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    • 1. 发明授权
    • Method and apparatus for axial direction sheet feed to a vacuum drum
    • 用于轴向方向送纸到真空鼓的方法和装置
    • US06313859B1
    • 2001-11-06
    • US09571350
    • 2000-05-16
    • Roger S. KerrKurt M. Sanger
    • Roger S. KerrKurt M. Sanger
    • B41J1728
    • B41J15/04B41J13/223
    • An image processing apparatus (10) for sheet thermal print media includes an imaging drum (300) for holding thermal print media (32) and donor material (36) in registration on the vacuum imaging drum. In order to decrease the incidence of visible defects in images produced by the apparatus, the imaging drum (300) has its axis in parallel with the feed direction of the media. A method for improving the quality of images produced by an image processing apparatus (10) having a horizontally disposed imaging drum (300), which includes loading pre-cut, thermal print media into the image processing apparatus in a direction which is parallel to the axis of the imaging drum is also included.
    • 用于片材热敏打印介质的图像处理设备(10)包括用于保持在真空成像鼓上对准的热打印介质(32)和供体材料(36)的成像鼓(300)。 为了减少由装置产生的图像中的可见缺陷的发生率,成像鼓(300)的轴线与介质的进给方向平行。 一种用于提高由具有水平放置的成像鼓(300)的图像处理装置(10)产生的图像的质量的方法,其包括将预切割的热敏打印介质沿平行于图像处理装置的方向加载到图像处理装置中 还包括成像鼓的轴。
    • 3. 发明授权
    • Method of controlling a printhead movement based on a screw pitch to
minimize swath-to-swath error in an image processing apparatus
    • 基于螺距调节打印头移动的方法,以最小化图像处理装置中的条带到条带误差
    • US6064170A
    • 2000-05-16
    • US144390
    • 1998-08-31
    • Robert W. SpurrRoger S. KerrKurt M. Sanger
    • Robert W. SpurrRoger S. KerrKurt M. Sanger
    • B41J19/18B41J19/16B41J19/20B41J29/38B41J29/393H02P9/00
    • B41J19/16B41J29/393
    • An image processing apparatus (10), typically for sheet thermal print media. The image processing apparatus (10) typically comprises a vacuum imaging drum (300) for holding thermal print media (32) and dye donor sheet material (36) in registration on the vacuum imaging drum (300). A printhead (500), driven by a lead screw (250), moves along a line parallel to a longitudinal axis (301) of the vacuum imaging drum (300) as the vacuum imaging drum (300) rotates. The printhead (500) receives information signals and produces radiation which is directed to the dye donor material (36) which causes color to transfer from the dye donor material (36) to the thermal print media (32). A stepper motor (162) that turns the lead screw (250) can run in a microstepping mode. To determine an optimal lead screw (250) pitch, a method of this invention utilizes the characteristic sinusoidal positional error (154) behavior of the stepper motor (162) that is at 4 times the frequency of the composite microstepping current waveform, and calculates the ideal value (in/rev or mm/rev) based on image resolution, number of full steps per revolution of the stepper motor (162), and the number of pixels per motor step. An integral, power of 2 multiple of the ideal value, based on suitability of stepper motor (162) speed, is then used to derive the lead screw (250) pitch. Based on the lead screw (250) pitch selected, the phase angle relationship of positional error (154), swath-to-swath, varies within a small set of discrete values, based on the number of channels used in the writing swath (450).
