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    • 2. 发明授权
    • Integrated triaxial magnetometer of semiconductor material manufactured in MEMS technology
    • 用MEMS技术制造的半导体材料的集成三轴磁力计
    • US08760156B2
    • 2014-06-24
    • US13905006
    • 2013-05-29
    • STMicroelectronics S.r.l.
    • Lorenzo BaldoFrancesco ProcopioSarah Zerbini
    • G01R33/02
    • G01R33/0286G01R33/0005G01R33/028G01R33/038
    • Two suspended masses are configured so as to be flowed by respective currents flowing in the magnetometer plane in mutually transversal directions and are capacitively coupled to lower electrodes. Mobile sensing electrodes are carried by the first suspended mass and are capacitively coupled to respective fixed sensing electrodes. The first suspended mass is configured so as to be mobile in a direction transversal to the plane in presence of a magnetic field having a component in a first horizontal direction. The second suspended mass is configured so as to be mobile in a direction transversal to the plane in presence of a magnetic field having a component in a second horizontal direction, and the first suspended mass is configured so as to be mobile in a direction parallel to the plane and transversal to the current flowing in the first suspended mass in presence of a magnetic field having a component in a vertical direction.
    • 两个悬挂质量被配置为使得在相互横向上在磁力计平面中流动的相应电流流动,并且电容耦合到下电极。 移动感测电极由第一悬浮质量携带并且电容耦合到相应的固定感测电极。 第一悬挂质量被配置为在存在具有在第一水平方向上的分量的磁场的情况下在横向于平面的方向上是可移动的。 第二悬挂质量被配置为在存在具有在第二水平方向上的分量的磁场的情况下在横向于平面的方向上是可移动的,并且第一悬挂质量被配置为在平行于 并且在存在具有在垂直方向上的分量的磁场的情况下横向于在第一悬浮质量块中流动的电流。
    • 4. 发明授权
    • Integrated multilayer magnetoresistive sensor and manufacturing method thereof
    • 集成多层磁阻传感器及其制造方法
    • US09423474B2
    • 2016-08-23
    • US13929635
    • 2013-06-27
    • STMicroelectronics S.r.l.
    • Dario PaciSarah ZerbiniBenedetto Vigna
    • G01R33/09G01R33/00G01R33/02
    • G01R33/096G01R33/0017G01R33/0052G01R33/0206
    • A magnetic-field sensor includes: a chip including a substrate having a first surface and an insulating layer covering the first surface; first and second magnetoresistors each extending into the insulating layer and having a main axis of magnetization and a secondary axis of magnetization; a first magnetic-field generator configured to generate a first magnetic field having field lines along the main axis of magnetization of the first magnetoresistor; a second magnetic-field generator configured to generate a second magnetic field having field lines along the main axis of magnetization of the second magnetoresistor. The main axes of magnetization extending transversely to each other and the secondary axes of magnetization extending transversely to each other. The first and second magnetoresistors extend into the insulating layer at a first distance and a second distance, respectively, that differ from one another, from the first surface.
    • 磁场传感器包括:芯片,其包括具有覆盖第一表面的第一表面和绝缘层的基板; 第一和第二磁阻器各自延伸到绝缘层中并且具有主轴的磁化和次级磁化轴; 第一磁场发生器,被配置为产生具有沿着所述第一磁电阻的主磁化轴的场线的第一磁场; 第二磁场发生器被配置为产生具有沿着第二磁阻的主磁化轴的场线的第二磁场。 磁化的主轴线彼此横向延伸,磁化的副轴相互横向延伸。 第一和第二磁阻器分别从第一表面延伸到彼此不同的第一距离和第二距离处的绝缘层。
    • 5. 发明申请
    • INTEGRATED MULTILAYER MAGNETORESISTIVE SENSOR AND MANUFACTURING METHOD THEREOF
    • 集成多层磁阻传感器及其制造方法
    • US20160154067A1
    • 2016-06-02
    • US15013562
    • 2016-02-02
    • STMicroelectronics S.r.l.
    • Dario PaciSarah ZerbiniBenedetto Vigna
    • G01R33/00G01R33/09
    • G01R33/096G01R33/0017G01R33/0052G01R33/0206G01R33/09Y10T29/49034Y10T29/49043Y10T29/49044
    • A magnetic-field sensor includes: a chip including a substrate having a first surface and an insulating layer covering the first surface; first and second magnetoresistors each extending into the insulating layer and having a main axis of magnetization and a secondary axis of magnetization; a first magnetic-field generator configured to generate a first magnetic field having field lines along the main axis of magnetization of the first magnetoresistor; a second magnetic-field generator configured to generate a second magnetic field having field lines along the main axis of magnetization of the second magnetoresistor. The main axes of magnetization extending transversely to each other and the secondary axes of magnetization extending transversely to each other. The first and second magnetoresistors extend into the insulating layer at a first distance and a second distance, respectively, that differ from one another, from the first surface.
    • 磁场传感器包括:芯片,其包括具有覆盖第一表面的第一表面和绝缘层的基板; 第一和第二磁阻器各自延伸到绝缘层中并且具有主轴的磁化和次级磁化轴; 第一磁场发生器,被配置为产生具有沿着所述第一磁电阻的主磁化轴的场线的第一磁场; 第二磁场发生器被配置为产生具有沿着第二磁阻的主磁化轴的场线的第二磁场。 磁化的主轴线彼此横向延伸,磁化的副轴相互横向延伸。 第一和第二磁阻器分别从第一表面延伸到彼此不同的第一距离和第二距离处的绝缘层。
    • 8. 再颁专利
    • Microelectromechanical sensor with improved mechanical decoupling of sensing and driving modes
    • 微机电传感器具有改进的感测和驱动模式的机械去耦
    • USRE45855E1
    • 2016-01-19
    • US14062671
    • 2013-10-24
    • STMicroelectronics S.r.l.
    • Luca CoronatoAlessandro Balzelli LudovicoSarah Zerbini
    • G01C19/56G01C19/5712
    • G01C19/5712G01P15/125G01P15/14G01P15/18G01P2015/0828
    • A driving mass of an integrated microelectromechanical structure is moved with a rotary motion about an axis of rotation, and a sensing mass is connected to the driving mass via elastic supporting elements so as to perform a detection movement in the presence of an external stress. The driving mass is anchored to a first anchorage arranged along the axis of rotation by first elastic anchorage elements. The driving mass is also coupled to a pair of further anchorages positioned externally thereof and coupled to opposite sides with respect to the first anchorage by further elastic anchorage elements; the elastic supporting elements and the first and further elastic anchorage elements render the driving mass fixed to the first sensing mass in the rotary motion, and substantially decoupled from the sensing mass in the detection movement, the detection movement being a rotation about an axis lying in a plane.
    • 集成微电子机械结构的驱动质量以围绕旋转轴线的旋转运动移动,并且感测质量块经由弹性支撑元件连接到驱动质量块,以便在存在外部应力的情况下执行检测运动。 驱动质量块被锚固到通过第一弹性锚固元件沿着旋转轴线布置的第一锚固件。 驱动质量体还连接到位于其外部的一对另外的锚固件,并且通过另外的弹性锚定元件相对于第一锚固件相对于相对侧联接; 弹性支撑元件和第一和另外的弹性锚固元件使得驱动质量在旋转运动中固定到第一感测块,并且在检测运动中基本上与感测质量分离,检测运动是围绕位于 一架飞机。