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    • 2. 发明授权
    • Ink jet head driving method and apparatus
    • 喷墨头驱动方法和装置
    • US07661785B2
    • 2010-02-16
    • US11546480
    • 2006-10-11
    • Takashi Norigoe
    • Takashi Norigoe
    • B41J29/38
    • B41J2/04598B41J2/04581B41J2/04588B41J2/04595B41J2/04596
    • In an ink jet head driving method for applying a drive pulse to an actuator ACT to change capacities of a plurality of pressure chambers in which ink has been filled, ejecting an ink droplet from a nozzle formed in communication with the pressure chamber to print onto a printing medium, and moreover, controlling the number of ink droplets ejected according to the number of drive pulses to carry out gradation printing, a control is made such that, in the case where the number of ink droplets is small, a boost pulse Pb for amplifying a pressure vibration of the pressure chamber is applied prior to a drive pulse for ejecting a first ink droplet, and in the case where the number of ink droplets is large, applying of the boost pulse Pb is disabled.
    • 在用于向致动器ACT施加驱动脉冲以改变已经填充了墨的多个压力室的容量的喷墨头驱动方法中,从形成为与压力室连通的喷嘴喷射墨滴以打印到 打印介质,此外,控制根据驱动脉冲数喷射的墨滴的数量进行灰度打印,进行控制,使得在墨滴数量少的情况下,提供用于 在用于喷射第一墨滴的驱动脉冲之前施加压力室的压力振动,并且在墨滴数量大的情况下,禁止施加升压脉冲Pb。
    • 3. 发明申请
    • Ink jet head driving method and apparatus
    • 喷墨头驱动方法和装置
    • US20060284911A1
    • 2006-12-21
    • US11311683
    • 2005-12-19
    • Takashi Norigoe
    • Takashi Norigoe
    • B41J29/38
    • B41J2/04541B41J2/04581B41J2/04588B41J2/04595B41J2/04596B41J2/04598
    • There is provided an ink jet head driving method for applying a drive pulse to an actuator to change capacities of a plurality of pressure chambers in which ink has been filled, ejecting an ink droplet from a nozzle formed in communication with the pressure chamber to print onto a printing medium, and moreover, continuously ejecting a plurality of liquid droplets to carry out gradation printing according to the number of liquid droplets, the method including making control so as to, in the case where the number of the liquid droplets is smaller than a predetermined number, apply a boost pulse to amplify a pressure vibration of the pressure chamber prior to a drive pulse for ejecting a first liquid droplet, and in the case where the number of liquid droplets is equal to or greater than the predetermined number, disable applying of the boost pulse.
    • 提供了一种喷墨头驱动方法,用于向致动器施加驱动脉冲以改变已经填充了墨的多个压力室的容量,从形成为与压力室连通的喷嘴喷射墨滴以打印到 打印介质,此外,连续地喷射多个液滴以根据液滴的数量进行灰度打印,该方法包括进行控制,以便在液滴的数量小于 预定数量的情况下,在用于喷射第一液滴的驱动脉冲之前施加升压脉冲以放大压力室的压力振动,并且在液滴数量等于或大于预定数量的情况下,禁用施加 的升压脉冲。
    • 4. 发明授权
    • Driving method of an ink-jet head
    • 喷墨头的相邻活动室的相位驱动方法
    • US06193343B1
    • 2001-02-27
    • US09213669
    • 1998-12-17
    • Takashi NorigoeMichael George Arnott
    • Takashi NorigoeMichael George Arnott
    • B41J2938
    • B41J2/04525B41J2/04541B41J2/04573B41J2/04581B41J2/04588B41J2202/06B41J2202/10
    • An ink-jet head is formed by partitioning a plurality of ink chambers made from piezoelectric members from each other. Ink chambers which emit ink and dummy ink chambers which do not emit ink are arranged alternately, and ink is supplied to the ink chambers from a common ink chamber. This ink head is used to sequentially perform emission of an ink drop from the ink chambers for a plurality of times, to achieve gradation printing, while the emission speed of the ink drops is gradually increased such that ink drops emitted later are merged with ink drops emitted earlier thereby to form a one-dot liquid drop. In this case, where adjacent ink chambers with a dummy ink chamber inserted therebetween are simultaneously driven, timings of drive pulse voltages q1 and q2 applied to both of the adjacent ink chambers are shifted from each other such that the pressure in one of the adjacent ink chambers is decreased when the pressure in the other of the adjacent ink chamber is increased.
