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    • 3. 发明申请
    • METHOD AND APPARATUS FOR COMPOSING 3D PHOTOGRAPHS
    • 用于组合3D摄影的方法和装置
    • US20140079383A1
    • 2014-03-20
    • US14084766
    • 2013-11-20
    • 3DV Co. Ltd.
    • Kwok Wah Allen Lo
    • G03B35/24
    • G03B35/24G02B27/2214G02F1/1323G02F1/133526G03B27/68G03B35/14
    • A 3D photographic printer uses a monochrome panel for displaying two or more images for composing a 3D photograph. Each image has a plurality of color image components. A light source with selectable color light components is used to illuminate the monochrome panel corresponding to the displayed color image components. The images are displayed at different locations so that these images can be projected onto a 3D print material through a projection lens at different projection angles. With the digital display device, it is possible to electronically locate the images at different locations and shift the images or mechanically moving the display device during the 3D photographic composing process. It is also possible that only the print material is mechanically shifted to different locations. The display device and the projection lens can be stationary.
    • 3D照相打印机使用单色面板显示用于组成3D照片的两个或多个图像。 每个图像具有多个彩色图像分量。 具有可选择的彩色光分量的光源用于照亮与所显示的彩色图像分量对应的单色面板。 图像被显示在不同的位置,使得这些图像可以通过投影透镜以不同的投影角投影到3D打印材料上。 利用数字显示装置,可以在3D摄影合成过程中将图像电子定位在不同位置并移动图像或机械地移动显示装置。 也可以仅将打印材料机械地移动到不同的位置。 显示装置和投影透镜可以是静止的。
    • 4. 发明申请
    • PRINTER
    • 打印机
    • US20110285974A1
    • 2011-11-24
    • US13121945
    • 2010-10-04
    • Naoki Yoshida
    • Naoki Yoshida
    • G03B35/14
    • B41J2/32B41J11/005B41J11/008B41J13/0027G03B35/14G03B35/24
    • Tilt angle and tilt direction of lenticular lenses are detected precisely to correct attitude of a transported lenticular sheet with high accuracy. At least first to third lens sensors are disposed in a transport track of the lenticular sheet, aligned in a main scan direction and spaced at uneven intervals. Each lens sensor has a light-emitting element and a light-receiving element arranged to sandwich the lenticular sheet and output a detection signal corresponding to concavities and convexities of the lenticular lenses. During the transport of the lenticular sheet, the detection signals output from the first to third lens sensors are analyzed to detect the tilt direction and the tilt angle of the lenticular lenses accurately. Based on the tilt direction and the tilt angle, the attitude of the lenticular sheet is corrected in advance, preventing the lenticular sheet from skewing while stripe images are being recorded thereon.
    • 精确检测双凸透镜的倾斜角和倾斜方向,以高精度校正传送的透镜片的姿态。 至少第一至第三透镜传感器设置在双凸透镜片的传送轨道中,在主扫描方向上对齐并以不均匀的间隔隔开。 每个透镜传感器具有发光元件和光接收元件,该光接收元件布置成夹住透镜片并输出对应于双凸透镜的凹凸的检测信号。 在透镜片的输送期间,分析从第一至第三透镜传感器输出的检测信号,以准确地检测双凸透镜的倾斜方向和倾斜角度。 基于倾斜方向和倾斜角度,预先校正透镜片的姿态,防止在其上记录条纹图像时双凸透镜片歪斜。
    • 5. 发明申请
    • Digital stereo imaging photosensitive device for a grating and a photosensitive material and its method
    • 用于光栅和感光材料的数字立体成像感光装置及其方法
    • US20110249249A1
    • 2011-10-13
    • US13140339
    • 2009-12-16
    • Jinchang Gu
    • Jinchang Gu
    • G03B27/58G03B27/32
    • G03B27/32G03B25/02G03B27/52G03B35/14G03C7/00G03D3/00G03D15/00
    • A digital stereo imaging photosensitive device for a grating and a photosensitive material, includes: a photosensitive platform (8), connected with a base via a platform moving mechanism; a compressing mechanism (7) mounted on the photosensitive platform, wherein a grating (5) is positioned on the compressing mechanism; a LCD displayer (2) suspending above the photosensitive platform; and a lens suspending above the photosensitive platform via a lens moving mechanism, wherein the lens is under the LCD displayer. And a method for digital stereo projection. The present invention does not need photosensitive paper after combining the grating and the photosensitive material, is capable of separating the photosensitive material and the grating after projection and sensitization, so that an ordinarily developing device can be used to develop. Furthermore, a double-faced film layer in the photosensitive material and the grating during projection and sensitization is not needed, and the color contract of the stereopictures is better than that of the prior art combining the grating with the photosensitive material before projection.
