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    • 32. 发明授权
    • System and method for compensating for small ink drop size in an indirect printing system
    • 用于补偿间接打印系统中小墨滴尺寸的系统和方法
    • US08256857B2
    • 2012-09-04
    • US12639337
    • 2009-12-16
    • Jeffrey J. FolkinsDavid A. Mantell
    • Jeffrey J. FolkinsDavid A. Mantell
    • B41J29/38
    • B41J2/0057
    • A method improves transfer efficiency of ink images on an image receiving member that were formed with small ink drops. The method includes identifying image data that correspond to ink drops that have a mass less than a predetermined threshold and that fail to comingle with another ink drop ejected with reference to the image data, modifying the identified image data to generate ink drops that comingle with at least one other ink drop ejected with reference to the image data, generating firing signals for inkjet ejectors in a print head with reference to the image data and modified image data, and ejecting in response to the firing signals a plurality of ink drops from the inkjet ejectors for each identified image data to enable a coalesced ink drop to form on an image receiving surface that has a mass that is greater than the predetermined threshold.
    • 一种方法提高了在用小墨滴形成的图像接收部件上的墨图像的转印效率。 该方法包括识别与具有质量小于预定阈值的墨滴对应的图像数据,并且不能与参照图像数据喷射的另一个墨滴相混合,修改所识别的图像数据以产生与之相关的墨滴 参考图像数据喷射至少一个其它墨滴,参考图像数据和修改的图像数据产生打印头中的喷墨打印机的点火信号,并且响应于点火信号弹出来自喷墨打印机的多个墨滴 用于每个识别的图像数据的喷射器,以使得聚集的墨滴形成在具有大于预定阈值的质量的图像接收表面上。
    • 33. 发明申请
    • System and Method for Compensating for Small Ink Drop Size in an Indirect Printing System
    • 用于补偿间接打印系统中小墨滴尺寸的系统和方法
    • US20110141171A1
    • 2011-06-16
    • US12639337
    • 2009-12-16
    • Jeffrey J. FolkinsDavid A. Mantell
    • Jeffrey J. FolkinsDavid A. Mantell
    • B41J29/38
    • B41J2/0057
    • A method improves transfer efficiency of ink images on an image receiving member that were formed with small ink drops. The method includes identifying image data that correspond to ink drops that have a mass less than a predetermined threshold and that fail to comingle with another ink drop ejected with reference to the image data, modifying the identified image data to generate ink drops that comingle with at least one other ink drop ejected with reference to the image data, generating firing signals for inkjet ejectors in a print head with reference to the image data and modified image data, and ejecting in response to the firing signals a plurality of ink drops from the inkjet ejectors for each identified image data to enable a coalesced ink drop to form on an image receiving surface that has a mass that is greater than the predetermined threshold.
    • 一种方法提高了在用小墨滴形成的图像接收部件上的墨图像的转印效率。 该方法包括识别与具有质量小于预定阈值的墨滴对应的图像数据,并且不能与参照图像数据喷射的另一个墨滴相混合,修改所识别的图像数据以产生与之相关的墨滴 参考图像数据喷射至少一个其它墨滴,参考图像数据和修改的图像数据产生打印头中的喷墨打印机的点火信号,并且响应于点火信号弹出来自喷墨打印机的多个墨滴 用于每个识别的图像数据的喷射器,以使得聚集的墨滴形成在具有大于预定阈值的质量的图像接收表面上。
    • 34. 发明申请
    • Staggered Head Stitch Shifts in a Continuous Feed Direct Marking Printer
    • 连续进给直接打标机中交错的头针位移
    • US20110012958A1
    • 2011-01-20
    • US12504857
    • 2009-07-17
    • David A. MantellJeffrey J. Folkins
    • David A. MantellJeffrey J. Folkins
    • B41J2/145
    • B41J2/145
    • An imaging device includes an image receiving surface configured to move in a process direction in the imaging device. A plurality of printhead arrays are arranged to deposit marking material onto the image receiving surface. Each printhead array includes a plurality of printheads arrayed in a cross-process direction across the image receiving surface. Each printhead array includes at least one stitch line corresponding to a position along an axis parallel to the cross-process direction where an end of one printhead in the printhead array aligns with an end of another printhead in the printhead array. The at least one stitch line of each printhead array is offset a predetermined distance in the cross-process direction from the at least one stitch line of each of the other printhead arrays.
