Conference Proceedings

Analysis of power dissipation and temperature rise of an inductive link for retinal implants

David C Ng, Efstratios Skafidas

2014 INTERNATIONAL SYMPOSIUM ON ELECTROMAGNETIC COMPATIBILITY, TOKYO (EMC'14/TOKYO) | IEEE | Published : 2014

Abstract

Retinal implants operating with inductive coils for wireless power and data transmission are being developed to help restore vision to the blind. In this work, we analyze temperature increase in the tissue surrounding a retinal implant due to resistive heating of the coils. Using principles of heat transfer and power dissipation data, we estimate temperature rise in the tissue. From our analysis, we found that heat generation and convection are the most important factors in determining temperature rise near the transmit coil. Near the receive coil, heat generation and location of the coil have the biggest impact on maximum temperature rise. Finally, if the implant chip is located near highly..

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Grants

Funding Acknowledgements

NICTA is funded by the Australian Government as represented by the Department of Broadband, Communications and the Digital Economy and the Australian Research Council through the ICT Centre of Excellence program.