⚡ 本页包含 AI 生成的分析内容,仅供参考
提出一种24Gb/s、0.71pJ/b的硅光子源同步接收器,通过自适应均衡和微环波长稳定技术,解决高速光互连中的能耗和波长稳定性问题。
Binhao Wang1, Zhongkai Wang4, Rui Bai2, Chin-Hui Chen3, Marco Fiorentino3, Patrick Yin Chiang2,4, Samuel Palermo1 Texas A&M University, College Station, TX, Oregon State University, Corvallis, OR, 3 Hewlett-Packard Labs, Palo Alto, CA, 4 Fudan University, Shanghai, China 1 2 Wavelength-division multiplexing (WDM) optical interconnect architectures based on microring resonator devices offer a low-area and energy-efficient approach to realize both high-speed modulation and WDM with high-speed transmit-side ring modulators and high-Q receive-side drop filters [1–3]. While CMOS optical front-ends have been previously developed that support data-rates in excess of 20Gb/s, these designs often do not offer the retiming and deserialization functions required to form a complete link [1,4]. Furthermore, along with the requirements of a sensitive energy-efficient receiver front-end with low-complexity clocking, wavelength stabilization control is necessary to
Kunzhi Yu1, Hao Li2, Cheng Li3, Alex Titriku1, Ayman Shafik1,