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    • 11. 发明授权
    • Xerographic station deskew mechanism
    • 静印机台面校正机制
    • US08073378B2
    • 2011-12-06
    • US12115032
    • 2008-05-05
    • James P. CalamitaMark A. Atwood
    • James P. CalamitaMark A. Atwood
    • G03G15/00
    • G03G15/75G03G21/1604G03G2221/1603G03G2221/1606
    • In a color marking assembly, a series or plurality of ROS-imaging station units are aligned above an endless image transfer belt. Since there are a plurality of units, image alignment between the several station units is important. To accomplish this, skewing of each of the stations is necessary. The present invention involves a fixed ROS unit and a movable or skewable imaging station. This imaging station is movable on at least three spheres, one sphere below the imaging station and on its inboard side, the other spheres are located on a track below the imaging station and on its outboard side. This arrangement reduces vibration of these stations while at the same time providing an easily skewable xerographic imaging station.
    • 在颜色标记组件中,一系列或多个ROS成像站单元在无端图像转印带上方对准。 由于存在多个单元,因此在几个站单元之间的图像对准是重要的。 为了实现这一点,每个站的倾斜是必要的。 本发明涉及一个固定的ROS单元和一个可移动的或可偏斜的成像站。 该成像站可以在至少三个球体上移动,一个球体在成像站下方,并且在其内侧,另一个球体位于成像站下方和外侧的轨道上。 这种布置减少了这些站的振动,同时提供了一个易于偏移的静电复印成像站。
    • 13. 发明申请
    • MODULE WITH LIFTING MECHANISM
    • 具有提升机构的模块
    • US20100034556A1
    • 2010-02-11
    • US12189313
    • 2008-08-11
    • MARK A. ATWOODJames J. Spence
    • MARK A. ATWOODJames J. Spence
    • G03G21/18
    • G03G21/1842G03G2221/1684
    • This invention provides a xerographic marking module that has a built-in lifting mechanism that is useful in installing a new module in a xerographic marking system. The lifting mechanism forms the bottom portion of the marking module and comprises an upper cradle to hold the remaining module portion, a lower plate that constitutes the bottom of the module when in a collapsed position, and a movable linkage that connects the cradle to the lower plate. When in installation mode, the linkage creates a vertical force which will upwardly push the cradle (holding the module) away from the lower plate into an installation elevation. After slides in the module and in the color marking system are mated, the lifting mechanism is collapsed and the module pushed into the color marking system or apparatus.
    • 本发明提供了一种静电印迹标记模块,其具有内置提升机构,其可用于将静电印迹标记系统中的新模块安装。 提升机构形成标记模块的底部,并且包括用于保持剩余模块部分的上支架,当处于折叠位置时构成模块底部的下板和将支架连接到下端的可动连杆 盘子。 当处于安装模式时,连杆产生垂直力,该力将向上推动托架(保持模块)远离下板进入安装高度。 在模块和彩色标记系统中的幻灯片配合之后,提升机构被折叠并且模块被推入彩色标记系统或装置。
    • 17. 发明授权
    • Device for cleaning the IOWA roll on a duplexing marking system
    • 用于在双面打印系统上清洁IOWA卷的装置
    • US08375855B2
    • 2013-02-19
    • US12754768
    • 2010-04-06
    • Mark A AtwoodJames J Spence
    • Mark A AtwoodJames J Spence
    • B41F35/00
    • G03G15/652G03G15/237G03G21/0041
    • This is a paper web transporting component that is useful in a duplexing system that uses a paper web to be imaged. The unit has an IOWA roller (backup roll) with an image sensor above it and a cleaning web structure below it. Since excess toner or ink in duplexing systems can adhere to the transport roll, the sensor will pick up these impurities when scanning the surface of the paper web. Therefore, these impurities must be removed from the transport roll or scanning for proper image registration will be adversely affected. The movement of the paper web causes the transport roll to rotate so that the sensor can scan the entire surface of the transport roll.
    • 这是一种在使用纸幅进行成像的双工系统中有用的纸幅传送部件。 该单元有一个IOWA辊(支撑辊),图像传感器在其上方,清洁网状结构在其下方。 由于双面打印系统中的多余的调色剂或墨水可能粘附到传送辊上,所以当扫描纸幅表面时,传感器将拾取这些杂质。 因此,这些杂质必须从运输辊中取出,否则扫描适当的图像配准将受到不利影响。 纸幅的移动使得输送辊旋转,使得传感器可扫描传送辊的整个表面。
    • 20. 发明申请
    • Intermediate Transfer Belt Steering System
    • 中间转移带转向系统
    • US20100189475A1
    • 2010-07-29
    • US12361751
    • 2009-01-29
    • Mark A. AtwoodJames P. CalamitaAndrey Podzorov
    • Mark A. AtwoodJames P. CalamitaAndrey Podzorov
    • G03G15/01
    • G03G15/161G03G15/0131G03G15/1615G03G15/6558G03G2215/1623
    • Disclosed are embodiments that use multiple, belt-steering systems to control and maintain alignment of an endless belt. The position of the edge of the belt is measured by multiple belt edge sensors and then corrected by at least two steering rollers connected to corresponding steering mechanisms. The steering mechanisms tilt the rollers in order to selectively adjust the lateral position of the belt. Steering can be controlled independently with the tilt of each steering roller being adjusted based solely on information obtain from a corresponding belt edge sensor. Alternatively, steering can be controlled dependently with the tilt of each steering roller being adjusted based on information obtain from multiple sensors at multiple locations and further based on the predictable impact of the simultaneous movement of both rollers on belt positioning. In addition, at least one of the steering rollers can also be configured as a drive roller.
    • 公开了使用多个皮带转向系统来控制和保持环形带的对准的实施例。 皮带边缘的位置由多个皮带边缘传感器测量,然后通过连接到相应转向机构的至少两个转向辊进行校正。 转向机构使辊子倾斜以选择性地调节带的横向位置。 仅通过从相应的带边缘传感器获得的信息来调节每个转向辊的倾斜度,可独立地控制转向。 或者,转向可以根据每个转向辊的倾斜度进行控制,基于从多个位置处的多个传感器获得的信息,并且还基于两个辊同时移动对皮带定位的可预测的影响来调整。 此外,至少一个转向辊也可以被配置为驱动辊。