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    • 4. 发明授权
    • Printing apparatus and printing method
    • 印刷装置和印刷方法
    • US08469474B2
    • 2013-06-25
    • US12797838
    • 2010-06-10
    • Koichiro NakazawaHideaki TakamiyaNoribumi Koitabashi
    • Koichiro NakazawaHideaki TakamiyaNoribumi Koitabashi
    • B41J29/38
    • B41J25/005
    • Each of four areas of 2×2 in one pixel has four sub areas and the four sub areas correspond to four nozzle arrays A to D. In the sub area of each area, information showing what nozzle array is used for a print of the area is defined. The sub area filled in black shows performing therein a print of a dot using nozzles in the nozzle array corresponding to the sub area. In this way, the dot arrangement pattern has information showing the nozzle array to which nozzles used for printing an area belong, for each area. Therefore, without executing the particular data allocation processing such as mask processing, the allocation of the dot data to the plurality of nozzle arrays can be carried out with a simple arrangement.
    • 一个像素中2×2的四个区域中的每一个具有四个子区域,四个子区域对应于四个喷嘴阵列A至D.在每个区域的子区域中,显示用于区域打印的喷嘴阵列的信息 被定义为。 填充黑色的子区域示出了在与子区域相对应的喷嘴阵列中使用喷嘴执行点的打印。 以这种方式,点排列图案具有表示针对每个区域的用于打印区域的喷嘴的喷嘴阵列的信息。 因此,在不执行诸如掩模处理的特定数据分配处理的情况下,可以以简单的布置来执行点数据到多个喷嘴阵列的分配。
    • 5. 发明申请
    • PRINTING APPARATUS AND PRINTING METHOD
    • 印刷装置和印刷方法
    • US20100328387A1
    • 2010-12-30
    • US12797838
    • 2010-06-10
    • Koichiro NakazawaHideaki TakamiyaNoribumi Koitabashi
    • Koichiro NakazawaHideaki TakamiyaNoribumi Koitabashi
    • B41J29/38
    • B41J25/005
    • Each of four areas of 2×2 in one pixel has four sub areas and the four sub areas correspond to four nozzle arrays A to D. In the sub area of each area, information showing what nozzle array is used for a print of the area is defined. The sub area filled in black shows performing therein a print of a dot using nozzles in the nozzle array corresponding to the sub area. In this way, the dot arrangement pattern has information showing the nozzle array to which nozzles used for printing an area belong, for each area. Therefore, without executing the particular data allocation processing such as mask processing, the allocation of the dot data to the plurality of nozzle arrays can be carried out with a simple arrangement.
    • 一个像素中2×2的四个区域中的每一个具有四个子区域,四个子区域对应于四个喷嘴阵列A至D.在每个区域的子区域中,显示用于区域打印的喷嘴阵列的信息 被定义为。 填充黑色的子区域示出了在与子区域相对应的喷嘴阵列中使用喷嘴执行点的打印。 以这种方式,点排列图案具有表示针对每个区域的用于打印区域的喷嘴的喷嘴阵列的信息。 因此,在不执行诸如掩模处理的特定数据分配处理的情况下,可以以简单的布置来执行点数据到多个喷嘴阵列的分配。
    • 8. 发明授权
    • Recording method, recording apparatus, method for manufacturing recorded article, and recorded article
    • 记录方法,记录装置,制造记录物品的方法和记录物品
    • US06729718B2
    • 2004-05-04
    • US10138423
    • 2002-05-06
    • Fumitaka GotoKatsuhiro ShirotaKoichiro NakazawaMasao KatoHiroshi Tomioka
    • Fumitaka GotoKatsuhiro ShirotaKoichiro NakazawaMasao KatoHiroshi Tomioka
    • B41J201
    • C09D11/30C09D11/54
    • The present invention provides a method and apparatus for allowing a high quality image to be recorded with good coloring. When recording is performed on a recording medium by use of an anionic or cationic ink and a liquid composition, the ink containing a coloring material, the liquid composition containing fine particles in a dispersed state, the surfaces of the fine particles being charged with a polarity opposite to that of the ink, M, D, Ka, tw and t satisfy the relation of t ≤ ( 5 4 × MD Ka ) 2 + tw where M (pg/&mgr;m2) is the amount of the liquid composition supplied to the recording medium per unit area, D (%) is the concentration of the fine particles of the liquid composition, Ka (&mgr;m/msec1/2) is the absorption coefficient of the liquid composition in the recording medium, tw (msec) is the time necessary for the liquid composition to moisten the recording medium, and t (msec) is the time necessary for the ink to come into contact with the supplied liquid composition after the liquid composition is supplied to the recording medium.
    • 本发明提供一种允许以良好着色记录高质量图像的方法和装置。 当通过使用阴离子或阳离子油墨和液体组合物在记录介质上进行记录时,含有着色材料的油墨,该液体组合物含有处于分散状态的微粒,微粒的表面带有极性 与墨水相反,M,D,Ka,tw和t满足关系,其中M(pg / mum <2>)是每单位面积提供给记录介质的液体组合物的量,D(%)为 液体组合物的细颗粒的浓度Ka(mum / msec 1/2)是液体组合物在记录介质中的吸收系数,tw(msec)是液体组合物润湿的必要时间 记录介质,t(msec)是在将液体组合物供给到记录介质之后油墨与供给的液体组合物接触所需的时间。