    • 一种图像处理设备(10),通常用于片材热敏打印介质。 图像处理装置(10)通常包括用于保持在真空成像鼓(300)上对准的热打印介质(32)和染料供体片材(36)的真空成像鼓(300)。 当真空成像鼓(300)旋转时,由导螺杆(250)驱动的打印头(500)沿着与真空成像鼓(300)的纵向轴线(301)平行的线移动。 打印头(500)接收信息信号并产生被引导到染料供体材料(36)的辐射,这导致颜色从染料供体材料(36)转移到热敏打印介质(32)。 旋转导螺杆(250)的步进马达(162)可以以微步进模式运行。 为了确定最佳的螺杆(250)间距,本发明的方法利用步进电动机(162)的特征正弦位置误差(154)的行为,其为复合微步进电流波形的4倍,并且计算出 基于图像分辨率的理想值(in / rev或mm / rev),步进电机(162)的每转的完整步数,以及每个电机步进的像素数。 然后,使用基于步进电机(162)速度的适合性的2倍的理想值的整体功率来导出螺杆(250)间距。 基于所选择的导螺杆(250)间距,位置误差(154)的相位角关系(swath-to-swath)根据在写入条中使用的通道数量(450)在一小组离散值之间变化 )。
    • 6. 发明授权
    • Method and apparatus for positioning a writing assembly of an image processing apparatus
    • 用于定位图像处理装置的书写组件的方法和装置
    • US06249300B1
    • 2001-06-19
    • US09354005
    • 1999-07-15
    • Roger S. KerrRobert W. SpurrThomas A. MackinKurt M. SangerDavid F. Dalfonso
    • Roger S. KerrRobert W. SpurrThomas A. MackinKurt M. SangerDavid F. Dalfonso
    • B41J25304
    • B41J19/205
    • An image processing apparatus (10) comprises an imaging drum (300) for holding print media (32) and donor material (36) in registration on the imaging drum (300). A print head (500), driven by a lead screw (250) and stepper motor, moves along a line parallel to a longitudinal axis (X) of the imaging drum (300) as the imaging drum (300) rotates. The print head (500) is brought repeatably to a mechanical registration position using sensors. For coarse positioning, the print head (500) is moved to a first linear sensor position, with the drive motor operated in full-step mode. For fine positioning, the drive motor is then operated in microstepping mode, during which a second sensor detects rotational orientation by detecting a rotational indicator mounted on the lead screw (250). The rotational indicator permits straightforward adjustment for fine-tuning, being adjustable to any one of a number of fixed positions relative to lead screw rotation.
    • 一种图像处理装置(10)包括用于保持印刷介质(32)和成像鼓(300)对准的供体材料(36)的成像鼓(300)。 当成像鼓(300)旋转时,由导螺杆(250)和步进电机驱动的打印头(500)沿平行于成像鼓(300)的纵向轴线(X)的线移动。 使用传感器将打印头(500)重复地带到机械配准位置。 对于粗略定位,打印头(500)移动到第一线性传感器位置,驱动电机以全步模式运行。 为了精细定位,驱动电机然后在微步进模式下操作,在此期间,第二传感器通过检测安装在导螺杆(250)上的旋转指示器来检测旋转方位。 旋转指示器允许微调的简单调整,可以相对于导螺杆旋转的多个固定位置中的任何一个调节。
    • 7. 发明授权
    • Method for changing focus and angle of a multichannel printhead
    • 改变多通道打印头的焦点和角度的方法
    • US06232999B1
    • 2001-05-15
    • US09344917
    • 1999-06-25
    • Roger S. KerrKurt M. SangerRobert W. SpurrDavid F. Dalfonso
    • Roger S. KerrKurt M. SangerRobert W. SpurrDavid F. Dalfonso
    • B41J1514
    • B41J2/442B41J29/393
    • The present invention is for a method for adjusting a focus of a multichannel printhead (500) for an imaging processing apparatus (10) performing the steps of establishing a home focus position and moving the printhead (500) in a first direction a predetermined number of coarse density. The printhead (500) is moved to the coarse focus position and then moved in a second direction a predetermined number of fine steps. A series of second test patches is printed on the media (32) at each of the fine steps. A fine focus position is determined by checking a fine density of each of the second test patches and selecting the fine focus position corresponding to the second test patch having a highest fine density.
