UTILIZING AN RFID TAG IN MANUFACTURING FOR ENHANCED LIFECYCLE MANAGEMENT
    2.
    发明申请
    UTILIZING AN RFID TAG IN MANUFACTURING FOR ENHANCED LIFECYCLE MANAGEMENT 审中-公开
    使用RFID标签制造增强生物食品管理

    公开(公告)号:US20090184803A1

    公开(公告)日:2009-07-23

    申请号:US12173054

    申请日:2008-07-15

    IPC分类号: H04B7/00

    摘要: Data associated with supply chain events for a manufactured assembly is automatically stored. In preferred embodiments the supply chain events for the manufactured assembly are stored on an RFID tag attached to the assembly as it travels through the supply chain to insure the data concerning the assembly is readily available and not separated from the assembly. In other embodiments, the supply chain events or characteristic data is stored on the RFID tag in a hierarchical structure beginning with the original state of the assembly and with additional entries for each step in the assembly process. In other embodiments, as the product undergoes rework, conversion to a different assembly, or personalizations, the new state of the assembly is stored in the RFID tag. In other preferred embodiments, other information is also stored on the RFID tag such as country of origin, failure data, cycle times and a quality status indicator.

    摘要翻译: 与制造的组件的供应链事件相关的数据将自动存储。 在优选实施例中,制造的组件的供应链事件被存储在附接到组件上的RFID标签,当其穿过供应链时,确保有关组件的数据容易获得并且不与组件分离。 在其他实施例中,供应链事件或特征数据以从组件的原始状态开始的分层结构存储在RFID标签上,并且具有用于装配过程中的每个步骤的附加条目。 在其他实施例中,随着产品经历返工,转换成不同的组件或个性化,组装的新状态被存储在RFID标签中。 在其他优选实施例中,其他信息也存储在RFID标签上,例如原籍国,故障数据,周期时间和质量状态指示符。

    Label for an electronic product that provides failure information when the product fails
    4.
    发明授权
    Label for an electronic product that provides failure information when the product fails 失效
    为产品故障时提供故障信息的电子产品标签

    公开(公告)号:US07380726B2

    公开(公告)日:2008-06-03

    申请号:US11953026

    申请日:2007-12-08

    摘要: A label on an electronic product may be written electronically and maintains the last display state when power is removed from the label. There are many different types of digital paper and electronic paper known in the art that would be suitable for use as such labels. The label includes multiple defined regions that may be independently written, with one of the regions defined to display failure information for the electronic product. In one implementation, the failure information is available on the electronic product itself. In another implementation, the failure information includes information received from a source external to the electronic product. The display of failure information on the label may be in human-readable and/or machine-readable form. The result is a label on an electronic product that provides reliable information regarding a failure of the electronic product.

    摘要翻译: 电子产品上的标签可以电子写入,并在从标签上取出电源时保持最后的显示状态。 本领域已知有许多不同类型的数字纸和电子纸,适合用作这种标签。 标签包括可以独立写入的多个限定区域,其中一个区域被定义以显示电子产品的故障信息。 在一个实现中,故障信息可用于电子产品本身。 在另一实现中,故障信息包括从电子产品外部的源接收的信息。 标签上的故障信息的显示可以是人可读和/或机器可读的形式。 结果是电子产品上的标签,提供有关电子产品故障的可靠信息。

    Utilizing an RFID tag in manufacturing for enhanced lifecycle management
    5.
    发明授权
    Utilizing an RFID tag in manufacturing for enhanced lifecycle management 失效
    在制造中利用RFID标签进行增强的生命周期管理

    公开(公告)号:US07493181B2

    公开(公告)日:2009-02-17

    申请号:US11360348

    申请日:2006-02-23

    IPC分类号: G06F19/00

    摘要: A method and apparatus dynamically store data associated with supply chain events for a manufactured assembly to enhance lifecycle management of the assembly. The supply chain events for the manufactured assembly are stored on an RFID tag attached to the assembly as it travels through the supply chain to insure the data concerning the assembly is readily available and not separated from the assembly. The supply chain events or characteristic data may be stored on the RFID tag in a hierarchical structure beginning with the original state of the assembly and with additional entries for each step in the assembly process. In addition, as the product undergoes rework, conversion to a different assembly, or personalization, the new state of the assembly is stored in the RFID tag. Other information that may be stored on the RFID tag includes country of origin, failure data, cycle times and a quality status parameter.

