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    • 3. 发明授权
    • Combined flexographic and intaglio printing press and operating system therefor
    • 组合柔版印刷和凹版印刷机及其操作系统
    • US07916355B2
    • 2011-03-29
    • US12412022
    • 2009-03-26
    • Joseph B. Schutte, III
    • Joseph B. Schutte, III
    • B41C1/02B41C1/04G06K15/00H04N1/40H04N1/403
    • B41F11/00B41P2213/734
    • The invention encompasses the combination of two printing technologies into a single web fed printing press 10, particularly the combination of flexographic and intaglio printing. The present web fed printing press 10 comprises at least one flexographic printing module 14 equipped to apply variable amounts of motion and tension to a web of sheet material 11; at least one intaglio printing module 17 equipped to apply variable amounts of motion and tension to the web of sheet material 11; and means for controlling the amounts of motion and tension applied by the flexographic printing module or modules 14 and by the intaglio printing module or modules 17 to the web of sheet material 11. Preferably, the means for controlling the amounts of motion and tension applied to the web of sheet material 11 comprises a host processor 40 and first and second motion control processors 44, 45.
    • 本发明包括将两种印刷技术组合成单个网状馈送印刷机10,特别是柔性版印刷和凹版印刷的组合。 本发明的网状馈送印刷机10包括至少一个柔性版印刷模块14,其被配置成将可变量的运动和张力施加到片材11的幅材上; 至少一个凹版印刷模块17,被配备为向片材11的幅材施加可变量的运动和张力; 以及用于控制柔性版印刷模块14和凹版印刷模块17施加到片材11的片材的运动和张力的量的装置。优选地,用于控制施加到 片材材料11包括主处理器40和第一和第二运动控制处理器44,45。
    • 6. 发明授权
    • Print system printing data while storing under compressed state, and printer for use therein
    • 在压缩状态下打印系统打印数据,打印机用于其中
    • US07480063B2
    • 2009-01-20
    • US10539081
    • 2003-12-15
    • Toshiaki Kakutani
    • Toshiaki Kakutani
    • G06K1/00G06K15/10G06K9/36B41C1/04B41J2/385
    • G06K15/105
    • In a printing process with a print head having multiple dot formation elements for creating dots, an overlap printing technique that uses at least two dot formation elements for formation of each raster line requires a large memory capacity for storage of dot data. In a printing system of the invention, an image processing device takes charge of a former part of image processing and outputs intermediate data in a state requiring expansion into multiple pixels to a printing device. The printing device expands intermediate data including a target pixel, for which a dot on-off state is to be specified, and specifies the dot on-off state in the target pixel based on the intermediate data. Every time the dot on-off state is specified in each target pixel, intermediate data including the target pixel is expanded. This arrangement does not require the printing device to have a large storage capacity for the image processing. The printing device and the image processing device can thus effectively share the series of image processing, even when the printing device has a small storage capacity and low processing power.
    • 在具有用于产生点的多个点形成元件的打印头的打印处理中,使用至少两个点形成元件来形成每个光栅线的重叠印刷技术需要用于存储点数据的大的存储容量。 在本发明的打印系统中,图像处理装置负责图像处理的前一部分,并且以需要向打印装置展开多个像素的状态输出中间数据。 打印装置扩展包括要指定点开关状态的目标像素的中间数据,并且基于中间数据指定目标像素中的点开关状态。 每当在每个目标像素中指定点开关状态时,扩展包括目标像素的中间数据。 这种布置不需要打印设备具有用于图像处理的大的存储容量。 因此,即使当打印装置具有小的存储容量和低处理能力时,打印装置和图像处理装置也可以有效地共享一系列的图像处理。
    • 7. 发明授权
    • Method for engraving printing cylinders
    • 印刷滚筒雕刻方法
    • US07102795B1
    • 2006-09-05
    • US10110648
    • 2000-10-27
    • Bernd Lübcke
    • Bernd Lübcke
    • B41C1/04G06F19/00G01D21/00G01R23/02
    • B41C1/045B41M2205/16
    • In a method and apparatus for engraving printing cylinders in an electronic engraving machine, an engraving control signal is formed from an image signal that represents tonal values of cups to be engraved and from a periodic raster signal for generating a printing raster. An engraving stylus of an engraving element controlled by the engraving control signal engraves a printing form in the form of cups arranged in the printing raster in a rotating printing cylinder. For checking of the functionability of the engraving stylus, test cups are engraved simultaneously when engraving the printing form. A respective measurement interval is defined for selected test cups. The raster signal is respectively eliminated from the engraving control signal for the duration of the measurement interval, and the remaining engraving control signal is investigated for harmonics characteristic of damage to the engraving stylus. A control signal signalling damage to the engraving stylus is generated given the presence of the characteristic harmonics.
