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    • 6. 发明申请
    • Method for increasing printhead reliability
    • 提高打印头可靠性的方法
    • US20080316247A1
    • 2008-12-25
    • US11820612
    • 2007-06-20
    • Mark A. CelluraElliott A. Eklund
    • Mark A. CelluraElliott A. Eklund
    • B41J2/205B41J29/393B41J2/165B41J2/01
    • B41J2/16526B41J2/0057
    • A maintenance method for an ink jet imaging device comprises ejecting drops from a plurality of ink jets to successively form a plurality of images on the image receiver. Inter-image intervals between the ejection of drops to form one image in the plurality of images and the ejection of drops to form a successive image in the plurality of images are detected. A plurality of drops is ejected from at least a portion of the ink jets in the plurality of ink jets during at least one detected inter-image interval. The plurality of ejected drops having at least one drop ejecting characteristic selected from: a drop mass for the plurality of drops being greater than a standard drop mass; a drop ejecting frequency for the plurality of drops being lower than a standard drop ejecting frequency; and a substantially sequential drop ejecting pattern for the plurality of drops.
    • 用于喷墨成像装置的维护方法包括:从多个喷墨喷射液滴,以在图像接收器上连续地形成多个图像。 检测喷射液滴以在多个图像中形成一个图像并喷射液滴以在多个图像中形成连续图像的图像间间隔。 在至少一个检测到的图像间间隔期间,多个液滴从多个喷墨中的喷墨头的至少一部分喷出。 多个喷射液滴具有选自以下的至少一个液滴喷射特性:多个液滴的液滴质量大于标准液滴质量; 所述多个液滴的液滴喷射频率低于标准液滴喷射频率; 以及用于多个液滴的基本上顺序的液滴喷射模式。
    • 7. 发明授权
    • Method for increasing printhead reliability
    • 提高打印头可靠性的方法
    • US07628466B2
    • 2009-12-08
    • US11820612
    • 2007-06-20
    • Mark A. CelluraElliott A. Eklund
    • Mark A. CelluraElliott A. Eklund
    • B41J29/393
    • B41J2/16526B41J2/0057
    • A maintenance method for an ink jet imaging device comprises ejecting drops from a plurality of ink jets to successively form a plurality of images on the image receiver. Inter-image intervals between the ejection of drops to form one image in the plurality of images and the ejection of drops to form a successive image in the plurality of images are detected. A plurality of drops is ejected from at least a portion of the ink jets in the plurality of ink jets during at least one detected inter-image interval. The plurality of ejected drops having at least one drop ejecting characteristic selected from: a drop mass for the plurality of drops being greater than a standard drop mass; a drop ejecting frequency for the plurality of drops being lower than a standard drop ejecting frequency; and a substantially sequential drop ejecting pattern for the plurality of drops.
    • 用于喷墨成像装置的维护方法包括:从多个喷墨喷射液滴,以在图像接收器上连续地形成多个图像。 检测喷射液滴以在多个图像中形成一个图像并喷射液滴以在多个图像中形成连续图像的图像间间隔。 在至少一个检测到的图像间间隔期间,多个液滴从多个喷墨中的喷墨头的至少一部分喷出。 多个喷射液滴具有选自以下的至少一个液滴喷射特性:多个液滴的液滴质量大于标准液滴质量; 所述多个液滴的液滴喷射频率低于标准液滴喷射频率; 以及用于多个液滴的基本上顺序的液滴喷射模式。
    • 10. 发明授权
    • Printhead element butting
    • 打印头元件对接
    • US5755024A
    • 1998-05-26
    • US573733
    • 1995-12-18
    • Donald J. DrakeMark A. CelluraHung C. Nguyen
    • Donald J. DrakeMark A. CelluraHung C. Nguyen
    • B41J2/05B41J2/16H05B3/00
    • B41J2/1635B41J2/1604B41J2/1623B41J2/1626B41J2202/20B41J2202/21Y10T29/49083Y10T29/49401Y10T29/49792
    • A large array or pagewidth printhead fabricated from printhead elements or subunits. The printhead subunits are butted together at either adjacent channel elements or adjacent heater elements to form a pagewidth printhead. The butting element, either heater or channel element, is slightly wider than the non-butting element thereby providing gaps between the non-butting elements of a printhead element array. Where channel elements are used as the butting element, gaps between the heater elements provide for reduction or elimination of potentially damaging thermal compressive forces between adjacent heater elements. Where heater elements are used as the butting element, structural strength is increased since the heater wafer is stronger than the channel wafer. In addition, the width of the polyimide wall at the edges of the heater wafer is increased providing greater protection for thermal transducers located at the edges of individual heater elements.
    • 由打印头元件或子单元制造的大阵列或页宽打印头。 打印头子单元在相邻的通道元件或相邻的加热器元件对接在一起以形成页宽打印头。 对接元件(加热器或通道元件)比非对接元件稍宽,从而在打印头元件阵列的非对接元件之间提供间隙。 在使用通道元件作为对接元件的情况下,加热器元件之间的间隙用于减少或消除相邻加热器元件之间潜在的有害的热压缩力。 当加热器元件用作对接元件时,由于加热器晶片比通道晶片更强,所以结构强度增加。 此外,加热器晶片边缘处的聚酰亚胺壁的宽度增加,为位于各个加热器元件边缘的热传感器提供更大的保护。