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    • 3. 发明授权
    • Printing apparatus and printing method
    • 印刷装置和印刷方法
    • US07472977B2
    • 2009-01-06
    • US11439217
    • 2006-05-24
    • Yasunori FujimotoMakoto Akahira
    • Yasunori FujimotoMakoto Akahira
    • B41J29/38
    • B41J2/155B41J2/04508B41J2/04543B41J2/0458
    • A printing apparatus executes printing by arranging plural printheads, each including a plurality of print elements in a direction of a print width so as to obtain the print width corresponding to a width of a printing medium and conveying the printing medium in a direction perpendicular to the direction of the print width. The printing positions of part of the print elements of a first printhead in the direction of the print width overlap with part of the print elements of a second printhead in the direction of the print width. The apparatus includes a conveyor for conveying the printing medium, a mutual complementary printer performing mutual complementary printing in the overlap portion by the overlapped print elements, and a time divisional driving controller for dividing the plurality of print elements of each of the plural printheads into a plurality of blocks, with each block composed of a predetermined number of print elements, and for time-divisionally driving the predetermined number of print elements included in each block. The predetermined number differs from a number of print elements included in the overlap portion, and the time divisional driving controller controls the driving sequences of the overlapped print elements of the plural printheads to coincide with each other.
    • 打印装置通过在打印宽度的方向上布置多个打印头来执行打印,这些打印头包括多个打印元件,以获得与打印介质的宽度相对应的打印宽度,并沿垂直于打印介质的方向传送打印介质 打印宽度方向。 打印宽度方向上的第一打印头的打印元件的打印位置的打印位置与打印宽度方向上的第二打印头的打印元件的一部分重叠。 该装置包括用于传送打印介质的传送器,由重叠的打印元件在重叠部分中执行互补打印的互补打印机,以及用于将多个打印头中的每一个的多个打印元件分成一个 多个块,其中每个块由预定数量的打印元素组成,并且用于时分地驱动包括在每个块中的预定数量的打印元素。 预定数量与包括在重叠部分中的多个打印元件不同,并且时分驱动控制器控制多个打印头的重叠打印元件的驱动顺序彼此一致。
    • 4. 发明申请
    • Printing apparatus and printing method
    • 印刷装置和印刷方法
    • US20060274097A1
    • 2006-12-07
    • US11439217
    • 2006-05-24
    • Yasunori FujimotoMakoto Akahira
    • Yasunori FujimotoMakoto Akahira
    • B41J2/205
    • B41J2/155B41J2/04508B41J2/04543B41J2/0458
    • This invention provides a full-line type printing apparatus and printing method that achieve high-quality printing. According to the method, when executing printing by time-divisionally driving a full-line printhead including a plurality of print elements in the direction of print width so as to obtain a print width corresponding to the width of a printing medium, the following control is executed. At least part of the plurality of print elements are overlapped in the conveyance direction of the printing medium. In this overlap portion, mutual complementary printing is executed by the overlapped print elements. Upon time-divisionally driving the overlapped print elements used for mutual-complementarily printing, control is executed to adjust driving sequences of the overlapped print elements.
    • 本发明提供了一种实现高质量打印的全线型打印设备和打印方法。 根据该方法,当在打印宽度方向上分时地驱动包括多个打印元件的全行打印头执行打印时,以获得与打印介质的宽度对应的打印宽度,则以下控制是 执行。 多个打印元件的至少一部分在打印介质的输送方向上重叠。 在该重叠部分中,通过重叠的打印元件执行互补打印。 在分时驱动用于互补打印的重叠打印元件的情况下,执行控制以调整重叠的打印元件的驱动顺序。
    • 5. 发明申请
    • Ink jet printing method and ink jet printing system
    • 喷墨打印方法和喷墨打印系统
    • US20050104917A1
    • 2005-05-19
    • US10986816
    • 2004-11-15
    • Tsuyoshi ShibataYasunori Fujimoto
    • Tsuyoshi ShibataYasunori Fujimoto
    • B41J2/01B41J2/205B41J2/21
    • B41J2/2132
    • In an ink jet printing apparatus that adopts an area grayscale system using halftone elements, this invention prevents degradations of grayscale reproducibility caused by a plurality of dots pulling each other on a print medium, and thereby realize a stable grayscale and color reproducibility. To this end dots to be applied to halftone elements, whose arrangement is determined by the halftone element-based area grayscale system, are divided into a dot group for interior halftone elements and a dot group for outline halftone elements. These two dot groups are printed with a predetermined time difference between them. The subsequent dots are then drawn to the preceding dots that are not yet absorbed in the print medium. Therefore, the overall shape and grayscale level of the merged dot in each pixel become stable, allowing for reliable image processing which in turn realizes excellent grayscale and color reproducibility.
