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35.1 An Octa-Core 2.8/2GHz Dual-Gear Sensor-Assisted High-Speed and Power-Efficient CPU in 7nm FinFET 5G Smartphone SoC | IEEE Conference Publication | IEEE Xplore

35.1 An Octa-Core 2.8/2GHz Dual-Gear Sensor-Assisted High-Speed and Power-Efficient CPU in 7nm FinFET 5G Smartphone SoC


Abstract:

A high-speed and power-efficient heterogeneous octa-core CPU complex is realized in a 7nm FinFET process. On-chip sensors that handle guard band in terms of process (VPGB...Show More

Abstract:

A high-speed and power-efficient heterogeneous octa-core CPU complex is realized in a 7nm FinFET process. On-chip sensors that handle guard band in terms of process (VPGB), voltage, temperature (VTGB), and aging (VAGB) are designed for power enhancement in dynamic frequency and voltage scaling (DVFS). A process sensor (P-sensor) is used to determine per-die VPGB for Smartphone operation voltage (Vsov) with machine learning (ML). A temperature sensor (T-sensor) senses run-time local thermal and temperature inversion (T-inversion) to scale VTGB in DVFS. An aging sensor (A-sensor) converts cell degradation to corresponding VAGB for aging compensation. Lastly, a voltage sensor (V-sensor) sustains system stability against supply noise. With sensor assistance, the CPU performs up to 2.8GHz speed with 13% power improvement in a fully integrated 5G multi-mode Smartphone SoC that supports the sub-6GHz band with 2.6Gbps upload and 4.7Gbps download speeds.
Date of Conference: 13-22 February 2021
Date Added to IEEE Xplore: 03 March 2021
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Conference Location: San Francisco, CA, USA

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