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    • 6. 发明授权
    • Cable connector release
    • 电缆连接器释放
    • US07527515B1
    • 2009-05-05
    • US12217866
    • 2008-07-09
    • Daniel J. OlsonMikhail L. VekslandGregory Mark RueblingerJames ByunSteven M. JohnsonGregory S. CookKai WangJohn Baron
    • Daniel J. OlsonMikhail L. VekslandGregory Mark RueblingerJames ByunSteven M. JohnsonGregory S. CookKai WangJohn Baron
    • H01R13/627
    • H01R13/6272
    • An electronic handheld device with remote cable release mechanism, a handle portion and method for performing the same. The device includes a housing defining an internal cavity and has an elastically deformable flexible portion. An electrical connector block is disposed in the cavity and includes a female receptacle configured for receiving a male electrical cable connector having a movable locking clip configured to releasably engage the connector block. An actuating protrusion is preferably disposed on the flexible portion of the housing for releasing the cable connector. The protrusion is movable towards the connector block in response to the application of an inward pressing force on the flexible portion. The protrusion operates to depress the locking clip on the cable connector, thereby releasing the cable connector. In another embodiment, a resealable dimple may be provided in the flexible portion which can be punctured via a probe to access the locking clip.
    • 具有远程电缆释放机构的电子手持装置,手柄部分及其执行方法。 该装置包括限定内腔并具有可弹性变形的柔性部分的壳体。 电连接器块设置在空腔中,并且包括阴插座,其被构造成用于容纳具有可释放地接合连接器块的可移动锁定夹的阳电缆连接器。 驱动突起优选地设置在壳体的柔性部分上,用于释放电缆连接器。 响应于在柔性部分上施加向内的压力,突起可朝向连接器块移动。 该突起用于按压电缆连接器上的锁定夹,从而释放电缆连接器。 在另一个实施例中,可重新密封的凹坑可以设置在柔性部分中,其可以经由探针穿刺以接近锁定夹。
    • 10. 发明授权
    • Scalable infiniband interconnect performance and diagnostic tool
    • 可扩展的infiniband互连性能和诊断工具
    • US09240940B2
    • 2016-01-19
    • US13843919
    • 2013-03-15
    • John Baron
    • John Baron
    • H04L12/26H04L12/24
    • H04L43/50H04L41/0645H04L41/0677H04L41/12
    • In accordance with some implementations, a method for evaluating large scale computer systems based on performance is disclosed. A large scale, distributed memory computer system receives topology data, wherein the topology data describes the connections between the plurality of switches and lists the nodes associated with each switch. Based on the received topology data, the system performs a data transfer test for each of the pair of switches. The test includes transferring data between a plurality of nodes and determining a respective overall test result value reflecting overall performance of a respective pair of switches for a plurality of component tests. The system determines that the pair of switches meets minimum performance standards by comparing the overall test result value against an acceptable test value. If the overall test result value does not meet the minimum performance standards, the system reports the respective pair of switches as underperforming.
    • 根据一些实施方式,公开了一种基于性能来评估大规模计算机系统的方法。 大规模分布式存储器计算机系统接收拓扑数据,其中拓扑数据描述多个交换机之间的连接,并列出与每个交换机相关联的节点。 基于接收到的拓扑数据,系统对每对开关进行数据传输测试。 测试包括在多个节点之间传送数据,并且确定反映用于多个组件测试的相应的一对开关的整体性能的相应的总体测试结果值。 系统通过将总体测试结果值与可接受的测试值进行比较来确定该对开关满足最低性能标准。 如果总体测试结果值不符合最低性能标准,则系统会将相应的开关对报告为表现不佳。