    摘要翻译: 一种方法和设备动态地存储与制造的组件的供应链事件相关联的数据,以增强组件的生命周期管理。 制造的组件的供应链事件被存储在组件附近的RFID标签上,因为它穿过供应链,以确保有关组件的数据容易获得并且不与组件分离。 供应链事件或特征数据可以以从组件的原始状态开始的分层结构存储在RFID标签上,并且具有用于装配过程中的每个步骤的附加条目。 另外,随着产品经过返工,转换成不同的组装或个性化,组装的新状态存储在RFID标签中。 可能存储在RFID标签上的其他信息包括原产国,故障数据,周期时间和质量状态参数。

    UTILIZING AN RFID TAG IN MANUFACTURING FOR ENHANCED LIFECYCLE MANAGEMENT
    6.
    发明申请
    UTILIZING AN RFID TAG IN MANUFACTURING FOR ENHANCED LIFECYCLE MANAGEMENT 有权
    使用RFID标签制造增强生物食品管理

    公开(公告)号:US20080266058A1

    公开(公告)日:2008-10-30

    申请号:US12173052

    申请日:2008-07-15

    IPC分类号: H04Q5/22

    摘要: Data associated with supply chain events for a manufactured assembly is automatically stored. In preferred embodiments the supply chain events for the manufactured assembly are stored on an RFID tag attached to the assembly as it travels through the supply chain to insure the data concerning the assembly is readily available and not separated from the assembly. In other embodiments, the supply chain events or characteristic data is stored on the RFID tag in a hierarchical structure beginning with the original state of the assembly and with additional entries for each step in the assembly process. In other embodiments, as the product undergoes rework, conversion to a different assembly, or personalizations, the new state of the assembly is stored in the RFID tag. In other preferred embodiments, other information is also stored on the RFID tag such as country of origin, failure data, cycle times and a quality status indicator.

    摘要翻译: 与制造的组件的供应链事件相关的数据将自动存储。 在优选实施例中,制造的组件的供应链事件被存储在附接到组件上的RFID标签,当其穿过供应链时,确保有关组件的数据容易获得并且不与组件分离。 在其他实施例中,供应链事件或特征数据以从组件的原始状态开始的分层结构存储在RFID标签上,并且具有用于装配过程中的每个步骤的附加条目。 在其他实施例中,随着产品经历返工,转换成不同的组件或个性化,组装的新状态被存储在RFID标签中。 在其他优选实施例中,其他信息也存储在RFID标签上,例如原籍国,故障数据,周期时间和质量状态指示符。

    Utilizing an RFID tag in manufacturing for enhanced lifecycle management
    8.
    发明授权
    Utilizing an RFID tag in manufacturing for enhanced lifecycle management 有权
    在制造中利用RFID标签进行增强的生命周期管理

    公开(公告)号:US08421600B2

    公开(公告)日:2013-04-16

    申请号:US12173052

    申请日:2008-07-15

    IPC分类号: H04Q5/22

    摘要: Data associated with supply chain events for a manufactured assembly is automatically stored. In preferred embodiments the supply chain events for the manufactured assembly are stored on an RFID tag attached to the assembly as it travels through the supply chain to insure the data concerning the assembly is readily available and not separated from the assembly. In other embodiments, the supply chain events or characteristic data is stored on the RFID tag in a hierarchical structure beginning with the original state of the assembly and with additional entries for each step in the assembly process. In other embodiments, as the product undergoes rework, conversion to a different assembly, or personalizations, the new state of the assembly is stored in the RFID tag. In other preferred embodiments, other information is also stored on the RFID tag such as country of origin, failure data, cycle times and a quality status indicator.

