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    • 2. 发明授权
    • Feeding method for work products and apparatus thereof
    • 产品及其设备的进料方法
    • US5186593A
    • 1993-02-16
    • US740891
    • 1991-08-06
    • Shinichi TsukadaYoshiharu IizukaHideyuki TamuraOsamu Sakashita
    • Shinichi TsukadaYoshiharu IizukaHideyuki TamuraOsamu Sakashita
    • B21D43/00B21D51/26B23Q7/04B23Q7/14
    • B21D43/00B21D51/2692B23Q7/04B23Q7/14
    • A method of feeding work products such as can ends between different processes having different throughput requirements uses various feeding apparatus. In the first process, the work products are continuously mechanically treated at the same time by a group of first machines and then continuously discharged to a second process. This second process receives the work products fed from the plural discharging parts of the first machines. The apparatus in the second process has fewer receiving inlets than discharge parts of the first machines. In the second process, the work products are further mechanically treated. The method feeds the work products discharged from the plural discharging parts in the first process along respective feeding paths and then quickly feeds a predetermined number of work products to form a group of work products. This group is held in an arranged state in respective stay parts connected to the feeding paths. A robot system will then successively feed the work groups to the feeding part for the second process. Alternatively, the method can be arranged such that a certain process having a high output can feed to various machines of a subsequent process having a lower ouput. Various feeding apparatus can be used in order to divide the products from the certain process having the higher output into appropriate groups to be fed to the various machines of the subsequent slower process.
    • 在具有不同生产量要求的不同工艺之间输送诸如罐头之类的工件的方法使用各种进料装置。 在第一种方法中,工件通过一组第一机器同时连续机械处理,然后连续排出到第二工序。 该第二过程接收从第一机器的多个排出部分供给的工件。 与第一机器的排放部分相比,第二过程中的设备具有更少的接收入口。 在第二个过程中,工作产品被进一步机械处理。 该方法沿着各自的进给路径将从多个排出部排出的作业物品沿着各自的进给路径进给,然后快速地供给预定数量的工件以形成一组工件。 该组在连接到馈送路径的相应的保持部分中被保持在布置状态。 然后机器人系统将连续地将工作组馈送到用于第二过程的进给部分。 或者,该方法可以被布置为使得具有高输出的某一过程可以馈送到具有较低输出的后续处理的各种机器。 可以使用各种进给装置,以便将具有较高输出的某些过程的产品分成适当的组,以供给到随后的较慢过程的各种机器。
    • 7. 发明授权
    • Focus detection device, focus detection method, and camera
    • 焦点检测装置,焦点检测方法和相机
    • US08676051B2
    • 2014-03-18
    • US12355409
    • 2009-01-16
    • Shinichi Tsukada
    • Shinichi Tsukada
    • G03B13/34
    • G03B13/34G02B7/34
    • A focus detection device includes a focus detector, an object detector, a selector, a divider, and a controller. The focus detector is configured to detect a plurality of focus adjusting states at focus detecting positions in an image plane of an optical system. The object detector is configured to detect image information corresponding to a specified object in an image of the optical system. The selector is configured to select focus adjusting states among the plurality of focus adjusting states based on the image information detected by the object detector. The divider is configured to find variation in the selected focus adjusting states and configured to divide the selected focus adjusting states into a plurality of groups based on the variation. The controller is configured to find a final focus adjusting state based on a pre-final focus adjusting state in a group selected from the plurality of groups.
    • 焦点检测装置包括焦点检测器,物体检测器,选择器,分隔器和控制器。 焦点检测器被配置为在光学系统的图像平面中的焦点检测位置处检测多个焦点调节状态。 对象检测器被配置为检测与光学系统的图像中的指定对象相对应的图像信息。 选择器被配置为基于由对象检测器检测到的图像信息来选择多个焦点调整状态中的焦点调整状态。 分配器被配置为找到所选择的焦点调整状态的变化,并且被配置为基于该变化将所选择的焦点调整状态划分成多个组。 控制器被配置为基于从多个组中选择的组中的预最终焦点调整状态来找到最终聚焦调整状态。
    • 9. 发明授权
    • Apparatus for manufacturing can lid
    • 用于制造罐的装置
    • US06524048B1
    • 2003-02-25
    • US09571545
    • 2000-05-16
    • Shinichi TsukadaMasashi TakamatsuTakeshi SugimuraAkihiro Hamada
    • Shinichi TsukadaMasashi TakamatsuTakeshi SugimuraAkihiro Hamada
    • B21D5144
    • B21D51/383
    • A can lid of the fully-open type has a disk-shaped panel, a score notched endlessly in a surface of the panel along an outer circumferential edge of the panel, for forming an opening in the panel, and a tab fixed to the panel by a rivet. The tab is attached in a direction substantially perpendicular to an initial tear-off line of the score. The surface of the panel which is concealed from view by the tab is printed with a circular mark representing a rolling direction in which the material of the panel has been rolled. The score is defined such that the rolling direction extends substantially at a right angle to the initial tear-off line of the score. The panel has an auxiliary score defined in the surface thereof near the rivet and positioned across the rivet from the initial tear-off line substantially parallel to the initial tear-off line and separate therefrom.
    • 完全开式的罐盖具有圆盘形面板,在面板的外周边缘上沿着面板的外圆周边缘不断地凹陷的刻痕,用于在面板中形成开口,以及固定到面板的凸片 用铆钉 翼片沿着与分数的初始撕下线基本垂直的方向附接。 通过突片隐藏的面板的表面印有表示滚动方向的圆形标记,其中面板的材料已经被滚动。 评分被定义为使得滚动方向基本上与分数的初始撕下线成直角延伸。 该面板具有在其靠近铆钉的表面中限定的辅助刻痕,并且与起始撕离线基本上平行于初始剥离线定位在穿过铆钉的位置上并与之分开。
    • 10. 发明授权
    • Focus detection device, photographic lens unit, image-capturing apparatus and camera system
    • 焦点检测装置,摄影镜头单元,图像捕获装置和照相机系统
    • US08633992B2
    • 2014-01-21
    • US12877421
    • 2010-09-08
    • Shinichi Tsukada
    • Shinichi Tsukada
    • H04N5/228H04N3/00
    • H04N5/3696G02B7/38G03B3/10G03B13/36H04N5/23212
    • A focus detection device includes: a focus detection unit that includes a pair of light-receiving element arrays and lens systems via which a pair of focus detection light fluxes are each guided to one of the pair of light-receiving element arrays, and detects an image shift amount based upon output signals output from the pair of light-receiving element arrays; an acquisition unit that obtains a plurality of sets of opening data pertaining to sizes and positions of a plurality of openings; a function value calculation unit that calculates, based upon the plurality of sets of opening data, a function value pertaining to a gravitational center distance between gravitational centers of a pair of overlapping areas where a pair of specific focus detection pupils overlap an exit pupil; and a conversion unit that converts the image shift amount to a defocus amount based upon the function value.
    • 焦点检测装置包括:焦点检测单元,其包括一对受光元件阵列和透镜系统,通过该一对光接收元件阵列和透镜系统,一对焦点检测光束被引导到该对受光元件阵列之一,并且检测 基于从所述一对光接收元件阵列输出的输出信号的图像偏移量; 获取单元,其获得与多个开口的尺寸和位置有关的多组开放数据; 功能值计算单元,其基于所述多组打开数据,计算与一对特定焦点检测瞳孔与出射瞳孔重叠的一对重叠区域的重力中心之间的重力中心距离的功能值; 以及转换单元,其基于该功能值将图像偏移量转换为散焦量。