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    • 3. 发明授权
    • Electronic imaging device
    • 电子成像装置
    • US07123423B2
    • 2006-10-17
    • US10969457
    • 2004-10-20
    • Yukinori TakahashiYasuo AsakuraNaoki Fujii
    • Yukinori TakahashiYasuo AsakuraNaoki Fujii
    • G02B15/14H04N2/225
    • G02B13/0065G02B7/102G02B13/009G03B17/04G03B17/17H04N5/2254H04N2101/00
    • An electronic imaging device is provided which includes a first lens group which takes in a luminous flux from a subject along a first optical axis, an optical axis conversion member which bends the luminous flux along a second optical axis which intersects with the first optical axis, a second lens which images the bent luminous flux to an imaging element, and an optical amount adjustment unit provided between the second lens group and the optical axis conversion member. An AF motor, a driving unit which drives the optical amount adjustment unit, and a zoom motor are each selectively arranged at one of four spaces formed by a first plane defined by the optical amount adjustment unit and a second plane defined by the first and second optical axes. The AF motor, the driving unit, and the zoom motor may all be arranged at one side of the second plane.
    • 提供了一种电子成像装置,其包括:第一透镜组,其沿着第一光轴摄入来自被摄体的光通量;光轴转换构件,其沿着与所述第一光轴相交的第二光轴弯曲所述光通量; 第二透镜,其将弯曲光束成像到成像元件;以及光量调节单元,设置在第二透镜组和光轴转换部件之间。 AF电动机,驱动光量调节单元的驱动单元和变焦电动机分别选择性地布置在由光量调节单元限定的第一平面形成的四个空间中的一个空间和由第一和第二 光轴。 AF电动机,驱动单元和变焦电动机都可以布置在第二平面的一侧。
    • 4. 发明授权
    • Electronic imaging device
    • 电子成像装置
    • US07248419B2
    • 2007-07-24
    • US11423614
    • 2006-06-12
    • Yukinori TakahashiYasuo AsakuraNaoki Fujii
    • Yukinori TakahashiYasuo AsakuraNaoki Fujii
    • G02B15/14H04N2/225
    • G02B13/0065G02B7/102G02B13/009G03B17/04G03B17/17H04N5/2254H04N2101/00
    • An electronic imaging device is provided which includes a first lens group which takes in a luminous flux from a subject along a first optical axis, an optical axis conversion member which bends the luminous flux along a second optical axis which intersects with the first optical axis, a second lens which images the bent luminous flux to an imaging element, and an optical amount adjustment unit provided between the second lens group and the optical axis conversion member. An AF motor, a driving unit which drives the optical amount adjustment unit, and a zoom motor are each selectively arranged at one of four spaces formed by a first plane defined by the optical amount adjustment unit and a second plane defined by the first and second optical axes. The AF motor, the driving unit, and the zoom motor may all be arranged at one side of the second plane.
    • 提供了一种电子成像装置,其包括:第一透镜组,其沿着第一光轴摄入来自被摄体的光通量;光轴转换构件,其沿着与所述第一光轴相交的第二光轴弯曲所述光通量; 第二透镜,其将弯曲光束成像到成像元件;以及光量调节单元,设置在第二透镜组和光轴转换部件之间。 AF电动机,驱动光量调节单元的驱动单元和变焦电动机分别选择性地布置在由光量调节单元限定的第一平面形成的四个空间中的一个空间和由第一和第二 光轴。 AF电动机,驱动单元和变焦电动机都可以布置在第二平面的一侧。
    • 5. 发明申请
    • ELECTRONIC IMAGING DEVICE
    • 电子成像装置
    • US20060245080A1
    • 2006-11-02
    • US11423614
    • 2006-06-12
    • Yukinori TakahashiYasuo AsakuraNaoki Fujii
    • Yukinori TakahashiYasuo AsakuraNaoki Fujii
    • G02B15/14
    • G02B13/0065G02B7/102G02B13/009G03B17/04G03B17/17H04N5/2254H04N2101/00
    • An electronic imaging device is provided which includes a first lens group which takes in a luminous flux from a subject along a first optical axis, an optical axis conversion member which bends the luminous flux along a second optical axis which intersects with the first optical axis, a second lens which images the bent luminous flux to an imaging element, and an optical amount adjustment unit provided between the second lens group and the optical axis conversion member. An AF motor, a driving unit which drives the optical amount adjustment unit, and a zoom motor are each selectively arranged at one of four spaces formed by a first plane defined by the optical amount adjustment unit and a second plane defined by the first and second optical axes. The AF motor, the driving unit, and the zoom motor may all be arranged at one side of the second plane.
