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    • 1. 发明申请
    • INERTIAL SENSOR
    • 惯性传感器
    • US20130152683A1
    • 2013-06-20
    • US13438361
    • 2012-04-03
    • Jung Eun NohSeung Heon HanJong Woon KimJun LimSeung Hun HanMin Kyu Choi
    • Jung Eun NohSeung Heon HanJong Woon KimJun LimSeung Hun HanMin Kyu Choi
    • G01P15/08
    • G01P15/105G01V7/04
    • Disclosed herein is an inertial sensor. The inertial sensor includes a sensing unit and a driving-mass-position initialization module. The sensing unit includes a driving mass, a flexible board unit which displaceably supports the driving mass, and a support which supports the flexible board unit to allow the driving mass to move in a suspended state. The flexible board unit has driving electrodes which move the driving mass, and sensing electrodes which sense the movement of the driving mass. The driving-mass-position initialization module includes a position initialization member which reciprocates to initialize the position of the driving mass, and a coil unit which surrounds the position initialization member. An initialization-member-receiving depression is formed in the driving mass. The shape of the initialization-member-receiving depression corresponds to that of the position initialization member.
    • 这里公开了惯性传感器。 惯性传感器包括感测单元和驱动质量位置初始化模块。 感测单元包括驱动质量块,可移动地支撑驱动质量块的柔性板单元,以及支撑柔性板单元以允许驱动质量块在悬挂状态下移动的支撑件。 柔性板单元具有使驱动质量块移动的驱动电极和感测驱动质量块运动的检测电极。 驱动质量位置初始化模块包括位移初始化构件,其往复运动以初始化驱动质量块的位置;以及线圈单元,其围绕位置初始化构件。 在驾驶体中形成初始化构件接收凹部。 初始化构件接受凹部的形状对应于位置初始化构件的形状。
    • 2. 发明授权
    • Inertial sensor
    • 惯性传感器
    • US08978470B2
    • 2015-03-17
    • US13438361
    • 2012-04-03
    • Jung Eun NohSeung Heon HanJong Woon KimJun LimSeung Hun HanMin Kyu Choi
    • Jung Eun NohSeung Heon HanJong Woon KimJun LimSeung Hun HanMin Kyu Choi
    • G01P15/08G01P15/105G01V7/04
    • G01P15/105G01V7/04
    • Disclosed herein is an inertial sensor. The inertial sensor includes a sensing unit and a driving-mass-position initialization module. The sensing unit includes a driving mass, a flexible board unit which displaceably supports the driving mass, and a support which supports the flexible board unit to allow the driving mass to move in a suspended state. The flexible board unit has driving electrodes which move the driving mass, and sensing electrodes which sense the movement of the driving mass. The driving-mass-position initialization module includes a position initialization member which reciprocates to initialize the position of the driving mass, and a coil unit which surrounds the position initialization member. An initialization-member-receiving depression is formed in the driving mass. The shape of the initialization-member-receiving depression corresponds to that of the position initialization member.
    • 这里公开了惯性传感器。 惯性传感器包括感测单元和驱动质量位置初始化模块。 感测单元包括驱动质量块,可移动地支撑驱动质量块的柔性板单元,以及支撑柔性板单元以允许驱动质量块在悬挂状态下移动的支撑件。 柔性板单元具有使驱动质量块移动的驱动电极和感测驱动质量块运动的检测电极。 驱动质量位置初始化模块包括位移初始化构件,其往复运动以初始化驱动质量块的位置;以及线圈单元,其围绕位置初始化构件。 在驾驶体中形成初始化构件接收凹部。 初始化构件接受凹部的形状对应于位置初始化构件的形状。
    • 3. 发明申请
    • Swing motor
    • 摆动电机
    • US20050168092A1
    • 2005-08-04
    • US10978724
    • 2004-11-02
    • Jun LimYo LeeSang KimMyung YooYong Choi
    • Jun LimYo LeeSang KimMyung YooYong Choi
    • H02K33/02H02K33/12H02K21/12
    • H02K33/12H02K33/02
    • A swing motor having an opening formed asymmetrically inside a stator. The swing motor is formed with an asymmetrical opening, in particular in a semicircular shape inside the stator. The opening is provided with a plurality of salient poles wound with coils. Electric current alternately flows through the coils so that a rotor, installed in the stator in a state of being spaced apart from the stator, can reciprocally move. Since the height of the stator is reduced by forming the opening asymmetrically in comparison with the case of forming the opening symmetrically, it is advantageous for minimizing the size of the product in which the swing motor is installed.
