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Reza Lotfi
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2020 – today
- 2024
- [j36]Reza Lotfi, Kiana Kheiri, Ali Sadeghi, Erfan Babaee Tirkolaee:
An extended robust mathematical model to project the course of COVID-19 epidemic in Iran. Ann. Oper. Res. 339(3): 1499-1523 (2024) - [j35]Reza Lotfi, Amirhossein Khanbaba, Hamzah Ali Alkhazaleh, Mehdi Changizi, Marta Kadlubek, Sina Aghakhani, Sadia Samar Ali:
A viable supplier selection with order allocation by considering robustness, risk-averse and blockchain technology. Comput. Ind. Eng. 193: 110319 (2024) - [j34]Reza Lotfi, Nooshin Mardani, Sadia Samar Ali, Seyedeh Maryam Pahlevan, Sayyed Mohammad Reza Davoodi:
A Robust and Risk-Averse Medical Waste Chain Network Design by considering Viability requirements. RAIRO Oper. Res. 58(2): 1473-1497 (2024) - [j33]Reza Lotfi, Pedram MohajerAnsari, Mohammad Mehdi Sharifi Nevisi, Seyed Mahdi Sharifmousavi, Mohamad Afshar, Mojtaba Sadreddini Mehrjardi:
A Robust, resilience and risk-aware solar energy farm location by Bi-Level programming approach. RAIRO Oper. Res. 58(4): 3369-3389 (2024) - [j32]Mohammad Tavakkoli Ghouchani, Mehran Jalaian Mohammad Nia, Reza Lotfi:
An Improved Readout Circuit for Enhanced Accuracy and Frame Rate in Large Resistive Sensor Arrays Using Adaptive Techniques. IEEE Trans. Instrum. Meas. 73: 1-8 (2024) - 2023
- [j31]Reza Lotfi, Ehsan Haqiqat, Mohammad Sadra Rajabi, Amirhosein Hematyar:
Robust and resilience budget allocation for projects with a risk-averse approach: A case study in healthcare projects. Comput. Ind. Eng. 176: 108948 (2023) - [j30]Reza Lotfi, Sara Ghaboulian Zare, Alireza Gharehbaghi, Sima Nazari, Gerhard-Wilhelm Weber:
Robust optimization for energy-aware cryptocurrency farm location with renewable energy. Comput. Ind. Eng. 177: 109009 (2023) - 2022
- [j29]Reza Lotfi, Bahareh Kargar, Mohsen Rajabzadeh, Fatemeh Hesabi, Eren Özceylan:
Hybrid Fuzzy and Data-Driven Robust Optimization for Resilience and Sustainable Health Care Supply Chain with Vendor-Managed Inventory Approach. Int. J. Fuzzy Syst. 24(2): 1216-1231 (2022) - [j28]Ali Pourahmad, Rasoul Dehghani, Seyed Amir Reza Ahmadi Mehr, Reza Lotfi:
Versatile DAC-less successive approximation ADC architecture for medium speed data acquisition. Microelectron. J. 129: 105585 (2022) - [j27]Peyman Narjabadifam, Mohammad N. Noori, Ertugrul Taciroglu, Jian Zhang, Behrokh Khoshnevis, Donatello Cardone, Dipanjan Basu, Tao Wang, Eltahry Elghandour, Ehsan Noroozinejad Farsangi, Reza Lotfi, Mahdi Chavoshi, Davood Sattarian, Orlando Fabio Stirnimann:
Sustainable Earthquake Resilience with the Versatile Shape Memory Alloy (SMA)-Based Superelasticity-Assisted Slider. Sensors 22(18): 6876 (2022) - [j26]Amin Safarpour, Farzaneh Dehnavi, Mehdi Saberi, Reza Lotfi, Wouter A. Serdijn:
Speed-Power Improvement in High-Voltage Switches Employed in Multielectrode Arrays. IEEE Trans. Circuits Syst. II Express Briefs 69(7): 3139-3143 (2022) - [c37]Mohsen Namavar, Reza Lotfi, Amir M. Sodagar:
