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2020 – today
- 2024
- [j35]Niels Fakkel, Mohsen Mortazavi, Ramon W. J. Overwater, Fabio Sebastiano, Masoud Babaie:
A Cryo-CMOS DAC-Based 40-Gb/s PAM4 Wireline Transmitter for Quantum Computing. IEEE J. Solid State Circuits 59(5): 1433-1446 (2024) - [j34]Mohammad Ali Montazerolghaem, Leo C. N. de Vreede, Masoud Babaie:
A Highly Selective Receiver With Programmable Zeros and Second-Order TIA. IEEE J. Solid State Circuits 59(6): 1668-1683 (2024) - [j33]Rob A. Damsteegt, Ramon W. J. Overwater, Masoud Babaie, Fabio Sebastiano:
A Benchmark of Cryo-CMOS Embedded SRAM/DRAMs in 40-nm CMOS. IEEE J. Solid State Circuits 59(7): 2042-2054 (2024) - [j32]Job van Staveren, Pinakin Padalia, Edoardo Charbon, Carmen G. Almudéver, Giordano Scappucci, Masoud Babaie, Fabio Sebastiano:
Cryo-CMOS Voltage References for the Ultrawide Temperature Range From 300 K Down to 4.2 K. IEEE J. Solid State Circuits 59(9): 2884-2894 (2024) - [j31]Niels Fakkel, Luc Enthoven, Jiwon Yun, Margriet van Riggelen, Hendrik Benjamin van Ommen, Kai-Niklas Schymik, Hans Bartling, Eftychia Tsapanou Katranara, René Vollmer, Tim Taminiau, Masoud Babaie, Fabio Sebastiano:
A Cryo-CMOS Controller With Class-DE Driver and DC Magnetic-Field Tuning for Quantum Computers Based on Color Centers in Diamond. IEEE J. Solid State Circuits 59(11): 3627-3643 (2024) - [j30]Zhong Gao, Robert Bogdan Staszewski, Masoud Babaie:
Canceling Fundamental Fractional Spurs Due to Self-Interference in a Digital Phase-Locked Loop. IEEE J. Solid State Circuits 59(11): 3716-3729 (2024) - [j29]Gerd Kiene, Ramon W. J. Overwater, Masoud Babaie, Fabio Sebastiano:
A Cryo-CMOS SAR ADC With FIA Sampling Driver Enabled by Cryogenic-Aware Back-Biasing. IEEE Trans. Circuits Syst. I Regul. Pap. 71(3): 1071-1081 (2024) - [c42]Luc Enthoven, Niels Fakkel, Hans Bartling, Margriet van Riggelen, Kai-Niklas Schymik, Jiwon Yun, Eftychia Tsapanou Katranara, René Vollmer, Tim Taminiau, Fabio Sebastiano, Masoud Babaie:
29.2 A Cryo-CMOS Controller with Class-DE Driver and DC Magnetic-Field Tuning for Color-Center-Based Quantum Computers. ISSCC 2024: 472-474 - [c41]Bagas Prabowo, Oriol Pietx-Casas, Mohammad Ali Montazerolghaem, Giordano Scappucci, Lieven M. K. Vandersypen, Fabio Sebastiano, Masoud Babaie:
29.3 A Cryo-CMOS Receiver with 15K Noise Temperature Achieving 9.8dB SNR in 10μs Integration Time for Spin Qubit Readout. ISSCC 2024: 474-476 - [i3]Luc Enthoven, Masoud Babaie, Fabio Sebastiano:
Optimizing the Electrical Interface for Large-Scale Color-Center Quantum Processors. CoRR abs/2403.09526 (2024) - [i2]Gerd Kiene, Sadik Ilik, Luigi Mastrodomenico, Masoud Babaie, Fabio Sebastiano:
Cryogenic Characterization of Low-Frequency Noise in 40-nm CMOS. CoRR abs/2405.17685 (2024) - 2023
- [j28]Jiang Gong, Edoardo Charbon, Fabio Sebastiano, Masoud Babaie:
