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    • 1. 发明申请
    • Stereoscopic Imaging Device
    • 立体成像装置
    • US20120163788A1
    • 2012-06-28
    • US13338257
    • 2011-12-28
    • Takashi MasunoTatsuro JuriHiroaki ShimazakiKenjiro TsudaYuji Nagaishi
    • Takashi MasunoTatsuro JuriHiroaki ShimazakiKenjiro TsudaYuji Nagaishi
    • G03B35/00
    • G03B35/10
    • Stereoscopic imaging device that can take stereo images with the parallax between the left and right eyes being accurately established is afforded. The stereoscopic imaging device (11) includes: an optical branching device having an incident surface (35), a beam-splitter part (33) that splits light from the incident surface into two directions, an extension part (36), and a reflection part (38) that reflects at least a portion of the light bent by the beam splitter part (33) and bends the reflected light in the y-axis positive direction; a first camera (31) that takes left-eye images; and a second camera (32) that takes right-eye images. The respective optical axes of the optical system of the first camera (31) and of the optical system of the second camera (32) are parallel to the y-axis.
    • 提供了能够准确地建立具有左眼和右眼之间的视差的立体图像的立体成像装置。 立体成像装置(11)包括:光分支装置,具有入射面(35),将入射面的光分为两个方向的分光部(33),延伸部(36)和反射 部分(38),其反射由分束器部分(33)弯曲的光的至少一部分并使反射光在y轴正方向上弯曲; 拍摄左眼图像的第一照相机(31); 以及拍摄右眼图像的第二照相机(32)。 第一相机(31)的光学系统和第二相机(32)的光学系统的各个光轴平行于y轴。
    • 2. 发明授权
    • Optical element holder and stereoscopic imaging device utilizing the holder
    • 光学元件支架和利用支架的立体成像装置
    • US08457485B2
    • 2013-06-04
    • US13338274
    • 2011-12-28
    • Takashi MasunoTatsuro JuriKenjiro TsudaHiroaki ShimazakiYuji Nagaishi
    • Takashi MasunoTatsuro JuriKenjiro TsudaHiroaki ShimazakiYuji Nagaishi
    • G03B35/00G02B27/22
    • G03B35/08G02B27/144G03B17/14G03B17/561G03B17/565
    • Afforded is an optical element holder allowing high-accuracy stereo images to be taken. The holder includes: a rectangular parallelepiped beam splitter (5) having a rectangular incident surface (12); a pair of mutually opposing holding members (8) into which end portions of the beam splitter along the x-axis are fitted; and a base portion (9) and screws (10) that press on the holding members (8), drawing them toward each other. Each of the holding members (8) has a flat surface portion covering a lateral surface of the beam splitter (5), and a peripheral wall portion standing along the periphery of the flat surface potion. A width, along the x-axis, whereby the peripheral wall portion and a first light-exit surface opposing the incident surface (12) of the beam splitter (5) overlap is greater than a width, in the same orientation, whereby the incident surface (12) and the peripheral wall portion overlap.
    • 负担得起可以拍摄高精度立体图像的光学元件支架。 保持器包括:具有矩形入射表面(12)的长方体分束器(5); 一对彼此相对的保持构件(8),分束器的沿x轴的端部被装配到该保持构件中; 以及按压在保持构件(8)上的基部(9)和螺钉(10),将它们彼此拉伸。 每个保持构件(8)具有覆盖分束器(5)的侧表面的平坦表面部分和沿着平坦表面部分的周边竖立的周壁部分。 沿着x轴的宽度,由此周边壁部分和与分束器(5)的入射表面(12)相对的第一光出射表面与相同取向的宽度大于入射面 表面(12)和周壁部分重叠。
    • 4. 发明申请
    • Stereoscopic Imaging Device
    • 立体成像装置
    • US20120163791A1
    • 2012-06-28
    • US13338283
    • 2011-12-28
    • Tatsuro JuriKenjiro TsudaHiroaki ShimazakiYuji NagaishiTakashi Masuno
    • Tatsuro JuriKenjiro TsudaHiroaki ShimazakiYuji NagaishiTakashi Masuno
    • G03B35/10
    • G03B35/08G03B17/561G03B17/565H04N13/239H04N13/296
    • A small-sized stereo-image taking apparatus that includes a small-sized beam splitter for splitting in two the imaging light from a photographic subject and that makes it possible to take both telephotographic-range and wide-angle-range images is afforded. The stereo-image taking apparatus includes: an optical element having an optically functional surface splitting in two the imaging light from a photographic subject; first and second telescopic lens barrels having telescoping functionality; first and second imaging devices mounted on the first and second telescopic lens barrels, for generating first and second images on the basis of first and second imaging light constructing images through the first and second telescopic lens barrels; and first and second moveable sections causing the first and second imaging devices to parallel-shift optical-axis-wise in accordance with extension/retraction of the first and second telescopic lens barrels.
