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A 28 nm 66.8 TOPS/W Sparsity-Aware Dynamic-Precision Deep-Learning Processor.

, , , , , and . VLSI Technology and Circuits, page 1-2. IEEE, (2023)

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28.5 A 0.6V/0.9V 26.6-to-119.3µW ΔΣ-Based Bio-Impedance Readout IC with 101.9dB SNR and <0.1Hz 1/f Corner., , , , and . ISSCC, page 394-396. IEEE, (2021)A 28 nm 66.8 TOPS/W Sparsity-Aware Dynamic-Precision Deep-Learning Processor., , , , , and . VLSI Technology and Circuits, page 1-2. IEEE, (2023)5.8 A 9.3nW all-in-one bandgap voltage and current reference circuit., , , , , and . ISSCC, page 100-101. IEEE, (2017)A low-power wide dynamic-range current readout circuit for biosensors., , , , , , and . ASP-DAC, page 325-326. IEEE, (2018)Vehicle Side-Slip Angle Estimation of Ground Vehicles Based on a Lateral Acceleration Compensation., , , , and . IEEE Access, (2020)A 9.3 nW all-in-one bandgap voltage and current reference circuit using leakage-based PTAT generation and DIBL characteristic., , , , , and . ASP-DAC, page 309-310. IEEE, (2018)A 0.65-to-10.5 Gb/s Reference-Less CDR With Asynchronous Baud-Rate Sampling for Frequency Acquisition and Adaptive Equalization., , , , , , and . IEEE Trans. Circuits Syst. I Regul. Pap., 63-I (2): 276-287 (2016)Lateral Acceleration Compensation of a Vehicle based on Roll Angle Estimation., , , and . CCA, page 1363-1368. IEEE, (2010)A 127.8TOPS/W Arbitrarily Quantized 1-to-8b Scalable-Precision Accelerator for General-Purpose Deep Learning with Reduction of Storage, Logic and Latency Waste., , , and . ISSCC, page 330-331. IEEE, (2023)