M. Koc Et Al. , "An Adaptive Converter for Current Neural Stimulators Achieving up to 79% Power Dissipation Reduction," IEEE International Symposium on Circuits and Systems (IEEE ISCAS) , Daegu, South Korea, 2021
Koc, M. Et Al. 2021. An Adaptive Converter for Current Neural Stimulators Achieving up to 79% Power Dissipation Reduction. IEEE International Symposium on Circuits and Systems (IEEE ISCAS) , (Daegu, South Korea).
Koc, M., Chamanian, S., Yigit, H. A., ULUŞAN, H., & KÜLAH, H., (2021). An Adaptive Converter for Current Neural Stimulators Achieving up to 79% Power Dissipation Reduction . IEEE International Symposium on Circuits and Systems (IEEE ISCAS), Daegu, South Korea
Koc, MERT Et Al. "An Adaptive Converter for Current Neural Stimulators Achieving up to 79% Power Dissipation Reduction," IEEE International Symposium on Circuits and Systems (IEEE ISCAS), Daegu, South Korea, 2021
Koc, MERT Et Al. "An Adaptive Converter for Current Neural Stimulators Achieving up to 79% Power Dissipation Reduction." IEEE International Symposium on Circuits and Systems (IEEE ISCAS) , Daegu, South Korea, 2021
Koc, M. Et Al. (2021) . "An Adaptive Converter for Current Neural Stimulators Achieving up to 79% Power Dissipation Reduction." IEEE International Symposium on Circuits and Systems (IEEE ISCAS) , Daegu, South Korea.
@conferencepaper{conferencepaper, author={MERT KOÇ Et Al. }, title={An Adaptive Converter for Current Neural Stimulators Achieving up to 79% Power Dissipation Reduction}, congress name={IEEE International Symposium on Circuits and Systems (IEEE ISCAS)}, city={Daegu}, country={South Korea}, year={2021}}