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A 1.9Gb/s 358mW 16-to-256 State Reconfigurable Viterbi Accelerator in 90nm CMOS., , , , и . ISSCC, стр. 256-600. IEEE, (2007)A 1.45GHz 52-to-162GFLOPS/W variable-precision floating-point fused multiply-add unit with certainty tracking in 32nm CMOS., , , , , , , и . ISSCC, стр. 182-184. IEEE, (2012)Future of on-chip interconnection architectures., и . ISLPED, стр. 122. ACM, (2007)Integrated inductors with magnetic materials for on-chip power conversion., , , , и . Hot Chips Symposium, стр. 1-36. IEEE, (2011)Extreme Energy Efficiency by Near Threshold Voltage Operation.. Near Threshold Computing, Springer, (2016)A 2.9Tb/s 8W 64-core circuit-switched network-on-chip in 45nm CMOS., , , , и . ESSCIRC, стр. 182-185. IEEE, (2008)An 8.8GHz 198mW 16x64b 1R/1W variationtolerant register file in 65nm CMOS., , , , , и . ISSCC, стр. 1785-1797. IEEE, (2006)Guest Editorial., и . IEEE J. Solid State Circuits, 38 (5): 687 (2003)Effectiveness and scaling trends of leakage control techniques for sub-130nm CMOS technologies., , , , и . ISLPED, стр. 122-127. ACM, (2003)Scaling of stack effect and its application for leakage reduction., , , , и . ISLPED, стр. 195-200. ACM, (2001)