    • 成像装置包括构造成沿着成像装置中的处理方向移动的图像接收表面。 布置多个打印头阵列以将标记材料沉积到图像接收表面上。 每个打印头阵列包括沿图像接收表面跨过程方向排列的多个打印头。 每个打印头阵列包括对应于平行于交叉处理方向的轴的位置的至少一个针脚线,其中打印头阵列中的一个打印头的一端与打印头阵列中的另一个打印头的一端对齐。 每个打印头阵列的至少一个针迹线在交叉处理方向上与每个其它打印头阵列的至少一个针脚线偏移预定距离。
    • 38. 发明授权
    • Asymmetric IDZ precession in a multi-pass direct marking system
    • 多通道直接标记系统中的不对称IDZ进动
    • US08054476B2
    • 2011-11-08
    • US12105125
    • 2008-04-17
    • Jeffrey J. Folkins
    • Jeffrey J. Folkins
    • G06K15/00G06F3/12G03G15/16
    • G03G15/0131G03G2215/0158G03G2215/0174
    • What is disclosed is a system and method for minimizing the Inter-Document Zone (IDZ) in printing system architectures with print engines running at constant speed. The asymmetric IDZ precession disclosed herein is intended for those multi-pass systems where there is a difference in required start and stop durations of various transition subsystems such as transfer engagement and disengagement processes. This mode reduces the required inter-document zone region by shifting the zone in accordance with asymmetric timing of start and stop times of processes that must occur during this time. Advantageously, productivity gains are effectuated without altering process speeds.
    • 公开的是一种用于在具有以恒定速度运行的打印引擎的打印系统架构中最小化文档间区域(IDZ)的系统和方法。 本文公开的非对称IDZ进动适用于那些在各种过渡子系统(例如转移接合和分离过程)的所需启动和停止持续时间差异的多通道系统。 该模式通过根据在此期间必须发生的进程的启动和停止时间的不对称定时移动区域来减少所需的文档间区域。 有利地,在不改变处理速度的情况下实现生产率增益。
    • 39. 发明授权
    • System and method for distributing image values of a color separation
    • 用于分配分色图像值的系统和方法
    • US08031372B2
    • 2011-10-04
    • US12107596
    • 2008-04-22
    • David Allen MantellJeffrey J. Folkins
    • David Allen MantellJeffrey J. Folkins
    • H04N1/405H04N1/60H04N1/46
    • H04N1/4051
    • A method processes image data in a color separation to attenuate printing defects arising from misalignment of serially arranged printheads that eject ink for the color separation. The method includes processing image values of the color separation with a first rendering process that corresponds to one printhead in a plurality of serially arranged printheads for printing the color separation, processing the image values of the color separation with a second rendering process that differs from the first rendering process for at least one other printhead in the plurality of serially arranged printheads for printing the color separation, generating firing signals for the one printhead from the rendered image values generated by the first rendering process, and generating firing signals for the at least one other printhead from the rendered image values generated by the second rendering process.
    • 一种方法处理色彩分离中的图像数据,以减少由排列墨水用于分色的串行打印头的未对准引起的打印缺陷。 该方法包括利用对应于多个串行布置的打印头中的一个打印头的第一渲染处理来处理颜色分离的图像值,用于打印分色,用与第二渲染处理不同的第二渲染处理处理颜色分离的图像值 在多个串行布置的打印头中的至少一个其它打印头的第一渲染过程,用于打印色彩分离,从由第一渲染处理产生的渲染图像值产生针对一个打印头的点火信号,以及生成至少一个 来自由第二渲染处理生成的渲染图像值的其他打印头。
    • 40. 发明申请
    • Temperature Leveling Roller and Pressure Nip Assembly
    • 温度调平辊和压力接头组件
    • US20110109683A1
    • 2011-05-12
    • US12617255
    • 2009-11-12
    • James Edward WilliamsPaul John McConvilleJeffrey J. Folkins
    • James Edward WilliamsPaul John McConvilleJeffrey J. Folkins
    • B41J29/38
    • B41J2/17593B41J11/002
    • An imaging device includes a substantially continuous web of media, and a web transport system configured to transport the continuous web along a web path. A print station is positioned along the web path and is configured to apply ink to the continuous web. A temperature leveling ink spreader is disposed along the web path downstream from the print station. The temperature leveling ink spreader includes a leveler roller including a heater configured to generate thermal energy to heat the leveler roller to a spreading temperature. The leveler roller is positioned to be partially wrapped by the continuous web to generate a predetermined dwell time between the continuous web and the leveler roller as the continuous web is being transported to equalize the temperatures of the web and ink on the web to within a predetermined range about the spreading temperature. The temperature leveling ink spreader includes a pressure roller positioned adjacent the leveler roller to form a spreading nip therebetween through which the continuous web is fed after the predetermined dwell time. The spreading nip is configured to apply a predetermined pressure to the continuous web and the ink thereon.
    • 成像设备包括基本上连续的介质网,以及被配置为沿着网路传送连续卷筒纸的卷筒纸传送系统。 打印站沿着纸张路径定位并且被配置为将油墨施加到连续纸幅。 温度调平油墨扩展器沿着印刷站下游的纸幅路径设置。 温度调平油墨扩展器包括矫直辊,该矫正辊包括加热器,该加热器被配置为产生热能以将矫正辊加热到铺展温度。 调平辊被定位成被连续卷材部分包裹,以在连续卷筒纸被输送时在连续幅材和矫直辊之间产生预定的停留时间,以将纸幅上的纸幅和油墨的温度均衡到预定的 范围涉及铺展温度。 温度调平油墨扩展器包括位于矫直辊附近的压力辊,以在其间形成扩展辊隙,在预定的停留时间之后,连续纸幅通过该辊进给。 扩展压区被构造成对其上的连续卷材和油墨施加预定压力。