    • 本发明是一种用于调整成像处理设备(10)的多通道打印头(500)的焦点的方法,该成像处理设备执行以下步骤:建立家庭对焦位置,并将打印头(500)沿第一方向移动预定数量的 粗密度。 打印头(500)移动到粗焦点位置,然后沿第二方向移动预定数量的精细步骤。 在每个精细步骤中,在介质(32)上印刷一系列第二测试贴片。 通过检查每个第二测试片的精细密度并选择与具有最高精细密度的第二测试片相对应的精细对焦位置来确定精细对焦位置。
    • 8. 发明授权
    • Semantic magazine pages
    • 语义杂志页面
    • US09177199B2
    • 2015-11-03
    • US13197348
    • 2011-08-03
    • Kurt M. Sanger
    • Kurt M. Sanger
    • G06K9/46G06K9/00G06K9/22
    • G06K9/00463G06K9/228
    • A method for providing user interaction with a printed page (10) includes providing artwork (20) for a first page to be printed; providing a printing model to simulate a first printed page using the artwork; simulating the first page to be printed using the printing model; extracting a first set of features from the first simulated page (220); and embedding the first set of extracted features in a first URL (270). The invention includes printing the first page; capturing a digital image of the printed page (415) with a mobile device (400); extracting features (430) from the digital image; generating the URL associated with the digital image using the features extracted from the digital image; and navigating to the generated URL using a web browser (470).
    • 提供用户与打印页面(10)交互的方法包括提供用于要打印的第一页面的图稿(20); 提供打印模型以使用艺术品来模拟第一印刷页面; 使用打印模型模拟要打印的第一页; 从所述第一模拟页面(220)提取第一组特征; 以及将第一组提取的特征嵌入到第一URL(270)中。 本发明包括打印第一页; 用移动设备(400)捕获打印页面(415)的数字图像; 从数字图像中提取特征(430); 使用从数字图像提取的特征来生成与数字图像相关联的URL; 并使用网络浏览器导航到生成的URL(470)。
    • 9. 发明申请
    • SYSTEM OF ALIGNING A STAMP TO A STAMP BACKING PLATE
    • 将印章贴在印章背板上的系统
    • US20140230675A1
    • 2014-08-21
    • US13771130
    • 2013-02-20
    • Kurt M. Sanger
    • Kurt M. Sanger
    • B41F27/00
    • B41F27/005B41F5/24
    • A system of aligning a stamp to a stamp backing plate includes a fixture with a first alignment feature mount on a platen; a first stamp with a second alignment feature which matches the first alignment feature; aligning the first stamp to the fixture using the first and second alignment features; transferring the first stamp from the fixture to a first stamp backing plate maintaining registration; a second stamp with a third alignment feature which matches the first alignment feature; aligning the second stamp to the fixture using the first and third alignment features; and transferring the second stamp from the fixture to a second stamp backing plate while maintaining registration.
    • 将印模对准印模背板的系统包括具有在压板上的第一对准特征安装件的固定装置; 具有与所述第一对准特征匹配的第二对准特征的第一印模; 使用第一和第二对准特征将第一印章对准夹具; 将第一印章从夹具转移到保持注册的第一印章衬板; 具有与所述第一对准特征匹配的第三对准特征的第二印模; 使用第一和第三对准特征将第二印模对准夹具; 以及将第二印模从夹具转移到第二印模衬板同时保持配准。
    • 10. 发明申请
    • EMBEDDING DATA WITH OFFSET PRINTING
    • 嵌入数据与偏移打印
    • US20140020587A1
    • 2014-01-23
    • US13553096
    • 2012-07-19
    • Kurt M. Sanger
    • Kurt M. Sanger
    • B41F13/193
    • B41F5/24B41F9/06B41F13/193
    • Embedding data in printed image features on a receiver printed with an offset printing process includes a first offset printing member (240) for forming an image (320) on the first offset printing member. A second offset printing member (260) is roughened in one region (280) of the second offset printing member within a boundary of an image feature on the first offset printing member to embed data (330). Ink is applied to the first offset printing member and transferred from the first offset printing member to the second offset printing member. The ink from the second offset printing member is applied to a receiver (305) and the embedded data is printed within the boundary of the at least one image feature transferred to the receiver.
    • 将印刷图像特征中的数据嵌入到印刷有胶版印刷工艺的接收器上,包括用于在第一胶版印刷部件上形成图像的第一胶版印刷部件(240)。 在第一胶版印刷构件上的图像特征的边界内,第二胶版印刷构件(260)在第二胶版印刷构件的一个区域(280)中粗糙化以嵌入数据(330)。 油墨被施加到第一胶版印刷构件并从第一胶版印刷构件传送到第二胶版印刷构件。 来自第二胶版印刷构件的墨水被施加到接收器(305),并且嵌入数据被打印在传送到接收器的至少一个图像特征的边界内。