    • 提供了一种电子成像装置,其包括:第一透镜组,其沿着第一光轴摄入来自被摄体的光通量;光轴转换构件,其沿着与所述第一光轴相交的第二光轴弯曲所述光通量; 第二透镜,其将弯曲光束成像到成像元件;以及光量调节单元,设置在第二透镜组和光轴转换部件之间。 AF电动机,驱动光量调节单元的驱动单元和变焦电动机分别选择性地布置在由光量调节单元限定的第一平面形成的四个空间中的一个空间和由第一和第二 光轴。 AF电动机,驱动单元和变焦电动机都可以布置在第二平面的一侧。
    • 6. 发明授权
    • Camera
    • 相机
    • US06778777B1
    • 2004-08-17
    • US09694944
    • 2000-10-24
    • Naoki FujiiYasuo Asakura
    • Naoki FujiiYasuo Asakura
    • G03B1702
    • G03B17/02
    • An electronic camera having therein a CCD (image sensing device). A lens barrel is mounted on a camera body thereof. As focusing means, this camera has therein a ranging unit in an active AF manner and a contrast detector in a contrast AF manner using subject light from the lens barrel. A grip portion is arranged at the left side (as seen from the subject) of the camera body. A peak portion is arranged over the grip portion. A ranging window for the ranging unit is arranged over the peak portion. When the camera body is held, it is possible to prevent fingers from moving to the front of the ranging window and covering the window by the peak portion. Even if the lens barrel has a large aperture, it is also possible to arrange the ranging unit on the front portion of the camera body.
    • 一种其中具有CCD(图像感测装置)的电子照相机。 透镜筒安装在其相机主体上。 作为聚焦装置,本相机具有主动AF方式的测距单元和使用来自镜筒的对象光的对比度AF方式的对比度检测器。 手柄部分布置在照相机主体的左侧(从主体看)。 把手部分上方设有一个峰部分。 测距单元的测距窗口布置在峰部分上。 当照相机主体被保持时,可以防止手指移动到测距窗的前部并且通过峰部覆盖窗户。 即使透镜镜筒具有大的光圈,也可以在照相机主体的前部设置测距单元。
    • 7. 发明授权
    • Lens barrel and image pickup device
    • 镜筒和图像拾取装置
    • US09007469B2
    • 2015-04-14
    • US13229284
    • 2011-09-09
    • Satoru YasutomiManabu YoshiiKunio YamamiyaNaoki FujiiMasato Miyata
    • Satoru YasutomiManabu YoshiiKunio YamamiyaNaoki FujiiMasato Miyata
    • H04N5/228H04N5/262G02B7/08G03B5/00
    • G02B7/08G03B5/00G03B2205/0092
    • Provided is a lens barrel having, in order from an object side to an image side, a first to a third group lens, the lens barrel including: a fixed frame; a cam frame supported by the fixed frame so as to be rotationally movable in a optical axis direction between a forward and a backward movement ends; and a shutter frame which moves in the optical axis direction in a rotation restricted state, through the rotation of the cam frame, in which: a third group frame is fixed to the shutter frame so that the object side of the third group lens is arranged on an inner peripheral side of the shutter frame; and the second frame is configured so that the image side of the frame is stored on the inner peripheral side of the shutter frame when the cam frame is positioned at the backward movement end.
