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    • 2. 发明申请
    • MEDIA CONDITIONER MODULE
    • 媒体调节器模块
    • US20080083726A1
    • 2008-04-10
    • US11535629
    • 2006-09-27
    • James J. SpenceDavid R. KretschmannDavid M. Thompson
    • James J. SpenceDavid R. KretschmannDavid M. Thompson
    • F27B9/06
    • G03G15/1695G03G2215/1671
    • Embodiments herein include a media conditioning module for being connected between a media source supplying sheets of media and a printing device. The media conditioning module is adapted to remove moisture from the sheets of media received from the media source before the sheets of media are supplied to the printing device. The media conditioning module comprises a heater and a cooler. The heater has manifolds positioned to supply heated air to both sides of the sheets of media as the sheets of media pass through the media conditioning module. The cooler is positioned to supply non-heated air to both sides of the sheets of media as the sheets of media pass through the media conditioning module. The heater is positioned with respect to the cooler such that the sheets of media pass by the heater before the sheets of media pass by the cooler.
    • 本文的实施例包括用于连接在提供纸张介质和打印装置的介质源之间的介质调节模块。 介质调节模块适用于在将介质片提供给打印装置之前从从介质源接收的介质纸张中去除湿气。 介质调节模块包括加热器和冷却器。 加热器具有歧管,定位成当介质片通过介质调节模块时将加热的空气供应到介质片的两侧。 冷却器定位成当介质片通过介质调节模块时,将非加热空气供应到介质片的两侧。 加热器相对于冷却器定位,使得在介质片通过冷却器之前,介质片通过加热器。
    • 6. 发明授权
    • Dynamic image positioning and spacing in a digital printing system
    • 数字印刷系统中的动态图像定位和间距
    • US08180254B2
    • 2012-05-15
    • US12511279
    • 2009-07-29
    • Andrew J BonacciJonathan B HunterDavid M KerxhalliDavid R Kretschmann
    • Andrew J BonacciJonathan B HunterDavid M KerxhalliDavid R Kretschmann
    • G03G15/00
    • G03G15/238G03G15/0178G03G15/5033G03G15/5041G03G2215/00021
    • A dynamic positional shifting, in the process direction, of the images on the second print engine of a tandem machine printing system in order to increase the time (and number of prints) between skipped pitches. Although the photoreceptor belts of each print engine may be out-of-phase, the relative positions of their individual seam zones may be derived during cycle-up. A control procedure then optimizes the position and spacing of each image within each belt revolution of the second engine, while still maintaining the minimum inter-document zone (IDZ) length required for paper path feeding and registration, xerographic process controls, and finishing. Removing the constraints of fixed-dimension IDZ's, as well as being able to adjust spacing and length of individual images on the belt, allows for optimization of system productivity by either delaying or eliminating the need for a skipped pitch.
    • 在串联机打印系统的第二打印引擎上的图像在处理方向上的动态位置移动,以便增加跳过的间距之间的时间(和打印数量)。 虽然每个打印引擎的感光带可能是异相的,但它们的各个接缝区域的相对位置可以在循环过程中得到。 然后,控制过程优化第二发动机的每个带旋转期间每个图像的位置和间距,同时仍然保持纸张进给和配准所需的最小文档间距(IDZ)长度,静电印刷过程控制和精加工。 消除固定维度IDZ的限制,以及能够调整皮带上各个图像的间距和长度,可以通过延迟或消除对跳过间距的需要来优化系统生产力。