    • 通过将由压电元件制成的多个墨室彼此分隔而形成喷墨头。 发出不喷墨的墨水和虚拟墨水室的墨水室交替布置,并且墨水从公共墨水室供应到墨水室。 该墨头用于依次执行从墨室发射墨滴多次,以实现灰度打印,同时墨滴的发射速度逐渐增加,使得随后的墨滴与墨滴合并 从而更早地排出,形成单点液滴。 在这种情况下,当在其间插入有虚拟墨水室的相邻墨室同时被驱动时,施加到两个相邻的墨水室的驱动脉冲电压q1和q2的定时彼此偏移,使得相邻墨水 当相邻墨水腔中另一个的压力增加时,腔室减小。
    • 5. 发明授权
    • Sheet delivery mechanism for a printer
    • 打印机的纸张传送机制
    • US5409209A
    • 1995-04-25
    • US71275
    • 1993-06-04
    • Shinya NakamuraTakashi NorigoeTeruyuki OchiaiYoshiaki Tanaka
    • Shinya NakamuraTakashi NorigoeTeruyuki OchiaiYoshiaki Tanaka
    • B41J11/08B41J11/14B41J13/10B65H5/16
    • B41J13/106B41J11/08B41J11/14B41J13/103
    • A sheet passage is formed so as to extend from a sheet feed position via a printing position to a sheet delivery position, delivery rollers driven by a driving unit are disposed between the printing position and the sheet delivery position on the sheet passage, pressure rollers are disposed on one side of the sheet passage so as to be in contact respectively with the delivery rollers disposed on the other side of the sheet passage, a back sheet guide is disposed between the delivery rollers and the sheet delivery position, and a printed sheet delivered by the delivery rollers and guided by the back sheet guide is transferred to a printed sheet storage unit by sheet transfer arms. Thus, the time required to transfer the printed sheet from the delivery rollers to the printed sheet storage unit is extended so that the time between the delivery of the preceding sheet to the printed sheet storage unit and the delivery of the succeeding sheet to the printed sheet storage unit is extended to prevent the smearing of the preceding printed sheet previously stored in the printed sheet storage unit with the ink by the succeeding printed sheet.
    • 片材通道形成为从片材进给位置经由打印位置延伸到片材输送位置,由驱动单元驱动的输送辊布置在片材通道上的打印位置和片材输送位置之间,压力辊是 设置在片材通道的一侧,以分别与布置在片材通道另一侧的输送辊接触,底片引导件设置在输送辊和片材输送位置之间,并且输送的印刷品 通过输送辊并由背板引导件引导由纸张传送臂传送到打印纸存储单元。 因此,将印刷纸从输送辊转印到印刷纸张存储单元所需的时间延长,使得在前一张纸到印刷纸张存储单元的传送之间的时间和后续纸张传送到印刷纸张 存储单元被扩展以防止先前存储在打印纸存储单元中的前一印刷纸张与后续印刷纸的油墨拖延。
    • 6. 发明授权
    • Dot printer head with alternate magnetic flux paths
    • 点式打印头具有交替的磁通路径
    • US4597680A
    • 1986-07-01
    • US654022
    • 1984-09-25
    • Takashi NorigoeKuniaki Ochiai
    • Takashi NorigoeKuniaki Ochiai
    • B41J2/24B41J2/275B41J3/12
    • B41J2/275B41J2/24
    • The printhead is constructed such that opposed surfaces of armatures are formed between the armatures adjacent to each other with small gap being left therebetween and cores opposed to each of the armatures are provided with alternative opposed magnetic fluxes. The armatures are supported in such a way that the guide holes formed in the middle of each armature are engaged with the fixed armature guides without interfering with their side surfaces, and thereby side magnetic paths of sufficient cross sectional area can be formed, and further their equivalent mass can be decreased and a high speed printing is enabled, and the armatures can be moved smoothly.
    • 打印头被构造成使得电枢的相对表面形成在彼此相邻的电枢之间,并且其间留有小间隙,并且与每个电枢相对的芯设置有替代的相对的磁通量。 电枢被支撑成使得形成在每个电枢的中间的引导孔与固定电枢引导件接合而不会妨碍它们的侧表面,从而可以形成具有足够横截面面积的侧面磁路,并且进一步地, 可以减少等效质量并且能够进行高速打印,并且可以平稳地移动电枢。
    • 7. 发明授权
    • Printing head of dot printer
    • 打印机打印头
    • US4447166A
    • 1984-05-08
    • US381446
    • 1982-05-24
    • Kuniaki OchiaiMasami HoriiTakashi Norigoe
    • Kuniaki OchiaiMasami HoriiTakashi Norigoe
    • B41J2/235B41J2/255B41J2/265B41J2/275B41J3/12
    • B41J2/275B41J2/255
    • In printing head of a dot printer according to this invention, a groove having width a little greater than diameter of top end of a needle is formed in front of a needle guide to guide the needle, position of top end of the needle is specified between the bottom of the groove and front surface of the needle guide, when the needle pushes through the printing head it returns rapidly, when top end of the needle is deformed it does not stick to the needle guide, a gauge spacer is interposed between the yoke and the guide holder to be assembled thereby position of top end of the needle is specified, and plural sheets of other spacer are overlaid and removed separately during grinding top end of the needle thereby the needle without deformation at top end can be formed and used for a long time.