    • 在采用使用半色调元件的区域灰度系统的喷墨打印设备中,本发明防止了由打印介质上相互牵引的多个点引起的灰度再现性的劣化,从而实现了稳定的灰度和色彩再现性。 为此,应用于由半色调元件基区域灰度系统确定的半色调元件的点被分成用于内部半色调元件的点组和用于轮廓半色调元素的点组。 这两个点组之间印有预定的时间差。 随后的点被绘制到尚未在打印介质中吸收的先前点。 因此,每个像素中的合并点的整体形状和灰度级别变得稳定,从而可以进行可靠的图像处理,从而实现优异的灰度和色彩再现性。
    • 6. 发明授权
    • Ink jet recording apparatus and correcting method for image
    • 喷墨记录装置和图像校正方法
    • US06834927B2
    • 2004-12-28
    • US10288284
    • 2002-11-06
    • Masataka YashimaNoribumi KoitabashiTsuyoshi ShibataHitoshi TsuboiYasunori Fujimoto
    • Masataka YashimaNoribumi KoitabashiTsuyoshi ShibataHitoshi TsuboiYasunori Fujimoto
    • B41J2205
    • B41J2/2139B41J2/515
    • An image correcting method for an ink jet recording apparatus for recording an image by ejecting ink onto a recording material using a recording head having an array of a plurality of nozzles for ejecting the ink, the method includes the steps of an outputting step of outputting at least two kinds of uniform patterns for detection of a recording property of a recording head; a measuring step of measuring a density distribution of the patterns outputted by the outputting step; a calculation step of calculating, for each of the kinds of patterns, data for correction for respective one of the plurality of nozzles on the basis of a result of the measuring step: an image correcting step of comparing data corresponding to the at least two kinds of patterns, classifying states of the plurality of nozzles, and correcting images corresponding to respective ones of the plurality of nozzles, wherein the correcting step effects correction processes which are different from depending on the classification.
    • 一种用于通过使用具有用于喷射墨的多个喷嘴阵列的记录头将油墨喷射到记录材料上来记录图像的喷墨记录装置的图像校正方法,所述方法包括以下步骤:输出步骤, 用于检测记录头的记录特性的至少两种均匀图案; 测量步骤,测量由所述输出步骤输出的图案的浓度分布; 基于所述测量步骤的结果,针对所述各种图案计算针对所述多个喷嘴中的相应一个喷嘴的各个喷嘴的数据的计算步骤:图像校正步骤,对与所述至少两种对应的数据进行比较 分类多个喷嘴的状态,以及对应于多个喷嘴中的相应喷嘴的校正图像,其中校正步骤执行不同于根据分类的校正处理。
    • 7. 发明授权
    • Ink jet printing method and ink jet printing system
    • 喷墨打印方法和喷墨打印系统
    • US07198345B2
    • 2007-04-03
    • US10986816
    • 2004-11-15
    • Tsuyoshi ShibataYasunori Fujimoto
    • Tsuyoshi ShibataYasunori Fujimoto
    • B41J2/205
    • B41J2/2132
    • In an ink jet printing apparatus that adopts an area grayscale system using halftone elements, degradation of grayscale reproducibility caused by a plurality of dots pulling each other on a print medium can be prevented, and thereby stable grayscale and color reproducibility can be realized. To this end dots to be applied to halftone elements, whose arrangement is determined by the halftone element-based area grayscale system, are divided into a dot group for interior halftone elements and a dot group for outline halftone elements. These two dot groups are printed with a predetermined time difference between them. The subsequent dots are then drawn to the preceding dots that are not yet absorbed in the print medium. Therefore, the overall shape and grayscale level of the merged dot in each pixel become stable, allowing for reliable image processing which in turn realizes excellent grayscale and color reproducibility.
    • 在采用使用半色调元件的区域灰度系统的喷墨打印装置中,可以防止由打印介质上相互牵引的多个点引起的灰度再现性的降低,从而可以实现稳定的灰度和颜色再现性。 为此,应用于由半色调元件基区域灰度系统确定的半色调元件的点被分成用于内部半色调元件的点组和用于轮廓半色调元素的点组。 这两个点组之间印有预定的时间差。 随后的点被绘制到尚未在打印介质中吸收的先前点。 因此,每个像素中的合并点的整体形状和灰度级别变得稳定,从而可以进行可靠的图像处理,从而实现优异的灰度和色彩再现性。
    • 10. 发明申请
    • IMAGE PROCESSING APPARATUS, PRINTING APPARATUS, AND IMAGE PROCESSING METHOD
    • 图像处理设备,打印设备和图像处理方法
    • US20100188678A1
    • 2010-07-29
    • US12692867
    • 2010-01-25
    • Shinichi MiyazakiTomokazu YanaiYasunori Fujimoto
    • Shinichi MiyazakiTomokazu YanaiYasunori Fujimoto
    • G06K15/00
    • H04N1/401H04N1/4052
    • When executing the gradation lowering processing to a data area in the lower side in multi-valued print data 403, an error generated by executing the gradation lowering processing to the data area in the lower side is stored in an information storage area 901B. On the other hand, the error thus distributed and stored is used for executing the gradation lowering processing to the data area “J” (Jth line) in multi-valued print data 404 relating to the next scan. In this way the error generated when executing the gradation lowering processing to the multi-valued print data is stored, which is used at the time of executing the gradation lowering processing to the multi-valued print data relating to the next scan. Therefore, the density is stored by receiving and delivering the error between the multi-valued print data in a scan unit.
    • 当在多值打印数据403中对下侧的数据区域执行灰度降低处理时,通过对下侧的数据区域执行灰度降低处理而产生的错误被存储在信息存储区域901B中。 另一方面,这样分配和存储的误差被用于对与下一次扫描有关的多值打印数据404中的数据区“J”(第J行)执行灰度降低处理。 以这种方式,在对多值打印数据执行灰度降低处理时产生的误差被存储在对与下一次扫描相关的多值打印数据执行灰度降低处理时使用。 因此,通过在扫描单元中的多值打印数据之间接收和传送误差来存储密度。