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    • 3. 发明授权
    • Apparatus, system, and method for identifying network mis-cabling
    • 用于识别网络错误布线的装置,系统和方法
    • US07619981B2
    • 2009-11-17
    • US10800529
    • 2004-03-15
    • Matthew David BomhoffBrian James CagnoGregg Steven LucasKenny Nian Gan QiuAndrew Ellis Seidel
    • Matthew David BomhoffBrian James CagnoGregg Steven LucasKenny Nian Gan QiuAndrew Ellis Seidel
    • G01R31/08
    • H04L41/0873H04L41/0654
    • An apparatus, system, and method are disclosed for detecting and reporting network mis-cabling. One embodiment of the apparatus includes a detection module, a comparison module, and a cabling connection module. The detection module is configured to detect a new connection at a network switch. The new connection is formed by physically connecting a network cable to the network switch, at one termination, and to another network device, at another termination. The comparison module is configured to compare the new connection to a connection rule, where the connection rule defines either a legal cabling connection or an illegal cabling connection. The cabling connection module is configured to control whether or not the new connection is inserted into the data network or maintained isolated from the data network. Certain implementations of the present invention beneficially allow a new network connection to be verified prior to logical insertion so that potential mis-routing of data and other mis-communications within the data network may be avoided.
    • 公开了用于检测和报告网络错误布线的装置,系统和方法。 该装置的一个实施例包括检测模块,比较模块和布线连接模块。 检测模块被配置为在网络交换机处检测新的连接。 新的连接是通过在一个终端将物理网络电缆连接到网络交换机,并在另一个终端上将物理连接到另一个网络设备而形成的。 比较模块被配置为将新连接与连接规则进行比较,其中连接规则定义了合法的布线连接或非法布线连接。 电缆连接模块被配置为控制新连接是否插入到数据网络中或与数据网络隔离的维护。 本发明的某些实现有利地允许在逻辑插入之前验证新的网络连接,从而可以避免数据网络内的数据和其他错误通信的潜在错误路由。
    • 9. 发明申请
    • Method and Procedure for Detecting Cable Length in a Storage Subsystem with Wide Ports
    • 用于检测具有宽端口的存储子系统中的电缆长度的方法和步骤
    • US20090030649A1
    • 2009-01-29
    • US11828687
    • 2007-07-26
    • Brian James CagnoGregg Steven LucasThomas Stanley Truman
    • Brian James CagnoGregg Steven LucasThomas Stanley Truman
    • G01B7/02
    • G01B7/02
    • A mechanism detects cable length in a storage subsystem with wide ports. The mechanism uses in-situ bidirectional cable wrapping for determining different cable lengths. The mechanism under-margins transmitter output to failure for each external port and even for each PHY within a wide port. Based on the transition point from “good” wrap to “bad” wrap, the cable length may be determined. The transition point identifies if the cable is long or short, at which point the optimum tuning parameters can accordingly be set. A calibration mechanism calibrates the high speed transmitter/receiver pair characteristics, and, thus, optimizes the transmission performance between subsystems. The calibration mechanism mitigates the need for frequent error correction and does not incur the performance degradation associated with error correction techniques.
    • 机构检测具有宽端口的存储子系统中的电缆长度。 该机构使用原位双向电缆缠绕来确定不同的电缆长度。 发射机的输出功率低于每个外部端口的故障,甚至是宽端口内的每个PHY。 基于从“良好”包装到“不良”包装的转换点,可以确定电缆长度。 转换点标识电缆是长还是短,此时可以设置最佳调谐参数。 校准机构校准高速发射机/接收机对特性,从而优化子系统之间的传输性能。 校准机制减轻了频繁纠错的需要,并且不会引起与纠错技术相关的性能下降。