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    • 41. 发明授权
    • Shake correction mechanism and image sensing apparatus using the same
    • 振动校正机构及使用其的摄像装置
    • US07623159B2
    • 2009-11-24
    • US10990864
    • 2004-11-17
    • Shigeru WadaJunichi Tanii
    • Shigeru WadaJunichi Tanii
    • H04N5/228
    • H04N5/23248G03B17/00H04N5/23287
    • A shake correction mechanism 1 has an elastic support member 2 for elastically and oscillatingly supporting a lens barrel 10 at one point, and first and second actuators 3a and 3b for applying oscillating forces to the lens barrel 10. When a moment is applied to the lens barrel 10 by the first and second actuators 3a and 3b, the elastic support member 2 is subjected to elastic deformation. Thereby, the lens barrel 10 is oscillated to tilt the optical axis thereof in a desires direction. Thus, the lens barrel 10 is oscillatingly driven without use of a rotary joint or the like as employed in the conventional gimbal mechanism. This arrangement enables to miniaturize the shake correction mechanism.
    • 抖动校正机构1具有弹性支撑构件2,用于在一个点上弹性地和振动地支撑镜筒10;以及第一和第二致动器3a和3b,用于向镜筒10施加振动力。当向镜片施加力矩时 通过第一和第二致动器3a和3b,弹性支撑构件2受到弹性变形。 由此,透镜镜筒10被摆动以使其光轴沿欲望方向倾斜。 因此,透镜镜筒10在不使用常规万向节机构中使用的旋转接头等的情况下被振荡地驱动。 这种布置能够使抖动校正机构小型化。
    • 43. 发明申请
    • Image capturing device
    • 图像捕捉设备
    • US20070196087A1
    • 2007-08-23
    • US11702252
    • 2007-02-05
    • Akira KosakaJunichi Tanii
    • Akira KosakaJunichi Tanii
    • G03B17/00
    • 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。
    • 44. 发明申请
    • Driving device and driving system
    • 驱动装置和驱动系统
    • US20070030318A1
    • 2007-02-08
    • US11493227
    • 2006-07-26
    • Junji SatoJunichi TaniiYoshihiro HaraAkira Kosaka
    • Junji SatoJunichi TaniiYoshihiro HaraAkira Kosaka
    • B41J2/045
    • H02N2/067H02N2/025
    • Drive technology is provided which makes suitable low velocity driving and smooth changing of driving velocity possible and achieves reduced power consumption. In the driving device, the drive unit is driven which engages with drive shaft which moves back and forth in tandem with extension and contraction of the piezoelectric element. In this driving device, when the output cycle for cycle Te is repeated such that the voltages applied to the piezoelectric element 11 are the maximum value (+Vp), the minimum value (−Vp), and the middle value (0V), the movement velocity of the drive unit 13 can be changed by thinning the output cycle at cycle Tf. As a result, suitable low velocity driving can be carried out and power consumption can be reduced in the drive unit.
    • 提供驱动技术,使得适当的低速驱动和驱动速度的平滑变化成为可能,并实现降低的功耗。 在驱动装置中,驱动单元与驱动轴啮合,该驱动轴与压电元件的伸缩一起前后移动。 在该驱动装置中,当重复循环Te的输出周期,使得施加到压电元件11的电压为最大值(+ Vp)时,最小值(-Vp)和中间值(0V), 驱动单元13的移动速度可以通过在周期Tf变薄输出周期来改变。 结果,可以实现合适的低速驱动,并且可以在驱动单元中降低功耗。
    • 45. 发明申请
    • Shake correction mechanism and image sensing apparatus using the same
    • 振动校正机构及使用其的摄像装置
    • US20060033818A1
    • 2006-02-16
    • US10990864
    • 2004-11-17
    • Shigeru WadaJunichi Tanii
    • Shigeru WadaJunichi Tanii
    • G03B17/00H04N5/228
    • H04N5/23248G03B17/00H04N5/23287
    • A shake correction mechanism 1 has an elastic support member 2 for elastically and oscillatingly supporting a lens barrel 10 at one point, and first and second actuators 3a and 3b for applying oscillating forces to the lens barrel 10. When a moment is applied to the lens barrel 10 by the first and second actuators 3a and 3b, the elastic support member 2 is subjected to elastic deformation. Thereby, the lens barrel 10 is oscillated to tilt the optical axis thereof in a desires direction. Thus, the lens barrel 10 is oscillatingly driven without use of a rotary joint or the like as employed in the conventional gimbal mechanism. This arrangement enables to miniaturize the shake correction mechanism.
    • 抖动校正机构1具有弹性支撑构件2,用于在一个点上弹性地并且振动地支撑镜筒10;以及第一和第二致动器3a和3b,用于向镜筒10施加振荡力。 当通过第一和第二致动器3a和3b对镜筒10施加力矩时,弹性支撑构件2受到弹性变形。 由此,透镜镜筒10被摆动以使其光轴沿欲望方向倾斜。 因此,透镜镜筒10在不使用常规万向节机构中使用的旋转接头等的情况下被振荡地驱动。 这种布置能够使抖动校正机构小型化。
    • 50. 发明授权
    • Optical mechanism which allows play between transmission members for
moving optical components
    • 允许在用于移动光学部件的传输部件之间播放的光学机构
    • US6075655A
    • 2000-06-13
    • US906850
    • 1997-08-06
    • Akira FunahashiJunichi Tanii
    • Akira FunahashiJunichi Tanii
    • G02B7/04G02B7/08G02B7/10G02B15/14
    • G02B7/102
    • A lens barrel has a focusing operation and a zooming operation which are carried out with only one driving source which is installed outside the lens barrel so as to realize a most suitable resolution for each of the operations. A rotary cylinder which supports a zooming frame which is axially movably therein, is connected to a linear-moving cylinder with a bayonet, which is axially movably supported inside a fixed cylinder. A focus rotation transmission key of a driving cylinder drives a lens frame which engages the zooming frame by a connecting helicoid. A zooming rotation transmission key of the driving cylinder engages an edge surface, forming a rotation transmission groove, of the rotary cylinder, with a play range. Upon rotation of the driving cylinder, only the lens frame is rotated to operate a focusing operation within the play range; however, the rotary cylinder is rotated to operate a zooming operation when the key contacts the edge surface of the rotary cylinder.
    • 透镜镜筒具有聚焦操作和变焦操作,该操作仅用一个安装在镜筒外部的驱动源进行,以便为每个操作实现最合适的分辨率。 支撑在其中可轴向移动的变焦框架的旋转圆筒与具有卡口的线性移动圆筒连接,该卡口可轴向移动地支撑在固定圆筒内。 驱动气缸的聚焦旋转传递键通过连接螺旋体驱动与变焦框架接合的透镜框。 驱动圆筒的变焦旋转传递键与旋转圆筒的旋转传递槽接合,具有游隙范围。 在驱动气缸旋转时,只有透镜框旋转以在播放范围内进行聚焦操作; 然而,当键接触旋转圆筒的边缘表面时,旋转圆筒旋转以操作变焦操作。