    • 本发明提供一种透镜镜筒,其从物体侧到像侧依次具有第一至第三组透镜,镜筒包括:固定框架; 凸轮框架,其由所述固定框架支撑,以便能够在前后向后移动端之间沿光轴方向旋转移动; 以及通过凸轮框架的旋转沿旋转限制状态沿光轴方向移动的快门框架,其中:第三组框架固定到快门框架,使得第三组透镜的物体侧被布置 在快门框架的内周侧上; 并且第二框架被构造成使得当凸轮框架位于向后移动端时,框架的图像侧被存储在快门框架的内周侧。
    • 8. 发明申请
    • IMAGE PICKUP APPARATUS USING ZOOM LENS
    • 图像摄影机使用变焦镜头
    • US20130120638A1
    • 2013-05-16
    • US13333647
    • 2011-12-21
    • Masato MIYATANaoki Fujii
    • Masato MIYATANaoki Fujii
    • H04N5/232
    • G02B13/18G02B15/173
    • An image pickup apparatus includes a zoom lens having a first positive lens unit, and a first negative lens unit disposed on an object side of the first positive lens unit. A distance between the first positive lens unit and the first negative lens unit is narrowed at the time of zooming from a wide angle end to a telephoto end. The zoom lens includes an aperture stop disposed between a lens nearest to an image side in the first negative lens unit and a lens nearest to the image side in the first positive lens unit, and a light-amount reducing filter made of a resin material which is disposed on the image side of the lens nearest to the image side in the first positive lens unit, and which can be inserted in an optical path and withdrawn from the optical path. The zoom lens satisfies predetermined conditional expressions.
    • 图像拾取装置包括具有第一正透镜单元的变焦透镜和设置在第一正透镜单元的物体侧的第一负透镜单元。 在从广角端到远摄端的变焦时,第一正透镜单元与第一负透镜单元之间的距离变窄。 变焦透镜包括设置在最靠近第一负透镜单元中的像侧的透镜和最靠近第一正透镜单元中的像侧的透镜之间的孔径光阑,以及由树脂材料制成的光量减少过滤器 设置在最靠近第一正透镜单元中的图像侧的透镜的像侧上,并且可以插入到光路中并从光路中取出。 变焦透镜满足预定条件表达式。
    • 9. 发明授权
    • Method for correcting high-frequency characteristic error of electronic component
    • 电子元件高频特性误差校正方法
    • US08423868B2
    • 2013-04-16
    • US12474389
    • 2009-05-29
    • Naoki FujiiGaku KamitaniTaichi Mori
    • Naoki FujiiGaku KamitaniTaichi Mori
    • H03M13/00
    • G01R35/005G01R27/28
    • An electronic-component high-frequency characteristic error correcting method for allowing a calibration work to be performed on a two-terminal impedance component using the same correction-target measuring system as that used in actual measurement. At least three correction data acquisition samples having different high-frequency characteristics are measured by a reference measuring system and an actual measuring system. An equation for associating the value measured by the actual measuring system with the value measured by the reference measuring system using an error correction coefficient of a transmission line is determined. A given electronic component is measured by the actual measuring system. An estimated high-frequency characteristic value of the electronic component obtained when the electronic component is measured by the reference measuring system is calculated using the determined equation.
    • 一种电子部件高频特性误差校正方法,用于使用与实际测量中使用的相同的校正目标测量系统,对两端子阻抗分量进行校准工作。 通过参考测量系统和实际测量系统来测量具有不同高频特性的至少三个校正数据采集样本。 确定将由实际测量系统测量的值与由参考测量系统测量的值相关联的方程式,使用传输线的误差校正系数。 给定的电子元件由实际测量系统测量。 使用所确定的方程来计算通过基准测量系统测量电子部件时获得的电子部件的估计高频特性值。