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    • 1. 发明授权
    • Imaging unit and mobile electronic device
    • 成像单元和移动电子设备
    • US08120693B2
    • 2012-02-21
    • US12036459
    • 2008-02-25
    • Hiroshi NomuraIsao OkudaEijiroh TadaAtsumi Kaneko
    • Hiroshi NomuraIsao OkudaEijiroh TadaAtsumi Kaneko
    • G02B13/16H04N5/225
    • G03B17/17G02B15/177G02B17/04G03B17/02H04M1/0214H04M1/0264H04N5/2253H04N5/2254H04N5/2257
    • An imaging unit including an image sensor, an incident-side prism, an exit-side prism, and an intermediate optical system positioned therebetween, wherein light incident on the incident-side prism passes through the incident-side prism, the intermediate optical system and the exit-side prism to be incident on the image sensor, the imaging unit includes a housing supporting the incident-side prism, the exit-side prism and the intermediate optical system such that incident and exit optical axes of the incident-side prism, an optical axis of the intermediate optical system, and incident and exit optical axes of the exit-side prism all lie on a common plane; and a cover board, on which the image sensor is mounted, fixed to the housing so that the image sensor faces an exit surface of the exit-side prism, the cover board closing an opening of the housing.
    • 一种成像单元,包括图像传感器,入射侧棱镜,出射侧棱镜和位于其间的中间光学系统,入射在入射侧棱镜上的光通过入射侧棱镜,中间光学系统和 出射侧棱镜入射到图像传感器上,成像单元包括支撑入射侧棱镜,出射侧棱镜和中间光学系统的壳体,使得入射侧棱镜的入射光和出射光轴, 中间光学系统的光轴,出射侧棱镜的入射光和出射光轴都位于公共平面上; 以及盖板,其上安装有图像传感器,固定到壳体,使得图像传感器面向出射侧棱镜的出射表面,盖板封闭壳体的开口。
    • 2. 发明授权
    • Imaging device
    • 成像设备
    • US08098320B2
    • 2012-01-17
    • US12266799
    • 2008-11-07
    • Hiroshi NomuraAtsumi KanekoIsao OkudaEijiroh Tada
    • Hiroshi NomuraAtsumi KanekoIsao OkudaEijiroh Tada
    • H04N5/225
    • H04N5/2252H04N5/2257
    • An imaging device includes a housing including first and second photographing apertures which are open toward opposite directions; an image pickup device provided in the housing; a main optical system forming incident light from the first photographing aperture onto an imaging surface of the image pickup device; and an insertable optical element movable between an insertion position in an optical path of a main optical system and a removed position out of the optical path of the main optical system, the insertable optical element constituting at least a part of a sub-optical system which forms incident light from the second photographing aperture onto the imaging surface when at the insertion position. When the insertable optical element is positioned in the insertion position, the sub-optical axis is offset from the main optical axis toward the removed position of the insertable optical element in the inserting/removing direction.
    • 一种成像装置包括:壳体,包括朝向相反方向开放的第一和第二拍摄孔; 设置在所述壳体中的图像拾取装置; 主光学系统,其将从所述第一拍摄孔径入射的光形成到所述图像拾取装置的成像表面上; 以及可插入光学元件,其可在主光学系统的光路中的插入位置与主光学系统的光路之间的去除位置之间移动,所述可插入光学元件构成副光学系统的至少一部分, 当在插入位置时,将来自第二拍摄孔的入射光形成到成像表面上。 当可插入光学元件位于插入位置时,副光轴在插入/移除方向上偏离主光轴朝向可插入光学元件的移除位置。
    • 4. 发明授权
    • Surveying system
    • 测量系统
    • US07075634B2
    • 2006-07-11
    • US10606224
    • 2003-06-26
    • Shinobu UezonoMasami ShiraiKoji TsudaAtsumi KanekoRyota Ogawa
    • Shinobu UezonoMasami ShiraiKoji TsudaAtsumi KanekoRyota Ogawa
    • G01B11/14G01C1/04G01C3/08
    • G01C15/00
    • An automatic surveying system is provided that comprises a surveying device, a collinear-line calculating processor, a sighting direction control processor, and an object-point searching processor. The collinear line calculating processor obtains a collinear line for an arbitrarily designated point on a schematic image of which the positional relation to the surveying device is known. The sighting direction control processor controls the surveying device to sight along the collinear line. The object point searching processor searches for an object point where the position of the object point can be determined as a point on the collinear line. This is executed by measuring the sighting direction with the surveying device while carrying out the sighting direction control process. Further, a position obtained by the object point searching processor coincides with an object point that corresponds to the designated point.
