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    • 1. 发明授权
    • Scalable interconnect modules with flexible channel bonding
    • 可扩展的互连模块,具有灵活的通道结合
    • US09042404B2
    • 2015-05-26
    • US13925284
    • 2013-06-24
    • ALTERA CORPORATION
    • Keith DuwelMichael Menghui ZhengVinson ChanKalyan Kankipati
    • H04J3/16H04J3/04H04L5/22H04J3/06
    • H04J3/1682H04J3/04H04J3/0685H04L5/22H04Q2213/13208H04Q2213/13322
    • The present application discloses apparatus and methods for increasing channel utilization for a high-speed serial interface of an integrated circuit (IC). A new circuit architecture is disclosed which provides circuitry that may be programmed flexibly to support a multitude of different channel bonding schemes. In accordance with one aspect of the invention, the new architecture decouples the granularity of control-signal channel bonding from the granularity of data-aggregation channel bonding. This advantageously allows optimization of configurations for both types of channel bonding. In another aspect of the invention, the logical boundaries of bonded user channels are decoupled from the physical boundaries of the PCS modules. This decoupling advantageously eliminates a rigid constraint of previous architectures.
    • 本申请公开了用于增加集成电路(IC)的高速串行接口的信道利用的装置和方法。 公开了一种新的电路架构,其提供可以被灵活地编程以支持多种不同的信道绑定方案的电路。 根据本发明的一个方面,新架构使控制信号信道绑定的粒度与数据聚合信道绑定的粒度分离。 这有利地允许优化用于两种类型的通道结合的配置。 在本发明的另一方面,粘合用户信道的逻辑边界与PCS模块的物理边界分离。 这种去耦有利地消除了先前架构的刚性约束。
    • 3. 发明授权
    • Method and apparatus for binding transmission lines
    • 用于绑定传输线的方法和装置
    • US08275006B2
    • 2012-09-25
    • US11628600
    • 2006-05-29
    • Haijun Wu
    • Haijun Wu
    • H04J3/04
    • H04L25/14H04L45/245H04Q2213/13039H04Q2213/13208Y02D50/30
    • Embodiments of the present invention disclose a method for binding transmission lines and the method includes the following steps: first decide a transmission speed supported by all the transmission lines to be bound, activate all the transmission lines to be bound at the transmission speed supported by all the transmission lines and then bind all the transmission lines. Apparatus for binding transmission lines is also disclosed in the embodiments, which includes a speed reselecting module, a reactivating module and a binding module. According to the embodiments of the present invention, transmission lines with different transmission speeds are bound together in such a way that transmission lines with different transmission speeds could be activated at one transmission speed. Therefore, the bound transmission line may provide wider bandwidth for the user because all the bound transmission lines have the same transmission speed.
    • 本发明的实施例公开了一种用于绑定传输线路的方法,该方法包括以下步骤:首先确定所有要传输的传输线路所支持的传输速度,激活所有传输线路以所有传输速度 传输线,然后绑定所有的传输线。 在实施例中还公开了用于装载传输线的设备,其包括速度重新选择模块,重新激活模块和绑定模块。 根据本发明的实施例,具有不同传输速度的传输线被绑定在一起,使得具有不同传输速度的传输线可以以一个传输速度被激活。 因此,绑定的传输线可以为用户提供更宽的带宽,因为所有绑定的传输线具有相同的传输速度。
    • 4. 发明授权
    • Inverse multiplexer with TDM bonding
    • 反向多路复用器与TDM绑定
    • US07852881B2
    • 2010-12-14
    • US10595099
    • 2003-08-27
    • Reidar Schumann-Olsen
    • Reidar Schumann-Olsen
    • H04J3/06H04J3/04
    • H04Q11/04H04J3/1623H04Q2213/13034H04Q2213/13208H04Q2213/13292H04Q2213/13389
    • The present invention discloses one or more network components within a telecommunication network wherein said network is a serial bitstream network and the network components are comprising one or more inverse multiplexers, wherein said multiplexer(s) is/are TDM bonding multiplexers and said multiplexer(s) utilize(s) spare bits and/or FAS bits in a protocol for control of specific functions of the inverse multiplexer(s). The invention further includes a method for inverse multiplexing of one or more serial bitstreams within a telecommunication network wherein said method uses spare bit and/or frame alignment signals from a protocol to: measure differential delay between transmission lines at the receiving end, and/or secure timeslot integrity by compensation for individual link delay, and/or secure correct transmitter and receiver timeslot sequence by link identification, and/or monitor channel availability by block error checking.
    • 本发明公开了电信网络内的一个或多个网络组件,其中所述网络是串行比特流网络,并且所述网络组件包括一个或多个逆多路复用器,其中所述多路复用器是TDM绑定多路复用器和所述复用器 )利用协议中的备用位和/或FAS位来控制反相多路复用器的特定功能。 本发明还包括一种用于电信网络内的一个或多个串行比特流的逆多路复用的方法,其中所述方法使用来自协议的备用比特和/或帧对准信号来:测量接收端的传输线之间的差分延迟和/或 通过对各个链路延迟进行补偿,和/或通过链路标识确保正确的发射机和接收机时隙序列,和/或通过块错误检查监视信道可用性来确保安全时隙完整性。
    • 8. 发明授权
    • Data communication method and apparatus
    • 数据通信方法及装置
    • US06665290B1
    • 2003-12-16
    • US09330179
    • 1999-06-11
    • Björn Melen
    • Björn Melen
    • H04L1266
    • H04L12/2859H04L12/2856H04L29/06H04L69/14H04L69/16H04L69/168H04Q11/04H04Q2213/13093H04Q2213/13097H04Q2213/13204H04Q2213/13208H04Q2213/13298H04Q2213/13332H04Q2213/13389
    • A method of connecting a PC (1) to the Internet (10), wherein the connection is made through a telephone network exchange (5) and one of a plurality of Internet Access Servers (IASs, 8) coupled to the Internet (10). The method comprises receiving an initial Internet access request from the PC (1), the request being directed to a first B-number predefined at the PC (1). In response to the initial request, a first B-channel on one of the IASs (8) is allocated to the PC (1). A new B-number is then sent to the PC (1) and subsequent Multilink data network access requests from the PC (1) are directed to this new number. Requests made to the new number are recognized by the exchange (5) as Multilink requests and the subscriber is allocated further B-channels on the same IAS (8) from a reserved fraction.
    • 一种将PC(1)连接到因特网(10)的方法,其中,通过电话网络交换(5)和耦合到因特网(10)的多个因特网接入服务器(IAS,8)中的一个进行连接, 。 该方法包括从PC(1)接收初始的因特网接入请求,该请求被引导到在PC(1)处预定义的第一B号码。 响应于初始请求,将IAS(8)之一上的第一B信道分配给PC(1)。 然后将新的B号码发送到PC(1),并且来自PC(1)的随后的多链路数据网络访问请求被引导到该新的号码。 对新号码的请求由交换机(5)识别为多重链路请求,用户从保留的分数在同一个IAS(8)上分配更多的B信道。