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    • 3. 发明授权
    • Lens barrel with four symmetric and parallel contact points
    • 镜筒具有四个对称和平行的接触点
    • US08564892B2
    • 2013-10-22
    • US13225484
    • 2011-09-05
    • Hironori HonshoHideyuki HashiDaisuke Ito
    • Hironori HonshoHideyuki HashiDaisuke Ito
    • G02B7/02
    • G03B17/14G02B7/08G03B17/04
    • A lens barrel includes a lens frame, a guide shaft, a lead screw, a nut, and a biasing spring. The guide shaft is inserted into the lens frame. The nut is threaded onto the lead screw. The biasing member biases the lens frame toward the nut. The lens frame includes a first bearing component having a first insertion hole and a second bearing component having a second insertion hole. The guide shaft hits an inner peripheral face of the first insertion hole at a first and second contact point, and hits an inner peripheral face of the second insertion hole at a third and fourth contact point. The first and second contact points are disposed on opposing side of the third and fourth contact points using as a reference a parallel plane which extends along the direction of an optical axis and passes through a guide axis.
    • 透镜镜筒包括透镜框架,导向轴,导螺杆,螺母和偏置弹簧。 引导轴插入到镜架中。 螺母拧到导螺杆上。 偏置构件将透镜框朝向螺母偏压。 透镜框架包括具有第一插入孔的第一轴承部件和具有第二插入孔的第二轴承部件。 引导轴在第一和第二接触点处碰到第一插入孔的内周面,并且在第三和第四接触点处撞击第二插入孔的内周面。 第一和第二接触点以第三和第四接触点的相对侧为基准,沿着光轴方向延伸并穿过引导轴线的平行平面。
    • 5. 发明授权
    • Camera, camera system, and camera body
    • 相机,相机系统和相机机身
    • US08330824B2
    • 2012-12-11
    • US12741388
    • 2008-11-07
    • Hideyuki HashiKenichi HayashiHironori HonshoMasanobu TanakaKazuo Sibukawa
    • Hideyuki HashiKenichi HayashiHironori HonshoMasanobu TanakaKazuo Sibukawa
    • H04N5/228
    • H04N5/23248G03B5/00H04N5/23258H04N5/2328
    • A camera is provided with which a small size can be achieved while ensuring good image blur correction performance. The camera (1) has an optical system (O), a housing (2), a second drive unit (12) serving as part of an image blur corrector, an imaging element (17), a first angular velocity sensor (4), an acceleration sensor (7), a sensor drive unit (240), and a drive controller (22). The first angular velocity sensor (4) is configured to acquire the rotational angle of the housing (2). The acceleration sensor (7) is configured to acquire the amount of displacement of the housing (2). A correction computer (21) calculates the amount of drive of a correcting lens (9) from the displacement amount acquired by the acceleration sensor (7), and calculates the amount of drive of the correcting lens (9) from the rotational angle acquired by the first angular velocity sensor (4) using the position of the acceleration sensor (7) as a reference. The drive controller (22) controls the operation of the second drive unit (12) on the basis of these drive amounts.
