B. Ozbek And H. Külah, "A 9.03 μW Low Noise Highly Tunable Analog Front-End for Fully Implantable Cochlear Prosthesis," 2022 IEEE Biomedical Circuits and Systems Conference, BioCAS 2022 , Taipei, Taiwan, pp.349-353, 2022
Ozbek, B. And Külah, H. 2022. A 9.03 μW Low Noise Highly Tunable Analog Front-End for Fully Implantable Cochlear Prosthesis. 2022 IEEE Biomedical Circuits and Systems Conference, BioCAS 2022 , (Taipei, Taiwan), 349-353.
Ozbek, B., & Külah, H., (2022). A 9.03 μW Low Noise Highly Tunable Analog Front-End for Fully Implantable Cochlear Prosthesis . 2022 IEEE Biomedical Circuits and Systems Conference, BioCAS 2022 (pp.349-353). Taipei, Taiwan
Ozbek, Berkay, And HALUK KÜLAH. "A 9.03 μW Low Noise Highly Tunable Analog Front-End for Fully Implantable Cochlear Prosthesis," 2022 IEEE Biomedical Circuits and Systems Conference, BioCAS 2022, Taipei, Taiwan, 2022
Ozbek, Berkay And Külah, HALUK. "A 9.03 μW Low Noise Highly Tunable Analog Front-End for Fully Implantable Cochlear Prosthesis." 2022 IEEE Biomedical Circuits and Systems Conference, BioCAS 2022 , Taipei, Taiwan, pp.349-353, 2022
Ozbek, B. And Külah, H. (2022) . "A 9.03 μW Low Noise Highly Tunable Analog Front-End for Fully Implantable Cochlear Prosthesis." 2022 IEEE Biomedical Circuits and Systems Conference, BioCAS 2022 , Taipei, Taiwan, pp.349-353.
@conferencepaper{conferencepaper, author={Berkay Ozbek And author={HALUK KÜLAH}, title={A 9.03 μW Low Noise Highly Tunable Analog Front-End for Fully Implantable Cochlear Prosthesis}, congress name={2022 IEEE Biomedical Circuits and Systems Conference, BioCAS 2022}, city={Taipei}, country={Taiwan}, year={2022}, pages={349-353} }