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    • 3. 发明申请
    • OPTICALLY-CONNECTED SYSTEM FOR EXCHANGING DATA AMONG INDUSTRIAL AUTOMATION DEVICES
    • 用于在工业自动化设备中交换数据的光学连接系统
    • US20120269518A1
    • 2012-10-25
    • US13542585
    • 2012-07-05
    • Giuseppe Morfino
    • Giuseppe Morfino
    • H04B10/00
    • H04B10/1149H04B10/801
    • An optically-connected system is disclosed for exchanging data among industrial automation devices, that is composed of a plurality of connection modules, where each module comprises at least two pairs of optical transmitters and receivers on the main side, and one optical receiver on the opposing main side, that are opposite with respect to another pair of transmitters and receivers in a following module; and where each one of the transmitters and receivers is adapted to communicate with industrial automation devices to cooperate for exchanging data between modules, sending one interrogation signal requesting an identity of the module and the receiver is adapted to send to each corresponding response signal containing characteristics of the receiver.
    • 公开了一种用于在工业自动化设备之间交换数据的光学连接系统,其由多个连接模块组成,其中每个模块包括在主侧上的至少两对光发射器和接收器,以及在相对的一个上的一个光接收器 主侧相对于下一模块中的另一对发射器和接收器相反; 并且其中每个发射器和接收器适于与工业自动化设备通信以协作用于在模块之间交换数据,发送请求模块的身份的一个询问信号,并且接收器适于发送到每个对应的响应信号, 收件人。
    • 4. 发明授权
    • Optically-connected system for exchanging data among industrial automation devices
    • 用于在工业自动化设备之间交换数据的光学连接系统
    • US08565611B2
    • 2013-10-22
    • US13542585
    • 2012-07-05
    • Giuseppe Morfino
    • Giuseppe Morfino
    • H04B10/00
    • H04B10/1149H04B10/801
    • An optically-connected system is disclosed for exchanging data among industrial automation devices, that is composed of a plurality of connection modules, where each module comprises at least two pairs of optical transmitters and receivers on the main side, and one optical receiver on the opposing main side, that are opposite with respect to another pair of transmitters and receivers in a following module; and where each one of the transmitters and receivers is adapted to communicate with industrial automation devices to cooperate for exchanging data between modules, sending one interrogation signal requesting an identity of the module and the receiver is adapted to send to each corresponding response signal containing characteristics of the receiver.
    • 公开了一种用于在工业自动化设备之间交换数据的光学连接系统,其由多个连接模块组成,其中每个模块包括在主侧上的至少两对光发射器和接收器,以及在相对的一个上的一个光接收器 主侧相对于下一模块中的另一对发射器和接收器相反; 并且其中每个发射器和接收器适于与工业自动化设备通信以协作用于在模块之间交换数据,发送请求模块的身份的一个询问信号,并且接收器适于发送到每个对应的响应信号, 收件人。
    • 6. 发明授权
    • Process and system for compensating static errors on numerically controlled machine tools
    • 用于补偿数控机床静态误差的过程和系统
    • US06615102B1
    • 2003-09-02
    • US09743359
    • 2001-01-09
    • Giuseppe Morfino
    • Giuseppe Morfino
    • G05B19404
    • G05B19/404G05B2219/37275G05B2219/37506
    • A system and a process are described for performing the Static Error Compensation on numerically controlled machine tools. The process comprises the steps of: connecting a measuring laser device (5) to a numerically controlled machine tool (1); automatically sending a point 0 of the machine (1) to the laser device (5); sending commands for taking m measure points of the machine (1) from the control (3) to the laser device (5); automatically detecting the measure points and sending consolidated data from the laser device (5) to the control (3); producing a model of static errors of the machine (1); executing the Static Error Compensation depending on said produced model.
