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    • 5. 发明授权
    • Feeler pin and feeler head for a coordinate measuring machine
    • 用于坐标测量机的感应针和测头
    • US08141261B2
    • 2012-03-27
    • US12974314
    • 2010-12-21
    • Thomas EngelFrank Richter
    • Thomas EngelFrank Richter
    • G01B5/004
    • G01B5/012G01B7/012
    • The present invention relates to a feeler pin for a coordinate measuring machine. The feeler pin comprises a shaft having a first end and a second end, a fastening sleeve for fastening the feeler pin in a feeler pin holder, and an identification device for identifying the feeler pin. A feeler object is provided at the first end of the shaft, wherein the identification device can be read out via a first contact and a second contact. Further, it is provided that the second end of the shaft and the fastening sleeve are connected by a plastic section, wherein the first contact is provided by the fastening sleeve, and the second contact is provided by a rotationally symmetrical contact device which is electrically insulated from the fastening sleeve by the plastic section. Further, the present invention relates to a feeler head for holding the at least one feeler pin.
    • 本发明涉及一种用于坐标测量机的触针。 触针包括具有第一端和第二端的轴,用于将触针固定在触针销保持器中的紧固套,以及用于识别触针的识别装置。 在轴的第一端设置有触觉物体,其中识别装置可以经由第一触点和第二触点读出。 此外,设置轴和紧固套筒的第二端通过塑料部分连接,其中第一接触由紧固套筒提供,并且第二接触由旋转对称的接触装置提供,该接触装置是电绝缘的 由紧固套由塑料部分。 此外,本发明涉及一种用于保持至少一个触针的探头。
    • 6. 发明申请
    • FEELER PIN AND FEELER HEAD FOR A COORDINATE MEASURING MACHINE
    • 用于坐标测量机的感应针和感应头
    • US20110146092A1
    • 2011-06-23
    • US12974314
    • 2010-12-21
    • Thomas ENGELFrank Richter
    • Thomas ENGELFrank Richter
    • G01B5/008
    • G01B5/012G01B7/012
    • The present invention relates to a feeler pin for a coordinate measuring machine. The feeler pin comprises a shaft having a first end and a second end, a fastening sleeve for fastening the feeler pin in a feeler pin holder, and an identification device for identifying the feeler pin. A feeler object is provided at the first end of the shaft, wherein the identification device can be read out via a first contact and a second contact. Further, it is provided that the second end of the shaft and the fastening sleeve are connected by a plastic section, wherein the first contact is provided by the fastening sleeve, and the second contact is provided by a rotationally symmetrical contact device which is electrically insulated from the fastening sleeve by the plastic section. Further, the present invention relates to a feeler head for holding the at least one feeler pin.
    • 本发明涉及一种用于坐标测量机的触针。 触针包括具有第一端和第二端的轴,用于将触针固定在触针销保持器中的紧固套,以及用于识别触针的识别装置。 在轴的第一端设置有触觉物体,其中识别装置可以经由第一触点和第二触点读出。 此外,设置轴和紧固套筒的第二端通过塑料部分连接,其中第一接触由紧固套筒提供,并且第二接触由旋转对称的接触装置提供,该接触装置是电绝缘的 由紧固套由塑料部分。 此外,本发明涉及一种用于保持至少一个触针的探头。
    • 9. 发明申请
    • Method for optimally deactivating inter-domain routes
    • 最佳地停用域间路由的方法
    • US20070002729A1
    • 2007-01-04
    • US10571052
    • 2004-08-24
    • Thomas Engel
    • Thomas Engel
    • H04J1/16
    • H04L45/02H04L45/025H04L45/04H04L45/28
    • The inventive method provides that the failure of a segment, which connects two autonomous systems, is communicated as a segment failure to affected autonomous systems. The autonomous systems informed of the segment failure then deactivate inter-domain routes containing the down segment. After restoring the segment, the routes containing the segment can be reactivated after the propagation of a corresponding message. The method can use conventional protocols, particularly the Border Gateway Protocol, by treating the down segment as a route that is made recognizable as a segment by means of a PATH ATTRIBUTE. In contrast to the conventional procedure within the framework of the Border Gateway Protocol, routes that can no longer be used do not need to be individually communicated. An efficient propagation of the information concerning the fault and an improved convergence of the routing information of the autonomous system, said routing information being changed thereupon, is thus achieved.
    • 本发明的方法提供了连接两个自治系统的段的故障作为段故障被传送到受影响的自治系统。 自动系统通知段故障,然后停用包含下行段的域间路由。 在恢复段之后,包含段的路由可以在相应消息的传播后重新激活。 该方法可以使用常规协议,特别是边界网关协议,通过将下行段视为通过路径属性被识别为段的路由。 与“边界网关协议”框架内的常规过程相反,无法再使用的路由不需要单独通信。 因此实现了关于故障的信息的有效传播和自主系统的路由信息​​的改进的收敛,所以在其上改变了路由信息。