    • 在根据本发明的点式打印机的打印头中,在针引导件的前面形成宽度比针的顶端直径稍大的槽,以引导针,针的顶端位置在 针头的底部和针头的前表面,当针推动打印头时,它迅速返回,当针的顶端变形时,其不会粘到针引导件上,在轭 并且指定要组装的引导保持器,从而针头的顶端的位置被定义,并且在针的顶端处研磨顶端期间分开地重叠和移除多个其它间隔件,从而可以形成顶端不变形的针,并用于 很长时间。
    • 8. 发明授权
    • Driving method and driving device of inkjet head
    • 喷墨头的驱动方法和驱动装置
    • US07802864B2
    • 2010-09-28
    • US11869158
    • 2007-10-09
    • Takashi Norigoe
    • Takashi Norigoe
    • B41J29/38B41J2/045
    • C09K21/12B41J2/04573B41J2/04581B41J2/04588B41J2/04595
    • An inkjet recording apparatus includes actuators provided in an inkjet head, and a drive voltage generator that drives each actuator. The drive voltage generator is configured to set the cycle time Tc, the drop cycle Td, the number of ink droplets N for a maximum tone, and the inactive period Te in a relationship of Tc=Td×N+Te, set the drop cycle Td and the inactive period Te, by referencing pressure propagation time Ta in relationships of Td=n×Ta (where n=1, 2, 3, . . . ) and Te=(0.5+m)×Ta (where m=1, 2, 3, . . . ), and make an output timing of the final drive pulse signal for a dot of a tone other than the maximum tone coincide with an output timing of the final drive pulse signal for the maximum tone.
    • 喷墨记录装置包括设置在喷墨头中的致动器和驱动每个致动器的驱动电压发生器。 驱动电压发生器被配置为设定循环时间Tc,下降循环Td,最大色调的墨滴数N和Tc = Td×N + Te的关系中的非活动时间Te,设定下降循环 Td和非活动时间Te,通过参考Td = n×Ta(其中n = 1,2,3,...)和Te =(0.5 + m)×Ta(其中m = 1)的关系中的压力传播时间Ta ,2,3,...),并且对于除了最大音调之外的音调的点的最终驱动脉冲信号的输出定时与用于最大音调的最终驱动脉冲信号的输出定时一致。
    • 9. 发明授权
    • Ink jet head driving method and apparatus
    • 喷墨头驱动方法和装置
    • US07452042B2
    • 2008-11-18
    • US11311683
    • 2005-12-19
    • Takashi Norigoe
    • Takashi Norigoe
    • B41J29/38
    • B41J2/04541B41J2/04581B41J2/04588B41J2/04595B41J2/04596B41J2/04598
    • There is provided an ink jet head driving method for applying a drive pulse to an actuator to change capacities of a plurality of pressure chambers in which ink has been filled, ejecting an ink droplet from a nozzle formed in communication with the pressure chamber to print onto a printing medium, and moreover, continuously ejecting a plurality of liquid droplets to carry out gradation printing according to the number of liquid droplets, the method including making control so as to, in the case where the number of the liquid droplets is smaller than a predetermined number, apply a boost pulse to amplify a pressure vibration of the pressure chamber prior to a drive pulse for ejecting a first liquid droplet, and in the case where the number of liquid droplets is equal to or greater than the predetermined number, disable applying of the boost pulse.
    • 提供了一种喷墨头驱动方法,用于向致动器施加驱动脉冲以改变已经填充了墨的多个压力室的容量,从形成为与压力室连通的喷嘴喷射墨滴以打印到 打印介质,此外,连续地喷射多个液滴以根据液滴的数量进行灰度打印,该方法包括进行控制,以便在液滴的数量小于 预定数量的情况下,在用于喷射第一液滴的驱动脉冲之前施加升压脉冲以放大压力室的压力振动,并且在液滴数量等于或大于预定数量的情况下,禁用施加 的升压脉冲。
    • 10. 发明授权
    • Ink-jet head driving method and ink-jet recording apparatus
    • 喷墨头驱动方法和喷墨记录装置
    • US07156480B2
    • 2007-01-02
    • US10833718
    • 2004-04-27
    • Takashi Norigoe
    • Takashi Norigoe
    • B41J29/38
    • B41J2/04518B41J2/0452B41J2/04541B41J2/04563B41J2/04581B41J2/04588B41J2/04596
    • An ink-jet recording apparatus includes a pressure chamber that contains ink, a nozzle communicating with the pressure chamber, which ejects the ink from the pressure chamber, an ink-jet head having an actuator that increases and decreases the capacity of the pressure chamber, and a driving signal generation unit that supplies the actuator with a driving signal to eject an ink drop from the nozzle. When no ink is ejected from the nozzle, the actuator is supplied with a very low pressure driving signal to increase the capacity of the pressure chamber and then return the increased capacity to an original size. The pulse width of the very low pressure driving signal is about twice as long as a pressure propagation time period during which a pressure wave in the ink propagates through the pressure chamber.
    • 喷墨记录装置包括:压力室,其包含油墨,与压力室连通的喷嘴,其从压力室喷射墨;喷墨头,具有增加和减小压力室容量的致动器; 以及驱动信号产生单元,其向致动器提供驱动信号以从喷嘴喷射墨滴。 当喷嘴没有墨水喷射时,致动器被提供有非常低的压力驱动信号,以增加压力室的容量,然后将增加的容量返回到原始尺寸。 极低压驱动信号的脉冲宽度是油墨中的压力波通过压力室传播的压力传播时间段的两倍。