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CWDM for Very Short Reach and Optical Backplane Interconnections

机译:CWDM对于非常短的REACH和光学背板互连

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Coarse Wavelength Division Multiplexing (CWDM) provides access to next generation optical interconnect data rates by utilizing conventional electro-optical components that are widely available in the market today. This is achieved through the use of CWDM multiplexers and de-multiplexers that integrate commodity type active components, lasers and photodiode, into small optical subassemblies. In contrast to dense wavelength division multiplexing (DWDM), in which multiple serial data streams are combined to create aggregate data pipes perhaps 100's of gigabits wide, CWDM used multiple laser sources contained in one module to create a serial equivalent data stream. For example, four 2.5 Gb/s lasers are multiplexed to create a 10 Gb/s data pipe. The advantages of CWDM over traditional serial optical interconnects include lower module power consumption, smaller packaging, and a superior electrical interface. This discussion will detail the concept of CWDM and design parameters that are considered when productizing CWDM module into an industry standard optical interconnect. Additionally, a scalable parallel CWDM hybrid architecture will be described that allows the transport of large amounts of data from rack to rack in an economical fashion. This particular solution is targeted at solving optical backplane bottleneck problems predicted for the next generation terabit and petabit routers.
机译:粗波分复用(CWDM)利用被广泛使用当今市场上传统的光电组件提供了访问下一代光互连的数据传输速率。这是通过使用CWDM多路复用器和集成了商品类型的活性组分,激光器和光电二极管,成小的光学子解复用器来实现。与此相反,以密集波分复用(DWDM),其中多个串行数据流被组合以创建聚合数据管道100也许的吉比特宽,CWDM使用包含在一个模块中的多个激光源以产生串行等效数据流。例如,四个2.5Gb / s的激光器被复用,以创建一个10 Gb / s的数据管道。 CWDM超过传统的串行光学互连的优点包括较低的模块功率消耗,更小的包装,和优异的电接口。本讨论将详细介绍的CWDM和设计参数产品化CWDM模块插入一个工业标准光学互连时所考虑的概念。此外,一个可扩展的并行CWDM混合结构将被描述,其允许大量从机架数据的传输来以经济的方式架。这种特殊的溶液是针对解决预测为下一代兆兆位和拍位路由器光学背板瓶颈问题。

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