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    • 1. 发明申请
    • Methods for Determining Widths Of Media Sheets Within An Image Forming Apparatus
    • 确定图像形成装置内介质片宽度的方法
    • US20090066005A1
    • 2009-03-12
    • US11851836
    • 2007-09-07
    • Thomas Paul MadduxClark Edwin JarnaginDaniel P. CahillKevin D. SchoedingerDavid John Mickan
    • Thomas Paul MadduxClark Edwin JarnaginDaniel P. CahillKevin D. SchoedingerDavid John Mickan
    • B65H7/02G03G21/00
    • B65H7/02B65H2220/09B65H2511/12B65H2511/212B65H2513/50B65H2553/612B65H2801/06G03G15/5029G03G2215/00734B65H2220/03B65H2220/01B65H2220/11
    • The present application is directed to methods of determining a width of a media sheet moving along a media path of an image forming apparatus. The methods may include moving the media sheet along the media path and past a media width sensor that includes a shaft with a first upstream paddle positioned away from a reference location of the media path and a second downstream paddle positioned in closer proximity to the reference location. The first paddle is positioned a first distance from the first sensor, and the second paddle is positioned a second distance from the first sensor. As the media sheet moves along the media path, a first signal may be received when the media sheet contacts the first sensor, and a second signal when the media sheet is at the media width sensor. The distance the media sheet travels between contacting the first sensor and being at the second sensor may be determined. The method may also determine whether the media sheet contacted the first or second paddle based on the media sheet travel distance. Based on which paddle was contacted, it may then be determined whether the media sheet is wide or intermediate. The method may also include determining the media sheet is narrow if there is no receipt of two signals.
    • 本申请涉及确定沿图像形成装置的介质路径移动的介质片材的宽度的方法。 所述方法可以包括沿着介质路径移动介质片并通过包括轴的介质宽度传感器,介质宽度传感器具有定位成远离介质路径的参考位置的第一上游焊盘,以及定位在更靠近参考位置的第二下游焊盘 。 第一桨叶与第一传感器定位成第一距离,并且第二桨叶距离第一传感器定位第二距离。 当介质片沿着介质路径移动时,当介质片材接触第一传感器时,可以接收第一信号,并且当介质片材处于介质宽度传感器时可以接收第二信号。 可以确定介质片在接触第一传感器和处于第二传感器之间的距离。 该方法还可以基于介质片移动距离来确定介质片是否接触第一或第二桨叶。 基于哪个桨被接触,然后可以确定介质片是宽的还是中间的。 该方法还可以包括:如果没有接收到两个信号,则确定介质片窄。
    • 10. 发明申请
    • Electrophotographic Device Utilizing Multiple Laser Sources
    • 使用多个激光源的电子照相设备
    • US20080285987A1
    • 2008-11-20
    • US11750413
    • 2007-05-18
    • David John MickanKevin Dean Schoedinger
    • David John MickanKevin Dean Schoedinger
    • B41J2/47
    • B41J2/473
    • An electrophotographic device has first and second laser sources, each controllable to emit a laser beam, a scanning device arranged to direct the beams so as to sweep in a scan direction across a photoconductive surface and a controller configured to control the electrophotographic device. In at least one print mode, the electrophotographic device is controlled such that scan lines written by the first laser beam overlap with scan, lines written by the second laser beam, and a laser power of the first and second laser sources are controlled such that image data corresponding to select print elements are each partially written at a corresponding print element, position along at least two adjacent scan lines so as to combine energy in a manner that forms a synthesized print element on the photoconductive surface at a position between the adjacent scan lines.
    • 电子照相装置具有第一和第二激光源,每个激光源可被控制以发射激光束;扫描装置,被布置成引导光束以沿扫描方向扫过光电导表面;以及控制器,被配置为控制电子照相装置。 在至少一个打印模式中,控制电子照相设备,使得由第一激光束写入的扫描线与扫描重叠,由第二激光束写入的线,并且控制第一和第二激光源的激光功率,使得图像 对应于选择打印元件的数据分别部分地写入沿着至少两个相邻扫描线的对应的打印元件位置,以便以在相邻扫描线之间的位置处在光电导表面上形成合成印刷元件的方式组合能量 。