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Design Considerations for Energy Efficient DWDM PAM4 Transceivers Employing Avalanche Photodiodes

机译:雪崩光电二极管的节能DWDM PAM4收发器的设计考虑因素

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摘要

An effective approach to increase per-fiber bandwidth is to combine per-wavelength four-level pulse amplitude modulation (PAM4) with dense wavelength division multiplexing (DWDM). Silicon photonic transceivers based on microring resonator modulators and drop filters can allow for an efficient realization of this. Utilizing avalanche photodiodes (APDs) in the receiver front-ends of these transceivers can significantly improve sensitivity, allowing for reduced source laser power and overall improved power efficiency. This paper analyzes the optical-modulation amplitude (OMA) sensitivity of these APD-based PAM4 receivers in a silicon photonic DWDM link. A comprehensive link budget is considered that takes into account various system losses and relevant noise sources. Modeling with a developed APD that has a maximum 230 GHz gain-bandwidth product predicts sensitivity improvements at 32 to 64 Gb s~(−1) PAM4 ranging from 9.8 to 12 dB relative to a conventional p-i-n photodiode. Scaling the APD gain-bandwidth to 310 GHz allows support of 112 Gb s~(−1) with −13.2 dBm OMA sensitivity at a BER of 2.4 × 10~(−4) with an APD gain of 10. Utilizing the presented architecture, link budget analysis predicts a 9.5x reduction in laser power with APDs and that 38 mW source laser optical power can support a four-channel DWDM link operating at an aggregate 448 Gb s~(−1) data rate.
机译:每个光纤带宽增加的有效方法是将每个波长四级脉冲幅度调制(PAM4)与密集波分复用(DWDM)组合。基于微管谐振器调节器和掉落过滤器的硅光子收发器可以允许有效地实现这一点。利用这些收发器的接收器前端的雪崩光电二极管(APDS)可以显着提高灵敏度,允许降低源激光功率和总体提高的功率效率。本文分析了基于硅光子DWDM链路中的基于APD的PAM4接收器的光学调制幅度(OMA)灵敏度。考虑到各种系统损失和相关噪声来源,考虑了全面的链接预算。具有最大230 GHz增益带宽产品的开发APD建模预测相对于传统的P-I-N光电二极管的32至64 GB S〜(②)PAM4的灵敏度改进。缩放APD增益带宽至310GHz允许支持112 GB S〜(②)在2.4×10〜(②)的BER中,APD增益为10.4×10〜(②)。利用呈现的架构,链路预算分析预测激光功率的9.5倍,APDS和38 MW源激光光功率可以支持以聚合448 GB S〜(②)数据速率运行的四通道DWDM链路。

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