray examination may be simply and rapidly carried out and hence produce a sharp X-ray image with an X-ray source and/or X-ray receiver an X-ray examination system which may be displaced relative to the mounting position thereof by means of an actuator, despite a system construction which may be caused to oscillate at a resonant frequency dependent on the corresponding mounting position, about the mounting position, whereby according to the inventive method, at least one parameter relevant to the resonant frequency, dependent on the corresponding mounting position, is determined, a set guided movement, counteracting the cause of oscillation in order to achieve a movement condition for the X-ray source or X-ray receiver necessary for the X-ray examination, is determined depending on the at least one corresponding parameter and the guided movement of the X-ray source and/or X-ray receiver controlled using the actuator according to the set guided movement.
    • 根据本发明,X射线检查可以简单且快速地进行,因此可以用X射线源和/或X射线接收器产生尖锐的X射线图像,X射线检查系统可以相对位移 尽管根据本发明的方法,尽管系统结构可以根据相应的安装位置而以谐振频率摆动,但是根据本发明的方法,至少有一个与 确定依赖于相应的安装位置的谐振频率,设定导向运动,抵消振荡的原因,以实现X射线检查所需的X射线源或X射线接收器的运动状态, 根据所设定的引导运动,根据至少一个对应的参数和使用致动器控制的X射线源和/或X射线接收器的引导移动来确定。
    • 9. 发明授权
    • Control method for jerk-limited speed control of a movable machine element of a numerically controlled industrial processing machine
    • 数控工业加工机的可移动机械元件的加速度限制速度控制的控制方法
    • US07208901B2
    • 2007-04-24
    • US10816788
    • 2004-04-02
    • Uwe LadraElmar Schäfers
    • Uwe LadraElmar Schäfers
    • G05B19/416G05B7/02
    • G05B19/416G05B2219/41232G05B2219/43065G05B2219/43178
    • A control method for controlling a speed of a movable machine element of a numerically controlled industrial processing machine with jerk limitation is described. The processing machine can be, for example, a machine tool, a production machine and/or a robot. A travel path of the movable machine element is first decomposed into a plurality of sequentially arranged, interpolatable travel sections. Jerk profiles are then determined for the interpolatable travel sections, which are modified with a parameter-dependent shape function. The modified jerk profiles provide a filter action that can be represented by bandpass filters having blocking frequencies. The blocking frequencies of the bandpass filters are selected so as to substantially correspond to characteristic frequencies of the machine element. The control method significantly improves the machine dynamics without sacrificing accuracy.
    • 描述用于控制具有加加速度限制的数控工业加工机的可移动机器元件的速度的控制方法。 处理机可以是例如机床,生产机器和/或机器人。 可移动机构元件的行进路径首先被分解为多个顺序排列的可内插行进部分。 然后确定用于可插入行程部分的挤​​压轮廓,其可以用参数相关的形状函数进行修改。 改进的冲击曲线提供可以由具有阻挡频率的带通滤波器表示的滤波器动作。 选择带通滤波器的阻塞频率,以便基本上对应于机器元件的特征频率。 控制方法显着提高机器动态性能,不会牺牲精度。