    • 一种用于光栅和感光材料的数字立体成像感光装置,包括:感光平台(8),通过平台移动机构与基座相连; 安装在感光平台上的压缩机构(7),其中光栅(5)位于压缩机构上; 液晶显示器(2)悬挂在感光平台上方; 以及通过透镜移动机构悬挂在感光平台上方的透镜,其中透镜在LCD显示器下方。 还有一种数字立体声投影的方法。 本发明在组合光栅和感光材料之后不需要光敏纸,能够在投影和敏化之后分离感光材料和光栅,从而可以使用通常的显影装置来显影。 此外,不需要感光材料中的双面膜层和投影和增感期间的光栅,立体图像的色彩收缩比在投影之前将光栅与感光材料组合的现有技术更好。
    • 6. 发明申请
    • IMAGE RECORDNG DEVICE AND IMAGE PROCESSING DEVICE
    • 图像记录装置和图像处理装置
    • US20110181853A1
    • 2011-07-28
    • US12981707
    • 2010-12-30
    • Masaaki ORIMOTO
    • Masaaki ORIMOTO
    • G03B27/00
    • G03B27/00G03B35/14G03B35/24
    • Present invention provides a three dimensional print with a favorable three-dimensional effect across the whole image surface at a determined view position. A face of a person or the main object within a multi-view image is extracted and the position of the extracted face is made to be the standard position to match the alignment of the lens pitch of the lenticular sheet with the alignment of the print pitch. A print position displacement amount δ is calculated based on the standard position and the print pitch. The lens position at the leftmost side with respect to the print area of the lenticular sheet 12 is detected, and printing initiates from a position displaced only with the print position displacement amount δ with respect to the detected lens position. And then, the area to the sequential right side is printed with the print pitch z.
    • 本发明在确定的观察位置提供了整个图像表面上具有有利的三维效果的三维印刷。 提取多视图图像内的人物或主要物体的面部,并且将提取的面部的位置作为标准位置,以匹配双凸透镜片的透镜间距与打印间距的对准 。 基于标准位置和印刷间距来计算打印位置位移量δ。 检测相对于双凸透镜片12的打印区域的最左侧的透镜位置,并且从仅与打印位置位移量δ相对于检测到的透镜位置移位的位置开始打印。 然后,顺序右侧的区域以打印间距z打印。
    • 7. 发明申请
    • PRINTER AND PRINTING METHOD FOR LENTICULAR SHEET
    • 打印机和打印方法
    • US20110116058A1
    • 2011-05-19
    • US12948491
    • 2010-11-17
    • Takeshi OTAYoichi SAWACHI
    • Takeshi OTAYoichi SAWACHI
    • G03B35/14
    • G03B35/14G02B27/2214
    • A lenticular sheet includes an array of lenticules and a back surface located opposite to the lenticules. In a printer, a printhead prints plural interlaced images on the back surface, the interlaced images being formed by interlacing two original images having disparity. A line sensor has plural sensor elements arranged in an array direction of the lenticules, and receives detection light condensed by a cylindrical lens, to output a detection signal for representing a vertex point of the lenticules. A transport device transports the lenticular sheet in the array direction, and adjusts an orientation of the lenticular sheet during transport to remove offset of the lenticular sheet from the array direction. A controller controls the transport device according to the detection signal, sets a longitudinal direction of the lenticules perpendicular to the array direction by adjusting the orientation, and drives the printhead for printing.
