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A 10.8 mW Body Channel Communication/MICS Dual-Band Transceiver for a Unified Body Sensor Network Controller.

, , and . IEEE J. Solid State Circuits, 44 (12): 3459-3468 (2009)

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Analysis of body sensor network using human body as the channel., , and . BODYNETS, page 13. ICST, (2008)A 0.9V 2.6mW Body-Coupled Scalable PHY Transceiver for Body Sensor Applications., , , , , and . ISSCC, page 366-609. IEEE, (2007)A 10.8 mW Body Channel Communication/MICS Dual-Band Transceiver for a Unified Body Sensor Network Controller., , and . IEEE J. Solid State Circuits, 44 (12): 3459-3468 (2009)A Multi-Nodes Human Body Communication Sensor Network Control Processor., , , , , , , , and . CICC, page 109-112. IEEE, (2006)A Real-Time Feedback Controlled Hearing Aid Chip with Reference Ear Model., , , , and . CICC, page 127-130. IEEE, (2007)A 0.2-mW 2-Mb/s Digital Transceiver Based on Wideband Signaling for Human Body Communications., , and . IEEE J. Solid State Circuits, 42 (9): 2021-2033 (2007)An energy-efficient analog front-end circuit for a sub-1-V digital hearing aid chip., , , , and . IEEE J. Solid State Circuits, 41 (4): 876-882 (2006)Developing an Individual Glucose Prediction Model Using Recurrent Neural Network., , , , , , , and . Sensors, 20 (22): 6460 (2020)A 60kb/s-to-10Mb/s 0.37nJ/b Adaptive-Frequency-Hopping Transceiver for Body-Area Network., , , , , and . ISSCC, page 132-133. IEEE, (2008)Low Energy On-Body Communication for BSN., , , and . BSN, page 15-20. Springer, (2007)