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    • 5. 发明申请
    • DYNAMIC PHOTO RECEPTOR WEAR RATE ADJUSTMENT BASED ON ENVIRONMENTAL SENSOR FEEDBACK
    • 基于环境传感器反馈的动态摄像机磨损速率调整
    • US20100086321A1
    • 2010-04-08
    • US12244395
    • 2008-10-02
    • Aaron Michael BURRYKenny-tuan T. DINHKarl E. KURZBruce E. THAYERMichael F. ZONA
    • Aaron Michael BURRYKenny-tuan T. DINHKarl E. KURZBruce E. THAYERMichael F. ZONA
    • G03G15/00
    • G03G15/0266G03G21/203
    • A xerographic marking engine adjusts a charging actuator value, such as an AC peak-to-peak voltage or an AC peak-to-peak current, based on a determined knee value, VKNEE, of a charge curve for an imaging apparatus photoreceptor within the xerographic marking engine and environmental sensor data. The environmental sensor data may measure environment temperature and environment humidity. In near A-zone [80 degrees Fahrenheit and 80 percent relative humidity] environments, the charging actuator value may be selected to achieve a predetermined photoreceptor wear rate that avoids print quality defects due to lateral charge migration. In other than A-zone environments, the charging actuator value may be selected to minimize the photoreceptor wear rate, while avoiding print quality defects. The described approach allows optimal photoconductor wear to be achieved, in all operational environments, without increasing the risk of print quality defects.
    • 静电印迹标记引擎基于所确定的膝盖值VKNEE来调整充电致动器值,例如AC峰 - 峰电压或AC峰 - 峰电流 静电印刷引擎和环境传感器数据。 环境传感器数据可以测量环境温度和环境湿度。 在A区[80华氏度和80%相对湿度]环境中,可以选择充电致动器值以实现预定的感光体磨损率,从而避免由于横向电荷迁移引起的打印质量缺陷。 在A区环境以外,可以选择充电致动器值以最小化感光体的磨损率,同时避免打印质量缺陷。 所描述的方法允许在所有操作环境中实现最佳感光体磨损,而不增加印刷质量缺陷的风险。
    • 7. 发明申请
    • AMPLITUDE MODULATION OF ILLUMINATORS IN SENSING APPLICATIONS IN PRINTING SYSTEM
    • 印刷系统中感光应用中的照明器的幅度调制
    • US20100003044A1
    • 2010-01-07
    • US12167428
    • 2008-07-03
    • Aaron Michael BURRYJulianna Elizabeth LinPeter Paul
    • Aaron Michael BURRYJulianna Elizabeth LinPeter Paul
    • G03G15/00
    • G03G15/5037G03G15/0131G03G15/1605G03G15/161G03G15/5058G03G2215/00042G03G2215/00059G03G2215/0164
    • An image printing system includes a print engine and a sensing system. The print engine is configured to print a marking material image on a image bearing surface. The sensing system includes a plurality of illuminators, a modulator, a sensor, and a demodulator. Each illuminator is configured to simultaneously emit a light beam at the marking material image on the image bearing surface, thereby producing reflectance from the marking material image at least in a first direction. The modulator is configured to modulate an intensity characteristic of each of the light beams emitted by the illuminators such that each light beam has a different modulated waveform characteristic, where the waveform characteristic includes at least frequency. The sensor is configured to detect the reflectance from the plurality of light beams in the first direction and output a reflectance signal. The demodulator is configured to demodulate the reflectance signal to isolate a response of the marking material image to each of the individual illuminators.
    • 图像打印系统包括打印引擎和感测系统。 打印引擎被配置为在图像承载表面上打印标记材料图像。 感测系统包括多个照明器,调制器,传感器和解调器。 每个照明器被配置为同时在图像承载表面上的标记材料图像处发射光束,从而至少在第一方向上产生来自标记材料图像的反射率。 调制器被配置为调制由照明器发射的每个光束的强度特性,使得每个光束具有不同的调制波形特性,其中波形特性至少包括频率。 传感器被配置为检测来自第一方向上的多个光束的反射率并输出反射信号。 解调器被配置为解调反射信号,以将标记材料图像的响应隔离成各个照明器。