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Low-power and high-performance technologies for mobile SoC in LTE era.. ISLPED, стр. 1-2. IEEE/ACM, (2011)A 28nm 600MHz Automotive Flash Microcontroller with Virtualization-Assisted Processor for Next-Generation Automotive Architecture Complying with ISO26262 ASIL-D., , , , , , , , , и 3 other автор(ы). ISSCC, стр. 54-56. IEEE, (2019)SH-X: an embedded processor core for consumer appliances., , , , , , и . MEDEA@PACT, стр. 33-40. ACM, (2004)10.2 A 28nm HPM heterogeneous multi-core mobile application processor with 2GHz cores and low-power 1GHz cores., , , , , , , , , и 4 other автор(ы). ISSCC, стр. 178-179. IEEE, (2014)Multicore design is the challenge! what is the solution?, , , , , , , и . DAC, стр. 128-130. ACM, (2008)A 4320MIPS Four-Processor Core SMP/AMP with Individually Managed Clock Frequency for Low Power Consumption., , , , , , , , , и 4 other автор(ы). ISSCC, стр. 100-590. IEEE, (2007)Design methodology of low-power microprocessors.. ASP-DAC, стр. 390-393. ACM, (2003)Low-Power Design of 90-nm SuperH Processor Core., , , , , , , , , и 1 other автор(ы). ICCD, стр. 258-266. IEEE Computer Society, (2005)Design Methodology of a 200MHz Superscalar Microprocessor: SH-4., , , , , , и . DAC, стр. 246-249. ACM Press, (1998)A 28nm High-κ metal-gate single-chip communications processor with 1.5GHz dual-core application processor and LTE/HSPA+-capable baseband processor., , , , , , , , , и 5 other автор(ы). ISSCC, стр. 156-157. IEEE, (2013)