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A 4.4 pJ/Access 80 MHz, 128 kbit Variability Resilient SRAM With Multi-Sized Sense Amplifier Redundancy.

, , , , , and . J. Solid-State Circuits, 46 (10): 2416-2430 (2011)

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Ultra low power litho friendly local assist circuitry for variability resilient 8T SRAM., , , , , and . DATE, page 1042-1047. IEEE, (2012)Ultra Low-Energy SRAM Design for Smart Ubiquitous Sensors., , , , , and . IEEE Micro, 32 (5): 10-24 (2012)8T SRAM with Mimicked Negative Bit-lines and Charge Limited Sequential sense amplifier for wireless sensor nodes., , , , , and . ESSCIRC, page 531-534. IEEE, (2011)Digital Systems Power Management for High Performance Mixed Signal Platforms., , , , , , , , , and 1 other author(s). IEEE Trans. on Circuits and Systems, 61-I (4): 961-975 (2014)A 4.4 pJ/Access 80 MHz, 128 kbit Variability Resilient SRAM With Multi-Sized Sense Amplifier Redundancy., , , , , and . J. Solid-State Circuits, 46 (10): 2416-2430 (2011)Minimum current consumption transition time optimization methodology for low power CTS.. DATE, page 412-416. ACM, (2015)Quantifying software performance, reliability and security: An architecture-based approach., and . Journal of Systems and Software, 80 (4): 493-509 (2007)Adoption and use of new metrics in a large organization: A case study., and . WETSoM, page 21-27. IEEE Computer Society, (2013)Extracting High-Level Functional Design from Software Requirements., , , , and . APSEC, page 35-42. IEEE Computer Society, (2009)ReLoC: A Resilient Loosely Coupled Application Architecture for State Management in the Cloud., , and . IEEE CLOUD, page 906-913. IEEE, (2012)