Huynh, H. A.
, Ronchini, M., Rashidi, A., Tohidi, M.
& Moradi, F. (2019).
A Low-Noise High Input Impedance Analog Front-End Design for Neural Recording Implant. In
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Rashidi, A.
, Laursen, K., Hosseini, S., Huynh, H. A.
& Moradi, F. (2019).
An Implantable Ultrasonically Powered System for Optogenetic Stimulation with Power-Efficient Active Rectifier and Charge-Reuse Capability.
IEEE Transactions on Biomedical Circuits and Systems,
13(6), 1362-1371.
https://doi.org/10.1109/TBCAS.2019.2949154
Farkhani, H., Tohidi, M., Farkhani, S., Madsen, J. K.
& Moradi, F. (2018).
A Low-Power High-Speed Spintronics-Based Neuromorphic Computing System Using Real-Time Tracking Method.
IEEE Journal on Emerging and Selected Topics in Circuits and Systems,
8(3), 627-638. Article 8309300.
https://doi.org/10.1109/JETCAS.2018.2813389
Bagheriye, L., Toofan, S., Saeidi, R., Zeinali, B.
& Moradi, F. (2018).
A Reduced Store/Restore Energy MRAM-Based SRAM Cell for a Non-Volatile Dynamically Reconfigurable FPGA.
IEEE Transactions on Circuits and Systems II: Express Briefs,
65(11), 1708-1712. Article 8090896.
https://doi.org/10.1109/TCSII.2017.2768409
Zhou, X., Li, Q., Kilsgaard, S.
, Moradi, F., Kappel, S. & Kidmose, P. (2016).
A Wearable Ear-EEG Recording System Based on Dry-Contact Active Electrodes. In
2016 IEEE Symposium on VLSI Circuits, VLSI Circuits 2016: VLSI Circuits 2016 (Vol. 2016). Article 7573559 IEEE Press.
https://doi.org/10.1109/VLSIC.2016.7573559
Lundager, K., Zeinali, B., Tohidi, M., Madsen, J. K.
& Moradi, F. (2016).
Low Power Design for Future Wearable and Implantable Devices.
Journal of Low Power Electronics and Applications,
6(4), Article 20.
https://doi.org/10.3390/jlpea6040020
Moradi, F., Tohidi, M., Zeinali, B. & Madsen, J. K. (2015).
8T-SRAM Cell with Improved Read and Write Margins in 65 nm CMOS Technology. In L. Claesen, M.-T. Sanz-Pascual, R. Reis & A. Sarmiento-Reyes (Eds.),
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https://doi.org/10.1007/978-3-319-25279-7_6
Moradi, F., Vu Cao, T., Vatajelu, E. I., Peiravi, A., Mahmoodi, H. & Wisland, D. (2013).
Domino logic designs for high-performance and leakage-tolerant applications.
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