    • 提供一种自动测量系统,其包括测量装置,共线计算处理器,瞄准方向控制处理器和对象点搜索处理器。 共线计算处理器获得与测量装置的位置关系已知的示意图上的任意指定点的共线。 瞄准方向控制处理器将测量装置沿着共线线路进行瞄准。 物点搜索处理器搜索可以将对象点的位置确定为共线线上的点的对象点。 这是通过在进行瞄准方向控制处理时测量测量装置的瞄准方向来执行的。 此外,由对象点搜索处理器获得的位置与对应于指定点的对象点重合。
    • 5. 发明授权
    • Photogrammetric analytical measurement system
    • 摄影测量分析测量系统
    • US06304669B1
    • 2001-10-16
    • US09188329
    • 1998-11-09
    • Atsumi KanekoMasato HaraToshihiro NakayamaAtsushi KidaShigeru Wakashiro
    • Atsumi KanekoMasato HaraToshihiro NakayamaAtsushi KidaShigeru Wakashiro
    • G06K900
    • G01C11/06
    • A photogrammetric measurement system produces a survey map based on a set of photographed pictures obtained at two different photographing positions. Each of the pictures includes at least one continuous line and at least three conspicuous points away from the continuous line, with at least one of the conspicuous points and remaining conspicuous points being placed at opposing sides of the continuous line. The set of pictures are produced as a first picture and a second picture. First lines are produced between the conspicuous points on the first picture such that the lines intersect the continuous line, thereby generating intersecting points. Second lines are produced between the conspicuous points on the second picture such that the lines intersect the continuous line, thereby generating further intersecting points. A set of corresponding intersecting points are designated on the first and second pictures, and intersecting points are produced on the survey map based on the designated corresponding intersecting points. A line, connecting the intersecting points, is thus produced on the survey map.
    • 摄影测量测量系统基于在两个不同拍摄位置获得的一组拍摄图片产生测绘图。 每张照片包括至少一条连续线和距离连续线至少三条明显的点,其中至少一条显眼点和其余明显的点被放置在连续线的相对侧。 该组图像作为第一图像和第二图像产生。 在第一图像上的显着点之间产生第一行,使得线与连续线相交,从而产生相交点。 在第二张图片上的显眼点之间产生第二行,使得线条与连续线相交,从而产生更多的相交点。 在第一和第二图像上指定一组相应的相交点,并且基于指定的对应交点在调查图上产生相交点。 因此,在调查地图上生成连接相交点的线。
    • 6. 发明授权
    • Optical viewer instrument with photographing function
    • 具有拍摄功能的光学观察仪器
    • US06937391B2
    • 2005-08-30
    • US10255609
    • 2002-09-27
    • Ken HirunumaAtsumi KanekoShuji YoneyamaMoriyasu KanaiGouji Funatsu
    • Ken HirunumaAtsumi KanekoShuji YoneyamaMoriyasu KanaiGouji Funatsu
    • G02B23/00G02B23/18H04N5/225H04N5/232
    • H04N5/23212G02B23/18H04N5/225H04N5/2251
    • In an optical viewer instrument with a photographing function, there is provided a telescopic lens system for observing objects, and a digital camera system including a solid-state image sensor and a photographing lens system associated with each other such that an object is formed as a photographed image on the solid-state image sensor through the photographing lens system. A manually-operable focussing mechanism is associated with the telescopic lens system and the photographing lens system such that the object is brought into focus through the telescopic lens system, and such that the object is brought into focus through the photographing lens system. Optical parameters are selected such that predetermined conditions are fulfilled, whereby the focussing of the telescopic lens system and the focusing of the photographing lens system can be suitably and properly performed by the focussing mechanism.
    • 在具有拍摄功能的光学观察仪器中,提供了一种用于观察物体的伸缩透镜系统,以及包括固态图像传感器和相互关联的拍摄镜头系统的数字照相机系统,使得物体形成为 通过拍摄镜头系统在固态图像传感器上拍摄图像。 手动可操作的聚焦机构与伸缩透镜系统和拍摄透镜系统相关联,使得物体通过伸缩透镜系统进行聚焦,并且使得物体通过拍摄镜头系统进行聚焦。 选择光学参数使得满足预定条件,由此可以通过聚焦机构适当地和适当地执行伸缩透镜系统的聚焦和拍摄镜头系统的聚焦。
    • 8. 发明授权
    • Optical viewer instrument with photographing function
    • 具有拍摄功能的光学观察仪器
    • US06914636B2
    • 2005-07-05
    • US10255963
    • 2002-09-27
    • Ken HirunumaAtsumi KanekoShuji YoneyamaMoriyasu KanaiGouji FunatsuMasami Shirai
    • Ken HirunumaAtsumi KanekoShuji YoneyamaMoriyasu KanaiGouji FunatsuMasami Shirai
    • G02B23/18G02B7/06G02B23/00G03B17/02G03B17/18G03B17/48H04N5/225H04N7/18
    • H04N7/183
    • In an optical viewer instrument with a photographing function, a telescopic lens system for observing an object and a digital camera system for photographing the object are housed in a casing. A manually-operable rotary wheel is rotatably provided in the casing such that a portion of the rotary wheel is exposed to the outside from the casing to bring the object into focus through the telescopic lens system. A display panel unit for displaying the object as a motion picture on a display screen thereof is mounted on the casing so as to be movable between a retracted position, where the display screen of the display panel unit is close to a wall surface of the casing, and a display position, where the display screen of the display panel unit is directed to the ocular-lens-system side of the telescopic lens system. The rotary wheel is arranged such that the exposed portion of the manually-operable rotary wheel is hidden behind the display panel unit when being at the retracted position.
