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    • 2. 发明申请
    • Method and apparatus for improving color registration in contact-image-sensor scanners
    • 用于改善接触图像传感器扫描仪中颜色配准的方法和装置
    • US20060114521A1
    • 2006-06-01
    • US11001965
    • 2004-12-01
    • James BaileyJames BushJoseph Yackzan
    • James BaileyJames BushJoseph Yackzan
    • H04N1/04
    • H04N1/40006H04N1/40056H04N1/484
    • A method, and a document scanning apparatus employing the method, of scanning with a light source. The method comprises the acts of determining a calibration time of the light source and light sensor in a scanning unit, adjusting an activation time for the light source based on the calibration time, scaling a clock signal based on the activation time, and activating the light source based on the scaled clock signals. Where a red, green and blue LED light source is used, the longest of the activation times of the LEDs is used for the scaling of the clock signals. In another embodiment, the time between the start of the activation of last LED scan on a previous scan line and the start of activation of the first LED on the subsequent scan line is adjusted to maintain the predetermined resolution used for the scan.
    • 一种使用该方法的方法和文件扫描装置,用光源进行扫描。 该方法包括确定扫描单元中的光源和光传感器的校准时间的动作,基于校准时间调整光源的激活时间,基于激活时间缩放时钟信号,以及激活光 源基于缩放的时钟信号。 在使用红色,绿色和蓝色LED光源的地方,LED的最长激活时间用于缩放时钟信号。 在另一个实施例中,调整在先前扫描线上的最后LED扫描的开始激活与随后扫描线上的第一LED的启动开始之间的时间,以保持用于扫描的预定分辨率。
    • 3. 发明申请
    • System and method for high-performance scanner calibration
    • 用于高性能扫描仪校准的系统和方法
    • US20060001921A1
    • 2006-01-05
    • US10883427
    • 2004-06-30
    • James BaileyCurt BreswickDavid CrutchfieldJoseph Yackzan
    • James BaileyCurt BreswickDavid CrutchfieldJoseph Yackzan
    • H04N1/46
    • H04N1/401H04N5/361H04N5/3651
    • The present invention is directed to a system and method for reducing the memory requirement for offset and gain calibration to relieve the size/performance bottleneck in scanner systems. The resulting methodology produces visually equivalent scanned results with a substantial increase in performance, which results in a shorter amount of time required to output a first copy in, for example, an all-in-one device. Since the calibration step is often the bottleneck in scanner performance, this method noticeably speeds up scan and copy time. Implementing the decompression in hardware requires a minimal amount of hardware overhead and complexity. Thus, this method has a minimal impact on the size and cost of the scanner controller (e.g., an ASIC—application specific integrated circuit). Since compression only takes place at most once per scan, this added step has no significant impact on the overall scan time. By allowing dynamic grouping of pixels using a single calibration packet, the quality of the compensation can be optimized with the size of the compensation data being minimized. Adding the ability to shift the compressed deviation stored in the calibration packet, the range of the pixel-to-pixel deviation can be increased without impacting the size of the calibration data. This flexibility makes this invention applicable to future image sensors that may have widely varying deviations in pixel-to-pixel offset and gain values.
    • 本发明涉及用于减少偏移和增益校准的存储器需求以减轻扫描器系统中的尺寸/性能瓶颈的系统和方法。 所得到的方法产生视觉上等效的扫描结果,性能显着增加,这导致在例如一体式设备中输出第一副本所需的更短的时间量。 由于校准步骤通常是扫描仪性能的瓶颈,因此该方法显着加快了扫描和复制时间。 在硬件中实现解压缩需要最少的硬件开销和复杂性。 因此,该方法对扫描仪控制器(例如,ASIC专用集成电路)的尺寸和成本具有最小的影响。 由于每次扫描最多只能进行一次压缩,因此添加的步骤对整个扫描时间没有显着影响。 通过允许使用单个校准分组对像素进行动态分组,可以使补偿数据的大小最小化来优化补偿的质量。 增加移动存储在校准包中的压缩偏差的能力,可以增加像素到像素偏差的范围而不影响校准数据的大小。 这种灵活性使得本发明适用于未来可能在像素到像素偏移和增益值中具有广泛变化的偏差的图像传感器。
    • 5. 发明授权
    • Maximizing performance in a hardware image scaling module
    • 最大限度地提高硬件图像缩放模块的性能
    • US07480071B2
    • 2009-01-20
    • US10413201
    • 2003-04-14
    • James Ray BaileyJoseph Yackzan
    • James Ray BaileyJoseph Yackzan
    • G06F15/00G06K1/00G03F3/08H04N1/409
    • G06T3/4007
    • Lines of input image data are scaled in a first dimension, the one-dimensionally scaled lines are stored in a buffer memory until a sufficient number of lines have been stored to perform scaling equally in two dimensions, and the stored lines are then scaled in a second dimension to produce image data scaled two-dimensionally by a user-selected scaling percentage. A first image scaling method is used to scale the input image data if the user-selected scaling percentage exceeds a predetermined threshold value, such as 50 percent, and a second scaling method is used if the scaling percentage does not exceed the threshold value. The first method can be, for example, linear interpolation, and the second method can be, for example, averaging.
    • 输入图像数据的行在第一维度上缩放,一维缩放的行被存储在缓冲存储器中,直到已经存储了足够数量的行以在两维中同等地执行缩放,然后将存储的行在 第二维以产生通过用户选择的缩放百分比二维缩放的图像数据。 如果用户选择的缩放百分比超过预定阈值(例如50%),则第一图像缩放方法用于缩放输入图像数据,并且如果缩放百分比不超过阈值,则使用第二缩放方法。 第一种方法可以是例如线性插值,第二种方法可以是例如平均化。
    • 6. 发明申请
    • Image forming device upgrade via optical scanning of a media sheet
    • 通过介质片的光学扫描升级成像装置
    • US20070157193A1
    • 2007-07-05
    • US11325288
    • 2006-01-04
    • Tommy LoweRicky RobbinsJoseph Yackzan
    • Tommy LoweRicky RobbinsJoseph Yackzan
    • G06F9/44
    • G06F8/65
    • An image forming device may be upgraded through scanning an encoded upgrade sheet. A controller and associated circuitry in the image forming device may extract upgrade data, including firmware data for the device, from the scanned upgrade sheet and write the data to a memory device. The upgrade sheets may include an image comprising a pattern of data blocks, with each block having a color shade representative of binary data. The upgrade sheets may be distributed to users in different manners, including mailing upgrade sheets, electronically mailing the image, or providing the image on a network accessible to the users. The upgrade sheets may include a preamble that triggers the upgrade procedure as well as header and footer information describing the upgrade data.
    • 可以通过扫描编码的升级表来升级图像形成装置。 图像形成装置中的控制器和相关联的电路可以从扫描的升级表提取升级数据,包括设备的固件数据,并将数据写入存储器件。 升级表可以包括包括数据块的图案的图像,每个块具有代表二进制数据的色调。 升级表可以以不同的方式分发给用户,包括邮寄升级表,电子邮寄图像,或者在用户可访问的网络上提供图像。 升级表可以包括触发升级过程的前同步码以及描述升级数据的页头和页脚信息。