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    • 21. 发明授权
    • Belt tracking using steering angle feed-forward control
    • 带跟踪采用转向角前馈控制
    • US08682233B2
    • 2014-03-25
    • US13282061
    • 2011-10-26
    • Joannes N. M. deJongLloyd A. Williams
    • Joannes N. M. deJongLloyd A. Williams
    • G03G15/00G03G15/16
    • G03G15/1615G03G2215/00156G03G2215/0158
    • An apparatus including a transfer belt, an edge sensor and a belt steering roll. The transfer belt having a lateral edge and the edge sensor detecting lateral positions of the lateral edge as it passes the edge sensor. The belt steering roll controlling lateral movement of the transfer belt, which is rotatably mounted maintaining rolling engagement with the transfer belt. An axis of rotation of the belt steering roll selectively tiltable defining a steering angle with respect to an axis reference orientation. Changes in the steering angle inducing a lateral shift profile to the lateral edge. The lateral shift profile defined by changes to the lateral positions of the lateral edge during a period. The steering angle being changed based on a differential between a currently detected lateral position of a segment of the lateral edge and a predetermined lateral position derived from the lateral shift profile.
    • 一种包括转印带,边缘传感器和皮带转向辊的装置。 所述转印带具有侧边缘,并且所述边缘传感器在所述侧边缘通过所述边缘传感器时检测所述侧边缘的横向位置。 皮带转向辊控制转印带的横向移动,转印带可旋转地安装,保持与转印带的滚动接合。 皮带转向辊的旋转轴线可选择性地倾斜,从而相对于轴线参考方向限定转向角。 转向角的变化导致横向偏移轮廓到侧边缘。 横向偏移轮廓由一段时间内横向边缘的侧向位置的变化而定义。 基于侧向边缘的段的当前检测到的横向位置与从横向偏移轮廓导出的预定横向位置之间的差异来改变转向角。
    • 22. 发明授权
    • Nip release system
    • Nip释放系统
    • US08474818B2
    • 2013-07-02
    • US13084272
    • 2011-04-11
    • Joannes N. M. deJongLloyd A. Williams
    • Joannes N. M. deJongLloyd A. Williams
    • B65H5/02
    • B65H9/002B65H5/062B65H2404/133B65H2404/143B65H2404/1442
    • Methods and system for reducing sheet skew in a sheet transport system are disclosed. A sheet transport system may include an idler wheel, a drive wheel a drive motor and an actuator. The idler wheel may have a substantially rigid outer layer. The drive wheel may have a compliant outer layer and may correspond to the idler wheel. The drive motor may be operably connected to the drive wheel and may be configured to cause the drive wheel to rotate around a shaft. The actuator may be operably connected to the drive wheel and configured to cause the drive wheel to move between a closed position and an open position. The drive wheel is configured to contact a sheet in the closed position and to not contact a sheet in the open position.
    • 公开了一种用于减少片材输送系统中的片材偏斜的方法和系统。 片材输送系统可以包括惰轮,驱动轮,驱动马达和致动器。 惰轮可以具有基本刚性的外层。 驱动轮可以具有柔顺的外层并且可以对应于惰轮。 驱动马达可以可操作地连接到驱动轮,并且可以构造成使得驱动轮围绕轴旋转。 致动器可以可操作地连接到驱动轮并且构造成使得驱动轮在关闭位置和打开位置之间移动。 驱动轮构造成在关闭位置接触片材并且不接触处于打开位置的片材。
    • 23. 发明授权
    • Sheet registration using edge sensors
    • 使用边缘传感器进行纸张配准
    • US08256767B2
    • 2012-09-04
    • US12641860
    • 2009-12-18
    • Lloyd A. WilliamsJoannes N. M. deJong
    • Lloyd A. WilliamsJoannes N. M. deJong
    • B65H7/02
    • B65H9/002B65H2404/1424B65H2511/20B65H2511/242B65H2511/514B65H2701/1311B65H2801/06B65H2220/03B65H2220/01
    • Accurate sheet registration is achieved by measuring the arrival of a leading edge and/or a trailing edge of the sheet using a first sensor. Also, measuring a first position of the sheet using a second sensor on a lateral edge of the sheet. Then performing a first adjustment moving the sheet laterally using the first position measurement. The first adjustment actuated prior to the sheet reaching a third sensor for measuring a second position of the sheet. The third sensor disposed downstream in the process direction of the second sensor and a sheet feeding nip. Then measuring a second position of the sheet using the third sensor on the lateral edge and performing a second adjustment of the sheet with regard to at least one of sheet skew, sheet velocity and sheet lateral position using at least one of the arrival, first position and second position measurements.