    • 提供了一种小尺寸立体图像拍摄装置,其包括用于从拍摄对象中分离成两个成像光的小尺寸分束器,并且使得可以拍摄长焦摄影范围和广角范围图像。 立体图像摄取装置包括:光学元件,其具有在来自摄影对象的两个成像光中分裂的光学功能表面; 具有伸缩功能的第一和第二望远镜透镜筒; 第一和第二成像装置安装在第一和第二伸缩透镜筒上,用于基于通过第一和第二伸缩透镜筒构造图像的第一和第二成像光产生第一和第二图像; 以及第一和第二可移动部分,其使得第一和第二成像装置根据第一和第二伸缩透镜筒的伸出/缩回而以光轴方式平行移位。
    • 5. 发明申请
    • Stereo-Image Photographing Apparatus
    • 立体图像摄影装置
    • US20120163790A1
    • 2012-06-28
    • US13334081
    • 2011-12-22
    • Hiroaki ShimazakiTatsuro JuriKenjiro TsudaTakashi MasunoYuji Nagaishi
    • Hiroaki ShimazakiTatsuro JuriKenjiro TsudaTakashi MasunoYuji Nagaishi
    • G03B35/10
    • G03B17/565G03B17/561G03B35/08
    • A stereo-image photographing apparatus enabling readily, short time-span realization of lens-barrel optical-axis adjustment in left- and right-eye imaging devices is afforded. The apparatus includes: a beam splitter having an incident surface of rectangular form, on which imaging light from a photographic subject is incident, an optically functional surface that reflects first imaging light, being a portion of incident imaging light, in a direction paralleling the shorter side of the rectangular form and that passes second imaging light being the remaining portion of the incident imaging light, a first light-exit surface through which the first imaging light exits, and a second light-exit surface through which the second imaging light exits; a first lens barrel directly facing the first light-exit surface; a second lens barrel directly facing the second light-exit surface; a first imaging device mounted on the first lens barrel; and a second imaging device mounted on the second lens barrel.
    • 提供了能够在左眼和右眼成像装置中实现镜筒式光轴调节的短时间跨距实现的立体图像拍摄装置。 该装置包括:具有矩形形式的入射表面的分束器,来自摄影对象的成像光入射到该光束分离器上;光学功能表面,其以与较短的方向平行的方向反射作为入射成像光的一部分的第一成像光 并且通过作为入射成像光的剩余部分的第二成像光,第一成像光从其出射的第一光出射面和第二成像光从其出射的第二光出射面; 直接面向第一光出射表面的第一透镜镜筒; 直接面向第二光出射面的第二透镜镜筒; 安装在第一透镜镜筒上的第一成像装置; 以及安装在第二镜筒上的第二成像装置。
    • 6. 发明授权
    • Video encoding device
    • 视频编码设备
    • US07860160B2
    • 2010-12-28
    • US11354082
    • 2006-02-15
    • Hiroaki ShimazakiTakashi MasunoTakuma ChibaKei TasakaKenjiro TsudaTatsuro JuriKatsuo Saigo
    • Hiroaki ShimazakiTakashi MasunoTakuma ChibaKei TasakaKenjiro TsudaTatsuro JuriKatsuo Saigo
    • H04N7/12H04N9/12G06K9/46
    • H04N19/152H04N19/61H04N19/91
    • The present invention provides a video encoding device in which a capacity of a binary data storing unit is small, a size of the video encoding device is small, a video signal can be processed in real time, and reduction in quality of images generated from the eventually obtained data can be prevented. The video encoding device according to the present invention includes: a video encoding unit which encodes a video signal; a binarization unit which binarizes an encoded value obtained from the video encoding unit; and an entropy encoding unit which subjects entropy encoding to binary data obtained from the binarization unit. Here, the video encoding unit encodes the video signal based on a characteristic of the binarization performed by the binarization unit, so that an amount of binary data obtained from the binarization unit by binarizing the encoded value that is encoded based on the characteristic is less than an amount of binary data obtained by binarizing an encoded value that is encoded without being based on the characteristic.
    • 本发明提供了一种视频编码装置,其中二进制数据存储单元的容量小,视频编码装置的尺寸小,可以实时处理视频信号,并且降低从 可以防止最终获得的数据。 根据本发明的视频编码装置包括:视频编码单元,其对视频信号进行编码; 二值化单元,其将从所述视频编码单元获得的编码值二值化; 以及熵编码单元,其对来自二值化单元的二进制数据进行熵编码。 这里,视频编码单元基于由二值化单元执行的二值化的特性对视频信号进行编码,从而通过二值化基于特性编码的编码值从二值化单元获得的二进制数据量小于 通过对编码的值进行二值化而获得的二进制数据量,而不是基于特征。