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A wide common-mode fully-adaptive multi-standard 12.5Gb/s backplane transceiver in 28nm CMOS., , , , , , , , , and 6 other author(s). VLSIC, page 104-105. IEEE, (2012)F6: I/O design at 25Gb/s and beyond: Enabling the future communication infrastructure for big data., , , , , and . ISSCC, page 1-2. IEEE, (2015)Session 3 overview: Ultra-high-speed wireline transceivers and energy-efficient links: Wireline subcommittee., and . ISSCC, page 50-51. IEEE, (2015)3.3 A 0.5-to-32.75Gb/s flexible-reach wireline transceiver in 20nm CMOS., , , , , , , , , and 6 other author(s). ISSCC, page 1-3. IEEE, (2015)A 0.4mW/Gb/s 16Gb/s near-ground receiver front-end with replica transconductance termination calibration., , , , , , , , , and 1 other author(s). ISSCC, page 132-134. IEEE, (2012)Session 2 overview: Ultra-high-speed transceivers and equalizers., and . ISSCC, page 26-27. IEEE, (2013)Towards Trainable Saliency Maps in Medical Imaging., , , , , , , , , and 2 other author(s). CoRR, (2020)Distributed deep learning networks among institutions for medical imaging., , , , , , , , and . J. Am. Medical Informatics Assoc., 25 (8): 945-954 (2018)Sequential 3D U-Nets for Biologically-Informed Brain Tumor Segmentation., , , , , , , and . CoRR, (2017)A 112GB/S PAM4 Wireline Receiver Using a 64-Way Time-Interleaved SAR ADC in 16NM FinFET., , , , , , , , , and 5 other author(s). VLSI Circuits, page 47-48. IEEE, (2018)