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1550 nmVCSEL-based 0.48 Tb/s transmission scheme employing PAM-4 and WDM for active optical cables

机译:基于1550 nmVCSEL的0.48 Tb / s传输方案,采用PAM-4和WDM进行有源光缆

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摘要

With this paper we investigate the system-level performance of VCSELs, parameterized with true experimental LI-VI data and dynamic characteristics of state-of-the-art VCSELs with 3 dB modulation bandwidth at 15 GHz, and propose their deployment as high-speed multi-level optical sources in a mid-range active optical cable (AOC) model for performance prediction of a rack-to-rack interconnection. The AOC architecture combines a 6-element 1550 run VCSEL array, each directly modulated with 40 Gbaud PAM-4 data, with a wavelength division multiplexer (WDM), in order to implement a parallel link with aggregate traffic of 0.48 Tb/s. Transmission reach exceeded 300 m by deploying a two-tap feed forward equalizer filter at the electrical VCSEL driver. Bit Error Rate (BER) measurements and analysis were carried out in MATLAB. In practice, the thermal behavior and basic operational characteristics of the VCSELs fabricated by the Technische Universitaet Muenchen (TUM) were used to study the thermal performance and operational range of the complete AOC model. The VCSELs were initially operated at 20 ℃ and BER measurements showed power penalties of 1.7 dB and 3.5 dB at 300 m and 500 m of transmission distance respectively for all 6 data channels. System performance was also investigated for elevated operating temperatures of the VCSEL module and the additional system degradation and BER penalties introduced by operation at 50 ℃ and 65 ℃ were also investigated for transmission distances of 300 m and 500 m.
机译:通过本文,我们研究了VCSEL的系统级性能,这些参数已通过真实的LI-VI实验数据进行了参数化,并在15 GHz频率下具有3 dB调制带宽的最新VCSEL的动态特性,并提出了将其部署为高速设备的建议。中距离有源光缆(AOC)模型中的多级光源,以预测机架到机架互连的性能。 AOC架构将一个由6个元素组成的运行于1550的VCSEL阵列与一个波分复用器(WDM)结合在一起,每个阵列都直接用40 Gbaud PAM-4数据进行调制,以实现总流量为0.48 Tb / s的并行链路。通过在电子VCSEL驱动器上部署一个两抽头前馈均衡器滤波器,传输距离超过300 m。误码率(BER)的测量和分析是在MATLAB中进行的。在实践中,由慕尼黑工业大学(TUM)制造的VCSEL的热行为和基本工作特性用于研究完整AOC模型的热性能和工作范围。 VCSEL最初在20℃下工作,并且BER测量显示,对于所有6个数据通道,在300 m和500 m的传输距离上,功率损失分别为1.7 dB和3.5 dB。还针对VCSEL模块的升高的工作温度对系统性能进行了研究,并针对300 m和500 m的传输距离研究了在50℃和65℃下工作引起的额外系统性能下降和BER损失。

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