    • 使用第一传感器测量片材的前缘和/或后缘的到达来实现精确的片材配准。 此外,使用第二传感器在片材的侧边缘上测量片材的第一位置。 然后使用第一位置测量执行使片材横向移动的第一调整。 在纸张到达用于测量纸张的第二位置的第三传感器之前的第一调整被致动。 第三传感器设置在第二传感器的处理方向上的下游和送纸辊隙。 然后使用侧边缘上的第三传感器测量片材的第二位置,并且使用至少一个到达第一位置,关于片材歪斜,片材速度和片材横向位置中的至少一个来执行片材的第二调整 和第二位置测量。
    • 25. 发明授权
    • Edge sensor gain calibration for printmaking devices
    • 边缘传感器增益校准用于版画设备
    • US08020859B2
    • 2011-09-20
    • US12547762
    • 2009-08-26
    • Joannes N. M. deJongLloyd A. Williams
    • Joannes N. M. deJongLloyd A. Williams
    • B65H7/02
    • B65H9/002B65H9/106B65H2404/1424B65H2553/412B65H2557/20B65H2557/2423B65H2557/61
    • According to aspects illustrated herein, there is provided a method, a system, and a printmaking device for calibrating sensors. The method begins by transporting a media sheet along a media path, the sheet having a lead edge, a trail edge and a measurement edge. Next, the method halts the forward motion of the sheet after the lead edge of the sheet passes a fixed reference. After that, the method moves the sheet laterally relative to the media path across the at least one edge sensor using a sheet actuator. Then, the method records an actual position of the sheet actuator and an output of at least one edge sensor. Finally, the method calculates a calibration factor based on the actual position of the sheet actuator and the output of the at least one edge sensor.
    • 根据本文所示的方面,提供了一种用于校准传感器的方法,系统和版权制作装置。 该方法开始于沿着介质路径传送介质片,片材具有前缘,轨迹边缘和测量边缘。 接下来,该方法在片材的引导边缘通过固定的基准之后停止片材的向前运动。 之后,该方法使用片材致动器使片材横向移动穿过至少一个边缘传感器的介质路径。 然后,该方法记录片材致动器的实际位置和至少一个边缘传感器的输出。 最后,该方法基于片材致动器的实际位置和至少一个边缘传感器的输出来计算校准因子。
    • 27. 发明授权
    • Agile lateral and shew sheet registration apparatus and method
    • 敏捷横向和纸板配准设备及方法
    • US5697608A
    • 1997-12-16
    • US669727
    • 1996-06-26
    • Vittorio R. CastelliJoannes N. M. deJongLloyd A. WilliamsBarry M. Wolf
    • Vittorio R. CastelliJoannes N. M. deJongLloyd A. WilliamsBarry M. Wolf
    • B65H9/16B65H7/02
    • B65H9/002B65H2511/242
    • An apparatus and method for registering and deskewing a sheet along a paper path. A pair of independently driven selectively actuable nips are used to drive a sheet transverse to a paper path direction until the edge of a sheet is registered laterally and in skew. The transverse nips are then deactivated and a drive nip moves the sheet in a process direction along the paper path. A first transport sensor senses the lead edge of a sheet, a second sensor is used to also detect the lead edge of a sheet within a certain distance from the detection by the first sensor. The transport drive nip can then be adjusted based on the transport time between the first transport sensor and the second transport sensor so that the sheet arrives at a registration sensor at the prescribed time. This apparatus and method allows the use of simple point type sensors as opposed to more complex and expensive sensor arrays.