    摘要翻译: 与制造的组件的供应链事件相关的数据将自动存储。 在优选实施例中,制造的组件的供应链事件被存储在附接到组件上的RFID标签,当其穿过供应链时,确保有关组件的数据容易获得并且不与组件分离。 在其他实施例中,供应链事件或特征数据以从组件的原始状态开始的分层结构存储在RFID标签上,并且具有用于装配过程中的每个步骤的附加条目。 在其他实施例中,随着产品经历返工,转换成不同的组件或个性化,组装的新状态被存储在RFID标签中。 在其他优选实施例中,其他信息也存储在RFID标签上,例如原籍国,故障数据,周期时间和质量状态指示符。

    Sending service data to an RFID tag while an attached computer system is powered off
    9.
    发明授权
    Sending service data to an RFID tag while an attached computer system is powered off 失效
    在连接的计算机系统关闭电源时将服务数据发送到RFID标签

    公开(公告)号:US08190872B2

    公开(公告)日:2012-05-29

    申请号:US12220582

    申请日:2008-07-25

    IPC分类号: G06F1/24 G06F9/00 G08B13/14

    CPC分类号: G06K7/0008 G07F11/002

    摘要: An apparatus, system, and storage medium that, in an embodiment, receive service data at a computer system from an RFID tag, where the service data was sent to the RFID tag from an RF transmitter while the computer system was powered off. The RFID tag includes tag memory and an antenna, and the RFID tag is attached to the computer system. In another embodiment, the computer system sends the service data to the RFID tag, and the service data is received by an RF scanner from the RFID tag via the antenna while the computer system is powered off. In various embodiments, the service data identifies the computer system or a product within the computer system. In another embodiment, the service data includes log information associated with the computer system.

    摘要翻译: 在一个实施例中,一种在计算机系统从RFID标签接收服务数据的设备,系统和存储介质,其中服务数据在计算机系统断电时从RF发射器发送到RFID标签。 RFID标签包括标签存储器和天线,并且RFID标签附接到计算机系统。 在另一个实施例中,计算机系统将服务数据发送到RFID标签,并且当计算机系统断电时,服务数据由RF标签经由天线从RFID标签接收。 在各种实施例中,服务数据识别计算机系统或计算机系统内的产品。 在另一个实施例中,服务数据包括与计算机系统相关联的日志信息。

    Self-optimizing algorithm for real-time problem resolution using historical data
    10.
    发明授权
    Self-optimizing algorithm for real-time problem resolution using historical data 失效
    使用历史数据实时解决问题的自优化算法

    公开(公告)号:US07962472B2

    公开(公告)日:2011-06-14

    申请号:US12240442

    申请日:2008-09-29

    IPC分类号: G06F7/00 G06F17/30

    摘要: A self-optimizing algorithm for real-time problem resolution using historical data. Upon receiving failure symptom characteristics for a product or process failure, the algorithm queries historical failure data to locate historical failure symptoms and corrective actions matching the failure symptom characteristics. If a total number of the historical corrective actions identified meets a minimum match threshold, the algorithm selectively prunes a failure symptom characteristic having the lowest priority level to form an adjusted search query. The algorithm may repeat the querying, identifying, and determining steps using the adjusted search query until the total number of historical corrective actions identified meets the minimum match threshold. Once the threshold is met, the algorithm sorts the historical corrective actions to form a list of recommended corrective actions for the failure symptom characteristics and provides the list of recommended corrective actions to an end user.

    摘要翻译: 一种使用历史数据实时解决问题的自优化算法。 在收到产品或过程故障的故障症状特征时,该算法查询历史故障数据,以查找与故障症状特征匹配的历史故障症状和纠正措施。 如果识别的历史纠正措施的总数达到最小匹配阈值,则该算法选择性地修改具有最低优先级的故障症状特征以形成经调整的搜索查询。 该算法可以使用经调整的搜索查询重复查询,识别和确定步骤,直到所识别的历史校正动作的总数达到最小匹配阈值。 一旦满足阈值,算法对历史纠正措施进行排序,以形成针对故障症状特征的建议纠正措施的列表,并向最终用户提供推荐的纠正措施列表。