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    • 1. 发明申请
    • OBJECT LENS DRIVE UNIT AND OPTICAL PICKUP USING THE SAME
    • 对象镜头驱动单元和使用相同的光学拾取单元
    • US20120314313A1
    • 2012-12-13
    • US13430816
    • 2012-03-27
    • Atsushi KAZAMAKatsuhiko KIMURATakahiro YAMAGUCHISouichirou YAMADA
    • Atsushi KAZAMAKatsuhiko KIMURATakahiro YAMAGUCHISouichirou YAMADA
    • G02B7/04
    • G11B7/0932
    • In the object lens drive unit including a lens holder with an object lens attached to, a plurality of driving coils attached to the lens holder, connection substrates attached to both sides of the lens holder, and a plurality of suspension wires with end parts thereof connected to the connection substrates for operatively supporting the lens holder, a plurality of sets of wire connection electrodes for connecting the suspension wires and coil connection electrodes electrically connected to the wire connection electrodes for connecting terminal wires of the coils are arranged in line in an optic axis direction of the object lens and the wire connection electrodes and the coil connection electrodes are formed in a symmetric shape to a central axis parallel to the optic axis direction on the connection substrates.
    • 在包括安装有物镜的透镜保持器的物镜驱动单元中,安装在透镜保持器上的多个驱动线圈,连接到透镜保持器两侧的连接基板和多个悬挂线,其端部连接 到用于可操作地支撑透镜保持器的连接基板,用于连接悬挂线的多组线连接电极和电连接到用于连接线圈的端子线的线连接电极的线圈连接电极在光轴 物镜和线连接电极和线圈连接电极的方向形成为与连接基板上的光轴方向平行的中心轴对称的形状。
    • 3. 发明申请
    • ACCELERATION SENSOR ELEMENT AND ACCELERATION SENSOR HAVING SAME
    • 加速传感器元件和加速传感器
    • US20100300205A1
    • 2010-12-02
    • US12790136
    • 2010-05-28
    • Atsushi KAZAMAMasakatsu SaitohRyoji OkadaYasuhiro Hamaguchi
    • Atsushi KAZAMAMasakatsu SaitohRyoji OkadaYasuhiro Hamaguchi
    • G01P15/12
    • G01P15/0802G01P1/023G01P15/123G01P15/18
    • A covered acceleration sensor element includes a weight portion, a support frame portion surrounding the weight portion, a plurality of flexible beam portions for connecting the weight portion to the support frame portion to support the weight portion, piezoresistance elements provided on the beam portions, and wirings for connecting them. An upper cover and a lower cover enclosing the periphery of the weight portion together with the support frame portion are joined to the face and back of the support frame portion. Acceleration in the directions of three axes, i.e., a first axis in the joining thickness direction, a second axis in a plane perpendicular to the first axis, and a third axis in the plane and perpendicular to the second axis, or acceleration in the direction of any of the axes, is detected from changes in the resistances of the piezoresistance elements. The support frame portion is separated by separation grooves into an inner frame and an outer frame. The upper cover and the lower cover are joined to the outer frame. The inner frame is connected to the outer frame by a plurality of inner frame support portions having flexibility. The beam portions are connected to both sides of the weight portion along the second axis and the third axis. The inner frame support portions are connected to both sides of the inner frame in a direction in which they are rotated nearly 45 degrees from the second axis and the third axis.
    • 覆盖的加速度传感器元件包括重量部分,围绕重物部分的支撑框架部分,用于将重量部分连接到支撑框架部分以支撑重物部分的多个柔性梁部分,设置在梁部分上的压阻元件,以及 用于连接它们的布线。 与支撑框架部分一起包围重物部分的周边的上盖和下盖接合到支撑框架部分的表面和背面。 在三轴方向上的加速度,即接合厚度方向上的第一轴线,垂直于第一轴线的平面中的第二轴线,以及平面中垂直于第二轴线的第三轴线,或者在方向上的加速度 可以从压电元件的电阻的变化来检测。 支撑框架部分由分隔槽分隔成内框架和外框架。 上盖和下盖连接到外框。 内框架通过具有柔性的多个内框架支撑部分连接到外框架。 梁部分沿着第二轴线和第三轴线连接到配重部分的两侧。 内框架支撑部分沿着与第二轴线和第三轴线旋转大约45度的方向连接到内框架的两侧。