A polymer waveguide-based 40 Gb/s optical bus backplane for board-level optical interconnects

N. Bamiedakis, A. Hashim, R. Penty, I. White
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Abstract

Optical interconnects are increasingly considered for use in high-performance electronic systems. Multimode polymer waveguides are a promising technology for the formation of optical backplanes as they enable cost-effective integration of optical links onto standard printed circuit boards. In this paper, we present a 40 Gb/s optical backplane demonstrator based on the use of polymer multimode waveguides and a regenerative shared bus architecture. The system allows bus extension by cascading multiple polymeric bus modules through 3R regenerator units enabling the connection of an arbitrary number of electrical cards onto the bus. The proof-of-principle demonstrator reported here is formed with low-cost, commercially-available active devices and electronic components mounted on conventional FR4 substrates and achieves error-free 4×10 Gb/s optical interconnection between any two card interfaces on the bus.
一种用于板级光互连的基于聚合物波导的40gb /s光总线背板
光互连越来越多地被考虑用于高性能电子系统。多模聚合物波导是一种很有前途的光学背板形成技术,因为它们能够经济有效地将光学链路集成到标准印刷电路板上。在本文中,我们提出了一个基于聚合物多模波导和再生共享总线架构的40 Gb/s光背板演示器。该系统允许通过3R再生单元级联多个聚合总线模块来扩展总线,从而可以将任意数量的电卡连接到总线上。这里报告的原理验证演示器是由安装在传统FR4基板上的低成本、商用有源器件和电子元件组成的,并在总线上的任何两个卡接口之间实现无差错4×10 Gb/s光互连。
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