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    • 1. 发明授权
    • Yaw rate sensor
    • 偏航率传感器
    • US09255801B2
    • 2016-02-09
    • US13922801
    • 2013-06-20
    • Burkhard KuhlmannRolf SchebenDaniel Christoph MeiselBenjamin SchmidtThorsten Balslink
    • Burkhard KuhlmannRolf SchebenDaniel Christoph MeiselBenjamin SchmidtThorsten Balslink
    • G01P3/44G01C19/56G01C19/5747
    • G01C19/56G01C19/5747
    • A yaw rate sensor, including a substrate and a main extension plane, for detecting a yaw rate around a first direction in parallel to the main extension plane, a first Coriolis mass, and a second Coriolis mass, and a drive device configured to drive the first and second Coriolis masses in parallel to a drive direction perpendicular to the first direction, the first and second Coriolis masses, for a yaw rate around the first direction, experiencing a Coriolis acceleration in parallel to a detection direction, which is perpendicular to the drive and first directions, the first and second Coriolis masses having first/second partial areas and third/fourth partial areas, respectively. The first and third partial areas are farther from the axis of symmetry in parallel to the first direction, and the second and fourth partial areas are closer to the axis of symmetry in parallel to the first direction.
    • 包括基板和主延伸平面的横摆角速度传感器,用于检测平行于主延伸平面的第一方向的横摆率,第一科里奥利质量和第二科里奥利质量,驱动装置被配置为驱动 第一和第二科里奥利质量平行于垂直于第一方向的驱动方向,第一和第二科里奥利质量,对于围绕第一方向的横摆率,经历与垂直于驱动器的检测方向平行的科里奥利加速度 和第一方向,分别具有第一/第二部分区域和第三/第四部分区域的第一和第二科里奥利群体。 第一和第三部分区域平行于第一方向距离对称轴更远,并且第二和第四部分区域平行于第一方向更靠近对称轴。
    • 8. 发明授权
    • Yaw-rate sensor
    • 偏光率传感器
    • US08943891B2
    • 2015-02-03
    • US13365740
    • 2012-02-03
    • Torsten OhmsBurkhard KuhlmannRobert SattlerRolf SchebenDaniel Christoph Meisel
    • Torsten OhmsBurkhard KuhlmannRobert SattlerRolf SchebenDaniel Christoph Meisel
    • G01C19/56G01C19/5747
    • G01C19/5747
    • A yaw-rate sensor and a method for operating a yaw-rate sensor having a first Coriolis element and a second Coriolis element are proposed, the yaw-rate sensor having a substrate having a main plane of extension, the yaw-rate sensor having a first drive element for driving the first Coriolis element in parallel to a second axis, the yaw-rate sensor having a second drive element for driving the second Coriolis element in parallel to the second axis, the yaw-rate sensor having detection means for detecting deflections of the first Coriolis element and of the second Coriolis element in parallel to a first axis due to a Coriolis force, the second axis being situated perpendicularly to the first axis, the first and second axis being situated in parallel to the main plane of extension, the first and second drive elements being mechanically coupled to each other via a drive coupling element.
    • 提出了一种摆动速率传感器和用于操作具有第一科里奥利元件和第二科里奥利元件的偏航率传感器的方法,所述偏航速率传感器具有具有主平面延伸的基板,偏航速率传感器具有 用于与第二轴平行地驱动第一科里奥利元件的第一驱动元件,所述偏航速率传感器具有用于平行于所述第二轴驱动所述第二科里奥利元件的第二驱动元件,所述偏航率传感器具有用于检测偏转的检测装置 的第一科里奥利元件和由于科里奥利力而与第一轴平行的第二科里奥利元件,第二轴线垂直于第一轴线定位,第一和第二轴线平行于主平面延伸, 所述第一和第二驱动元件经由驱动联接元件彼此机械耦合。
    • 10. 发明申请
    • rotational rate sensor having preset quadrature offset
    • 旋转速率传感器具有预设的正交偏移
    • US20150052999A1
    • 2015-02-26
    • US14467943
    • 2014-08-25
    • Rolf SchebenChristoph GaugerMarkus Heitz
    • Rolf SchebenChristoph GaugerMarkus Heitz
    • G01C19/5747G01C19/5769
    • G01C19/5747G01C19/5769Y10T29/49
    • A rotational rate sensor includes a substrate and a seismic mass situated thereon, and configured for detecting a rate of rotation about a rotation axis, the seismic mass having a second mass element coupled to a first mass element, which is drivable to a drive movement along a drive direction perpendicular to the rotation axis, the first and second mass element being deflectable along a detection direction essentially perpendicular to the drive direction and to the rotation axis, the rotational rate sensor having at least one compensating arrangement to produce a compensating force acting on the second mass element, the compensating force being oriented in a compensation direction essentially parallel to the detection direction, the at least one compensating arrangement being the only compensating arrangement and being configured exclusively to produce the compensating force oriented in the compensation direction, the rotational rate sensor being configured such that a quadrature offset force acting on the second mass element is directed exclusively in a preferred direction opposite and parallel to the compensation direction.
    • 旋转速率传感器包括基板和位于其上的地震质量块,并且被构造成用于检测围绕旋转轴线的旋转速率,所述地震质量块具有耦合到第一质量元件的第二质量元件,所述第二质量元件可驱动成驱动运动 垂直于旋转轴的驱动方向,第一质量元件和第二质量元件沿着基本上垂直于驱动方向和旋转轴线的检测方向可偏转,所述转速传感器具有至少一个补偿装置,以产生作用于 第二质量元件,补偿力在与检测方向基本平行的补偿方向上定向,所述至少一个补偿装置是唯一的补偿装置,并且被构造成专门产生在补偿方向上定向的补偿力,转速 传感器被配置成使得正交关闭 作用在第二质量元件上的力仅在与补偿方向相反并平行的优选方向上引导。