MICROELECTROMECHANICAL GYROSCOPE WITH OUT-OF-PLANE DETECTION MOVEMENT

    公开(公告)号:US20230228570A1

    公开(公告)日:2023-07-20

    申请号:US18150720

    申请日:2023-01-05

    CPC classification number: G01C19/5712

    Abstract: A microelectromechanical gyroscope is provided with a detection structure having: a substrate with a top surface parallel to a horizontal plane (xy); a mobile mass, suspended above the substrate to perform, as a function of a first angular velocity (Ωx) around a first axis (x) of the horizontal plane (xy), at least a first detection movement of rotation around a second axis (y) of the horizontal plane; and a first and a second stator elements integral with the substrate and arranged underneath the mobile mass to define a capacitive coupling, a capacitance value thereof is indicative of the first angular velocity (Ωx). The detection structure has a single mechanical anchorage structure for anchoring both the mobile mass and the stator elements to the substrate, arranged internally with respect to the mobile mass, which is coupled to this single mechanical anchorage structure by coupling elastic elements yielding to torsion around the second axis; the stator elements are integrally coupled to the single mechanical anchorage structure in an arrangement suspended above the top surface of the substrate.

    MICROELECTROMECHANICAL GYROSCOPE WITH DETECTION OF ANGULAR VELOCITY ALONG A VERTICAL AXIS

    公开(公告)号:US20240142235A1

    公开(公告)日:2024-05-02

    申请号:US18490392

    申请日:2023-10-19

    CPC classification number: G01C19/5762

    Abstract: A microelectromechanical gyroscope with detection along a vertical axis is provided with a detection structure having a movable structure, suspended above a substrate so as to perform, as a function of an angular velocity around the vertical axis a sense movement along a first horizontal axis. The movable structure has at least one drive mass internally defining a window, elastically coupled to a rotor anchor, at an anchoring region, through elastic anchoring elements; at least one bridge element, rigid and of a conductive material, cantilevered suspended and extending within the window along the first horizontal axis, elastically coupled to the drive mass; movable electrodes, carried integrally by the bridge element with extension along a second horizontal axis. The detection structure also has stator electrodes, arranged in the window and interdigitated with the movable electrodes, at a certain separation distance below the bridge element, which extends longitudinally above the same stator electrodes and the movable electrodes.

    MEMS GYROSCOPE WITH ENHANCED ROBUSTNESS AGAINST VIBRATIONS AND REDUCED DIMENSIONS

    公开(公告)号:US20240003685A1

    公开(公告)日:2024-01-04

    申请号:US18339084

    申请日:2023-06-21

    CPC classification number: G01C19/5733 G01C19/5712 G01C19/5769

    Abstract: MEMS gyroscope, having a first movable mass configured to move with respect to a fixed structure along a first drive direction and along a first sense direction, transverse to the first drive direction; a first drive assembly, coupled to the first movable mass and configured to generate a first alternate drive movement; a first drive elastic structure, coupled to the first movable mass and to the first drive assembly, rigid in the first drive direction and compliant in the first sense direction; a second movable mass, configured to move with respect to the fixed structure in a second drive direction parallel to the first drive direction and in a second sense direction parallel to the first sense direction; a second drive assembly, coupled to the second movable mass and configured to generate a second alternate drive movement in the second drive direction; and a second drive elastic structure, coupled to the second movable mass and to the second drive assembly, rigid in the second drive direction and compliant in the second sense direction.

    COMPACT MICROELECTROMECHANICAL ANGULAR RATE SENSOR

    公开(公告)号:US20230322548A1

    公开(公告)日:2023-10-12

    申请号:US18185189

    申请日:2023-03-16

    Abstract: A MEMS angular rate sensor is presented with two pairs of suspended masses that are micromachined on a semiconductor layer. A first pair includes two masses opposite to and in mirror image of each other. The first pair of masses has driving structures to generate a mechanical oscillation in a linear direction. A second pair of masses includes two masses opposite to and in mirror image of each other. The second pair of masses is coupled to the first pair of driving masses with coupling elements. The two pairs of masses are coupled to a central bridge. The central bridge has a differential configuration to reject any external disturbances. Each of the masses of the two pairs of masses includes different portions to detect different linear and angular movements.

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