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    • 2. 发明授权
    • Actuating device, particularly for actuating locking differentials on vehicles
    • 执行装置,特别是用于在车辆上启动锁定差速器
    • US06879072B2
    • 2005-04-12
    • US10318990
    • 2002-12-12
    • Ronald FreyHarald SchmidtJohannes HelmichBirgit ScheyttWerner Baeskow
    • Ronald FreyHarald SchmidtJohannes HelmichBirgit ScheyttWerner Baeskow
    • F16D28/00H02K5/14H02K7/102H02K11/215H02K7/02
    • H02K7/1025H02K5/148H02K11/215
    • An actuating device, specifically for actuating locking differentials on vehicles, having an actuating shaft, a drive unit to drive the actuating shaft, where the drive unit comprises an armature core mounted to the actuating shaft so as not to rotate, and a commutator mounted to the actuating shaft so as not to rotate and/or with an electromagnetic brake unit to slow and/or stop the actuating shaft, where the brake unit includes a brake hub flange mounted on the armature so as not to rotate and having a single- or multi-piece housing tightly enclosing the drive unit and the brake unit, where the free end of the actuating shaft extends from the housing and with a sensor to measure the angle of rotation of the shaft, where the sensor unit includes at least one trigger wheel indirectly coupled to the shaft and at least one sensor scanning the trigger wheel position and coupled indirectly to the housing.
    • 具有致动轴的致动装置,用于致动车辆上的锁定差速器,用于驱动致动轴的驱动单元,其中驱动单元包括安装到致动轴以不旋转的电枢铁芯,以及安装到 致动轴,以便不旋转和/或用电磁制动单元减慢和/或停止致动轴,其中制动单元包括安装在电枢上的制动轮毂凸缘,以便不旋转并具有单个或 多片壳体紧密地包围驱动单元和制动单元,其中致动轴的自由端从壳体延伸并且具有用于测量轴的旋转角度的传感器,其中传感器单元包括至少一个触发轮 间接地联接到轴和至少一个传感器扫描触发器轮位置并间接地耦合到壳体。
    • 6. 发明授权
    • Process for producing an electronic component
    • 电子部件的制造方法
    • US06506328B1
    • 2003-01-14
    • US09392510
    • 1999-09-10
    • Werner Baeskow
    • Werner Baeskow
    • B29C4514
    • H01L43/14Y10T29/49146
    • A process for producing an electronic component, such as a Hall sensor, in which electronic parts are located in a plastic housing. The process includes the steps of locating the electronic parts in a hot-melt adhesive, allowing the hot-melt adhesive to solidify, and finish-extrusion coating the electronic parts in the solidified hot-melt adhesive to form the housing. In an alternative embodiment, the process may also include the step of embedding the electronic parts in the hot-melt adhesive. In yet another embodiment, the process may also include the step of extrusion-coating the electronic parts with the hot-melt adhesive. Materials having substantially similar coefficients of thermal expansion may be used for the hot-melt adhesive used for mounting the electronic parts, and for the finish-extrusion coating that forms the housing to minimize effects of thermal expansion. The process is efficient and cost effective.
    • 一种用于制造诸如霍尔传感器的电子部件的方法,其中电子部件位于塑料外壳中。 该方法包括以下步骤:将电子部件定位在热熔粘合剂中,使热熔粘合剂固化,并将固化的热熔粘合剂中的电子部件进行最终挤出涂布以形成外壳。 在替代实施例中,该方法还可以包括将电子部件嵌入热熔粘合剂中的步骤。 在另一个实施方案中,该方法还可以包括用热熔粘合剂挤出涂覆电子部件的步骤。 具有基本上相似的热膨胀系数的材料可用于用于安装电子部件的热熔粘合剂和用于形成壳体的精加工挤出涂层以最小化热膨胀的影响。 该过程是高效和成本有效的。