    • 在用于在电子雕刻机中雕刻印刷滚筒的方法和装置中,从表示待雕刻的杯的色调值的图像信号和用于产生打印光栅的周期性光栅信号形成雕刻控制信号。 由雕刻控制信号控制的雕刻元件的雕刻触针以旋转印刷滚筒中的布置在印刷光栅中的杯子的形式刻印印刷形式。 为了检查雕刻笔的功能性,在雕刻印刷表格时,同时刻有测试杯。 为选定的测试杯定义了相应的测量间隔。 在测量间隔的持续时间内,光栅信号分别从雕刻控制信号中消除,并且对雕刻触针的损坏的谐波特性研究剩余的雕刻控制信号。 鉴于存在特征谐波,产生了对雕刻笔的信号的信号损坏。
    • 8. 发明授权
    • Method for making and evaluating a sample cut
    • 制作和评估样品切割的方法
    • US06950212B1
    • 2005-09-27
    • US09445145
    • 1998-05-27
    • Gottfried Ernst-Rudolf Weidlich
    • Gottfried Ernst-Rudolf Weidlich
    • B41C1/045H04N1/407B41C1/04G06F19/00
    • B41C1/045H04N1/4078
    • In a method for making and evaluating a sample cut in an engraving machine, an engraving control signal for guiding a stylus is formed from engraving data. The stylus cuts a series of cups. During a trial engraving trial cups are engraved and a video image is made. In accordance with screen parameters, measuring points are fixed in the video image as distances to a selected reference point. Geometric parameters of the trail cups are measured in the video image and are compared to corresponding geometric parameters of the cups representing predetermined tone values. Adjustment values are deduced from this comparison which are used to calibrate the engraving control signal.
    • 在用于制造和评估雕刻机中的样品切割的方法中,用于引导触针的雕刻控制信号由雕刻数据形成。 手写笔切割一系列的杯子。 在试版雕刻试验中刻有杯子并制作视频图像。 根据屏幕参数,测量点在视频图像中固定为与所选参考点的距离。 在视频图像中测量跟踪杯的几何参数,并将其与表示预定音调值的杯子的相应几何参数进行比较。 从该比较中推导出用于校准雕刻控制信号的调整值。
    • 10. 发明授权
    • Gravure engraving system and method including engraving overlapping cells
    • 凹版雕刻系统和方法包括雕刻重叠的细胞
    • US5847837A
    • 1998-12-08
    • US868105
    • 1997-06-03
    • Hideaki Ogawa
    • Hideaki Ogawa
    • B41C1/045H04N1/04B41C1/04
    • H04N1/04B41C1/045H04N2201/0458
    • An adding portion 105 superposes a density signal (a signal having its level changing in accordance with a density of a printed image) from a density signal generator 101 on a carry signal (a signal in the form of a sine wave having a prescribed frequency and a prescribed amplitude) from a carry signal generator 102 to generate an engraving signal. A stylus included in an engraving head 21 reciprocatively vibrates according to the applied engraving signal to engrave cells on a gravure cylinder rotating in the main scanning direction. A sub-scanning motor 107 moves the engraving head 21 in a sub-scanning direction perpendicular to the main scanning direction every time cells for one line in the main scanning direction of the gravure cylinder have been engraved. At this time, the moved amount of the engraving head 21 in the sub-scanning direction is controlled so that cells adjacent in the sub-scanning direction partially overlap with each other in every other line.
    • 加法部分105将密度信号(根据印刷图像的密度根据印刷图像的浓度改变的信号)叠加在进位信号(具有规定频率的正弦波形式的信号和 来自进位信号发生器102的规定振幅)以产生雕刻信号。 包括在雕刻头21中的触针根据所施加的雕刻信号往复振动,以在主扫描方向上旋转的凹版滚筒上雕刻细胞。 每次刻蚀凹版滚筒的主扫描方向的一行的单元格时,副扫描电机107使扫描头21沿与主扫描方向垂直的副扫描方向移动。 此时,雕刻头21沿副扫描方向的移动量被控制,使得在副扫描方向上相邻的单元在每隔一行中彼此部分重叠。