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Low Power Wearable Audio Player Using Human Body Communications.

, , , and . ISWC, page 125-126. IEEE Computer Society, (2006)

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A 39 µW body channel communication wake-up receiver with injection-locking ring-oscillator for wireless body area network., , and . ISCAS, page 2641-2644. IEEE, (2012)On-chip network based embedded core testing., , , , , , and . SoCC, page 223-226. IEEE, (2004)A Fully Integrated Digital Hearing-Aid Chip with Human-Factors Considerations., , , , and . ISSCC, page 154-593. IEEE, (2007)21.1 A 79pJ/b 80Mb/s full-duplex transceiver and a 42.5μW 100kb/s super-regenerative transceiver for body channel communication., , , , , and . ISSCC, page 1-3. IEEE, (2015)21.9 A wearable EEG-HEG-HRV multimodal system with real-time tES monitoring for mental health management., , , , , , and . ISSCC, page 1-3. IEEE, (2015)18.3 A 0.5V 54μW ultra-low-power recognition processor with 93.5% accuracy geometric vocabulary tree and 47.5% database compression., , and . ISSCC, page 1-3. IEEE, (2015)A 34.1fps scale-space processor with two-dimensional cache for real-time object recognition., , and . ISCAS, page 689-692. IEEE, (2013)Body channel communication for low energy BSN/BAN., and . APCCAS, page 7-11. IEEE, (2008)A combined method to reduce motion artifact and power line interference for wearable healthcare systems., , , and . APCCAS, page 508-511. IEEE, (2010)A fabric wrist patch sensor for continuous and comprehensive monitoring of the cardiovascular system., , , and . EMBC, page 6070-6073. IEEE, (2016)