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A 50nW Voltage Monitor Scheme for Minimum Energy Sensor Systems.

, , , , and . VLSID, page 81-86. IEEE Computer Society, (2017)

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Enspect: A Complete Tool using Modeling and Real Data to Assist the Design of Energy Harvesting Systems., , , , , , , and . ENSsys@SenSys, page 27-32. ACM, (2015)Modular Plug-and-Play Power Resources for Energy-Aware Wireless Sensor Nodes., , , and . SECON, page 1-9. IEEE, (2009)Iterative Decoding for Redistributing Energy Consumption in Wireless Sensor Networks., , , , and . ICCCN, page 93-98. IEEE, (2008)Energy-aware HW/SW Co-modeling of Batteryless Wireless Sensor Nodes., , , , , and . ENSsys@SenSys, page 57-63. ACM, (2020)Efficient State Retention through Paged Memory Management for Reactive Transient Computing., , , , , and . DAC, page 26. ACM, (2019)Ultra low-power photovoltaic MPPT technique for indoor and outdoor wireless sensor nodes., , and . DATE, page 905-908. IEEE, (2011)Approaches to Transient Computing for Energy Harvesting Systems: A Quantitative Evaluation., , , , , , and . ENSsys@SenSys, page 3-8. ACM, (2015)Poster: Enspect: Simplifying the Design of Energy Harvesting Systems., , , , , , , and . SenSys, page 407-408. ACM, (2015)Enabling intermittent computing on high-performance out-of-order processors., , , and . ENSsys@SenSys, page 19-25. ACM, (2018)Evaluation and analysis of single-phase clock flip-flops for NTV applications., , , , , and . PATMOS, page 1-6. IEEE, (2017)