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    • 1. 发明授权
    • Method and system for calibrating ink ejection elements in an image forming device
    • 用于校准图像形成装置中的喷墨元件的方法和系统
    • US06910754B2
    • 2005-06-28
    • US10696311
    • 2003-10-29
    • David GastonFrancesc SubiradaXavier Soler
    • David GastonFrancesc SubiradaXavier Soler
    • B41J2/01B41J2/165B41J29/46B41J29/393
    • B41J2/16579
    • By implementation of an optical scanner, the calibration of printheads of a printing mechanism may be performed in a relatively short period of time as compared to known techniques. In one respect, the time required to perform the calibration may be substantially reduced by virtue of the relatively wide field of view of the optical scanner. The relatively wide field of view generally enables for the scanning of test patterns to be performed with a relatively fewer number of scanning passes, thus reducing the time required to perform the scanning operations as well as the calibration operations. In addition, the scanning operations may yield relatively more accurate results as compared to known scanning operations. In one respect, optical scanners are capable of detecting smaller drops of ink on print media by virtue of their higher resolution capabilities. In another respect, all of the printed colors may be accurately detected through implementation of a red, green, blue (RGB) charge coupled device (CCD) contained in the optical scanners.
    • 通过实施光学扫描器,与已知技术相比,打印机构的打印头的校准可以在相对较短的时间段内进行。 在一个方面,由于光学扫描仪的相对较宽的视野,进行校准所需的时间可以大大减少。 相对较宽的视场通常能够以相对较少数量的扫描通过执行测试图案的扫描,从而减少执行扫描操作所需的时间以及校准操作。 此外,与已知的扫描操作相比,扫描操作可以产生相对更准确的结果。 在一个方面,光学扫描仪能够通过其较高的分辨率能力来检测打印介质上较小的墨滴。 在另一方面,可以通过实现光学扫描仪中包含的红色,绿色,蓝色(RGB)电荷耦合器件(CCD)来精确地检测所有印刷的颜色。
    • 3. 发明授权
    • Calibration and measurement techniques for printers
    • 打印机的校准和测量技术
    • US07055925B2
    • 2006-06-06
    • US10632011
    • 2003-07-31
    • Francesc SubiradaDavid GastonOscar Ciordia
    • Francesc SubiradaDavid GastonOscar Ciordia
    • B41J29/393
    • H04N1/23
    • Techniques for calibrating a scanner mounted on a scanning carriage of an image forming device. In one embodiment, a method of calibrating an optical sensor of a color image forming device includes positioning a prefabricated optical sensor target at the service area of the image forming device, the target including a plurality of target patches of predetermined different colors, moving the carriage to the service area, acquiring one or more images of the plurality of target patches, and using the one or more images to perform a plurality of calibrations of the optical sensor. In another embodiment, a method of measuring a reference position of a carriage mounted sensor array for an image forming device includes moving the carriage to a service area, generating a light beam from a carriage-mounted light source at a position adjacent an end of a sensor array, the light beam at an acute angle relative to an array axis, reflecting the beam from a reference target mounted in the service area at a known position, acquiring an image of the reflected beam by the sensor array, and using the location of a high intensity area of the image to determine the reference position of the optical sensor.
    • 用于校准安装在图像形成装置的扫描托架上的扫描仪的技术。 在一个实施例中,一种校准彩色图像形成装置的光学传感器的方法包括将预制的光学传感器目标定位在图像形成装置的服务区域,目标包括多个预定不同颜色的目标斑块,移动滑架 获取所述多个目标贴片的一个或多个图像,并使用所述一个或多个图像来执行所述光学传感器的多个校准。 在另一个实施例中,一种测量用于图像形成装置的滑架安装的传感器阵列的基准位置的方法包括将滑架移动到服务区域,在邻近一端的位置处从支架安装的光源产生光束 传感器阵列,相对于阵列轴成锐角的光束,将来自安装在服务区域中的参考目标的光束反射到已知位置,通过传感器阵列获取反射光束的图像,并使用 图像的高强度区域来确定光学传感器的参考位置。