    • 描述了一种用于在数控机床上执行静态误差补偿的系统和过程。 该方法包括以下步骤:将测量激光装置(5)连接到数控机床(1); 自动将机器(1)的点0发送到激光装置(5); 发送用于将所述机器(1)的测量点从所述控制(3)到所述激光装置(5)的命令; 自动检测测量点,并将激光装置(5)的合并数据发送到控制装置(3); 产生机器的静态误差模型(1); 根据所产生的模型执行静态误差补偿。
    • 7. 发明授权
    • System and process for measuring, compensating and testing numerically controlled machine tool heads and/or tables
    • 用于测量,补偿和测试数控机床头和/或台的系统和过程
    • US07245982B2
    • 2007-07-17
    • US10525927
    • 2003-09-19
    • Giuseppe Morfino
    • Giuseppe Morfino
    • G06F19/00
    • G05B19/4015G05B2219/39007G05B2219/49181G05B2219/50026
    • A system and a process are disclosed, that are automated and integrated with numerically controlled systems, for measuring, compensating and testing numerically controlled machine tool heads (1) and/or tables. The system comprises: at least one support base (11) equipped with a plurality of distance sensors (14); at least one device (16) of the gage tool type composed of an elongated cylinder (17) that is equipped at one of its ends with connection means (18) for the heads (1) and is equipped at another opposite end with a ball (20), wherein the ball (20) is placed next to the sensors (14) so that they are able, always and in any position, to measure the distance that separates them from the ball (20) and determine thereby the position in the Cartesian space.
    • 公开了一种系统和过程,其被自动化并与数控系统集成,用于测量,补偿和测试数控机床头(1)和/或表。 该系统包括:配备有多个距离传感器(14)的至少一个支撑基座(11); 所述量规工具类型的至少一个装置(16)由细长的圆柱体(17)组成,所述细长的圆柱体(17)的一端具有用于所述头部(1)的连接装置(18),并且在另一相对端设置有球 (20),其中所述球(20)放置在传感器(14)旁边,使得它们能够总是和在任何位置测量将它们与球(20)分开的距离,从而确定球 笛卡尔空间。
    • 8. 发明申请
    • System and process for measuring, compensating and testing numerically controlled machine tool heads and/or tables
    • 用于测量,补偿和测试数控机床头和/或台的系统和过程
    • US20050234671A1
    • 2005-10-20
    • US10525927
    • 2003-09-19
    • Giuseppe Morfino
    • Giuseppe Morfino
    • G05B19/401G06F19/00
    • G05B19/4015G05B2219/39007G05B2219/49181G05B2219/50026
    • A system and a process are disclosed, that are automated and integrated with numerically controlled systems, for measuring, compensating and testing numerically controlled machine tool heads (1) and/or tables. The system comprises: at least one support base (11) equipped with a plurality of distance sensors (14); at least one device (16) of the gage tool type composed of an elongated cylinder (17) that is equipped at one of its ends with connection means (18) for the heads (1) and is equipped at another opposite end with a ball (20), wherein the ball (20) is placed next to the sensors (14) so that they are able, always and in any position, to measure the distance that separates them from the ball (20) and determine thereby the position in the Cartesian space.
    • 公开了一种系统和过程,其被自动化并与数控系统集成,用于测量,补偿和测试数控机床头(1)和/或表。 该系统包括:配备有多个距离传感器(14)的至少一个支撑基座(11); 所述量规工具类型的至少一个装置(16)由细长的圆柱体(17)构成,所述细长圆柱体(17)的一端具有用于所述头部(1)的连接装置(18),并且在另一相对端设置有球 (20),其中所述球(20)放置在传感器(14)旁边,使得它们能够总是和在任何位置测量将它们与球(20)分开的距离,从而确定球 笛卡尔空间。
    • 9. 发明授权
    • Process and system for working a workpiece through numerically controlled machine tools
    • 通过数控机床加工工件的工艺和系统
    • US06681144B1
    • 2004-01-20
    • US09806028
    • 2001-03-26
    • Giuseppe Morfino
    • Giuseppe Morfino
    • G06F1900
    • G05B19/4099
    • The present invention provides a method and system for working a workpiece with a numerically controlled machine tool having a working tool. An electronic representation of an object to be worked is read and stored. Then, the working tool is moved in real-time based on the electronic representation that is read. To move the working tool, a user provides at least one movement parameter for the working tool, where the parameter includes at least one of direction parameters, space limits, and tool movement topologies. Moreover, moving the working tool is based on the at least one parameter provided by the user, and an initial movement of the working tool occurs when the electronic representation of the object is stored and the at least one parameter for working the object is provided.
    • 本发明提供一种用具有加工工具的数控机床加工工件的方法和系统。 读取并存储待加工对象的电子表示。 然后,基于读取的电子表示,实时地移动工作工具。 为了移动工作工具,用户为工作工具提供至少一个移动参数,其中参数包括方向参数,空间限制和工具移动拓扑中的至少一个。 此外,移动加工工具基于用户提供的至少一个参数,并且当存储对象的电子表示并且提供用于加工对象的至少一个参数时,发生作业工具的初始移动。