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    • 25. 发明授权
    • Image forming system, post processing apparatus, sheet feed control method and sheet feed control program
    • 图像形成系统,后处理装置,片材进给控制方法和片材进给控制程序
    • US08630576B2
    • 2014-01-14
    • US12053248
    • 2008-03-21
    • Yasuhide KokuraYasuomi MitsuiTakashi Noda
    • Yasuhide KokuraYasuomi MitsuiTakashi Noda
    • G03G15/00
    • B65H37/04B65H2513/51B65H2513/53B65H2801/27G03G15/6538G03G2215/00426G03G2215/00599
    • An image forming system comprises: an image forming apparatus and a post processing apparatus that performs a post process on sheets each carrying thereon an image printed by the image forming apparatus. In the image forming system, a sheet feeder feeds sheets of a job to be post-processed to a post processing position; a timing judger judges which is before/after, the first timing to finish feeding the last sheet of the job to the post processing position, or the second timing to finish making preparation for a post process; a delaying time calculator calculates a post process execution delaying time that is a time difference between the first timing and the second timing; and a sheet feed controller controls sheet feed timing of the top sheet of a following job by using the calculated post process execution delaying time, if the second timing is after the first timing.
    • 图像形成系统包括:图像形成装置和后处理装置,其对载有由图像形成装置打印的图像的纸张执行后处理。 在图像形成系统中,送纸机将要后处理的作业的纸张馈送到后处理位置; 定时判断者判断是否在之前/之后,将最后一张作业完成送入后处理位置的第一时间,或完成后期处理准备的第二时间; 延迟时间计算器计算作为第一定时和第二定时之间的时间差的后处理执行延迟时间; 如果第二定时在第一定时之后,则片材进给控制器通过使用计算的后处理执行延迟时间来控制后续作业的片材进给定时。
    • 26. 发明申请
    • STORAGE APPARATUS AND METHOD FOR CONTROLLING STORAGE APPARATUS
    • 存储设备和控制存储设备的方法
    • US20110320726A1
    • 2011-12-29
    • US12526834
    • 2009-05-26
    • Takashi NodaTakashi OchiYoshihito Nakagawa
    • Takashi NodaTakashi OchiYoshihito Nakagawa
    • G06F12/08
    • G06F3/0658G06F3/061G06F3/067
    • A storage apparatus has a channel board 11; a drive board 13; a cache memory 14; a plurality of processor boards 12 that transfer data; and a shared memory 15. The channel board 11 stores a frame transfer table 521 containing information indicative of correspondence between LDEV 172 and each of the processor boards 12, set in accordance with a right of ownership that is a right of access to the LDEV 172. The processor boards 12 store LDEV control information 524 in a local memory 123, which is referred to by the processor board at the time of access The channel board 11 transfers a data frame that forms the received data I/O request, to one of the processor boards 12 corresponding to the LDEV 172 specified from the information contained in the frame by using the frame transfer table 521.
    • 存储装置具有通道板11; 驱动板13; 高速缓冲存储器14; 多个处理器板12,其传送数据; 通道板11存储帧传送表521,该帧传送表521包含指示LDEV172和每个处理器板12之间的对应关系的信息,该信息是根据作为访问LDEV 172的权利的所有权设置的 处理器板12将LDEV控制信息524存储在本地存储器123中,该存储器123在访问时由处理器板参考通道板11将形成接收到的数据I / O请求的数据帧传送到 通过使用帧传送表521从通过帧中包含的信息指定的与LDEV 172相对应的处理器板12。
    • 27. 发明授权
    • Scanning measurement instrument
    • 扫描测量仪器
    • US07958564B2
    • 2011-06-07
    • US12388840
    • 2009-02-19
    • Takashi NodaHiroshi KamitaniNaoya Kikuchi
    • Takashi NodaHiroshi KamitaniNaoya Kikuchi
    • G01B5/004
    • G01B5/008G01B3/008
    • A scanning measurement instrument is capable of simultaneously achieving both higher accuracy and higher speed in autonomous scanning measurement. The instrument includes a path information holding unit for holding information about the path of the center position of a tip of a scanning probe at past tip center positions with respect to the current tip center position during autonomous scanning measurement performed with the scanning probe; a path reference direction setting unit for setting an approximate straight line direction of the path as a path reference direction; a traveling direction setting unit for setting the path reference direction as a traveling direction; a movement control unit for controlling a moving unit such that the scanning probe is moved in the traveling direction; and a normal direction setting unit for setting the normal direction of a measurement surface according to the traveling direction.
