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    • 3. 发明申请
    • LIQUID EJECTING APPARATUS
    • 液体喷射装置
    • US20090147036A1
    • 2009-06-11
    • US12366505
    • 2009-02-05
    • Satoru HosonoHirokazu Nunokawa
    • Satoru HosonoHirokazu Nunokawa
    • B41J29/38
    • B41J2/2128B41J2/04581B41J2/04588B41J2/04593B41J2/04595B41J2/04596
    • A liquid ejecting apparatus includes: a head having a nozzle; a pressure-changing unit for changing pressure of liquid in the nozzle in such a manner that the liquid is ejected from the nozzle; a first level-data setting unit for setting a selected first level data from a plurality of first level data, based on an ejecting data for a first kind of liquid; a second level-data setting unit for setting a selected second level data from a plurality of second level data, based on an ejecting data for a second kind of liquid; a driving-signal generator for generating a driving signal; and a driving-pulse generator for generating a driving pulse based on the selected first or second level data and the driving signal. The plurality of first level data and the plurality of second level data are different from each other.
    • 液体喷射装置包括:具有喷嘴的头部; 压力改变单元,用于以使得液体从喷嘴喷射的方式改变喷嘴中的液体的压力; 第一电平数据设定单元,用于基于第一类液体的喷射数据,从多个第一电平数据中设定所选择的第一电平数据; 第二电平数据设定单元,用于基于第二类液体的喷射数据,从多个第二电平数据中设定所选择的第二电平数据; 用于产生驱动信号的驱动信号发生器; 以及驱动脉冲发生器,用于基于所选择的第一或第二电平数据和驱动信号产生驱动脉冲。 多个第一级数据和多个第二级数据彼此不同。
    • 7. 发明授权
    • Liquid ejecting device and method of controlling liquid ejecting device
    • 液体喷射装置及液体喷射装置的控制方法
    • US08132880B2
    • 2012-03-13
    • US12265570
    • 2008-11-05
    • Ryoichi TanakaKazuhito HoriHirokazu Nunokawa
    • Ryoichi TanakaKazuhito HoriHirokazu Nunokawa
    • B41J29/38
    • B41J29/393B41J2/2132
    • A liquid ejecting device includes a nozzle group formed by aligning nozzles that eject a liquid, and a liquid ejecting head that ejects liquids from the nozzles based on ejection serial data that represents ejection or non-ejection of each nozzle of the nozzle group. The liquid ejecting head ejects a liquid to a landing target while the liquid ejecting head and the landing target are relatively moved in a second direction that is perpendicular to a first direction in which the nozzles are aligned. The liquid ejecting device further includes a meandering correction pattern forming unit that forms a meandering correction pattern along the second direction in a margin outside the regulated landing area of the landing target and a meandering correction pattern detecting unit that detects the meandering correction pattern formed in the landing target by the meandering correction pattern forming unit.
    • 液体喷射装置包括通过对准喷射液体的喷嘴形成的喷嘴组,以及基于表示喷嘴组的每个喷嘴的喷射或不喷射的喷射串行数据从喷嘴喷射液体的液体喷射头。 当液体喷射头和着陆靶相对于与喷嘴对准的第一方向垂直的第二方向相对移动时,液体喷射头将液体喷射到着陆目标。 液体喷射装置还包括蜿蜒曲线校正图形形成单元,该蜿蜒校正图案形成单元沿着着陆目标的调节着陆区域外侧的边界沿着第二方向形成曲折校正图案,以及曲折校正图案检测单元,其检测形成在 通过曲折校正图案形成单元着陆目标。
    • 8. 发明授权
    • Correction value determining method, correction value determining apparatus, and storage medium having program stored thereon
    • 修正值确定方法,校正值确定装置和存储有程序的存储介质
    • US07578571B2
    • 2009-08-25
    • US11866134
    • 2007-10-02
    • Tatsuya NakanoMasahiko YoshidaBunji IshimotoToru MiyamotoHirokazu Nunokawa
    • Tatsuya NakanoMasahiko YoshidaBunji IshimotoToru MiyamotoHirokazu Nunokawa
    • B41J29/393
    • B41J11/42
    • A correction value determining method of the present invention includes: causing a head to record a first pattern for confirming a transport amount of a medium, while transporting the medium in a transport direction relative to the head in accordance with a target transport amount, obtaining a first correction value that is associated with a relative position of the head and the medium based on the first pattern, the first correction value being a correction value for correcting the target transport amount during transport of the medium, causing the head to record a second pattern for confirming the transport amount of the medium, by transporting the medium while correcting the target transport amount using the first correction value associated with the relative position, obtaining a second correction value that is associated with the relative position of the head and the medium based on the second pattern, the second correction value being a correction value for correcting the target transport amount during transport of the medium, and determining a correction value of the target transport amount by making a use of the first correction value and the second correction value associated with the relative position when the medium reaches a roller provided on the downstream side of the head in the transport direction different from a use of the first correction value and the second correction value associated with the relative position at times other than when the medium reaches the roller.
