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    • 83. 发明申请
    • FABRIC CARD AND COMMUNICATIONS DEVICE
    • 织物卡和通信设备
    • US20140247826A1
    • 2014-09-04
    • US14189036
    • 2014-02-25
    • Huawei Technologies Co., Ltd.
    • Guoqiang Ma
    • H04L12/50
    • H04L12/50H04L49/15H04L49/40
    • A fabric card and a communications device. The fabric card includes at least one fabric card chip and at least two fabric card connector groups, where each fabric card connector group of the at least two fabric card connector groups includes at least two fabric card connectors, the number of fabric card chips is less than the number of at least two fabric card connector groups, each fabric card chip of the at least one fabric card chip connects to all fabric card connectors in at least one fabric card connector group, all fabric card connectors in the fabric card connector group that connect to the fabric card chip exchange data using the fabric card chip. This fully utilizes an exchange capability of the fabric card chip and saves system resources.
    • 织物卡和通信设备。 所述织物卡片包括至少一个织物卡芯片和至少两个织物卡连接器组,其中所述至少两个织物卡连接器组的每个织物卡连接器组包括至少两个织物卡连接器,所述织物卡芯片的数量较少 比至少两个织物卡连接器组的数量,至少一个织物卡芯片的每个织物卡芯片连接到至少一个织物卡连接器组中的所有织物卡连接器,织物卡连接器组中的所有织物卡连接器, 使用织物卡芯片连接到织物卡芯片交换数据。 充分利用了布线卡芯片的交换能力,节省了系统资源。
    • 84. 发明授权
    • Verification apparatus, method, and recording medium of program
    • 程序的验证装置,方法和记录介质
    • US08824465B2
    • 2014-09-02
    • US13214300
    • 2011-08-22
    • Yuji Nomura
    • Yuji Nomura
    • H04L12/50H04Q11/00H04L12/24H04L29/06H04L12/56H04L29/08
    • H04L41/12H04L45/24H04L67/1097H04L69/14Y02D50/30
    • A verification device that is used in a system in which a first device and a second device communicate using a physical communication path that includes at least one switch among switches included in a plurality of switch clusters and does not include a plurality of switches that belong to a different switch cluster among the plurality of switch clusters, the verification device including a verification unit that verifies whether switches included in a first communication path and a second communication path that are communication paths used for communication between the first device and the second device are included in the same switch cluster, and an output unit that outputs a result of the verifying.
    • 一种在第一设备和第二设备中使用物理通信路径进行通信的系统中使用的验证设备,所述物理通信路径包括多个交换机集群中包括的交换机中的至少一个交换机,并且不包括属于多个交换机集群的多个交换机 所述多个交换机集群中的不同的交换机集群,所述验证装置包括验证单元,其验证包括在作为所述第一设备和所述第二设备之间的通信的通信路径的第一通信路径和第二通信路径中的交换机是否包括在内 在相同的交换机集群中,以及输出单元,其输出验证结果。
    • 88. 发明授权
    • Fibre channel over Ethernet
    • 以太网光纤通道
    • US08774215B2
    • 2014-07-08
    • US11514665
    • 2006-09-01
    • James B. Williams
    • James B. Williams
    • H04L12/50
    • H04L29/06068H04L12/4633H04L29/12028H04L29/12886H04L61/103H04L61/6045H04L69/22
    • The use of Ethernet as an underlying transport for Fiber Channel (FC) frames is disclosed in the Fiber Channel Over Ethernet (FCOE) protocol. In FCOE, the FC physical layer and part of the FC-2 link layer are replaced with the Ethernet physical and link layers. Each FC frame is encapsulated within an Ethernet Frame. The payload of the FCOE frame contains type information from the FC Start Of Frame (SOF) indicator, the FC header, an optional FC payload, and type information from the FC End Of Frame (EOF) indicator. In one embodiment, an Ethernet network carrying FCOE replaces a standard FC network. In another embodiment, devices implementing FCOE may be implemented in a blade server. The entire backplane is Ethernet, over which both storage and networking traffic can be run. The Ethernet links are connected to an Ethernet switch, a FCOE/FC converter, and a FC switch.
    • 在以太网光纤通道(FCOE)协议中公布了以太网作为光纤​​通道(FC)帧的底层传输的使用。 在FCOE中,FC物理层和FC-2链路层的一部分被以太网物理层和链路层替代。 每个FC帧封装在以太网帧中。 FCOE帧的有效载荷包含来自FC起始帧(SOF)指示符,FC头,可选FC有效载荷和FC帧结束(EOF)指示符的类型信息的类型信息。 在一个实施例中,携带FCOE的以太网网络替代标准FC网络。 在另一个实施例中,实现FCOE的设备可以在刀片服务器中实现。 整个背板是以太网,可以运行存储和网络流量。 以太网链路连接到以太网交换机,FCOE / FC转换器和FC交换机。
    • 90. 发明授权
    • Clocking of client signals output from an egress node in a network
    • 从网络中的出口节点输出的客户端信号的时钟
    • US08705402B2
    • 2014-04-22
    • US12647342
    • 2009-12-24
    • Tulasi VeguruGopal RaoPrasad ParanjapeTing-Kuang ChiangKonstantin Saunichev
    • Tulasi VeguruGopal RaoPrasad ParanjapeTing-Kuang ChiangKonstantin Saunichev
    • H04J3/07H04L12/50G06F15/173
    • H04L47/22H04L47/365
    • Consistent with the present disclosure, client data, which may include multiplexed data sub-streams, is supplied to an ingress node of a network. Each sub-stream typically has a corresponding data rate, i.e., an original data rate, prior to multiplexing. The client data is encapsulated in a plurality of successive frames that are output from the ingress node and propagate, typically through one or more intermediate nodes, to an egress node. At the egress node, data rates associated with the sub-streams included in each frame are determined based on the amount of client data in each frame. The data rates are then averaged over a given number of frames to thereby filter any wander or deviation in the client data rate. Based on the averaged data rate, justification opportunities are added to the client data in each sub-stream, which are then multiplexed into frames that are output from the egress node. By including the justification opportunities, the effective rate of each sub-stream may be set equal to the original data rate when the sub-streams are demultiplexed after being output from the egress node. An advantage of the present disclosure is that the justification opportunities, are not generated based solely on clock signals generated by PLL circuits. As a result, fewer PLL circuits are required, thereby simplifying system design and minimizing power consumption.
    • 根据本公开,可以将包括多路复用数据子流的客户端数据提供给网络的入口节点。 每个子流在复用之前通常具有对应的数据速率,即原始数据速率。 客户端数据被封装在从入口节点输出并且通常通过一个或多个中间节点传播到出口节点的多个连续帧中。 在出口节点处,基于每帧中的客户端数据的量来确定与包括在每个帧中的子流相关联的数据速率。 然后在给定数量的帧上对数据速率进行平均,从而过滤客户端数据速率中的任何漂移或偏差。 基于平均数据速率,将每个子流中的客户端数据加入调整机会,然后将其合并到从出口节点输出的帧中。 通过包括调整机会,在从出口节点输出之后子流被解复用时,每个子流的有效速率可被设置为等于原始数据速率。 本公开的优点在于,调整机会不是仅仅由PLL电路产生的时钟信号产生。 因此,需要更少的PLL电路,从而简化系统设计并最大限度地降低功耗。