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QSn6.5-0.1 tin bronze was selected as the discharge electrode to conduct the underwater high-voltage discharge experiment. By changing the storage capacitor and discharge voltage, the influence of different discharge energy on this material electrode's operating characteristic was investigated. Then the mechanisms of tin bronze electrode's macroscopic ablation and microstructure change were further...
Extreme miniaturization of implantable electronic devices is recognized as essential for the next generation of neural prostheses, owing to the need for minimizing the damage and disruption of the surrounding neural tissue. Transcutaneous power and data transmission via a magnetic link remains the most effective means of powering and controlling implanted neural prostheses. Reduction in the size of...
For many emerging neural prosthesis designs that are powered by inductive coupling, their small physical size requires large current in the extracorporeal transmitter coil, and the Class-E power amplifier topology is often used for the transmitter design. Tuning of Class-E circuits for efficient operation is difficult and a self-tuned circuit can facilitate the tuning. The coil current is sensed and...
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