DC25_PAPER_TRACK09_400GElectricalPathFinding_CossonMartin.pdf

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1、 Information Classification:General 400G+Electrical Pathfinding Jeremy Cosson-Martin,AMD,jeremy.cosson- Kevin Zheng,AMD, Shiva Kiran,AMD, Athanasios Ramkaj,AMD, Ronan Casey,AMD, Hongtao Zhang,AMD, Jay Im,AMD, Yohan Frans,AMD, Geoff(Geoffrey)Zhang,AMD, Information Classification:General Abstract This

2、 paper proposes filter-bank multi-carrier(FBMC)modulation as a promising alternative to PAM4,6,8,12,16 and discrete multi-tone(DMT)for next-generation 400Gb/s+per lane long-reach electrical interconnect.An extensive pathfinding investigation is performed to compare the seven options.PAM6,PAM8,and FB

3、MC are identified as likely candidates,with FBMC showing high resilience to many typical impairments.Moreover,the TX DAC,RX ADC,and DSP design assumptions are only slightly elevated over current 200Gb/s interconnect.Author(s)Biography Jeremy Cosson-Martin received his Ph.D.degree in Electrical Engin

4、eering from the University of Toronto,ON,Canada,in 2023.His research focused on advanced high-speed wireline modulation schemes.Currently,he works as a Member of Technical Staff Silicon Design Engineer at AMD developing next-generation high-speed wireline transceivers.He also serves on the Solid-Sta

5、te Circuits Society(SSCS)education committee and is the program chair of the SSCS Arduino Contest.Kevin Zheng received his Ph.D.degree in Electrical Engineering from Stanford University in 2018.He is currently a Principal Engineer at AMD,San Jose,CA working on ultra high-speed electrical and optical

6、 interconnects.Dr.Zheng received the J.Francis Reintjes Excellence in VI-A Industrial Practice Award,the David Adler Memorial EE M.Eng.Thesis Award in 2013,and Best Paper Award for DesignCon 2019.His current interests involve link modeling,high speed circuit designs and communication algorithms.Shiv

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