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    • 5. 发明授权
    • Method for evaluating the quality of a printed matter, provided by a printing machine
    • 由印刷机提供的用于评价印刷品质量的方法
    • US07672486B2
    • 2010-03-02
    • US11587149
    • 2005-04-06
    • Carsten DiederichsVolker LohwegThomas TürkeHarald Heinrich Willeke
    • Carsten DiederichsVolker LohwegThomas TürkeHarald Heinrich Willeke
    • G06K9/00H04N1/40
    • B41F33/0036G07C3/146
    • The quality of printed matter, which is one of several copies of the same printed matter produced by a printing machine, is evaluated. An amount of copies of the printed matter is selected from the total production of this printed matter. The selected amount of these copies are evaluated with regard to at least one error type which belongs to an amount of different error types or with regard to at least one feature of the error. Within the selected amount of copies, an error of a defined error type or of a defined feature, which is detected on at least one of the copies, is evaluated in relation to at least one error of another type or feature detected on the same copy, or another copy of the selected amount. The printed matter is classified as having good or bad quality based on that evaluation. A common reading, producing image data, is obtained by an image sensor from the selected copies. All of the errors to be evaluated in relation to each other are detected from image data gathered during the same common recording.
    • 对由印刷机生产的相同印刷品的多个拷贝之一的印刷品质量进行了评价。 从该印刷品的总产量中选择印刷品的份数。 关于至少一种属于不同错误类型的数量或关于错误的至少一个特征的错误类型来评估所选择的这些副本的数量。 在所选择的份数内,相对于在相同副本上检测到的另一种类型或特征的至少一个错误来评估在至少一个副本上检测到的定义的错误类型或定义的特征的错误 ,或所选金额的其他副本。 基于该评估,印刷品被归类为具有良好或差的质量。 通过图像传感器从所选择的拷贝中获得产生图像数据的公共读取。 从相同的共同记录中收集的图像数据中检测出要相互评估的所有错误。
    • 6. 发明授权
    • Flexible process optimizer
    • 灵活的流程优化器
    • US07246023B2
    • 2007-07-17
    • US10764615
    • 2004-01-26
    • Rajiv K. BhatejaChander P. Bhateja
    • Rajiv K. BhatejaChander P. Bhateja
    • G01C19/00
    • B24B51/00G05B13/024G05B23/0235G07C3/005G07C3/146
    • A flexible process optimizer for recording and analyzing various parameters to improve the efficiency of a production process. The flexible process optimizer acquires and conditions signals from a variety of transducers mounted on a production machine. Through qualitative and quantitative data analysis, specific aspects are of the production process which need improvement are identified. The qualitative evaluation looks at the presence, absence, or duration of certain features of the production cycle as revealed by the sensor data. The quantitative evaluation of data involves the computation of certain data attributes. By providing useful data acquisition and data analysis tools, necessary adjustments are made to the required parameters of the production process to provide improved efficiency. The results of the changes are immediately verifiable using the flexible process optimizer.
    • 灵活的过程优化器,用于记录和分析各种参数,以提高生产过程的效率。 灵活的过程优化器从安装在生产机器上的各种换能器获取和调节信号。 通过定性和定量的数据分析,确定需要改进的生产过程的具体方面。 定性评估考察了传感器数据所揭示的生产周期某些特征的存在,不存在或持续时间。 数据的定量评估涉及某些数据属性的计算。 通过提供有用的数据采集和数据分析工具,必须对生产过程所需的参数进行调整,以提高效率。 可以使用灵活的过程优化器立即验证更改的结果。
    • 8. 发明授权
    • Production system and production method
    • 生产系统及生产方式
    • US06952624B2
    • 2005-10-04
    • US10463529
    • 2003-06-18
    • Kazuhiro Mori
    • Kazuhiro Mori
    • B42D15/10G05B19/418G06F19/00G06K17/00G06Q10/00G06Q50/00G06Q50/04G07C3/14
    • G07C3/146G05B19/4183G05B2219/31304G05B2219/31322G06K2017/0087G06Q10/06Y02P90/04Y02P90/10
    • Comprising: an IC tag 120 that is attached to a work in process 100 of a portable telephone 110 and memorizes information related to a production condition of the portable telephone 110; a mounting device 140 that reads out the information related to the production condition of the portable telephone 110 from the IC tag 120 and mounts components of the portable telephone 110, based on the readout information related to the production condition of the portable telephone 110, on the work in process 100 with the IC tag 120 attached; an inspection device 150 that reads out the information related to the production condition of the portable telephone 110 from the IC tag 120, and inspects the work in process 100, which the IC tag 120 is attached and the components of the portable telephone 110 are mounted, based on the readout information related to the production condition of the portable telephone 110; and an editing device 130 that writes the information related to production of the portable telephone 110 into the IC tag 120.
