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    • 4. 发明公开
    • Ink ejecting device
    • 喷墨装置
    • EP0812688A3
    • 1998-01-28
    • EP97115867.0
    • 1994-11-10
    • BROTHER KOGYO KABUSHIKI KAISHA
    • Asai, Hiroki, Brother Kogyo K. K.Zhang, Qiming, Brother Kogyo K.K.Sugahara, Hiroto, Brother Kogyo K.K.
    • B41J2/045B41J2/16
    • B41J2/1623B41J2/14209B41J2/1609B41J2/1618B41J2/1632B41J2/1646
    • An ink ejecting device includes ink channels intercommunicating with slits and air channels intercommunicating with another slits. The ink channels and the air channels have a narrow shape with a rectangular cross-section, and all of the ink channels are filled with ink and the air channels are filled with air. An LSI chip applies a voltage V to a pattern conducting to metal electrodes positioned in air channels located at both sides of an ink channel from which the ink is to be ejected and connects the other patterns connected to metal electrodes in other air channels not adjacent the ejecting ink channel and a pattern conducting to the metal electrodes of the non-ejecting ink channels to a ground line. Therefore, the ink ejecting device of the above structure requires no insulation between ink and electrodes as the working electrodes do not contact the ink.
    • 一种喷墨装置包括与缝隙相互连通的油墨通道和与另一缝隙相通的空气通道。 油墨通道和空气通道具有矩形横截面的窄形状,并且所有油墨通道都充满油墨并且空气通道充满空气。 LSI芯片将电压V施加到传导到位于墨水通道两侧的空气通道中的金属电极的图案中,从墨水通道喷射墨水,并将连接到与不邻近的其他空气通道中的金属电极连接的其他图案 将墨水通道和传导到非喷射墨通道的金属电极的图案喷射到地线。 因此,上述结构的喷墨装置不需要油墨和电极之间的绝缘,因为工作电极不接触油墨。
    • 9. 发明公开
    • Ink ejecting device
    • Tintenausstossgerät
    • EP0812688A2
    • 1997-12-17
    • EP97115867.0
    • 1994-11-10
    • BROTHER KOGYO KABUSHIKI KAISHA
    • Asai, Hiroki, Brother Kogyo K. K.Zhang, Qiming, Brother Kogyo K.K.Sugahara, Hiroto, Brother Kogyo K.K.
    • B41J2/045B41J2/16
    • B41J2/1623B41J2/14209B41J2/1609B41J2/1618B41J2/1632B41J2/1646
    • An ink ejecting device includes ink channels intercommunicating with slits and air channels intercommunicating with another slits. The ink channels and the air channels have a narrow shape with a rectangular cross-section, and all of the ink channels are filled with ink and the air channels are filled with air. An LSI chip applies a voltage V to a pattern conducting to metal electrodes positioned in air channels located at both sides of an ink channel from which the ink is to be ejected and connects the other patterns connected to metal electrodes in other air channels not adjacent the ejecting ink channel and a pattern conducting to the metal electrodes of the non-ejecting ink channels to a ground line. Therefore, the ink ejecting device of the above structure requires no insulation between ink and electrodes as the working electrodes do not contact the ink.
    • 喷墨装置包括与狭缝(311B)相互连通的墨水通道(304)和与其它狭缝(311A)相通的空气通道(327)。 油墨通道(304)和空气通道(327)具有矩形横截面的窄形状,并且所有油墨通道都填充有油墨,空气通道充满空气。 LSI芯片将电压V施加到位于位于要从其喷射墨水的墨水通道两侧的空气通道中的金属电极的图案,并且将连接到金属电极的其它图案连接到不邻近的其它空气通道中 喷射油墨通道和向非喷射油墨通道的金属电极传导到地线的图案。 因此,上述结构的喷墨装置在工作电极不接触墨水时,不需要油墨与电极之间的绝缘。