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    • 9. 发明申请
    • Method of bus configuration to enable device bridging over dissimilar buses.
    • 总线配置方法,用于跨不同总线进行设备桥接。
    • US20090003245A1
    • 2009-01-01
    • US12206465
    • 2008-09-08
    • Zong Liang WuRonald LeeYusuf Ozturk
    • Zong Liang WuRonald LeeYusuf Ozturk
    • H04L12/28
    • H04L12/40078H04L12/40091
    • Several local IEEE1394 buses are bridged together over a second bus type to create a global bus wherein each local bus node is able to address nodes across the global bus without the local nodes being aware of the bridging operation. A bridging device operates by translating local bus node addresses to a global bus for communication over the second bus type. Alternatively, the local bus node identification process is controlled by the bridging device operating as the root node to cause the local nodes to be identified with a node address that is unique for the global network. The second bus type operates as a backbone for the global network and can be any type of communication bus or network with capability to transport the local bus traffic. The bridging devices that interface the local IEEE1394 buses to the backbone contain portals specific to each bus type that can communicate data between the dissimilar buses.
    • 多个本地IEEE1394总线通过第二总线类型桥接在一起以创建全局总线,其中每个局部总线节点能够对全局总线上的节点进行寻址,而本地节点不知道桥接操作。 桥接设备通过将本地总线节点地址转换为全局总线来进行工作,以便在第二总线类型上进行通信。 或者,本地总线节点识别过程由作为根节点操作的桥接设备来控制,以使得本地节点被识别为对于全局网络是唯一的节点地址。 第二总线类型作为全球网络的骨干,可以是具有传输本地总线业务能力的任何类型的通信总线或网络。 将本地IEEE1394总线连接到骨干网的桥接设备包含特定于每种总线类型的门户,可以在不同总线之间传输数据。
    • 10. 发明授权
    • Method of time stamping to enable device bridging over dissimilar buses
    • 时间戳的方法,使得跨不同总线的设备桥接
    • US07251703B1
    • 2007-07-31
    • US11067075
    • 2005-02-25
    • Zong Liang WuRonald B. LeeYusuf Ozturk
    • Zong Liang WuRonald B. LeeYusuf Ozturk
    • G06F1/00
    • G06F13/4022H04J3/0638H04L12/4625
    • Several local IEEE1394 buses are bridged together over a second bus type to create a global bus wherein each local bus node is able to address nodes across the global bus without the local nodes being aware of the bridging operation. A bridging device operates by translating local bus node addresses to a global bus for communication over the second bus type. Alternatively, the local bus node identification process is controlled by the bridging device operating as the root node to cause the local nodes to be identified with a node address that is unique for the global network. The second bus type operates as a backbone for the global network and can be any type of communication bus or network with capability to transport the local bus traffic. The bridging devices that interface the local IEEE1394 buses to the backbone contain portals specific to each bus type that can communicate data between the dissimilar buses.
    • 多个本地IEEE1394总线通过第二总线类型桥接在一起以创建全局总线,其中每个局部总线节点能够对全局总线上的节点进行寻址,而本地节点不知道桥接操作。 桥接设备通过将本地总线节点地址转换为全局总线来进行工作,以便在第二总线类型上进行通信。 或者,本地总线节点识别过程由作为根节点操作的桥接设备来控制,以使得本地节点被识别为对于全局网络是唯一的节点地址。 第二总线类型作为全球网络的骨干,可以是具有传输本地总线业务能力的任何类型的通信总线或网络。 将本地IEEE1394总线连接到骨干网的桥接设备包含特定于每种总线类型的门户,可以在不同总线之间传输数据。