    • 包括:附接到便携式电话110的处理过程100中的工作的IC标签120,并且存储与便携式电话110的生产条件相关的信息; 基于与便携式电话110的生产条件相关的读出信息,从IC标签120读出与便携式电话110的生产状况有关的信息的安装装置140,并安装便携式电话110的部件 在附加了IC标签120的过程100中进行的工作; 检查装置150,其从IC标签120读出与便携式电话110的生产条件相关的信息,并检查安装了IC标签120并且安装了便携式电话110的部件的处理过程100中的工作 基于与便携式电话110的生产条件相关的读出信息; 以及将与便携式电话110的制作有关的信息写入IC标签120的编辑装置130。
    • 9. 发明授权
    • Method and apparatus for improved inspection and classification of attributes of a workpiece
    • 用于改进工件属性检查和分类的方法和装置
    • US06901352B2
    • 2005-05-31
    • US10610426
    • 2003-06-30
    • Steve C. WoodsMichael McGuireHarry OgloffZvonimir Sko{hacek over (c)}ićEmeric Johnson
    • Steve C. WoodsMichael McGuireHarry OgloffZvonimir Sko{hacek over (c)}ićEmeric Johnson
    • G01N23/04G01N23/18G07C3/14G06F19/00
    • G07C3/146G01N23/04G01N23/18
    • A generic, scalable consumer subsystem/producer subsystem interface controller for exchanging data between at least one producer subsystem configured to produce a set of services characterized in a producer generated data set, and at least on consumer subsystem configured to consume the set of services, including an object-oriented producer application program interface configured for use on a multi-threaded, client-server operating system, wherein producer routines are configured to: initialize producer server objects maid producer client objects; receive requests for data from a consumer subsystem via the producer client objects; send acknowledgments to a consumer subsystem in response to requests from the consumer subsystem via the producer server objects; send data to a consumer subsystem in response to requests from the consumer subsystem via the producer server objects; and wherein consumer routines are configured to: initialize consumer server objects and consumer client objects; send requests for data to a producer subsystem via the consumer server objects; receive acknowledgments from a producer subsystem in response to requests from the producer subsystem via the consumer client objects; and, receive data from a producer subsystem in response to requests from the producer subsystem via the consumer client objects.
    • 一种通用的,可扩展的消费者子系统/生产者子系统接口控制器,用于在至少一个生成器子系统之间交换数据,所述至少一个生成器子系统被配置为产生以生产者生成的数据集为特征的服务集,并且至少在消费者子系统上, 面向对象的生产者应用程序接口,被配置为在多线程的客户机 - 服务器操作系统上使用,其中生产者例程被配置为:初始化生产者服务器对象女佣生产者客户对象; 通过生产者客户端对象接收来自消费者子系统的数据请求; 响应于来自消费者子系统的经由生产者服务器对象的请求,向消费者子系统发送确认; 响应于来自消费者子系统的经由生产者服务器对象的请求,将数据发送到消费者子系统; 并且其中消费者例程被配置为:初始化消费者服务器对象和消费者客户对象; 通过消费者服务器对象向生产者子系统发送数据请求; 响应于生产者子系统经由消费者客户对象的请求,从生产者子系统接收确认; 并且响应于来自生产者子系统的经由消费者客户端对象的请求,从生产者子系统接收数据。
    • 10. 发明申请
    • Method and apparatus for improved inspection and classification of attributes of a workpiece
    • 用于改进工件属性检查和分类的方法和装置
    • US20040030536A1
    • 2004-02-12
    • US10610426
    • 2003-06-30
    • Steve C. WoodsMichael McGuireHarry OgloffZvonimir SkocicEmeric Johnson
    • H03F001/26G06F015/00H04B015/00
    • G07C3/146G01N23/04G01N23/18
    • An apparatus for detecting the probable existence, location, and type of defects in a workpiece is described. The apparatus includes a sensor subsystem, an optimizer, a control subsystem, and a computer system having a processor and computer readable memory. The sensor subsystem senses a first section of the workpiece and produces signals corresponding to a physical characteristic of the workpiece. The computer system is configured to generate a workpiece model based on the signals produced by the sensor subsystem. In an alternate embodiment, a defect assembler can be provided to merge signals from a plurality of sensor subsystems. The defect assembler can also be configured to generate the workpiece data model. The optimizer is configured to generate workpiece segmentation recommendations based on the workpiece data model.
    • 描述了用于检测工件中缺陷的可能存在,位置和类型的装置。 该装置包括传感器子系统,优化器,控制子系统和具有处理器和计算机可读存储器的计算机系统。 传感器子系统感测工件的第一部分并且产生对应于工件的物理特性的信号。 计算机系统被配置为基于由传感器子系统产生的信号产生工件模型。 在替代实施例中,可以提供缺陷汇编器来合并来自多个传感器子系统的信号。 缺陷汇编器也可以配置为生成工件数据模型。 优化器被配置为基于工件数据模型生成工件分割建议。