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A System-Level Feasibility Study of a Lead-Free Ultrasonically Powered Light Delivery Implant for Optogenetics.
Advanced Intelligent Systems ,
6(3), Article 2300527.
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Asymmetrically Doped FinFETs for Low-Power Robust SRAMs.
I E E E Transactions on Electron Devices,
58(12), 4241 - 4249.
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Bagheriye, L., Toofan, S., Saeidi, R.
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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.
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An Ultrasonically-Powered System for 1.06mm3 Implantable Optogenetics and Drug Delivery Dust.
IEEE Transactions on Circuits and Systems II: Express Briefs,
70(10), 3937-3941.
https://doi.org/10.1109/TCSII.2023.3289028
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
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A Neuromorphic Computational Model for Spintronics-based Hopfield Oscillatory Neural Network.
IEEE Transactions on Magnetics,
61(9), Article 7001105.
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Analytical Approach to Engineer Strain-Gradient for Magnetic Skyrmion-based LeakyIntegrate and Fire Neuronal Dynamics. In
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A Miniaturized, Low-Noise Magnetic Tunnel Junction (MTJ)-Based Gyroscope for High-Precision Rotation Sensing. In
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A Low-Power High-Speed Spintronics-Based Neuromorphic Computing System Using Real-Time Tracking Method.
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A low-noise high-linear wide dynamic-range MTJ-based magnetic field sensor. In
2023 IEEE Nordic Circuits and Systems Conference (NorCAS) IEEE.
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A Low-Noise High Input Impedance Analog Front-End Design for Neural Recording Implant. In
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A Dynamically-Biased Relaxation Oscillator for Low-Power Applications. In
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A CMOS-based neuromorphic device for seizure detection from LFP signals.
Journal of Physics D: Applied Physics,
55(1), Article 014001.
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A 69MHz-Bandwidth 40V/μs-Slew-rate 3nV/√Hz-Noises 4.5μV-Offset Chopper Operational Amplifier. In
2023 IEEE Custom Integrated Circuits Conference (CICC): Proceedings IEEE.
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A 69MHz-Bandwidth 40V/μ s-Slew-Rate 3n V/√Hz-Noise 4.5 μ V-Offset Chopper Operational Amplifier.
IEEE Transactions on Circuits and Systems I: Regular Papers,
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https://doi.org/10.1109/TCSI.2024.3374428
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A 65nm 3mA 0.14-m-Accuracy TDR Based Leak Detection SoC for District Heating Networks with I/C Calibration Technique. In
2024 IEEE Custom Integrated Circuits Conference (CICC) IEEE.
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A 53GΩ@DC Input Impedance Multi-Channel Neural Recording Amplifier with 0.77 µVrms Input-Referred Noise for Deep Brain Implants. In
2021 IEEE Custom Integrated Circuits Conference, CICC 2021 - Proceedings Article 9431403 IEEE.
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, Akbari, M., Moradi, F. & Tang, K. T. (2023).
A 4.5 μW Miniaturized 3-Channel Wireless Intra-Cardiac Acquisition System.
IEEE Transactions on Biomedical Circuits and Systems,
17(5), 1097-1110.
https://doi.org/10.1109/TBCAS.2023.3294560
Ghanatian, H., Farkhani, H., Rezaeiyan, Y., Bohnert, T., Ferreira, R.
& Moradi, F. (2022).
A 3-Bit Flash Spin-Orbit Torque (SOT)-Analog-to-Digital Converter (ADC).
IEEE Transactions on Electron Devices,
69(4), 1691-1697.
https://doi.org/10.1109/TED.2022.3142649
Zamani, M., Rezaeiyan, Y., Huynh, H. A., Ronchini, M., Farkhani, H. & Moradi, F. (2021).
A 2.3-μW Capacitively Coupled Chopper-Stabilized Neural Amplifier with Input Impedance of 6.7 GΩ.
IEEE Solid-State Circuits Letters,
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Mosalmani, A., Rezaeiyan, Y., Richter, S., Zamani, M., Koolivand, Y. & Moradi, F. (2025).
A 0.97 nJ/Conversion BJT-Based Temperature Sensor With a Low-Power Two-Stage Dynamic Comparator.
IEEE Transactions on Very Large Scale Integration (VLSI) Systems,
33(10), 2815-2823.
https://doi.org/10.1109/TVLSI.2025.3587799
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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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