    • 提供了可以实现小尺寸的相机,同时确保良好的图像模糊校正性能。 相机(1)具有作为图像模糊校正器的一部分的光学系统(O),壳体(2),第二驱动单元(12),成像元件(17),第一角速度传感器(4) ,加速度传感器(7),传感器驱动单元(240)和驱动控制器(22)。 第一角速度传感器(4)被配置为获取壳体(2)的旋转角度。 加速度传感器(7)被构造成获取壳体(2)的位移量。 校正计算机(21)根据由加速度传感器(7)获取的位移量计算校正透镜(9)的驱动量,并根据由所述加速度传感器(7)获取的旋转角度来计算校正透镜(9)的驱动量 使用加速度传感器(7)的位置作为基准的第一角速度传感器(4)。 驱动控制器(22)基于这些驱动量来控制第二驱动单元(12)的操作。
    • 6. 发明申请
    • CAMERA, CAMERA SYSTEM, AND CAMERA BODY
    • 相机,相机系统和相机机身
    • US20100245603A1
    • 2010-09-30
    • US12741388
    • 2008-11-07
    • Hideyuki HashiKenichi HayashiHironori HonshoMasanobu TanakaKazuo Sibukawa
    • Hideyuki HashiKenichi HayashiHironori HonshoMasanobu TanakaKazuo Sibukawa
    • H04N5/228
    • H04N5/23248G03B5/00H04N5/23258H04N5/2328
    • A camera is provided with which a small size can be achieved while ensuring good image blur correction performance. The camera (1) has an optical system (O), a housing (2), a second drive unit (12) serving as part of an image blur corrector, an imaging element (17), a first angular velocity sensor (4), an acceleration sensor (7), a sensor drive unit (240), and a drive controller (22). The first angular velocity sensor (4) is configured to acquire the rotational angle of the housing (2). The acceleration sensor (7) is configured to acquire the amount of displacement of the housing (2). A correction computer (21) calculates the amount of drive of a correcting lens (9) from the displacement amount acquired by the acceleration sensor (7), and calculates the amount of drive of the correcting lens (9) from the rotational angle acquired by the first angular velocity sensor (4) using the position of the acceleration sensor (7) as a reference. The drive controller (22) controls the operation of the second drive unit (12) on the basis of these drive amounts.
    • 提供了可以实现小尺寸的相机,同时确保良好的图像模糊校正性能。 相机(1)具有作为图像模糊校正器的一部分的光学系统(O),壳体(2),第二驱动单元(12),成像元件(17),第一角速度传感器(4) ,加速度传感器(7),传感器驱动单元(240)和驱动控制器(22)。 第一角速度传感器(4)被配置为获取壳体(2)的旋转角度。 加速度传感器(7)被构造成获取壳体(2)的位移量。 校正计算机(21)根据由加速度传感器(7)获取的位移量计算校正透镜(9)的驱动量,并根据由所述加速度传感器(7)获取的旋转角度来计算校正透镜(9)的驱动量 使用加速度传感器(7)的位置作为基准的第一角速度传感器(4)。 驱动控制器(22)基于这些驱动量来控制第二驱动单元(12)的操作。
    • 10. 发明授权
    • Lens barrel
    • 镜筒
    • US08498060B2
    • 2013-07-30
    • US13233026
    • 2011-09-15
    • Daisuke ItoHironori HonshoYoshiharu Araki
    • Daisuke ItoHironori HonshoYoshiharu Araki
    • G02B7/04G02B7/08
    • G02B7/04G02B7/021G03B3/02
    • A lens barrel is provided that includes an image optical system with an optical axis. The lens barrel has a first lens, a second lens, a guide shaft, and a driving unit, an adjusting mechanism, and a base frame. The adjusting mechanism is coupled to the guide shaft and has a first and a second portion. The first portion is deflectable and supports one end of the guide shaft. The second portion is configured to press against the first portion to deflect the first portion at an angle relative to the optical axis. The adjusting mechanism is configured to adjust the position of the guide shaft. The guide shaft is arranged to at least partially overlap the driving unit in the circumferential direction around the optical axis, and the first lens is arranged to at least partially overlap the adjusting mechanism in the radial direction relative to the optical axis.
    • 提供了包括具有光轴的图像光学系统的镜筒。 镜筒具有第一透镜,第二透镜,引导轴和驱动单元,调节机构和基架。 调节机构联接到导向轴并且具有第一和第二部分。 第一部分是可偏转的并且支撑导向轴的一端。 第二部分被配置为压靠第一部分以相对于光轴成一定角度偏转第一部分。 调整机构构成为调整导向轴的位置。 引导轴被布置成使得驱动单元在围绕光轴的周向上至少部分地重叠,并且第一透镜被布置成使得调节机构相对于光轴在径向方向上至少部分地重叠。