⚡ 本页包含 AI 生成的分析内容,仅供参考
本文提出了一款基于5nm FinFET工艺的212.5Gb/s PAM-4收发器,实现了2.2pJ/b的能效和超过46dB的信道损耗补偿能力,解决了超高速有线通信中的功耗与信号完整性难题。
D. Prabakaran3, D. Storaska5, D. Zhou1, D. Visani1, E. Hsiao1, F. Chu1, F. Khan1, F. Lu1, G. Cui1, G. Wang1, J. Natonio5, J. Deng1, J. Ding1, J. Guo1, J. Gu1, J. Zang1, L. Jiang1, K.-M. Lu4, M. Hasan1, M. Kelly6, M. H. Kashani2, M. Gambhir1, M. R. Patoju3, M. Singh1, M. Shannon5, M. Yang1, P. Liu1, P. Ramakrishna3, R. Chen4, R. Ho7, S. N. Shahi8, S. Sivakumar1, S. Xu7, X. Yang1, X. Han1, Y.-P. Su4, Z. Adal1, Z. Guo1, Z. Li1, Z. Yu1, Z. Yan1, H. Wang1, K. Chang1 Marvell, Santa Clara, CA Marvell, Toronto, Canada 3 Marvell, Bangalore, India 4 Marvell, Zhubei, Taiwan 5 Marvell, Fishkill, NY 6 Marvell, Boston, MA 7 Marvell, Burlington, VT 8 Marvell, Kanata, Canada 1 2 Given the explosive demand for bandwidth to satisfy new AI requirements, 100G/lane connectivity is transitioning to 200G/lane [1-6] to enable 1.6Tb/s Ethernet. Enabling robust operation at this rate necessitates resolution of challenges such as component bandwidth
A. Mostafa1, A. Hassan1, A. Hsu2, A.K. Singh3, C.-H. Wu4, C.-R. Yang1,