Shen Mingya, Xiao Feng, Alameh Kamal
Centre of Excellence for MicroPhotonic Systems, Edith Cowan University, Joondalup, WA, 6027, Australia.
Opt Express. 2009 Dec 7;17(25):22680-8. doi: 10.1364/OE.17.022680.
A novel reconfigurable optical interconnect architecture for on-board high-speed data transmission is proposed and experimentally demonstrated. The interconnect architecture is based on the use of an Opto-VLSI processor in conjunction with a 4-f imaging system to achieve reconfigurable chip-to-chip or board-to-board data communications. By reconfiguring the phase hologram of an Opto-VLSI processor, optical data generated by a vertical Cavity Surface Emitting Laser (VCSEL) associated to a chip (or a board) is arbitrarily steered to the photodetector associated to another chip (or another board). Experimental results show that the optical interconnect losses range from 5.8dB to 9.6dB, and that the maximum crosstalk level is below -36dB. The proposed architecture is tested for high-speed data transmission, and measured eye diagrams display good eye opening for data rate of up to 10Gb/s.
提出并通过实验证明了一种用于板载高速数据传输的新型可重构光学互连架构。该互连架构基于光电子集成电路(Opto-VLSI)处理器与4f成像系统相结合的方式,以实现可重构的芯片间或板间数据通信。通过重新配置光电子集成电路处理器的相位全息图,与一个芯片(或一块板)相关联的垂直腔面发射激光器(VCSEL)产生的光数据被任意导向与另一个芯片(或另一块板)相关联的光电探测器。实验结果表明,光学互连损耗范围为5.8dB至9.6dB,最大串扰水平低于-36dB。所提出的架构经过了高速数据传输测试,测量得到的眼图显示,对于高达10Gb/s的数据速率,具有良好的眼图张开度。