A 10-b 330nW Third-Order Predictive SAR ADC Dedicated to Neural Recording Brain Implants. NEWCAS 2022: 246-250 - 2020
- [j25]Ehsan Rahiminejad, Mehdi Saberi, Reza Lotfi, Mohammad Taherzadeh-Sani, Frederic Nabki:
A Low-Voltage High-Precision Time-Domain Winner-Take-All Circuit. IEEE Trans. Circuits Syst. II Express Briefs 67-II(1): 4-8 (2020) - [i1]Reza Behrou, Reza Lotfi, Josephine Voigt Carstensen, Federico Ferrari, James K. Guest:
Revisiting element removal for density-based structural topology optimization with reintroduction by Heaviside projection. CoRR abs/2012.02860 (2020)
2010 – 2019
- 2017
- [j24]Reza Lotfi, Yahia Zare Mehrjerdi, Nooshin Mardani:
A Multi-Objective and Multi-Product Advertising Billboard Location Model with Attraction Factor Mathematical Modeling and Solutions. Int. J. Appl. Logist. 7(1): 64-86 (2017) - [j23]Abdol Rasool Ghasemi, Mehdi Saberi, Reza Lotfi:
A low-power capacitor switching scheme with low common-mode voltage variation for successive approximation ADC. Microelectron. J. 61: 15-20 (2017) - [j22]Leila Rajabi, Mehdi Saberi, Yao Liu, Reza Lotfi, Wouter A. Serdijn:
A Charge-Redistribution Phase-Domain ADC Using an IQ-Assisted Binary-Search Algorithm. IEEE Trans. Circuits Syst. I Regul. Pap. 64-I(7): 1696-1705 (2017) - [j21]Ehsan Rahiminejad, Mehdi Saberi, Reza Lotfi:
A Power-Efficient Signal-Specific ADC for Sensor-Interface Applications. IEEE Trans. Circuits Syst. II Express Briefs 64-II(9): 1032-1036 (2017) - [j20]S. Rasool Hosseini, Mehdi Saberi, Reza Lotfi:
A High-Speed and Power-Efficient Voltage Level Shifter for Dual-Supply Applications. IEEE Trans. Very Large Scale Integr. Syst. 25(3): 1154-1158 (2017) - 2016
- [c36]Nassim Ravanshad, Hamidreza Rezaee-Dehsorkh, Reza Lotfi:
A fully-synchronous offset-insensitive level-crossing analog-to-digital converter. MWSCAS 2016: 1-4 - 2015
- [j19]Yao Liu, Reza Lotfi, Yongchang Hu, Wouter A. Serdijn:
A Comparative Analysis of Phase-Domain ADC and Amplitude-Domain IQ ADC. IEEE Trans. Circuits Syst. I Regul. Pap. 62-I(3): 671-679 (2015) - [c35]S. Rasool Hosseini, Mehdi Saberi, Reza Lotfi:
An energy-efficient level shifter for low-power applications. ISCAS 2015: 2241-2244 - 2014
- [j18]Mohsen Judy, Amir M. Sodagar, Reza Lotfi, Mohamad Sawan:
Nonlinear Signal-Specific ADC for Efficient Neural Recording in Brain-Machine Interfaces. IEEE Trans. Biomed. Circuits Syst. 8(3): 371-381 (2014) - [j17]Mohammad Taherzadeh-Sani, Reza Lotfi, Frederic Nabki:
A 10-bit 110 kS/s 1.16 µW SA-ADC With a Hybrid Differential/Single-Ended DAC in 180-nm CMOS for Multichannel Biomedical Applications. IEEE Trans. Circuits Syst. II Express Briefs 61-II(8): 584-588 (2014) - [j16]S. Rasool Hosseini, Mehdi Saberi, Reza Lotfi:
A Low-Power Subthreshold to Above-Threshold Voltage Level Shifter. IEEE Trans. Circuits Syst. II Express Briefs 61-II(10): 753-757 (2014) - [j15]Nassim Ravanshad, Hamidreza Rezaee-Dehsorkh, Reza Lotfi, Yong Lian:
A Level-Crossing Based QRS-Detection Algorithm for Wearable ECG Sensors. IEEE J. Biomed. Health Informatics 18(1): 183-192 (2014) - [j14]Samaneh Babayan Mashhadi, Reza Lotfi:
Analysis and Design of a Low-Voltage Low-Power Double-Tail Comparator. IEEE Trans. Very Large Scale Integr. Syst. 22(2): 343-352 (2014) - [j13]Mehdi Saberi, Reza Lotfi:
Segmented Architecture for Successive Approximation Analog-to-Digital Converters. IEEE Trans. Very Large Scale Integr. Syst. 22(3): 593-606 (2014) - 2012
- [j12]Masaoud Houshmand Kaffashian, Reza Lotfi, Khalil Mafinezhad, Hamid Mahmoodi:
Impacts of NBTI/PBTI on performance of domino logic circuits with high-k metal-gate devices in nanoscale CMOS. Microelectron. Reliab. 52(8): 1655-1659 (2012) - 2011
- [j11]Hamidreza Rezaee-Dehsorkh, Nassim Ravanshad, Reza Lotfi, Khalil Mafinezhad, Amir M. Sodagar:
Analysis and Design of Tunable Amplifiers for Implantable Neural Recording Applications. IEEE J. Emerg. Sel. Topics Circuits Syst. 1(4): 546-556 (2011) - [j10]Mehdi Saberi, Hassan Sepehrian, Reza Lotfi, Khalil Mafinezhad:
A low-power Successive Approximation ADC for biomedical applications. IEICE Electron. Express 8(4): 195-201 (2011) - [j9]Masaoud Houshmand Kaffashian, Reza Lotfi, Khalil Mafinezhad, Hamid Mahmoodi:
An optimization method for NBTI-aware design of domino logic circuits in nano-scale CMOS. IEICE Electron. Express 8(17): 1406-1411 (2011) - [j8]Masaoud Houshmand Kaffashian, Reza Lotfi, Khalil Mafinezhad, Hamid Mahmoodi:
Impact of NBTI on performance of domino logic circuits in nano-scale CMOS. Microelectron. J. 42(12): 1327-1334 (2011) - [j7]Mehdi Saberi, Reza Lotfi, Khalil Mafinezhad, Wouter A. Serdijn:
Analysis of Power Consumption and Linearity in Capacitive Digital-to-Analog Converters Used in Successive Approximation ADCs. IEEE Trans. Circuits Syst. I Regul. Pap. 58-I(8): 1736-1748 (2011) - [c34]Hassan Sepehrian, Mehdi Saberi, Reza Lotfi:
A signal-specific successive-approximation analog-to-digital converter. ISCAS 2011: 1624-1627 - 2010
- [c33]Hossein Pakniat, Mohammad Yavari, Reza Lotfi:
A digital background correction technique combined with DWA for DAC mismatch errors in multibit ΣΔ ADCs. ISCAS 2010: 293-296 - [c32]Hamed Aminzadeh, Reza Lotfi, Khalil Mafinezhad:
Low-dropout voltage reference: An approach to buffered architectures with low sensitivity. ISCAS 2010: 849-852 - [c31]Maryam Zaare, Reza Lotfi, Mohammad Maymandi-Nejad:
Capacitor scaling for low-power design of cyclic analog-to-digital converters. ISCAS 2010: 1456-1459 - [c30]S. Moslem Hokmabadi, Reza Lotfi:
Linearity enhancement in Digital-to-Analog Converters using a modified decoding architecture. ISCAS 2010: 3361-3364 - [c29]Mohammad Takhti, Amir M. Sodagar, Reza Lotfi:
Domino ADC: A novel analog-to-digital converter architecture. ISCAS 2010: 4057-4060
2000 – 2009
- 2009
- [j6]Hamidreza Rezaee-Dehsorkh, Nassim Ravanshad, Reza Lotfi, Khalil Mafinezhad:
Modified Model for Settling Behavior of Operational Amplifiers in Nanoscale CMOS. IEEE Trans. Circuits Syst. II Express Briefs 56-II(5): 384-388 (2009) - [c28]Mehdi Saberi, Reza Lotfi:
Analysis of the linearity of pipelined ADC due to capacitor non-linearity. ICECS 2009: 403-406 - [c27]Ehsan Rahiminejad, Reza Lotfi:
A low-power architecture for integrating analog-to-digital converters. ICECS 2009: 411-414 - [c26]Reza Lotfi, Rabeeh Majidi, Mohammad Maymandi-Nejad, Wouter A. Serdijn:
An Ultra-low-power 10-Bit 100-kS/s Successive-approximation Analog-to-digital Converter. ISCAS 2009: 1117-1120 - 2008
- [j5]S. Alireza Zabihian, Reza Lotfi:
A sub-1-V high-gain single- stage operational amplifier. IEICE Electron. Express 5(7): 211-216 (2008) - [j4]Hamed Aminzadeh, Reza Lotfi, Khalil Mafinezhad:
Low-cost area-efficient low-dropout regulators using MOSFET capacitors. IEICE Electron. Express 5(16): 610-616 (2008) - [j3]Hamed Aminzadeh, Mohammad Danaie, Reza Lotfi:
Design of high-speed two-stage cascode-compensated operational amplifiers based on settling time and open-loop parameters. Integr. 41(2): 183-192 (2008) - [j2]Hamed Aminzadeh, Reza Lotfi:
On the Power Efficiency of cascode Compensation over Miller Compensation in Two-Stage Operational amplifiers. J. Circuits Syst. Comput. 17(1): 1-13 (2008) - [c25]Mohammad Hossein Maghami, Farzad Inanlou, Reza Lotfi:
Simulation-equation-based methodology for design of CMOS amplifiers using Geometric Programming. ICECS 2008: 360-363 - [c24]Hamed Aminzadeh, Reza Lotfi, Khalil Mafinezhad:
Area-efficient low-cost low-dropout regulators using MOS capacitors. SoC 2008: 1-4 - 2007
- [c23]Hamed Aminzadeh, Mohammad Danaie, Reza Lotfi:
Design of high-resolution MOSFET-only pipelined ADCs with digital calibration. DATE 2007: 427-432 - [c22]Mehdi Saberi, Reza Lotfi:
A Capacitor Mismatch- and Nonlinearity-Insensitive 1.5-bit Residue Stage for Pipelined ADCs. ICECS 2007: 677-680 - [c21]S. Moslem Hokmabadi, S. Alireza Zabihian, Reza Lotfi:
Body-Driven Enhanced-Impedance Current Source: An Approach to the Implementation of Low-Voltage Current-Steering D/A Converters. ICECS 2007: 1147-1150 - [c20]S. Alireza Zabihian, Reza Lotfi:
Ultra-Low-Voltage, Low-Power, High-Speed Operational Amplifiers Using Body-Driven Gain-Boosting Technique. ISCAS 2007: 705-708 - [c19]Hamed Aminzadeh, Mohammad Danaie, Reza Lotfi:
Design of Two-Stage Miller-Compensated Amplifiers Based on an Optimized Settling Model. VLSI Design 2007: 171-176 - 2006
- [c18]Hamed Aminzadeh, Reza Lotfi, Somayyeh Rahimian:
Design Guidelines for Two-Stage Cascode-Compensated Operational Amplifiers. ICECS 2006: 264-267 - [c17]Habib Adrang, Reza Lotfi, Khalil Mafinejhad, Armin Tajalli, Saeed Mehrmanesh:
A low-power CMOS Gm-C filter for wireless receiver applications with on-chip automatic tuning system. ISCAS 2006 - [c16]Hamid Charkhkar, Alireza Asadi, Reza Lotfi:
A 1.8V, 10-bit, 40MS/s MOSFET-only pipeline analog-to-digital converter. ISCAS 2006 - [c15]S. Radiom, B. Sheikholeslami, Hamed Aminzadeh, Reza Lotfi:
Folded-current-steering DAC: an approach to low-voltage high-speed high-resolution D/A converters. ISCAS 2006 - [c14]Tahereh Kahookar Toosi, Ehsan Zhian Tabasy, Hassan Sarbishaei, Reza Lotfi:
ISECAD: an iterative simulation-equation-based opamp-design CAD tool. ISCAS 2006 - 2005
- [c13]Reza Lotfi, Mohammad Taherzadeh-Sani, Omid Shoaei:
Power consumption issues in high-speed high-resolution pipelined A/D converters. ISCAS (5) 2005: 4618-4621 - 2004
- [c12]Mohammad Taherzadeh-Sani, Reza Lotfi, Omid Shoaei:
Systematic Design for Optimization of High-Resolution Pipelined ADCs. DATE 2004: 678-679 - [c11]Reza Lotfi, Mohammad Taherzadeh-Sani, Omid Shoaei:
A 12-bit 40MSPS 3.3-V 56-mW pipelined A/D convereter in 0.25-µm CMOS [convereter read converter]. ISCAS (1) 2004: 69-72 - [c10]Mohammad Taherzadeh-Sani, Reza Lotfi, Omid Shoaei:
A pseudo-class-AB telescopic-cascode operational amplifier. ISCAS (1) 2004: 737-740 - 2003
- [j1]Reza Lotfi, Mohammad Taherzadeh-Sani, M. Yaser Azizi, Omid Shoaei:
Low-power design techniques for low-voltage fast-settling operational amplifiers in switched-capacitor applications. Integr. 36(4): 175-189 (2003) - [c9]Mohammad Taherzadeh-Sani, Reza Lotfi, Omid Shoaei:
An analytical approach to the estimation of dynamic non-linearity parameters in pipeline A/D converters. ESSCIRC 2003: 715-718 - [c8]Mohammad Taherzadeh-Sani, Reza Lotfi, Omid Shoaei:
A Statistical Approach to Estimate the Dynamic Non-Linearity Parameters of Pipeline ADCs. ICCAD 2003: 367-370 - [c7]Reza Lotfi, Mohammad Taherzadeh-Sani, M. Yaser Azizi, Omid Shoaei:
Systematic Design for Power Minimization of Pipelined Analog-to-Digital Converters. ICCAD 2003: 371-374 - [c6]Mohammad Taherzadeh-Sani, Reza Lotfi, Omid Shoaei:
A novel frequency compensation technique for two-stage CMOS operational amplifiers. ICECS 2003: 256-259 - [c5]Reza Lotfi, Mohammad Taherzadeh-Sani, Omid Shoaei:
A 1.5-V 12-bit 75M-samples/s fully-differential low-power sample-and-hold amplifier in 0.25-μm CMOS. ICECS 2003: 814-817 - [c4]Mohammad Taherzadeh-Sani, Reza Lotfi, Omid Shoaei:
An analytical approach to the estimation of the spurious-free dynamic range in pipeline A/D converters. ICECS 2003: 946-949 - [c3]Reza Lotfi, Mohammad Taherzadeh-Sani, M. Yaser Azizi, Omid Shoaei:
A low-power design methodology for high-resolution pipelined analog-to-digital converters. ISLPED 2003: 334-339 - [c2]Hesam Amir Aslanzadeh, Saeid Mehrmanesh, Mohammad B. Vahidfar, Amin Quasem Safarian, Reza Lotfi:
A 1-V 1-mW high-speed class AB operational amplifier for high-speed low power pipelined A/D converters using "Slew Boost" technique. ISLPED 2003: 340-344 - [c1]Mohammad M. Ahmadi, Reza Lotfi:
A new architecture for rail-to-rail input constant-gm CMOS operational transconductance amplifiers. ISLPED 2003: 353-358
Coauthor Index
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last updated on 2024-12-02 21:26 CET by the dblp team
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