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Breakthrough technologies for the high-performance electrical ATM switching system

机译:高性能电气ATM交换系统的突破性技术

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A high-performance electrical asynchronous transfer mode (ATM) switching system is described with the goal of Tb/s ATM switching. The first step system was to use advanced Si-bipolar very large scale integrated (VLSI) technologies and the multichip technique. 1.0 /spl mu/m bipolar SST technologies and Cu-polyimide multilayer MCM realized a 160 Gb/s throughput ATM system. The performance limitations of the 160 Gb/s system were power supply/cooling and module interconnection. The new ATM switching system, named OPTIMA-1, adopted optical interconnection/distribution to overcome the limitations and achieve 640 Gb/s. The system uses high-performance complementary metal-oxide-semiconductor (CMOS) devices and optical wavelength division multiplexing (WDM) interconnection. Combining OPTIMA-1 with optical cell-by-cell routing functions, i.e., photonic packet routing, can realize variable bandwidth links for 5 Tb/s ATM systems. This paper first reviews high-performance electrical ATM (packet) switching system architecture and hardware technologies. In addition, system limitations are described. Next, the important breakthrough technology of optical WDM interconnection is highlighted. These technologies are adopted to form OPTIMA-1, a prototype of which is demonstrated. The key technologies of the system are advanced 80 Gb/s CMOS/MCM, electrical technologies, and 10 Gb/s, 8 WDM, 8/spl times/8 optical interconnection. Details of implementation technologies are also described. Optical cell-by-cell (packet-by-packet) routing is now being studied. From the architectural viewpoint, dynamic link bandwidth sharing will be adopted. In addition, an AWG that performs cell-by-cell routing and a distributed large scale ATM system are realized. Optical routing achieves the 5 Tb/s needed in future B-ISDN ATM backbone systems.
机译:描述了一种以Tb / s ATM交换为目标的高性能电气异步传输模式(ATM)交换系统。第一步系统是使用先进的Si-双极超大规模集成电路(VLSI)技术和多芯片技术。 1.0 / spl mu / m双极SST技术和Cu-聚酰亚胺多层MCM实现了160 Gb / s吞吐量的ATM系统。 160 Gb / s系统的性能限制是电源/冷却和模块互连。新的ATM交换系统名为OPTIMA-1,采用了光互连/分配技术来克服这些限制并达到640 Gb / s。该系统使用高性能互补金属氧化物半导体(CMOS)器件和光波分复用(WDM)互连。将OPTIMA-1与光学逐个单元的路由功能(即光子数据包路由)相结合,可以实现5 Tb / s ATM系统的可变带宽链路。本文首先回顾了高性能电气ATM(分组)交换系统的体系结构和硬件技术。此外,还介绍了系统限制。接下来,重点介绍光WDM互连的重要突破技术。这些技术被用于形成OPTIMA-1,并演示了其原型。该系统的关键技术是先进的80 Gb / s CMOS / MCM,电气技术和10 Gb / s,8 WDM,8 / spl times / 8光学互连。还描述了实现技术的细节。现在正在研究逐个小区的光分组路由。从架构的角度来看,将采用动态链路带宽共享。另外,实现了执行逐信元路由的AWG和分布式大规模ATM系统。光路由达到了将来的B-ISDN ATM骨干网系统所需的5 Tb / s。

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