A 4nm 32Gb/s 8Tb/s/mm Die-to-Die Chiplet Using NRZ Single-Ended Transceiver With Equalization Schemes And Training Techniques

Kihwan Seong, Donguk Park, Gyeom-Je Bae, HyunWoo Lee, Youngseob Suh, Wooseuk Oh, Hyemun Lee, Juyoung Kim, Takgun Lee, Geonhoo Mo, Sukhyun Jung, Dongcheol Choi, Byoung-Joo Yoo, Sanghune Park, Hyo-Gyuem Rhew, Jongshin Shin. A 4nm 32Gb/s 8Tb/s/mm Die-to-Die Chiplet Using NRZ Single-Ended Transceiver With Equalization Schemes And Training Techniques. In IEEE International Solid- State Circuits Conference, ISSCC 2023, San Francisco, CA, USA, February 19-23, 2023. pages 114-115, IEEE, 2023. [doi]

Authors

Kihwan Seong

This author has not been identified. Look up 'Kihwan Seong' in Google

Donguk Park

This author has not been identified. Look up 'Donguk Park' in Google

Gyeom-Je Bae

This author has not been identified. Look up 'Gyeom-Je Bae' in Google

HyunWoo Lee

This author has not been identified. Look up 'HyunWoo Lee' in Google

Youngseob Suh

This author has not been identified. Look up 'Youngseob Suh' in Google

Wooseuk Oh

This author has not been identified. Look up 'Wooseuk Oh' in Google

Hyemun Lee

This author has not been identified. Look up 'Hyemun Lee' in Google

Juyoung Kim

This author has not been identified. Look up 'Juyoung Kim' in Google

Takgun Lee

This author has not been identified. Look up 'Takgun Lee' in Google

Geonhoo Mo

This author has not been identified. Look up 'Geonhoo Mo' in Google

Sukhyun Jung

This author has not been identified. Look up 'Sukhyun Jung' in Google

Dongcheol Choi

This author has not been identified. Look up 'Dongcheol Choi' in Google

Byoung-Joo Yoo

This author has not been identified. Look up 'Byoung-Joo Yoo' in Google

Sanghune Park

This author has not been identified. Look up 'Sanghune Park' in Google

Hyo-Gyuem Rhew

This author has not been identified. Look up 'Hyo-Gyuem Rhew' in Google

Jongshin Shin

This author has not been identified. Look up 'Jongshin Shin' in Google