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An 8×3.2Gb/s Parallel Receiver with Collaborative Timing Recovery., , и . ISSCC, стр. 468-469. IEEE, (2008)Designing for Movement in Public Life with Itinerant Probes., , , , , , и . Conference on Designing Interactive Systems, стр. 1072-1082. ACM, (2016)Deep Learning with Limited Numerical Precision., , , и . ICML, том 37 из JMLR Workshop and Conference Proceedings, стр. 1737-1746. JMLR.org, (2015)Design and test of biologically inspired multi-fiber Hydro Muscle actuated ankle., , , , , и . ARSO, стр. 1-7. IEEE, (2017)A 1.8-pJ/bit 16×16-Gb/s source synchronous parallel interface in 32nm SOI CMOS with receiver redundancy for link recalibration., , , , , , , , и . CICC, стр. 1-4. IEEE, (2015)A Unified Evaluation Framework for Autonomous Driving Vehicles., , , , и . IV, стр. 1277-1282. IEEE, (2020)A 7nm 4-Core AI Chip with 25.6TFLOPS Hybrid FP8 Training, 102.4TOPS INT4 Inference and Workload-Aware Throttling., , , , , , , , , и 34 other автор(ы). ISSCC, стр. 144-146. IEEE, (2021)Identifying Inconsistencies in SNOMED CT Problem Lists using Structural Indicators., , , , и . AMIA, AMIA, (2013)DLFloat: A 16-b Floating Point Format Designed for Deep Learning Training and Inference., , , , , , и . ARITH, стр. 92-95. IEEE, (2019)Analysis of the consistency in the structural modeling of SNOMED CT and CORE problem list concepts., и . BIBM, стр. 292-296. IEEE Computer Society, (2017)