A Cryo-CMOS PLL for Quantum Computing Applications. IEEE J. Solid State Circuits 58(5): 1362-1375 (2023) - [j27]Zhong Gao, Jingchu He, Martin Fritz, Jiang Gong, Yiyu Shen, Zhirui Zong, Peng Chen, Gerd Spalink, Ben Eitel, Morteza S. Alavi, Robert Bogdan Staszewski, Masoud Babaie:
A Low-Spur Fractional-N PLL Based on a Time-Mode Arithmetic Unit. IEEE J. Solid State Circuits 58(6): 1552-1571 (2023) - [j26]Gerd Kiene, Ramon W. J. Overwater, Alessandro Catania, Aishwarya Gunaputi Sreenivasulu, Paolo Bruschi, Edoardo Charbon, Masoud Babaie, Fabio Sebastiano:
A 1-GS/s 6-8-b Cryo-CMOS SAR ADC for Quantum Computing. IEEE J. Solid State Circuits 58(7): 2016-2027 (2023) - [j25]Mohammad Ali Montazerolghaem, Leo C. N. de Vreede, Masoud Babaie:
A Highly Linear Receiver Using Parallel Preselect Filter for 5G Microcell Base Station Applications. IEEE J. Solid State Circuits 58(8): 2157-2172 (2023) - [j24]Zhong Gao, Martin Fritz, Gerd Spalink, Robert Bogdan Staszewski, Masoud Babaie:
A Digital PLL-Based Phase Modulator With Non-Uniform Clock Compensation and Non-linearity Predistortion. IEEE J. Solid State Circuits 58(9): 2526-2542 (2023) - [c40]Rob A. Damsteegt, Ramon W. J. Overwater, Masoud Babaie, Fabio Sebastiano:
A Benchmark of Cryo-CMOS 40-nm Embedded SRAM/DRAMs for Quantum Computing. ESSCIRC 2023: 165-168 - [c39]Eduard Alarcón, Sergi Abadal, Fabio Sebastiano, Masoud Babaie, Edoardo Charbon, Peter Haring Bolívar, Maurizio Palesi, Elena Blokhina, Dirk Leipold, Robert Bogdan Staszewski, Artur García-Sáez, Carmen G. Almudéver:
Scalable multi-chip quantum architectures enabled by cryogenic hybrid wireless/quantum-coherent network-in-package. ISCAS 2023: 1-5 - [c38]Mohammad Ali Montazerolghaem, Leo C. N. de Vreede, Masoud Babaie:
A 300MHz-BW, 27-to-38dBm In-Band OIP3 sub-7GHz Receiver for 5G Local Area Base Station Applications. ISSCC 2023: 292-293 - [i1]Eduard Alarcón, Sergi Abadal, Fabio Sebastiano, Masoud Babaie, Edoardo Charbon, Peter Haring Bolívar, Maurizio Palesi, Elena Blokhina, Dirk Leipold, Robert Bogdan Staszewski, Artur García-Sáez, Carmen G. Almudéver:
Scalable multi-chip quantum architectures enabled by cryogenic hybrid wireless/quantum-coherent network-in-package. CoRR abs/2303.14008 (2023) - 2022
- [j23]Jiang Gong, Edoardo Charbon, Fabio Sebastiano, Masoud Babaie:
A Low-Jitter and Low-Spur Charge-Sampling PLL. IEEE J. Solid State Circuits 57(2): 492-504 (2022) - [j22]Mohsen Mortazavi, Yiyu Shen, Dieuwert P. N. Mul, Leo C. N. de Vreede, Marco Spirito, Masoud Babaie:
A Four-Way Series Doherty Digital Polar Transmitter at mm-Wave Frequencies. IEEE J. Solid State Circuits 57(3): 803-817 (2022) - [j21]Yue Chen, Jiang Gong, Robert Bogdan Staszewski, Masoud Babaie:
A Fractional-N Digitally Intensive PLL Achieving 428-fs Jitter and pp Supply Ripple. IEEE J. Solid State Circuits 57(6): 1749-1764 (2022) - [j20]Amlan Ganguly, Sergi Abadal, Ishan G. Thakkar, Natalie Enright Jerger, Marc D. Riedel, Masoud Babaie, Rajeev Balasubramonian, Abu Sebastian, Sudeep Pasricha, Baris Taskin:
Interconnects for DNA, Quantum, In-Memory, and Optical Computing: Insights From a Panel Discussion. IEEE Micro 42(3): 40-49 (2022) - [j19]Jiang Gong, Yue Chen, Edoardo Charbon, Fabio Sebastiano, Masoud Babaie:
A Cryo-CMOS Oscillator With an Automatic Common-Mode Resonance Calibration for Quantum Computing Applications. IEEE Trans. Circuits Syst. I Regul. Pap. 69(12): 4810-4822 (2022) - [c37]Stefano Pellerano, Sushil Subramanian, Jong Seok Park, Bishnu Patra, Todor Mladenov, Xiao Xue, Lieven M. K. Vandersypen, Masoud Babaie, Edoardo Charbon, Fabio Sebastiano:
Cryogenic CMOS for Qubit Control and Readout. CICC 2022: 1-8 - [c36]Muhammad Ali Montazerolghaem, Leo C. N. de Vreede, Masoud Babaie:
A 0.5-3GHz Receiver with a Parallel Preselect Filter Achieving 120dB/dec Channel Selectivity and +28dBm Out-of-Band IIP3. CICC 2022: 11-12 - [c35]Gerd Kiene, Aishwarya Gunaputi Sreenivasulu, Ramon Overwater, Masoud Babaie, Fabio Sebastiano:
Cryogenic Comparator Characterization and Modeling for a Cryo-CMOS 7b 1-GSa/s SAR ADC. ESSCIRC 2022: 53-56 - [c34]Jiang Gong, Bishnu Patra, Luc Enthoven, Job van Staveren, Fabio Sebastiano, Masoud Babaie:
A 0.049mm2 7.1-to-16.8GHz Dual-Core Triple-Mode VCO Achieving 200dB FoMA in 22nm FinFET. ISSCC 2022: 1-3 - [c33]Linghan Zhang, Masoud Babaie:
A 23-to-29GHz Receiver with mm-Wave N-Input-N-Output Spatial Notch Filtering and Autonomous Notch-Steering Achieving 20-to-40dB mm-Wave Spatial Rejection and -14dBm In-Notch IP1 dB. ISSCC 2022: 82-84 - [c32]Zhong Gao, Jingchu He, Martin Fritz, Jiang Gong, Yiyu Shen, Zhirui Zong, Peng Chen, Gerd Spalink, Ben Eitel, Ken Yamamoto, Robert Bogdan Staszewski, Morteza S. Alavi, Masoud Babaie:
A 2.6-to-4.1GHz Fractional-N Digital PLL Based on a Time-Mode Arithmetic Unit Achieving -249.4dB FoM and -59dBc Fractional Spurs. ISSCC 2022: 380-382 - [c31]Zhong Gao, Martin Fritz, Jingchu He, Gerd Spalink, Robert Bogdan Staszewski, Morteza S. Alavi, Masoud Babaie:
A DPLL-Based Phase Modulator Achieving -46dB EVM with A Fast Two-Step DCO Nonlinearity Calibration and Non-Uniform Clock Compensation. VLSI Technology and Circuits 2022: 14-15 - [c30]Luc Enthoven, Job van Staveren, Jiang Gong, Masoud Babaie, Fabio Sebastiano:
A 3V 15b 157μW Cryo-CMOS DAC for Multiplexed Spin-Qubit Biasing. VLSI Technology and Circuits 2022: 228-229 - 2021
- [j18]Matheus F. Pimenta, Çagri Gürleyük, Paul Walsh, Daniel O'Keeffe, Masoud Babaie, Kofi A. A. Makinwa:
A 200-μW Interface for High-Resolution Eddy-Current Displacement Sensors. IEEE J. Solid State Circuits 56(4): 1036-1045 (2021) - [c29]Jiang Gong, Edoardo Charbon, Fabio Sebastiano, Masoud Babaie:
A 2.7mW 45fsrms-Jitter Cryogenic Dynamic-Amplifier-Based PLL for Quantum Computing Applications. CICC 2021: 1-2 - [c28]Mohsen Mortazavi, Yiyu Shen, Dieuwert P. N. Mul, Leo C. N. de Vreede, Marco Spirito, Masoud Babaie:
A 30GHz 4-way Series Doherty Digital Polar Transmitter Achieving 18% Drain Efficiency and -27.6dB EVM while Transmitting 300MHz 64-QAM OFDM Signal. CICC 2021: 1-2 - [c27]Mohammad Ali Montazerolghaem, Sergio Pires, Leo C. N. de Vreede, Masoud Babaie:
6.5 A 3dB-NF 160MHz-RF-BW Blocker-Tolerant Receiver with Third-Order Filtering for 5G NR Applications. ISSCC 2021: 98-100 - [c26]Bagas Prabowo, Guoji Zheng, Mohammadreza Mehrpoo, Bishnu Patra, Patrick Harvey-Collard, Jurgen Dijkema, Amir Sammak, Giordano Scappucci, Edoardo Charbon, Fabio Sebastiano, Lieven M. K. Vandersypen, Masoud Babaie:
A 6-to-8GHz 0.17mW/Qubit Cryo-CMOS Receiver for Multiple Spin Qubit Readout in 40nm CMOS Technology. ISSCC 2021: 212-214 - [c25]Gerd Kiene, Alessandro Catania, Ramon Overwater, Paolo Bruschi, Edoardo Charbon, Masoud Babaie, Fabio Sebastiano:
13.4 A 1GS/s 6-to-8b 0.5mW/Qubit Cryo-CMOS SAR ADC for Quantum Computing in 40nm CMOS. ISSCC 2021: 214-216 - 2020
- [j17]Andrea Ruffino, Yatao Peng, Fabio Sebastiano, Masoud Babaie, Edoardo Charbon:
A Wideband Low-Power Cryogenic CMOS Circulator for Quantum Applications. IEEE J. Solid State Circuits 55(5): 1224-1238 (2020) - [j16]Jeroen Petrus Gerardus van Dijk, Bishnu Patra, Sushil Subramanian, Xiao Xue, Nodar Samkharadze, Andrea Corna, Charles Jeon, Farhana Sheikh, Esdras Juarez Hernandez, Brando Perez Esparza, Huzaifa Rampurawala, Brent R. Carlton, Surej Ravikumar, Carlos Nieva, Sungwon Kim, Hyung-Jin Lee, Amir Sammak, Giordano Scappucci, Menno Veldhorst, Lieven M. K. Vandersypen, Edoardo Charbon, Stefano Pellerano, Masoud Babaie, Fabio Sebastiano:
A Scalable Cryo-CMOS Controller for the Wideband Frequency-Multiplexed Control of Spin Qubits and Transmons. IEEE J. Solid State Circuits 55(11): 2930-2946 (2020) - [j15]Alessandro Urso, Yue Chen, Robert Bogdan Staszewski, Johan Dijkhuis, Stefano Stanzione, Yao-Hong Liu, Wouter A. Serdijn, Masoud Babaie:
A Switched-Capacitor DC-DC Converter Powering an LC Oscillator to Achieve 85% System Peak Power Efficiency and -65dBc Spurious Tones. IEEE Trans. Circuits Syst. 67-I(11): 3764-3777 (2020) - [j14]Alessandro Urso, Yue Chen, Johan Dijkhuis, Yao-Hong Liu, Masoud Babaie, Wouter A. Serdijn:
Analysis and Design of Power Supply Circuits for RF Oscillators. IEEE Trans. Circuits Syst. 67-I(12): 4233-4246 (2020) - [j13]Jeroen P. G. van Dijk, Bishnu Patra, Stefano Pellerano, Edoardo Charbon, Fabio Sebastiano, Masoud Babaie:
Designing a DDS-Based SoC for High-Fidelity Multi-Qubit Control. IEEE Trans. Circuits Syst. 67-I(12): 5380-5393 (2020) - [c24]Jeroen P. G. van Dijk, Pascal 't Hart, Gerd Kiene, Ramon Overwater, Pinakin Padalia, Job van Staveren, Masoud Babaie, Andrei Vladimirescu, Edoardo Charbon, Fabio Sebastiano:
Cryo-CMOS for Analog/Mixed-Signal Circuits and Systems. CICC 2020: 1-8 - [c23]Bishnu Patra, Jeroen P. G. van Dijk, Sushil Subramanian, Andrea Corna, Xiao Xue, Charles Jeon, Farhana Sheikh, Esdras Juarez Hernandez, Brando Perez Esparza, Huzaifa Rampurawala, Brent R. Carlton, Nodar Samkharadze, Surej Ravikumar, Carlos Nieva, Sungwon Kim, Hyung-Jin Lee, Amir Sammak, Giordano Scappucci, Menno Veldhorst, Lieven M. K. Vandersypen, Masoud Babaie, Fabio Sebastiano, Edoardo Charbon, Stefano Pellerano:
19.1 A Scalable Cryo-CMOS 2-to-20GHz Digitally Intensive Controller for 4×32 Frequency Multiplexed Spin Qubits/Transmons in 22nm FinFET Technology for Quantum Computers. ISSCC 2020: 304-306 - [c22]Jiang Gong, Yue Chen, Fabio Sebastiano, Edoardo Charbon, Masoud Babaie:
19.3 A 200dB FoM 4-to-5GHz Cryogenic Oscillator with an Automatic Common-Mode Resonance Calibration for Quantum Computing Applications. ISSCC 2020: 308-310 - [c21]Matheus F. Pimenta, Çagri Gürleyük, Paul Walsh, Daniel O'Keeffe, Masoud Babaie, Kofi A. A. Makinwa:
A 200μW Eddy Current Displacement Sensor with 6.7nmRMS Resolution. VLSI Circuits 2020: 1-2
2010 – 2019
- 2019
- [j12]Yue Chen, Yao-Hong Liu, Zhirui Zong, Johan Dijkhuis, Guido Dolmans, Robert Bogdan Staszewski, Masoud Babaie:
A Supply Pushing Reduction Technique for LC Oscillators Based on Ripple Replication and Cancellation. IEEE J. Solid State Circuits 54(1): 240-252 (2019) - [c20]Job van Staveren, Carmen García Almudéver, Giordano Scappucci, Menno Veldhorst, Masoud Babaie, Edoardo Charbon, Fabio Sebastiano:
Voltage References for the Ultra-Wide Temperature Range from 4.2K to 300K in 40-nm CMOS. ESSCIRC 2019: 37-40 - [c19]Pascal Alexander 't Hart, Masoud Babaie, Edoardo Charbon, Andrei Vladimirescu, Fabio Sebastiano:
Subthreshold Mismatch in Nanometer CMOS at Cryogenic Temperatures. ESSDERC 2019: 98-101 - [c18]Mohammadreza Mehrpoo, Bishnu Patra, Jiang Gong, Pascal Alexander 't Hart, Jeroen P. G. van Dijk, Harald Homulle, Gerd Kiene, Andrei Vladimirescu, Fabio Sebastiano, Edoardo Charbon, Masoud Babaie:
Benefits and Challenges of Designing Cryogenic CMOS RF Circuits for Quantum Computers. ISCAS 2019: 1-5 - [c17]Yao-Hong Liu, Sunil Sheelavant, Marco Mercuri, Paul Mateman, Johan Dijkhuis, Agossou Wilfried Zomagboguelou, Arjan Breeschoten, Stefano Traferro, Yan Zhang, Tom Torfs, Christian Bachmann, Pieter Harpe, Masoud Babaie:
A680 μW Burst-Chirp UWB Radar Transceiver for Vital Signs and Occupancy Sensing up to 15m Distance. ISSCC 2019: 166-168 - [c16]Jeroen P. G. van Dijk, Andrei Vladimirescu, Masoud Babaie, Edoardo Charbon, Fabio Sebastiano:
SPINE (SPIN Emulator) - A Quantum-Electronics Interface Simulator. IWASI 2019: 23-28 - 2018
- [j11]Bishnu Patra, Rosario M. Incandela, Jeroen P. G. van Dijk, Harald A. R. Homulle, Lin Song, Mina Shahmohammadi, Robert Bogdan Staszewski, Andrei Vladimirescu, Masoud Babaie, Fabio Sebastiano, Edoardo Charbon:
Cryo-CMOS Circuits and Systems for Quantum Computing Applications. IEEE J. Solid State Circuits 53(1): 309-321 (2018) - [j10]Naser Pourmousavian, Feng-Wei Kuo, Teerachot Siriburanon, Masoud Babaie, Robert Bogdan Staszewski:
A 0.5-V 1.6-mW 2.4-GHz Fractional-N All-Digital PLL for Bluetooth LE With PVT-Insensitive TDC Using Switched-Capacitor Doubler in 28-nm CMOS. IEEE J. Solid State Circuits 53(9): 2572-2583 (2018) - [j9]Feng-Wei Kuo, Masoud Babaie, Huan-Neng Ron Chen, Lan-Chou Cho, Chewnpu Jou, Mark Chen, Robert Bogdan Staszewski:
An All-Digital PLL for Cellular Mobile Phones in 28-nm CMOS with -55 dBc Fractional and -91 dBc Reference Spurs. IEEE Trans. Circuits Syst. I Regul. Pap. 65-I(11): 3756-3768 (2018) - [c15]Jeroen P. G. van Dijk, Andrei Vladimirescu, Masoud Babaie, Edoardo Charbon, Fabio Sebastiano:
A co-design methodology for scalable quantum processors and their classical electronic interface. DATE 2018: 573-576 - [c14]Carmen G. Almudéver, Nader Khammassi, Louis Hutin, Maud Vinet, Masoud Babaie, Fabio Sebastiano, Edoardo Charbon, Koen Bertels:
Towards a scalable quantum computer. DTIS 2018: 1 - [c13]Pascal Alexander 't Hart, Jeroen P. G. van Dijk, Masoud Babaie, Edoardo Charbon, Andrei Vladimirescu, Fabio Sebastiano:
Characterization and Model Validation of Mismatch in Nanometer CMOS at Cryogenic Temperatures. ESSDERC 2018: 246-249 - 2017
- [j8]Feng-Wei Kuo, Sandro Binsfeld Ferreira, Huan-Neng Ron Chen, Lan-Chou Cho, Chewnpu Jou, Fu-Lung Hsueh, Iman Madadi, Massoud Tohidian, Mina Shahmohammadi, Masoud Babaie, Robert Bogdan Staszewski:
A Bluetooth Low-Energy Transceiver With 3.7-mW All-Digital Transmitter, 2.75-mW High-IF Discrete-Time Receiver, and TX/RX Switchable On-Chip Matching Network. IEEE J. Solid State Circuits 52(4): 1144-1162 (2017) - [j7]Satoshi Malotaux, Masoud Babaie, Marco Spirito:
A Total-Power Radiometer Front End in a 0.25-µ BiCMOS Technology With Low 1/f-Corner. IEEE J. Solid State Circuits 52(9): 2256-2266 (2017) - [j6]Mina Shahmohammadi, Masoud Babaie, Robert Bogdan Staszewski:
Tuning Range Extension of a Transformer-Based Oscillator Through Common-Mode Colpitts Resonance. IEEE Trans. Circuits Syst. I Regul. Pap. 64-I(4): 836-846 (2017) - [c12]Yue Chen, Masoud Babaie, Robert Bogdan Staszewski:
A 350-mV 2.4-GHz quadrature oscillator with nearly instantaneous start-up using series LC tanks. A-SSCC 2017: 104-108 - [c11]Fabio Sebastiano, Harald Homulle, Bishnu Patra, Rosario M. Incandela, Jeroen P. G. van Dijk, Lin Song, Masoud Babaie, Andrei Vladimirescu, Edoardo Charbon:
Cryo-CMOS Electronic Control for Scalable Quantum Computing: Invited. DAC 2017: 13:1-13:6 - [c10]Edoardo Charbon, Fabio Sebastiano, Masoud Babaie, Andrei Vladimirescu, Mina Shahmohammadi, Robert Bogdan Staszewski, Harald A. R. Homulle, Bishnu Patra, Jeroen P. G. van Dijk, Rosario M. Incandela, Lin Song, Bahador Valizadehpasha:
15.5 Cryo-CMOS circuits and systems for scalable quantum computing. ISSCC 2017: 264-265 - [c9]Fabio Sebastiano, Harald A. R. Homulle, Jeroen P. G. van Dijk, Rosario M. Incandela, Bishnu Patra, Mohammadreza Mehrpoo, Masoud Babaie, Andrei Vladimirescu, Edoardo Charbon:
Cryogenic CMOS interfaces for quantum devices. IWASI 2017: 59-62 - 2016
- [j5]Zhirui Zong, Masoud Babaie, Robert Bogdan Staszewski:
A 60 GHz Frequency Generator Based on a 20 GHz Oscillator and an Implicit Multiplier. IEEE J. Solid State Circuits 51(5): 1261-1273 (2016) - [j4]Masoud Babaie, Feng-Wei Kuo, Huan-Neng Ron Chen, Lan-Chou Cho, Chewnpu Jou, Fu-Lung Hsueh, Mina Shahmohammadi, Robert Bogdan Staszewski:
A Fully Integrated Bluetooth Low-Energy Transmitter in 28 nm CMOS With 36% System Efficiency at 3 dBm. IEEE J. Solid State Circuits 51(7): 1547-1565 (2016) - [j3]Mina Shahmohammadi, Masoud Babaie, Robert Bogdan Staszewski:
A 1/f Noise Upconversion Reduction Technique for Voltage-Biased RF CMOS Oscillators. IEEE J. Solid State Circuits 51(11): 2610-2624 (2016) - [c8]Feng-Wei Kuo, Sandro Binsfeld Ferreira, Masoud Babaie, Huan-Neng Ron Chen, Lan-chou Cho, Chewnpu Jou, Fu-Lung Hsueh, Guanzhong Huang, Iman Madadi, Massoud Tohidian, Robert Bogdan Staszewski:
A Bluetooth low-energy (BLE) transceiver with TX/RX switchable on-chip matching network, 2.75mW high-IF discrete-time receiver, and 3.6mW all-digital transmitter. VLSI Circuits 2016: 1-2 - 2015
- [j2]Masoud Babaie, Robert Bogdan Staszewski:
An Ultra-Low Phase Noise Class-F 2 CMOS Oscillator With 191 dBc/Hz FoM and Long-Term Reliability. IEEE J. Solid State Circuits 50(3): 679-692 (2015) - [c7]Feng-Wei Kuo, Masoud Babaie, Huan-Neng Ron Chen, Kyle Yen, Jinn-Yeh Chien, Lanchou Cho, Fred Kuo, Chewnpu Jou, Fu-Lung Hsueh, Robert Bogdan Staszewski:
A fully integrated 28nm Bluetooth Low-Energy transmitter with 36% system efficiency at 3dBm. ESSCIRC 2015: 356-359 - [c6]Mina Shahmohammadi, Masoud Babaie, Robert Bogdan Staszewski:
25.4 A 1/f noise upconversion reduction technique applied to Class-D and Class-F oscillators. ISSCC 2015: 1-3 - 2014
- [c5]Feng-Wei Kuo, Huan-Neng Ron Chen, Kyle Yen, Hsien-Yuan Liao, Chewnpu Jou, Fu-Lung Hsueh, Masoud Babaie, Robert Bogdan Staszewski:
A 12mW all-digital PLL based on class-F DCO for 4G phones in 28nm CMOS. VLSIC 2014: 1-2 - 2013
- [j1]Masoud Babaie, Robert Bogdan Staszewski:
A Class-F CMOS Oscillator. IEEE J. Solid State Circuits 48(12): 3120-3133 (2013) - [c4]Masoud Babaie, Robert Bogdan Staszewski:
A study of RF oscillator reliability in nanoscale CMOS. ECCTD 2013: 1-4 - [c3]Masoud Babaie, Robert Bogdan Staszewski:
Third-harmonic injection technique applied to a 5.87-to-7.56GHz 65nm CMOS Class-F oscillator with 192dBc/Hz FOM. ISSCC 2013: 348-349
2000 – 2009
- 2007
- [c2]Masoud Babaie, Mohammad Reza Khanzadi:
Precision motion control for an X-Y table using the LOLIMOT Neuro-Fuzzy Friction compensation. ROBIO 2007: 2300-2304 - 2006
- [c1]Masoud Babaie, Hamid Movahedian, Mehrdad Sharif Bakhtiar:
A Novel Method for Systematic Error Prediction of CMOS Folding and Interpolating ADC. APCCAS 2006: 1768-1771
Coauthor Index
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