    • 扫描测量仪器能够在自主扫描测量中同时实现更高的精度和更高的速度。 仪器包括路径信息保持单元,用于在利用扫描探针执行的自主扫描测量期间,保持关于扫描探针的尖端在过去尖端中心位置处的相对于当前尖端中心位置的路径的路径的信息; 路径参考方向设定单元,用于将路径的近似直线方向设置为路径参考方向; 行进方向设定单元,用于将路径基准方向设定为行进方向; 移动控制单元,用于控制移动单元,使得扫描探针沿行进方向移动; 以及法线方向设定单元,用于根据行进方向设定测量面的法线方向。
    • 28. 发明授权
    • Apparatus, method and program for measuring surface texture
    • 用于测量表面纹理的装置,方法和程序
    • US07643963B2
    • 2010-01-05
    • US12055547
    • 2008-03-26
    • Takashi NodaHiromi DeguchiNaoya Kikuchi
    • Takashi NodaHiromi DeguchiNaoya Kikuchi
    • G01B5/20G01B5/28
    • G01B21/04G01B5/008
    • An apparatus for measuring surface texture causes a probe to trace a surface of a workpiece to detect contact between a tip provided on the tip of the probe and the surface of the workpiece and measures surface texture of the workpiece. The apparatus for measuring surface texture includes: a path division unit dividing a path along which the tip is moved into a plurality of sections between the starting point and the ending point of the path; a moving velocity calculation unit calculating a moving velocity of the tip in sequence from the starting point to the ending point for each of the plurality of sections, based on the path information for each of the plurality of sections; and a stylus movement control unit moving the tip in a section for which a moving velocity has been calculated at the moving velocity calculation unit.
    • 用于测量表面纹理的装置使得探针跟踪工件的表面以检测设置在探针的尖端上的尖端与工件的表面之间的接触,并测量工件的表面纹理。 用于测量表面纹理的装置包括:路径分割单元,其将尖端移动的路径划分为路径的起始点和终点之间的多个部分; 移动速度计算单元,基于所述多个区间中的每一个的路径信息,针对所述多个区间中的每一个,从所述起始点到所述终点依次计算所述尖端的移动速度; 以及触针移动控制单元,其在所述移动速度计算单元处移动所述尖端的运动速度已经被计算的部分中移动。
    • 29. 发明授权
    • Surface scan measuring device, surface scan measuring method, surface scan measuring program and recording medium
    • 表面扫描测量装置,表面扫描测量方法,表面扫描测量程序和记录介质
    • US07392692B2
    • 2008-07-01
    • US11138183
    • 2005-05-26
    • Takashi Noda
    • Takashi Noda
    • G01B5/28G01B5/20
    • G01B5/20G01B5/008G01B21/045G05B2219/37359G05B2219/37402G05B2219/43124
    • A surface scan measuring device, a surface scan measuring method, a surface scan measuring program and a recording medium storing such a program which can appropriately adjust the scanning speed, the sampling pitch and other measurement parameters according to the surface condition of a workpiece are provided. The surface scan measuring device includes a radius of curvature computing section (543) for computing the radius of curvature of the scanning point from the measurement data acquired during the ongoing scanning operation, a moving speed deciding section (544) for deciding the moving speed of the scanning probe according to the computed radius of curvature and a sampling pitch deciding section (546) for deciding the sampling pitch according to the computed radius of curvature.
    • 提供表面扫描测量装置,表面扫描测量方法,表面扫描测量程序和存储可以根据工件的表面状态适当地调整扫描速度,采样间距和其他测量参数的程序的记录介质 。 表面扫描测量装置包括:曲率半径计算部分,用于根据正在进行的扫描操作期间获得的测量数据计算扫描点的曲率半径;移动速度判定部分,用于确定扫描点的移动速度; 根据计算的曲率半径的扫描探针和用于根据所计算的曲率半径来决定采样间距的采样音调判定部分(546)。
    • 30. 发明授权
    • Surface scan measuring device and method of forming compensation table for scanning probe
    • 表面扫描测量装置及形成扫描探头补偿台的方法
    • US07376261B2
    • 2008-05-20
    • US10995730
    • 2004-11-22
    • Takashi NodaKatsuyuki Ogura
    • Takashi NodaKatsuyuki Ogura
    • G06K9/00
    • G01B21/045G01B5/20
    • A measuring system includes a coordinate measuring machine for driving a scanning probe and a host computer. The host computer includes a compensation table (53) and a profile analysis unit (54). The compensation table stores, as compensation data, compensation coefficients to correct counter values of a probe counter (415), and compensation radiuses “r” to the workpiece surface concerning central coordinate values of a contact portion, for respective contact directions. The profile analysis unit has a contact direction calculation unit (542), a compensation data selection unit (543), a compensation calculation unit (544). The contact direction calculation unit calculates the contact direction along which the scanning probe comes into contact with a workpiece W, and the compensation data selection unit selects compensation data set up in the compensation table based on thus calculated contact direction.
    • 测量系统包括用于驱动扫描探针和主计算机的坐标测量机。 主计算机包括补偿表(53)和简档分析单元(54)。 补偿表作为补偿数据存储用于校正探针计数器(415)的计数器值的补偿系数,并且针对各个接触方向将与接触部分的中心坐标值相关的补偿半径“r”与工件表面相对应。 轮廓分析单元具有接触方向计算单元(542),补偿数据选择单元(543),补偿计算单元(544)。 接触方向计算单元计算扫描探针与工件W接触的接触方向,并且补偿数据选择单元基于这样计算的接触方向来选择在补偿表中设置的补偿数据。