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    • 51. 发明授权
    • Mutualistic engine controller
    • 互动发动机控制器
    • US08422058B2
    • 2013-04-16
    • US12487756
    • 2009-06-19
    • Michael F. ZonaAaron M. BurryBruce E. ThayerPeter Paul
    • Michael F. ZonaAaron M. BurryBruce E. ThayerPeter Paul
    • G06F3/12G06F3/00G06K15/22G06K15/02H04N1/60
    • G06F3/1229G03G15/0863G03G15/55G03G2215/0697G03G2221/1823G06F3/1218G06F3/1279
    • A printing device has a printing engine that is at least partially made up of a customer replaceable unit or units. An engine controller is operatively connected to the printing engine. The engine controller uses software to control the operations of the printing engine. A non-volatile memory is operatively connected to the engine controller. The non-volatile memory stores values used by the engine controller to control operations of the printing engine. An adapter card is operatively connected to the non-volatile memory and to the customer replaceable units. The customer replaceable unit has a memory unit and the adapter card reads data from the memory unit. The adapter card uses the data to directly alter values within the non-volatile memory by bypassing the engine controller when communicating with the non-volatile memory. Further, the adapter card alters the non-volatile memory without altering the software used by the engine controller.
    • 打印装置具有至少部分地由客户可更换单元组成的打印引擎。 发动机控制器可操作地连接到打印引擎。 发动机控制器使用软件来控制打印引擎的操作。 非易失性存储器可操作地连接到发动机控制器。 非易失性存储器存储引擎控制器用于控制打印引擎的操作的值。 适配器卡可操作地连接到非易失性存储器和客户可更换单元。 客户可更换单元具有存储单元,并且适配器卡从存储器单元读取数据。 当与非易失性存储器进行通信时,适配卡使用数据直接改变非易失性存储器内的值。 此外,适配器卡改变非易失性存储器而不改变发动机控制器使用的软件。
    • 52. 发明申请
    • Multi-Level Imaging Using Single-Pass Imaging System Having Spatial Light Modulator and Anamorphic Projection Optics
    • 使用具有空间光调制器和变形投影光学的单通道成像系统的多级成像
    • US20130083303A1
    • 2013-04-04
    • US13252943
    • 2011-10-04
    • Martin E. HooverPeter PaulRobert P. Loce
    • Martin E. HooverPeter PaulRobert P. Loce
    • G03B27/42
    • B41J2/465
    • An imaging system utilizes an anamorphic optical system to concentrate a two-dimensional modulated light field in a process direction such that a one-dimensional scan line image extending in a cross-process direction is generated on an imaging surface. The modulated light field is generated by directing homogeneous light onto light modulating elements arranged in a two-dimensional array. The array is configured using a scan line image data group made up of pixel image data portions. An associated group of the light modulating elements aligned in the process direction is configured by each pixel image data portion. When a pixel value is “partially on” (i.e., between “fully on” and “fully off”), the light modulating elements of the associated group are configured such that modulating elements located in the center of each group are activated, and elements located on the upper and lower ends of each group are deactivated.
    • 成像系统利用变形光学系统将二维调制光场集中在处理方向上,使得在成像表面上产生沿交叉处理方向延伸的一维扫描线图像。 通过将均匀的光引导到以二维阵列布置的光调制元件上而产生调制光场。 使用由像素图像数据部分构成的扫描线图像数据组来配置阵列。 由处理方向对准的光调制元件的相关组由每个像素图像数据部分构成。 当像素值部分打开时(即在完全打开和完全关闭之间),相关联的组的光调制元件被配置为使得位于每个组的中心的调制元件被激活,并且位于上部和下部的元件 每组的末端都被停用。
    • 54. 发明申请
    • METHOD AND APPARATUS FOR COMPENSATION OF ARBITRARY BANDING SOURCES USING INLINE SENSING AND CONTROL
    • 使用内部感应和控制来补偿仲裁来源的方法和装置
    • US20120250037A1
    • 2012-10-04
    • US13074267
    • 2011-03-29
    • Palghat S. RameshPeter Paul
    • Palghat S. RameshPeter Paul
    • G06K15/02
    • B41J2/2135
    • A method for compensation of banding in a marking platform includes: initiating a signature learning mode; establishing a timing reference after marking modules have achieved constant velocity; marking a test pattern over multiple intervals of a lowest fundamental frequency among marking modules; obtaining image data for the test pattern from a sensor; and processing the image data in relation to the timing reference to form banding profiles for multiple banding sources. Alternatively, the method may include: initiating a cycle up stage in a phase learning mode; establishing a timing reference after marking modules have achieved constant velocity; marking a test pattern over multiple intervals of a lowest fundamental frequency among marking modules; obtaining banding image data for the test pattern from a sensor; and processing the image data with banding signatures in relation to the timing reference to form phase estimates for each banding signature. Additional embodiments are also provided.
    • 一种用于在标记平台中补偿条带的方法包括:启动签名学习模式; 标记模块后建立定时参考值达到恒速; 在标记模块之间的最低基频的多个间隔上标记测试图案; 从传感器获取测试图案的图像数据; 并且相对于定时参考处理图像数据以形成多个条带源的条带简档。 或者,该方法可以包括:在相位学习模式中启动循环向上阶段; 标记模块后建立定时参考值达到恒速; 在标记模块之间的最低基频的多个间隔上标记测试图案; 从传感器获取测试图案的条带图像数据; 并且使用与定时参考相关的条带签名来处理图像数据,以形成每个条带签名的相位估计。 还提供了另外的实施例。
    • 59. 发明授权
    • Methods and apparatuses for controlling print density
    • 用于控制打印浓度的方法和装置
    • US07729015B2
    • 2010-06-01
    • US11313018
    • 2005-12-20
    • Howard A. MizesRobert P. LoceLalit K. MesthaPeter Paul
    • Howard A. MizesRobert P. LoceLalit K. MesthaPeter Paul
    • G06K15/00H04N1/405H04N1/46
    • H04N1/6033H04N1/4015H04N1/6041
    • Multiple input patches are received on an output media, which patches are characterized by print density representing a document processing system's response to different input grayscale values over a potential response space. Values associated with the print density of each input grayscale value are measured. Reference Engine Response Curves are determined from the measured print density values and input gray scale values. A variance data representative of a difference between each measured print density value and a respective reference Engine Response Curve is determined. The variance data is transformed into individual components. Based at least on one selected individual component, a set of calibration compensating Tone Reproduction Curves is determined. The determined calibration compensating Tone Reproduction Curves are applied to input grayscale values.
    • 在输出介质上接收多个输入补丁,这些补丁的特征在于打印密度,表示文档处理系统对潜在响应空间上的不同输入灰度值的响应。 测量与每个输入灰度值的打印浓度相关联的值。 参考引擎响应曲线由测量的打印浓度值和输入灰度值确定。 确定表示每个测量的打印浓度值和各个参考引擎响应曲线之间的差异的方差数据。 方差数据被转换为单个组件。 至少基于一个所选择的单独组件,确定一组校准补偿音再现曲线。 确定的校准补偿色调再现曲线被应用于输入灰度值。