    • 一种用于沿着纸路径对片材进行配准和歪斜校正的设备和方法。 一对独立驱动的可选择性致动的夹头用于驱动横向于纸张路径方向的片材,直到片材的边缘横向和歪斜地登记。 横向压头然后被去激活,并且驱动压区沿着纸通道沿着处理方向移动纸张。 第一传送传感器感测纸张的前缘,第二传感器用于还检测与第一传感器的检测距离一定距离内的纸张的前缘。 然后可以基于第一传送传感器和第二传送传感器之间的传送时间来调整传送驱动夹持器,使得片材在规定时间到达对准传感器。 该装置和方法允许使用简单的点型传感器,而不是更复杂和昂贵的传感器阵列。
    • 29. 发明申请
    • CLOSED LOOP LATERAL AND SKEW CONTROL
    • 封闭环路和脚踏控制
    • US20110156345A1
    • 2011-06-30
    • US12647765
    • 2009-12-28
    • Joannes N. M. deJongLloyd A. Williams
    • Joannes N. M. deJongLloyd A. Williams
    • B65H9/00
    • B65H9/002B65H2511/20B65H2513/104B65H2557/264B65H2801/06B65H2220/03B65H2220/02B65H2220/11
    • According to aspects illustrated herein, a method, a system, and a printmaking device for performing closed loop lateral and skew control of a sheet is provided. The printmaking device includes a feed path, printing module, and sheet registration system. First, the feed path moves the sheet in a process direction past the lateral sensor. Next, the sheet is registered by measuring a lateral position of one side edge of the sheet at a fixed reference using the lateral sensor and determining a lateral position error of the sheet using the lateral position measurement. After that, a sheet angular velocity is calculated based on the lateral position error using the registration controller. Then, the lateral position error is corrected using the at least one pair of registration nips to adjust the sheet by applying the sheet angular velocity to the sheet.
    • 根据本文所示的方面,提供了一种用于执行片材的闭环横向和偏斜控制的方法,系统和版权制造装置。 该印版装置包括一馈送路径,打印模块和纸张登记系统。 首先,进给路径使片材沿着处理方向移动通过横向传感器。 接下来,通过使用横向传感器以固定的基准测量片材的一个侧边缘的横向位置来记录片材,并使用横向位置测量来确定片材的横向位置误差。 之后,使用登记控制器基于横向位置误差来计算纸张角速度。 然后,使用至少一对对准夹头校正横向位置误差,以通过将片材角速度施加到片材来调节片材。
    • 30. 发明授权
    • Sheet registration system with auxiliary nips
    • 带辅助夹头的纸张注册系统
    • US07731188B2
    • 2010-06-08
    • US11879578
    • 2007-07-18
    • Joannes N. M. deJongLloyd A. WilliamsJack G. Elliot
    • Joannes N. M. deJongLloyd A. WilliamsJack G. Elliot
    • B65H5/02B65H5/04
    • B65H9/006B65H7/02B65H2220/09B65H2404/14B65H2404/1442B65H2511/11B65H2511/224B65H2513/40B65H2220/01B65H2220/02
    • A sheet handling system comprising a sheet registration system having sheet registration nips and a receiving system for a sheet including a capturing point for engaging said sheet. Auxiliary nips are positioned between the sheet registration nips and the receiving station. The auxiliary nips are moveable between an open and closed position. A controller receives a signal indicative of the length of the sheet and sends a signal to the auxiliary nips to be in a sheet engaging position when the length of the sheet is less than the distance between the sheet feeding nips and the capturing point of the receiving station and be in an open position if the length of the sheet is greater than the distance between the sheet registration nips and the capturing point of the receiving station. In another embodiment, the auxiliary nips are maintained in their open position until the trailing edge of a sheet is about to leave the sheet registration nips, at which point the auxiliary nips are closed.
    • 一种片材处理系统,包括具有片材登记夹的片材登记系统和用于片材的接收系统,所述片材包括用于接合所述片材的捕获点。 辅助夹头位于片材登记夹和接收站之间。 辅助夹头可在打开和关闭位置之间移动。 控制器接收表示纸张长度的信号,并且当纸张的长度小于纸张进给辊隙和接收器的捕获点之间的距离时,将信号发送到辅助胶印片以处于纸张接合位置 并且如果纸张的长度大于纸张登记辊隙和接收站的捕获点之间的距离,则处于打开位置。 在另一个实施例中,辅助夹头保持在其打开位置,直到片材的后缘将要离开片材定位夹具,此时辅助夹钳被关闭。