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Saad Bin Nasir
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2010 – 2019
- 2019
- [j5]Anvesha Amaravati, Saad Bin Nasir, Justin Ting, Insik Yoon, Arijit Raychowdhury:
A 55-nm, 1.0-0.4V, 1.25-pJ/MAC Time-Domain Mixed-Signal Neuromorphic Accelerator With Stochastic Synapses for Reinforcement Learning in Autonomous Mobile Robots. IEEE J. Solid State Circuits 54(1): 75-87 (2019) - 2018
- [j4]Saad Bin Nasir, Shreyas Sen, Arijit Raychowdhury:
Switched-Mode-Control Based Hybrid LDO for Fine-Grain Power Management of Digital Load Circuits. IEEE J. Solid State Circuits 53(2): 569-581 (2018) - [j3]Debayan Das, Shovan Maity, Saad Bin Nasir, Santosh Ghosh, Arijit Raychowdhury, Shreyas Sen:
ASNI: Attenuated Signature Noise Injection for Low-Overhead Power Side-Channel Attack Immunity. IEEE Trans. Circuits Syst. I Regul. Pap. 65-I(10): 3300-3311 (2018) - [j2]Saad Bin Nasir, Shreyas Sen, Arijit Raychowdhury:
A Reconfigurable Hybrid Low Dropout Voltage Regulator for Wide-Range Power Supply Noise Rejection and Energy-Efficiency Trade-Off. IEEE Trans. Circuits Syst. II Express Briefs 65-II(12): 1864-1868 (2018) - [c13]Saad Bin Nasir, Anto Kavungal Davis, Mohamed Lamine Faycal Bellaredj, Madhavan Swaminathan, Arijit Raychowdhury, Adam Beece, Don Disney, Yong Wang, Hesam Fathi Moghadam, Eric Soenen, Jongku Kang, Yasuhiko Mano, Tomoharu Fuji:
A 65nm, 1.15-0.15V, 99.99% Current-efficient Digital Low Dropout Regulator with Asynchronous Non-linear Control for Droop Mitigation. ISCAS 2018: 1-5 - [c12]Anvesha Amaravati, Saad Bin Nasir, Sivaram Thangadurai, Insik Yoon, Arijit Raychowdhury:
A 55nm time-domain mixed-signal neuromorphic accelerator with stochastic synapses and embedded reinforcement learning for autonomous micro-robots. ISSCC 2018: 124-126 - 2017
- [j1]Ningyuan Cao, Saad Bin Nasir, Shreyas Sen, Arijit Raychowdhury:
Self-Optimizing IoT Wireless Video Sensor Node With In-Situ Data Analytics and Context-Driven Energy-Aware Real-Time Adaptation. IEEE Trans. Circuits Syst. I Regul. Pap. 64-I(9): 2470-2480 (2017) - [c11]Samantak Gangopadhyay, Saad Bin Nasir, Hoan Nguyen, Jihoon Jeong, Francois Atallah, Keith A. Bowman, Arijit Raychowdhury:
Digitally-assisted leakage current supply circuit for reducing the analog LDO minimum dropout voltage. CICC 2017: 1-4 - [c10]Debayan Das, Shovan Maity, Saad Bin Nasir, Santosh Ghosh, Arijit Raychowdhury, Shreyas Sen:
High efficiency power side-channel attack immunity using noise injection in attenuated signature domain. HOST 2017: 62-67 - [i2]Debayan Das, Shovan Maity, Saad Bin Nasir, Santosh Ghosh, Arijit Raychowdhury, Shreyas Sen:
High Efficiency Power Side-Channel Attack Immunity using Noise Injection in Attenuated Signature Domain. CoRR abs/1703.10328 (2017) - 2016
- [c9]Saad Bin Nasir, Arijit Raychowdhury:
Embedded hybrid LDO topologies for digital load circuits. APCCAS 2016: 43-46 - [c8]Saad Bin Nasir, Shreyas Sen, Arijit Raychowdhury:
A 130nm hybrid low dropout regulator based on switched mode control for digital load circuits. ESSCIRC 2016: 317-320 - [c7]Samantak Gangopadhyay, Saad Bin Nasir, A. Subramanian, Visvesh Sathe, Arijit Raychowdhury:
UVFR: A Unified Voltage and Frequency Regulator with 500MHz/0.84V to 100KHz/0.27V operating range, 99.4% current efficiency and 27% supply guardband reduction. ESSCIRC 2016: 321-324 - [c6]Saad Bin Nasir, Arijit Raychowdhury:
All-digital linear regulators with proactive and reactive gain-boosting for supply droop mitigation in digital load circuits. ISCAS 2016: 205-208 - 2015
- [c5]Samantak Gangopadhyay, Saad Bin Nasir, Arijit Raychowdhury:
Integrated power management in IoT devices under wide dynamic ranges of operation. DAC 2015: 149:1-149:6 - [c4]Saad Bin Nasir, Samantak Gangopadhyay, Arijit Raychowdhury:
5.6 A 0.13μm fully digital low-dropout regulator with adaptive control and reduced dynamic stability for ultra-wide dynamic range. ISSCC 2015: 1-3 - [i1]Saad Bin Nasir, Arijit Raychowdhury:
A Model Study of an All-Digital, Discrete-Time and Embedded Linear Regulator. CoRR abs/1501.00579 (2015) - 2014
- [c3]Samantak Gangopadhyay, Youngtak Lee, Saad Bin Nasir, Arijit Raychowdhury:
Modeling and analysis of digital linear dropout regulators with adaptive control for high efficiency under wide dynamic range digital loads. DATE 2014: 1-6 - [c2]Arijit Raychowdhury, Saad Bin Nasir, Samantak Gangopadhyay:
The role of adaptation and resiliency in computation and power management. ICCAD 2014: 74-79 - [c1]Saad Bin Nasir, Youngtak Lee, Arijit Raychowdhury:
Modeling and analysis of system stability in a distributed power delivery network with embedded digital linear regulators. ISQED 2014: 68-75
Coauthor Index
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