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    • 12. 发明授权
    • Imaging unit and imaging device
    • 成像单元和成像设备
    • US08717486B2
    • 2014-05-06
    • US13121816
    • 2009-09-24
    • Akira KosakaYasutaka TanimuraTakashi MatsuoNatsuki Yamamoto
    • Akira KosakaYasutaka TanimuraTakashi MatsuoNatsuki Yamamoto
    • H04N5/225H01L23/12
    • H04N5/2254G02B7/02G02B13/004G02B13/006G03B3/10H01L27/14618H01L27/14625H01L2924/0002H04N5/2251H01L2924/00
    • A technique of enabling both of higher functionality and higher accuracy in a compact optical system is provided. To achieve this object, an imaging unit has a laminated structure formed by laminating a plurality of layers including: an image capturing element layer including an image capturing element part; a lens layer capable of changing a distance from the image capturing element layer; and an actuator layer including a movable part for moving the lens layer; and a signal transmitter disposed so as to connect the actuator layer and the image capturing element layer, and transmitting a drive signal for driving the movable part from the image capturing element layer side to the actuator layer, and the movable part is deformed according to the drive signal transmitted through the signal transmitter, and the actuator layer is provided between the image capturing element layer and the lens layer.
    • 提供了一种在紧凑型光学系统中实现更高功能和更高精度的技术。 为了实现该目的,成像单元具有通过层叠多个层而形成的层叠结构,包括:包括图像捕获元件部分的图像捕获元件层; 能够改变与摄像元件层的距离的透镜层; 以及致动器层,其包括用于移动透镜层的可移动部分; 以及信号发送器,其设置成连接致动器层和摄像元件层,并且将用于将可移动部件驱动的驱动信号从摄像元件层侧传递到致动器层,并且可动部分根据 驱动信号通过信号发送器传输,并且致动器层设置在图像捕获元件层和透镜层之间。
    • 13. 发明授权
    • Lens driving device and camera unit
    • 镜头驱动装置和相机单元
    • US08379334B2
    • 2013-02-19
    • US12999506
    • 2009-06-05
    • Takashi MatsuoAkira KosakaYasutaka TanimuraNatsuki Yamamoto
    • Takashi MatsuoAkira KosakaYasutaka TanimuraNatsuki Yamamoto
    • G02B7/02
    • G02B7/08
    • A biasing spring is interposed between a coupling plate and a covering section while being compressed from its natural length. The biasing spring biases, by its resilient force, a lens unit toward a −Z side to bring a surface of the lens unit at the −Z side into contact with an abutment portion of a fixing frame section. When a temperature of an actuator is equal to or lower than a predetermined temperature, a biasing force of the biasing spring surpasses a force generated in the actuator, and thus the lens unit is not moved. When the actuator is heated up to a temperature equal to or higher than the predetermined temperature, the lens unit is continuously moved in the +Z direction. Thereby, movement of a lens due to a change of an environmental temperature can be prevented.
    • 偏置弹簧被插入耦合板和覆盖部分之间,同时从其自然长度被压缩。 偏置弹簧通过其弹性力将透镜单元朝向-Z侧偏压以使透镜单元的表面在-Z侧与固定框架部分的抵接部分接触。 当致动器的温度等于或低于预定温度时,偏置弹簧的偏压力超过致动器中产生的力,因此透镜单元不移动。 当致动器被加热到​​等于或高于预定温度的温度时,透镜单元在+ Z方向上连续移动。 由此,能够防止由于环境温度的变化引起的透镜的移动。
    • 14. 发明授权
    • Image capturing device
    • 图像捕捉设备
    • US08345111B2
    • 2013-01-01
    • US12718135
    • 2010-03-05
    • Akira KosakaJunichi Tanii
    • Akira KosakaJunichi Tanii
    • H04N5/228
    • G03B17/17G03B2205/0038G03B2217/005H04N5/2253H04N5/23248H04N5/23287
    • An image capturing device, including an rectangular image capturing element having long sides and short sides; an image capturing optical system forming an image of a subject on the rectangular image capturing element; a first driving device which moves the rectangular image capturing element in a first direction slanted by a predetermined angle from the long side and the short side of an outer shape of the rectangular image capturing element in a plane perpendicular to an optical axis of the image capturing optical system; and a second driving device which moves the rectangular image capturing element in a second direction slanted by a predetermine angle from the long side and the short side of the outer shape of the rectangular image capturing element in the plane perpendicular to the optical axis of the image capturing optical system, but the second direction differs from the first direction.
    • 一种图像捕获装置,包括具有长边和短边的矩形图像捕获元件; 在矩形图像拍摄元件上形成被摄体的图像的图像拍摄光学系统; 第一驱动装置,其使矩形图像拍摄元件沿垂直于图像拍摄的光轴的平面从矩形图像捕获元件的外形的长边和短边倾斜预定角度的第一方向移动 光学系统; 以及第二驱动装置,其在与图像的光轴垂直的平面中从矩形图像捕获元件的外形的长边和短边沿预定角度倾斜的第二方向移动矩形图像捕获元件 但是第二方向与第一方向不同。
    • 17. 发明授权
    • Motor, motor device, and lens drive mechanism using the same
    • 电动机,电动机装置和使用其的透镜驱动机构
    • US07703281B2
    • 2010-04-27
    • US11415741
    • 2006-05-02
    • Akira KosakaJunichi TaniiYoshie ShimizuShigeru Wada
    • Akira KosakaJunichi TaniiYoshie ShimizuShigeru Wada
    • F01B29/10
    • G02B7/102
    • An arrangement of the invention includes a base block 16, a cylindrical cam 14, as a rotary member, which is rotatably supported on the base block 16, and includes a contact portion on an outer periphery thereof for outputting a rotating force, a drive gear 21, as an oscillatory ring, which includes a contact portion on an inner periphery thereof, and is oscillated on a plane perpendicular to a rotation axis of the cylindrical cam 14 in contact with the contact portion of the cylindrical cam 14, parallel springs 23 through 26, as a position retainer, for retaining the position of the drive gear 21, and three or more shape metal alloy actuators (SMA) wires 35 through 38, as expandable and contractible actuators, with both ends of the each SMA wire being fixed to the base block 16 for contact with the drive gear 21.
    • 本发明的装置包括基座块16,作为旋转构件的圆柱形凸轮14,其被可旋转地支撑在基座16上,并且在其外周上包括用于输出旋转力的接触部分,驱动齿轮 如图21所示,作为振荡环,其包括在其内周上的接触部分,并且在与圆柱形凸轮14的接触部分接触的圆柱形凸轮14的旋转轴线垂直的平面上摆动,平行弹簧23通过 如图26所示,作为用于保持驱动齿轮21的位置的位置保持器,以及用于将每个SMA线的两端固定为可伸缩的致动器的三个或更多个形状的金属合金致动器(SMA)线35至38, 用于与驱动齿轮21接触的基座16。