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140/180/204-Gbaud OOK Transceiver for Inter- and Intra-Data Center Connectivity

机译:140/180 / 204-Gbaud OOK收发器,用于数据间和数据中心内连接

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We report on an ON OFF keying intensity-modulation and direct-detection C-band optical transceiver capable of addressing all datacenter interconnect environments at well beyond 100 Gbaud. For this, the transmitter makes the use of two key InP technologies: a 2:1 double heterojunction bipolar transistor selector multiplexer and a monolithically integrated distributed feedback laser traveling-wave electro-absorption modulator, both exceeding 100-GHz of 3-dB analog bandwidth. A preamplified 110-Gaz PIN photodiode prior to a 100-CHs analog-to-digital converter complete the ultrahigh bandwidth transceiver module; the device under study. In the experimental work, which discriminates between intra- and inter-data center scenarios (dispersion unmanaged 120, 560, and 960 m; and dispersion-managed 10 and 80 km of standard single-mode fiber), we evaluate the bit-error rate evolution against the received optical power at 140, 180, and 204 Gbaud ON OFF keying for different equalization configurations (adaptive linear filter with and without the help of short-memory sequence estimation) and forward error correction schemes (hard-decision codes with 7% and 20% overhead); drawing conclusions from the observed system-level limitations of the respective environments at this ultrahigh baudrate, as well as from the operation margins and sensitivity metrics. From the demonstration, we highlight three results: successful operation with >6-dB sensitivity margin below the 7% error-correction at 140 Gbaud over the entire 100 m-80 km range with only linear feed-forward equalization. Then, the transmission of a 180-Gbaud ON OFF keying carrier over 80 km considering 20% error-correction overhead. Finally, a 10-km communication at 204 (Maud ON OFF keying with up to 6 dB sensitivity margin, and regular 7% overhead error-correction.
机译:我们报告了一种ON OFF键控强度调制和直接检测C波段光收发器,该收发器能够处理超过100 Gbaud的所有数据中心互连环境。为此,发射器利用了两种关键的InP技术:2:1双异质结双极晶体管选择器多路复用器和单片集成的分布式反馈激光行波电吸收调制器,两者均超过了100 GHz的3 dB模拟带宽。预先放大的110-Gaz PIN光电二极管在100-CHs模数转换器之前,构成了超高带宽收发器模块。正在研究的设备。在区分数据中心内和数据中心间场景(色散不受管理的120、560和960 m;色散管理的10和80 km的标准单模光纤)的实验工作中,我们评估了误码率140、180和204 Gbaud开关键控下针对接收的光功率的演化,适用于不同的均衡配置(自适应线性滤波器,带或不带短存储器序列估计)和前向纠错方案(硬判决码,为7%)和20%的开销);从在这种超高波特率下观察到的各个环境的系统级限制以及操作余量和灵敏度指标得出结论。从演示中,我们重点介绍了三个结果:在仅线性前馈均衡的情况下,在整个100 m-80 km范围内以140 Gbaud的灵敏度误差低于7%的情况下,成功地以大于6 dB的灵敏度裕度工作。然后,考虑20%的纠错开销,在80公里范围内传输180 Gbaud ON OFF键控载波。最后,在204处进行10公里的通信(Maud ON OFF键控,灵敏度余量高达6 dB,并定期进行7%的开销纠错。

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