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    • 2. 发明公开
    • Threshold matrix generation method, image data generation method, image recording apparatus, and recording medium
    • 生成阈值矩阵的方法,用于生成图像数据,图像记录装置和记录介质的方法
    • EP2785040A1
    • 2014-10-01
    • EP14153842.1
    • 2014-02-04
    • Dainippon Screen Mfg. Co., Ltd.
    • Takahama, IkuhikoAsai, HiroshiIchioka, Yoshikazu
    • H04N1/405
    • G06K15/1881G06K15/102H04N1/4051
    • An image obtained by shrinking an original image in a row direction is halftoned, and this halftone dot image is enlarged in the row direction and recorded at double speed. In order to determine a threshold value of a threshold matrix used for halftoning an image, prepared is a matrix space in accordance with writing positions used for actual recording of an image. In the matrix space, writing elements are set alternately with non-writing elements both in the row direction and in a column direction. In the matrix space, turn-on numbers are allocated to all the writing elements in avoidance of the non-writing elements. Then, in accordance with the turn-on numbers, respective threshold values for the writing elements are determined. By shrinking the threshold matrix in the row direction with omission of the non-writing elements, a threshold matrix for double speed is obtained.
    • 通过按照行的方向收缩到原始图像而获得的图像被半色调,并且该半色调点的图像被放大的行方向和以两倍速记录。 为了确定矿用于半色调图像的阈值矩阵的阈值,制备是在舞蹈雅的矩阵空间与用于图像的实际记录描画位置。 在基体中的空间,写入元件与两个在行方向和列方向非写入元件交替设定。 在矩阵空间,出现编号分配给在回避非描画要素的所有文字元素。 然后,在与出现编号雅舞蹈,为书写元件respectivement的阈值是确定的开采。 通过在与非写入元件的遗漏的行方向上的阈值矩阵缩小,以双倍的速度的阈值矩阵被获得。
    • 3. 发明公开
    • Transport Device And Inkjet Printing Apparatus Having The Same
    • Transportvorrichtung und Tintenstrahldruckvorrichtung damit
    • EP2767403A1
    • 2014-08-20
    • EP13196011.4
    • 2013-12-06
    • Dainippon Screen Mfg. Co., Ltd.
    • Takeuchi, KatsuakiKakimoto, Shoji
    • B41J15/04B41J15/16B65H23/192B65H23/188B41J3/60
    • B41J13/0009B41J3/60B41J15/16B65H23/1888B65H23/192B65H2513/108
    • Provision is a transport device for a printing medium (WP) along a transportation path. The transport device incluces a plurality of transporting sections (13a,13b,17a,17b) configured to transport the printing medium on the transportation path; a divided accelerating interval setting section configured to set a transportation speed in a divided accelerating interval, the divided accelerating interval corresponding to a time generated by a time in an acceleration interval (IA) where the transportation speed of the printing medium changes from 0 to a given value in accordance with an acceleration rate; a divided decelerating interval setting section configured to set a transportation speed in a divided decelerating interval, the divided decelerating interval corresponding to a time generated by dividing a time in a decelerating interval (DA) where the transportation speed of the printing medium changes from the given value to 0 in accordance with an decelerating rate; a basic shaft transporting section (13b), as one of the plurality of transporting sections (13a,13b,17a,17b), configured to be driven at the transportation speed set for every divided accelerating interval or for every divided decelerating interval and to function as a basic shaft upon transporting the printing medium; and a controller (12) configured to switch the transportation speeds of the transporting sections of the plurality of transporters other than the basic shaft transporting section in synchronization with a switching timing of the divided accelerating interval or the divided decelerating interval by the basic shaft transporting section (13b) so as to increase or decrease the transportation speed of the printing medium (WP).
    • 提供了一种沿着传送路径的打印介质(WP)的传送装置。 输送装置包括构造成将运送路径上的打印介质输送的多个输送部(13a,13b,17a,17b) 分割加速间隔设定单元,被配置为将分割加速区间中的运送速度设定为与由打印介质的输送速度从0变为0的加速区间(IA)的时间所生成的时间对应的分割加速区间 按照加速度给定值; 分割减速间隔设定部,被配置为将分割的减速区间中的输送速度设定为与通过将打印介质的输送速度从给定的变化的减速区间(DA)中的时间分开而产生的时间对应的分割减速区间 根据减速率将值设置为0; 作为多个输送部(13a,13b,17a,17b)中的一个的基本轴传送部(13b),被构造成以对于每个分割的加速间隔设定的传送速度或者对于每个分开的减速间隔进行驱动 作为传送打印介质时的基本轴; 以及控制器(12),其被配置为与所述基本轴传送部分的所述分割的加速间隔的切换时刻或所述分割的减速间隔同步地切换除所述基本轴传送部以外的所述多个运送器的输送部的运送速度 (13b),以便增加或减少打印介质(WP)的传送速度。
    • 7. 发明公开
    • Inspecting device and inspecting method
    • Inspektionsvorrichtung undPrüfungsverfahren
    • EP2679987A1
    • 2014-01-01
    • EP13167658.7
    • 2013-05-14
    • Dainippon Screen Mfg. Co., Ltd.Osaka University
    • Nakanishi, HidetoshiIto, AkiraTonouchi, MasayoshiKawayama, Iwao
    • G01N21/95G01N21/956G01N21/35
    • G01R31/2607G01N21/3586G01N21/9501G01N21/956H02S50/10
    • An inspecting device serves to inspect a solar cell. The inspecting device includes an irradiation part for irradiating with pulsed light and a detection part having a detector for detecting an electromagnetic wave pulse radiated from the solar cell depending on the irradiation with the pulsed light. The detector detects an electric field intensity of the electromagnetic wave pulse (41, 43) depending on irradiation with probe light emitted from a light source (a femtosecond laser) of the pulsed light. Moreover, the inspecting device includes a delay part for delaying a timing for detecting the electromagnetic wave pulse in the detector. Furthermore, the inspecting device includes an electromagnetic wave pulse analysis part for detecting a negative peak (B1, B3) of the electric field intensity in a temporal waveform of the electromagnetic wave pulse. Standardization between different measuring positions (P1, P2) can be provided based on the electric field intensity detected at other timing of the respective temporal waveforms, e.g. electric field intensities having small fluctuation (A1, A3).
    • 检查装置用于检查太阳能电池。 检查装置包括用于照射脉冲光的照射部分和具有检测器的检测部件,该检测器根据脉冲光的照射来检测从太阳能电池辐射的电磁波脉冲。 检测器根据从脉冲光的光源(飞秒激光)发射的探测光的照射来检测电磁波脉冲(41,43)的电场强度。 此外,检查装置包括用于延迟用于检测检测器中的电磁波脉冲的定时的延迟部分。 此外,检查装置包括用于检测电磁波脉冲的时间波形中的电场强度的负峰值(B1,B3)的电磁波脉冲分析部。 可以基于在各个时间波形的其它定时检测到的电场强度来提供不同测量位置(P1,P2)之间的标准化,例如。 电场强度波动小(A1,A3)。