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Scaling single-wavelength optical interconnects to 180 Gb/s with PAM-M and pulse shaping

机译:通过PAM-M和脉冲整形将单波长光学互连扩展到180 Gb / s

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Faced with surging datacenter traffic demand, system designers are turning to multi-level optical modulation with direct detection as the means of reaching 100 Gb/s in a single optical lane; a further upgrade to 400 Gb/s is envisaged through wavelength-multiplexing of multiple 100 Gb/s strands. In terms of modulation formats, PAM-4 and PAM-8 are considered the front-runners, striking a good balance between bandwidth-efficiency and implementation complexity. In addition, the emergence of energy-efficient, high-speed CMOS digital-to-analog converters (DACs) opens up new possibilities: Spectral shaping through digital filtering will allow squeezing even more data through low-cost, low-bandwidth electro-optic components. In this work we demonstrate an optical interconnect based on an EAM that is driven directly with sub-volt electrical swing by a 65 GSa/s arbitrary waveform generator (AWG). Low-voltage drive is particularly attractive since it allows direct interfacing with the switch/server ASIC, eliminating the need for dedicated, power-hungry and expensive electrical drivers. Single-wavelength throughputs of 180 and 120 Gb/s are experimentally demonstrated with 60 Gbaud optical PAM-8 and PAM-4 respectively. Successful transmission over 1250 m SMF is achieved with direct-detection, using linear equalization via offline digital signal processing in order to overcome the strong bandwidth limitation of the overall link (~20 GHz). The suitability of Nyquist pulse shaping for optical interconnects is also investigated experimentally with PAM-4 and PAM-8, at a lower symbol rate of 40 Gbaud (limited by the sampling rate of the AWG). To the best of our knowledge, the rates achieved are the highest ever using optical PAM-M formats.
机译:面对不断增长的数据中心流量需求,系统设计人员正在转向具有直接检测功能的多级光调制,作为在单个光通道中达到100 Gb / s的手段。可以设想通过多个100 Gb / s股的波长复用来进一步升级到400 Gb / s。在调制格式方面,PAM-4和PAM-8被认为是领先者,它们在带宽效率和实现复杂性之间取得了良好的平衡。此外,高能效,高速CMOS数模转换器(DAC)的出现开辟了新的可能性:通过数字滤波的频谱整形将允许通过低成本,低带宽的电光压缩更多的数据组件。在这项工作中,我们演示了基于EAM的光学互连,该互连由65 GSa / s任意波形发生器(AWG)直接以亚伏电气摆幅驱动。低压驱动器特别吸引人,因为它可以与交换机/服务器ASIC直接接口,而无需专用,耗电且昂贵的电驱动器。通过60 Gbaud光学PAM-8和PAM-4分别通过实验证明了180和120 Gb / s的单波长吞吐量。通过直接检测,通过离线数字信号处理使用线性均衡,可以直接检测到1250 m SMF上的成功传输,从而克服了整个链路(〜20 GHz)的强带宽限制。还使用PAM-4和PAM-8以40 Gbaud的较低符号率(受AWG采样率限制)对Nyquist脉冲整形对光学互连的适用性进行了实验研究。据我们所知,使用光学PAM-M格式可获得的速率是最高的。

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