    • 在具有拍摄功能的光学观察器具中,用于观察物体的望远镜透镜系统和用于拍摄物体的数字照相机系统被容纳在壳体中。 手动可操作的旋转轮可旋转地设置在壳体中,使得旋转轮的一部分从壳体暴露于外部,以通过伸缩透镜系统使物体聚焦。 用于在其显示屏幕上显示作为运动图像的对象的显示面板单元安装在壳体上,以便在显示面板单元的显示屏幕接近壳体的壁表面的缩回位置之间移动 以及显示面板单元的显示屏幕被引导到可伸缩透镜系统的眼镜系统侧的显示位置。 旋转轮被布置成使得当处于缩回位置时,可手动操作的旋转轮的暴露部分被隐藏在显示面板单元后面。
    • 9. 发明授权
    • Target for photogrammetric analytical measurement system
    • 摄影测量分析测量系统的目标
    • US06487517B2
    • 2002-11-26
    • US09862616
    • 2001-05-23
    • Teruo SakaiAtsumi Kaneko
    • Teruo SakaiAtsumi Kaneko
    • G06F1500
    • G01C11/00G01C15/06
    • A control unit box and one of standard point members are provided close to a connection of first and second bars. A standard plane is defined by the standard point members. A loop antenna is provided in a mount unit situated on the top surface of the control unit box. The box is positioned such that a ratio of a second distance to a first distance is less than tan 8°. The first distance is from the point member to the mount unit, along the standard plane, and the second distance is from the standard plane to the top surface of the mount unit, along a direction perpendicular to the standard plane. The antenna is connected to an oscillator of 310 MHz. With respect to the antenna, the total length is approximately 0.48 m, a height from the top surface of the unit box is approximately 9.5 mm, and the inner diameter is approximately 25 mm.
    • 控制单元盒和标准点构件中的一个设置在第一和第二杆的连接附近。 标准平面由标准点成员定义。 环形天线设置在位于控制单元盒的顶表面上的安装单元中。 该盒被定位成使得第二距离与第一距离的比率小于tan 8°。 第一距离是沿着标准平面从点构件到安装单元,并且第二距离沿垂直于标准平面的方向从标准平面到安装单元的顶表面。 天线连接到310 MHz的振荡器。 对于天线,总长度约为0.48μm,从单元箱顶部的高度大约为9.5mm,内径约为25mm。
    • 10. 发明授权
    • Electronic measuring apparatus
    • 电子测量仪器
    • US5991706A
    • 1999-11-23
    • US812863
    • 1997-03-06
    • Shinji TsukamotoAtsumi Kaneko
    • Shinji TsukamotoAtsumi Kaneko
    • G09B25/06G01C1/02G01C15/00
    • G01C1/02
    • An electronic measuring apparatus having a plurality of measuring modes. Each one of the plurality of measuring modes is selectively set to perform a corresponding operation. The electronic measuring apparatus includes a plurality of operational buttons. Information which associates one of the plurality of operational buttons with one of the plurality of measuring modes is stored in a memory. It is then distinguished which one of the plurality of operational buttons has been operated. Information stored in the memory, which associates the distinguished one of the plurality of operational buttons with the one of the plurality of measuring modes is searched and an operation unique to the one of the plurality of measuring modes which is associated with the distinguished one of the plurality of operational buttons is performed. Electrical power is supplied to the searching and performing means, wherein the supplying means starts supplying electrical power to certain portions of the electronic measuring apparatus when it is distinguished that one of the plurality of operational buttons has been manipulated. Further, the searching and performing operation occurs upon receiving the electrical power. Finally, the stored information is renewed in the memory.
    • 一种具有多个测量模式的电子测量装置。 选择性地设置多个测量模式中的每一个来执行相应的操作。 电子测量装置包括多个操作按钮。 将多个操作按钮中的一个与多个测量模式中的一个相关联的信息存储在存储器中。 然后区分多个操作按钮中的哪个操作按钮。 搜索存储在存储器中的信息,其将多个操作按钮中的不同的一个与多个测量模式中的一个相关联,并且搜索与多个测量模式中的一个测量模式相关联的多个测量模式中的一个 执行多个操作按钮。 电力被提供给搜索和执行装置,其中当识别出多个操作按钮中的一个被操纵时,供应装置开始向电子测量装置的某些部分供电。 此外,搜索和执行操作在接收到电力时发生。 最后,存储的信息在存储器中更新。