    • 透镜片包括微透镜阵列和与微透镜相对的后表面。 在打印机中,打印头在后表面上打印多个交错图像,隔行扫描图像是通过交织具有不同的两个原始图像而形成的。 线传感器具有沿着微透镜的排列方向排列的多个传感器元件,并接收由柱面透镜会聚的检测光,输出用于表示微透镜的顶点的检测信号。 输送装置沿着排列方向输送透镜片,并且在运输期间调节透镜片的取向以从透镜片排出阵列方向的偏移。 控制器根据检测信号控制传送装置,通过调整取向将微透镜的纵向方向垂直设置成阵列方向,驱动打印头进行打印。
    • 9. 发明授权
    • Process for full-automatic and synchronous quick thermoprinting of stereoscopic color film and apparatus adopting the process
    • 立体彩色胶片全自动同步快速热印的方法及采用该工艺的设备
    • US06556274B2
    • 2003-04-29
    • US09966530
    • 2001-09-28
    • Chit Ho Tam
    • Chit Ho Tam
    • G03B2732
    • G03B35/14
    • A process for full-automatic and synchronous quick thermoprinting of stereoscopic color film and apparatus adopting the process uses the internationally accepted nontoxic oil ink to design patterns on a transfer medium, which medium is in turn absorbed by a special thin film so as to be attached to a printing stock, whereupon the thus prepared printing stock is put into the apparatus. By gas pressure a pressure column of an inclined surface is pushed downward so as to contact and press a sliding mold jig of the inclined surface to synchronously move toward the center, so that each outer mold thermocompresses onto the outer surface of the printing stock from upper, left, right, front and rear directions simultaneously. After a predetermined period at predetermined temperature, the mold automatically returns to its original position. The disadvantages of manual operation which is of lower efficiency and unstable quality are thus overcome.
    • 采用该方法的立体彩色胶片全自动同步快速热印的方法和采用该方法的设备使用国际上公认的无毒油墨在转印介质上设计图案,该介质又被特殊的薄膜吸收以便附着 将这样制备的印刷原料放入设备中。 通过气体压力,倾斜表面的压力柱被向下推动,以便接触并压入倾斜表面的滑动模具夹具以同步地朝向中心移动,使得每个外模具从上部热压到印刷材料的外表面上 ,左,右,前后方向同时进行。 在预定温度下的预定时间之后,模具自动返回到其初始位置。 因此克服了低效率和不稳定质量的手动操作的缺点。
    • 10. 发明申请
    • METHOD AND APPARATUS FOR PRINTING LARGE FORMAT LENTICULAR IMAGES
    • 用于打印大型格式图像的方法和装置
    • US20020075462A1
    • 2002-06-20
    • US09476478
    • 1999-12-30
    • DAVID KESSLERROGER A. MORTONTIMOTHY J. TREDWELL
    • G03B027/32
    • H04N1/00201G02B27/2214G03B35/14H04N1/1911H04N1/23
    • A method and apparatus for printing large format lenticular images on a lenticular sheet (902) having a plurality a generally parallel lenticules (903) on a front side of the lenticular sheet (902) is disclosed, which comprises a sensor (209) which senses a beginning of each lenticule (903). A printhead (102) prints interleaved image information on the lenticular sheet (902) in a series of swaths (220) wherein a width of each of the swaths (220) is less than a width of the lenticular sheet (902). In one embodiment, each of the swaths (220) is printed in a direction parallel to the lenticules (903). In another embodiment, each of the swaths (220) is printed in a direction perpendicular to the lenticules (903).
    • 公开了一种用于在具有在透镜片(902)的前侧上具有多个大致平行的微透镜(903)的透镜片(902)上打印大幅面透镜图像的方法和装置,其包括传感器(209) 每个微透镜的开始(903)。 打印头(102)以一系列条(220)的方式在双凸透镜片(902)上印刷交错的图像信息,其中每个条带(220)的宽度小于透镜片(902)的宽度。 在一个实施例中,每个条(220)沿平行于微透镜(903)的方向印刷。 在另一个实施例中,每个条带(220)沿垂直于微透镜(903)的方向印刷。