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A multichannel neurostimulator with transcutaneous closed-loop power control and self-adaptive supply.

, , , , and . ESSCIRC, page 309-312. IEEE, (2012)

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Recent advances in power efficient output stage for high density implantable stimulators., , , and . EMBC, page 855-858. IEEE, (2012)A multichannel neurostimulator with transcutaneous closed-loop power control and self-adaptive supply., , , , and . ESSCIRC, page 309-312. IEEE, (2012)Distributed clock gating for power reduction of a programmable waveform generator for neural stimulation., , , , and . EMBC, page 3878-3881. IEEE, (2012)Flexible Biphasic Functional Electrical Stimulator for Children with Cerebral Palsy., , , , and . ICCSCE, page 234-239. IEEE, (2021)A Neural Stimulator Frontend With High-Voltage Compliance and Programmable Pulse Shape for Epiretinal Implants., , , , , and . IEEE J. Solid State Circuits, 47 (1): 244-256 (2012)Development of Sensory Unit Using Single IMU Sensor for Knee Joint Movement., , , , , and . ICCSCE, page 353-357. IEEE, (2023)Multistimulator backchannel communication link implemented for safety information and closed-loop power management., , , , and . ICCSCE, page 647-651. IEEE, (2014)A neural stimulator front-end with arbitrary pulse shape, HV compliance and adaptive supply requiring 0.05mm2 in 0.35μm HVCMOS., , , and . ISSCC, page 306-308. IEEE, (2011)