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Ebrahim Farshidi
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2020 – today
- 2023
- [j20]Meysam Amraee, Ebrahim Farshidi, Abdolnabi Kosarian:
Improved Turn-On Speed of Low-Power Loads in Pulsed Power Supply Scheme and High-Energy Efficiency. J. Circuits Syst. Comput. 32(8): 2350093:1-2350093:19 (2023) - [j19]Neda Pirzad Mashak, Gholamreza Akbarizadeh, Ebrahim Farshidi:
Transfer learning; powerful and fast segmentation and classification prostate cancer from MRI scans, in the development set. J. Intell. Fuzzy Syst. 45(2): 2005-2017 (2023) - 2022
- [j18]Neda Pirzad Mashak, Gholamreza Akbarizadeh, Ebrahim Farshidi:
A new approach for data augmentation in a deep neural network to implement a monitoring system for detecting prostate cancer in MRI images. J. Intell. Fuzzy Syst. 43(3): 2283-2298 (2022) - 2021
- [j17]Ahmad Mouri Zadeh Khaki, Ebrahim Farshidi, Karim Ansari-Asl, Sawal Hamid Md. Ali, Masuri Othman:
Design and Analysis of a Multirate 5-bit High-Order 52 fsrms Δ ∑ Time-to-Digital Converter Implemented on 40 nm Altera Stratix IV FPGA. IEEE Access 9: 128117-128125 (2021) - [j16]Ahmad Mouri Zadeh Khaki, Ebrahim Farshidi, Karim Ansari-Asl:
Design and FPGA implementation of a multirate Δ∑ time-to-digital converter with third-order noise-shaping. Microelectron. J. 108: 104982 (2021) - 2020
- [j15]Forouzan Salehi, Ebrahim Farshidi, Hooman Kaabi:
Novel design for a low-latency CORDIC algorithm for sine-cosine computation and its Implementation on FPGA. Microprocess. Microsystems 77: 103197 (2020) - [j14]Rezvan Fani, Ebrahim Farshidi, Ehsan Adib, Abdolnabi Kosarian:
Analysis, Design, and Implementation of a ZVT High Step-Up DC-DC Converter With Continuous Input Current. IEEE Trans. Ind. Electron. 67(12): 10455-10463 (2020)
2010 – 2019
- 2019
- [j13]S. Gholami, Alimorad Mahmoudi, Ebrahim Farshidi:
Two-Stage Estimator for Frequency Rate and Initial Frequency in LFM Signal Using Linear Prediction Approach. Circuits Syst. Signal Process. 38(1): 105-117 (2019) - [j12]Ehsan Zia, Ebrahim Farshidi, Abdolnabi Kosarian:
A Split-Based Digital Background Calibration of Pipelined Analog-to-Digital Converters by Cubic Spline Interpolation Filtering. Circuits Syst. Signal Process. 38(10): 4799-4816 (2019) - [j11]Rasoul Moradi, Ebrahim Farshidi, Mohammad Soroosh:
A low power passive-active ΔΣ modulator with high-resolution employing an integrator with open-loop unity-gain buffer. Integr. 64: 137-142 (2019) - [j10]Fatemeh Taibi, Gholamreza Akbarizadeh, Ebrahim Farshidi:
Robust reservoir rock fracture recognition based on a new sparse feature learning and data training method. Multidimens. Syst. Signal Process. 30(4): 2113-2146 (2019) - 2018
- [j9]Ava Salmanpour, Ebrahim Farshidi, Karim Ansari-Asl:
A New Low Voltage Analog Circuit Model for Hodgkin-Huxley Neuron Employing FGMOS Transistors. J. Circuits Syst. Comput. 27(9): 1850141:1-1850141:21 (2018) - 2016
- [j8]Esmaeil Fatemi-Behbahani, Karim Ansari-Asl, Ebrahim Farshidi:
A New Approach to Analysis and Design of Chaos-Based Random Number Generators Using Algorithmic Converter. Circuits Syst. Signal Process. 35(11): 3830-3846 (2016) - [j7]Esmaeil Fatemi-Behbahani, Ebrahim Farshidi, Karim Ansari-Asl:
A new approach to analysis of residue probability density function in pipelined ADCs. Integr. 52: 51-61 (2016) - [j6]Najmeh Rahmani, Ebrahim Farshidi, Esmaeil Fatemi-Behbahani:
Analysis and Modeling of Imperfections in Multi-Bit Per Stage Pipelined ADCs. J. Circuits Syst. Comput. 25(7): 1650079:1-1650079:12 (2016) - 2015
- [j5]Mahdi Rezvanyvardom, Ebrahim Farshidi:
A New Triple-Slope Pipelined Time to Digital Converter by Stretching of Time. J. Circuits Syst. Comput. 24(9): 1550135:1-1550135:18 (2015) - 2013
- [j4]Rezvan Fani, Ebrahim Farshidi:
A FG-MOS Based Fully Differential Current Controlled Conveyor and Its Applications. Circuits Syst. Signal Process. 32(3): 993-1011 (2013) - [j3]Rezvan Fani, Ebrahim Farshidi:
New systematic two-graph-based approach of active filters employing multiple output current controlled conveyors. IET Circuits Devices Syst. 7(6): 326-336 (2013) - 2010
- [j2]Ebrahim Farshidi:
Synthesis of class-AB log-domain filters based on nonlinear transconductance. Microelectron. J. 41(5): 266-276 (2010)
2000 – 2009
- 2009
- [c3]Ebrahim Farshidi:
A current-mode euclidean distance calculator based on electronically simulated translinear principle. ECCTD 2009: 221-224 - [c2]Ebrahim Farshidi:
A low-voltage class-AB linear transconductance based on floating-gate MOS technology. ECCTD 2009: 437-440 - 2008
- [j1]Ebrahim Farshidi, Sayed Masoud Sayedi:
A 1.2 V current-mode true RMS-DC converter based on the floating gate MOS translinear principle. Microelectron. J. 39(2): 293-298 (2008) - [c1]Armin Jalili, Sayed Masoud Sayedi, Rasoul Dehghani, Ebrahim Farshidi:
A frequency based digital background calibration technique for pipelined ADCs. ICECS 2008: 1209-1212
Coauthor Index
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