    • 本发明的校正值确定方法包括:使头部记录用于确认介质的传送量的第一图案,同时根据目标传送量在相对于头部的传送方向上传送介质,获得 第一校正值,其基于第一图案与头部和介质的相对位置相关联,第一校正值是用于在传送介质期间校正目标传送量的校正值,使得头记录第二图案 为了确认介质的传送量,通过使用与该相对位置相关联的第一校正值来校正目标传送量来传送介质,获得与头部和介质的相对位置相关联的第二校正值,基于 第二模式,第二校正值是用于校正目标的校正值 在介质传送期间的输送量,以及当介质到达设置在所述介质的下游侧的辊时,通过使用与所述相对位置相关联的所述第一校正值和所述第二校正值来确定所述目标输送量的校正值 在不同于在介质到达辊子时的时间不同于使用第一校正值和与相对位置相关联的第二校正值的传送方向上。
    • 9. 发明授权
    • Printing method and printing apparatus
    • 印刷方法和印刷装置
    • US07568781B2
    • 2009-08-04
    • US11846832
    • 2007-08-29
    • Masahiko YoshidaTatsuya NakanoBunji IshimotoToru MiyamotoHirokazu NunokawaYoichi Kakehashi
    • Masahiko YoshidaTatsuya NakanoBunji IshimotoToru MiyamotoHirokazu NunokawaYoichi Kakehashi
    • B41J29/393
    • B41J29/393B41J2/2128
    • A printing method includes determining a first correction value corresponding to a first print mode, determining a second correction value corresponding to a second print mode, and correcting an ink ejection amount of each row region individually, using a combined correction value obtained by combining the first correction value and the second correction value. The first print mode is a print mode that is applied to a rear end area, with respect to a transport direction, of a medium. Dot rows are formed extending in a nozzle movement direction that is perpendicular to the transport direction, on a plurality of row regions lined up in the transport direction. The dot rows are formed by repeating a movement ejection operation of ejecting ink onto the medium while moving nozzles in the movement direction, and a transport operation of transporting the medium in the transport direction. The first correction value is for correcting an ejection amount of the ink in each row region individually. The second print mode is a print mode that is applied to a middle area, with respect to the transport direction, of the medium. The second correction value is for correcting an ejection amount of the ink in each row region individually. The correction of the ejection amount using the combined correction value is carried out in a coexistent segment in which certain row regions and another row regions are coexistent. The certain row regions are row regions in which the dot rows are formed by the first print mode. The other row regions are row regions in which the dot rows are formed by the second print mode.
    • 打印方法包括:确定与第一打印模式对应的第一校正值,确定与第二打印模式相对应的第二校正值,以及使用通过组合第一打印模式获得的组合校正值来单独校正每个行区域的喷墨量 校正值和第二校正值。 第一打印模式是应用于媒体的相对于传送方向的后端区域的打印模式。 在沿输送方向排列的多个行区域上沿着与输送方向垂直的喷嘴移动方向形成有点列。 点列是通过重复在移动方向上移动喷嘴的同时将墨喷射到介质上的移动喷射操作形成的,以及在传送方向上传送介质的传送操作。 第一校正值用于单独地校正每行区域中的墨的喷射量。 第二打印模式是应用于介质相对于传送方向的中间区域的打印模式。 第二校正值用于单独地校正每行区域中的墨的喷射量。 使用组合校正值的喷射量的校正在其中某些行区域和另一个行区域共存的共存段中执行。 某些行区域是其中通过第一打印模式形成点行的行区域。 其他行区域是其中通过第二打印模式形成点行的行区域。