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    • 13. 发明申请
    • Image display system, image processing system, and video game system
    • 图像显示系统,图像处理系统和视频游戏系统
    • US20060079324A1
    • 2006-04-13
    • US11243481
    • 2005-10-04
    • Yusuke WatanabeSatoru MiyakiTukasa Yoshimura
    • Yusuke WatanabeSatoru MiyakiTukasa Yoshimura
    • A63F13/00
    • A63F13/655A63F1/04A63F13/10A63F13/213A63F13/95A63F2009/2419A63F2300/1093A63F2300/206A63F2300/5546A63F2300/65A63F2300/69A63F2300/8058A63F2300/8082G06T7/254
    • According to a function 188 which stores in the first memory for difference, pickup image data from CCD camera 42 based on a predetermined timing, a function 190 which stores in the second memory for difference, pickup image data from CCD camera 42 based on another timing, a function 192 which obtains a difference between the pickup image data stored in the first memory for difference 24 and the pickup image data stored in the second memory for difference 26, a function 194 for specifying an image having moved based on the data as a difference, a function 196 which determines whether or not the image having moved is touching the character image, and a function 200 which increases a value of parameters such as experiential value, physical energy, and offensive power, when it is determined that the image having moved comes into contact with the character image, it is possible to expand a range of card game used to be played only in a real space up to a virtual space, and offer a new game which merges the card game and video game.
    • 根据存储在第一存储器中的功能188,基于预定定时从CCD摄像机42拾取图像数据,存储第二存储器中的差值的功能190,其基于另一定时从CCD摄像机42拾取图像数据 获得存储在差分24的第一存储器中的拾取图像数据与存储在第二存储器26中的拾取图像数据之间的差异的功能192,用于将基于数据移动的图像指定为 差异,确定所移动的图像是否正在触摸字符图像的功能196以及当确定图像具有的图像具有增加诸如经验值,物理能量和令人反感的功率之类的参数的值的功能200时 移动与人物图像接触,可以扩展一个仅用于虚拟空间的真实空间中玩的纸牌游戏范围,并提供新的游戏 e合并了纸牌游戏和视频游戏。
    • 16. 发明授权
    • Servo device for spindle motor
    • 主轴电机伺服装置
    • US5486744A
    • 1996-01-23
    • US018926
    • 1993-02-16
    • Yusuke Watanabe
    • Yusuke Watanabe
    • G11B19/28G11B19/247
    • G11B19/28
    • A servo device for servo controlling a spindle motor according to the invention, comprising: a unit for generating a signal with at least two cycles during one full rotation of a rotator in the spindle motor in accordance with a rotational movement of the rotator; a unit for measuring a time required for each of the two periods; a unit for storing at least two target time corresponding to the two periods respectively; and a speed controlling unit for controlling a rotational speed of the rotator at the basis of the comparison between the respective measured period and the corresponding target period. Therefore, a current error of the measurement of periods are associated with the time of half the period preceding the current period, thereby the detection with the reduced delay can be performed in comparison with the detection at the time of one half rotation.
    • 根据本发明的用于伺服控制主轴电机的伺服装置,包括:用于根据转子的旋转运动在主轴电动机中的旋转器的一次完全旋转期间产生具有至少两个循环的信号的单元; 用于测量两个时期中每一个所需时间的单位; 用于分别存储对应于两个周期的至少两个目标时间的单元; 以及速度控制单元,用于基于各个测量周期与相应的目标周期之间的比较来控制旋转器的旋转速度。 因此,周期测量的当前误差与当前周期之前的时间的一半相关联,因此与半个旋转时的检测相比,可以执行具有减小的延迟的检测。
    • 19. 发明授权
    • Fuel cell separator and method for manufacturing the same
    • 燃料电池分离器及其制造方法
    • US09178223B2
    • 2015-11-03
    • US12473329
    • 2009-05-28
    • Yusuke WatanabeYoshinobu Kurosaki
    • Yusuke WatanabeYoshinobu Kurosaki
    • H01M8/04H01M4/82H01M8/02H01M8/10
    • C25D9/02H01M8/0206H01M8/021H01M8/0221H01M8/0228H01M8/0239H01M2008/1095Y02E60/50Y02P70/56Y10T29/49115
    • A fuel cell separator 60 having a metal plate and an anticorrosion resin coating layer 55 formed thereon is provided, with which adhesion between the resin coating layer 55 and its counterpart member is further increased and the durability of a fuel cell unit is improved. In forming the fuel cell separator 60 having a separator substrate 50 that is a metal plate and an anticorrosion resin coating layer 55 formed thereon, the resin coating layer 55 is formed such that it has a surface roughness Ra of 0.5 to 13.5 μm. Increasing the surface roughness will produce an anchoring effect, which will improve the adhesive force at the interface. The aforementioned surface roughness Ra can be obtained either with the use of fillers that are mixed into the resin coating layer 55 or with external force applied to the surface of the resin coating layer 55 by means of shot blasting, for example.
    • 提供了具有形成在其上的金属板和防腐树脂涂层55的燃料电池隔板60,树脂涂层55与其配对构件之间的粘合性进一步增加,并且提高了燃料电池单元的耐久性。 在形成具有形成在其上的金属板和防腐树脂涂层55的隔板基板50的燃料电池隔板60时,树脂被覆层55的表面粗糙度Ra为0.5〜13.5μm。 增加表面粗糙度将产生锚定效果,这将提高界面处的粘合力。 上述表面粗糙度Ra可以通过使用混合到树脂被覆层55中的填料或者通过例如喷丸施加到树脂被覆层55的表面的外力来获得。