    • 具有在定子内部不对称地形成的开口的回转马达。 摆动马达形成有非对称的开口,特别是在定子内的半圆形形状。 开口设有多个缠绕有线圈的凸极。 电流交替地流过线圈,使得以与定子间隔开的状态安装在定子中的转子可以往复运动。 由于与对称地形成开口的情况相比,通过不对称地形成开口来减小定子的高度,因此有利于最小化安装摆动马达的产品的尺寸。
    • 5. 发明授权
    • Apparatus for applying multi-axial inertial force
    • 用于施加多轴惯性力的装置
    • US09103682B2
    • 2015-08-11
    • US13309956
    • 2011-12-02
    • Jun Lim
    • Jun Lim
    • G01C25/00G01C21/16G01P21/00B25B5/00B25B1/20
    • G01C25/005B25B1/20B25B5/00G01C21/16G01P21/00
    • Disclosed herein is an apparatus for applying multi-axial inertial force, the apparatus including: a lower support plate; two first support members fixed to stand up from the lower support plate; a second support member positioned to be orthogonal to inner sides of the two first support member in a stand-up direction thereof and rotatably coupled to the first support member; and a third support member stacked on the second support member and coupled to the second support member so as to be rotatable based on a rotational axis corresponding to a stacked direction. Therefore, it is possible to obtain an apparatus for applying multi-axial inertial force in which vibration excitation and rotation may be performed in multiple-axes directions using a uni-axial inertial force generator that may be vibration-excited and rotated only in a single direction.
    • 本文公开了一种用于施加多轴惯性力的装置,该装置包括:下支撑板; 两个第一支撑构件固定成从下支撑板竖起来; 第二支撑构件,其定位成在所述两个第一支撑构件的竖立方向上与所述两个第一支撑构件的内侧正交,并且可旋转地联接到所述第一支撑构件; 以及第三支撑构件,其堆叠在所述第二支撑构件上并且联接到所述第二支撑构件,以便能够基于对应于堆叠方向的旋转轴线旋转。 因此,可以获得用于施加多轴惯性力的装置,其中可以使用单轴惯性力发生器在多轴方向上进行振动激励和旋转,该单轴惯性力发生器可以仅在单个方向上被振动激励和旋转 方向。
    • 7. 发明申请
    • APPARATUS FOR APPLYING MULTI-AXIAL INERTIAL FORCE
    • 适用于多轴惯性力的装置
    • US20120139175A1
    • 2012-06-07
    • US13309956
    • 2011-12-02
    • Jun Lim
    • Jun Lim
    • B25B1/00
    • G01C25/005B25B1/20B25B5/00G01C21/16G01P21/00
    • Disclosed herein is an apparatus for applying multi-axial inertial force, the apparatus including: a lower support plate; two first support members fixed to stand up from the lower support plate; a second support member positioned to be orthogonal to inner sides of the two first support member in a stand-up direction thereof and rotatably coupled to the first support member; and a third support member stacked on the second support member and coupled to the second support member so as to be rotatable based on a rotational axis corresponding to a stacked direction. Therefore, it is possible to obtain an apparatus for applying multi-axial inertial force in which vibration excitation and rotation may be performed in multiple-axes directions using a uni-axial inertial force generator that may be vibration-excited and rotated only in a single direction.
    • 本文公开了一种用于施加多轴惯性力的装置,该装置包括:下支撑板; 两个第一支撑构件固定成从下支撑板竖起来; 第二支撑构件,其定位成在所述两个第一支撑构件的竖立方向上与所述两个第一支撑构件的内侧正交,并且可旋转地联接到所述第一支撑构件; 以及第三支撑构件,其堆叠在所述第二支撑构件上并且联接到所述第二支撑构件,以便能够基于对应于堆叠方向的旋转轴线旋转。 因此,可以获得用于施加多轴惯性力的装置,其中可以使用单轴惯性力发生器在多轴方向上进行振动激励和旋转,该单轴惯性力发生器可以仅在单个方向上被振动激励和旋转 方向。
    • 8. 发明申请
    • INERTIAL SENSOR
    • 惯性传感器
    • US20120227488A1
    • 2012-09-13
    • US13309660
    • 2011-12-02
    • Jun LimYu Heon Yi
    • Jun LimYu Heon Yi
    • G01C19/56
    • G01C19/5712G01P15/0922G01P15/18G01P2015/084
    • Disclosed herein is an inertial sensor including: a driving body displaceably supported on a flexible substrate part in a floating state; a displacement detection unit having a sensing electrode detecting displacement of the driving body; a vibrating part having a vibrating electrode vibrating the driving body; a differential amplifier connected to the sensing electrode and the vibrating electrode, and a circuit unit connected to the differential amplifier to calculate acceleration and angular velocity, wherein the acceleration is calculated by using the sensing electrode and the vibrating electrode.
    • 本文公开了一种惯性传感器,包括:驱动体,其以浮动状态可移动地支撑在柔性基板部分上; 位移检测单元,其具有检测所述驱动体的位移的感测电极; 振动部件,具有使驱动体振动的振动电极; 连接到感测电极和振动电极的差分放大器,以及连接到差分放大器以计算加速度和角速度的电路单元,其中通过使用感测电极和振动电极来计算加速度。