Projects per year
Personal profile
Research Interests
Analog Mixed-Signal Circuits, CMOS Sensor and Sensor Interface, Analog-to-Digital Data Converters, Biomedical Circuits, Radio-frequency Identification (RFID), Energy-Efficient Instrumentation Circuits
Biography
Dr. Bo Wang received the B. Eng. (Excellent Graduate Honor) degree in Electrical and Electronic Engineering from Zhejiang University, Hangzhou, China, in 2010; and the M. Phil and Ph. D. degree in Electronic and Computer Engineering from the Hong Kong University of Science and Technology (HKUST), Hong Kong, in 2012 and 2015, respectively. He has been an Assistant Professor in the College of Science and Engineering, Hamad Bin Khalifa University (HBKU), Qatar, from 2017 to 2023, and is now an Associate Professor.
He worked in RLE, Massachusetts Institute of Technology (MIT) on low-power graphene-based pressure sensor interface design in 2016. From 2010 to 2015, he was with the Smart Sensory Integrated System Laboratory (s2is) of HKUST as a research assistant and then a research associate. From 2012 to 2014, he also worked as a mixed-signal IC designer in ZAMI, Hangzhou, to commercialize the chip during his Ph. D research. Bo Wang is a member of IEEE (CAS Society and SSCS Society) and an invited reviewer of several journals/conferences. Bo Wang was the recipient of the Best Design Award at the Asia and South Pacific Design Automation Conference (ASP-DAC) in 2016. He is a Technical Committee Member of the IEEE CAS Committee on Sensory Systems and Associate Editor for the IEEE Sensors Journal.
Collaborations and top research areas from the last five years
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EX-QNRF-ARG-69: Light and Sound for Improved Artificial Vision
Bermak, A. (Lead Principal Investigator), Wang, B. (Principal Investigator), samir, B. B. (Principal Investigator), Khelif, A. (Principal Investigator), Liu, Y. H. (Principal Investigator), Khelif, A. (Principal Investigator) & Abubakar, A. M. (Post Doctoral Fellow)
1/04/24 → 1/04/27
Project: Applied Research
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EX-QNRF-NPRPS-46: Endpoint Secured Multisensor Interface Chip for IoT Applications
Wang, B. (Lead Principal Investigator), Awan, M. A. (Research Assistant), Student-4, G. (Graduate Student) & Sunar, P. B. (Principal Investigator)
10/06/21 → 10/12/24
Project: Applied Research
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HBKU-OVPR-TG-01-5: 3D printing based on self-assembled molecular building blocks for materials design and bio-applications
Berdiyorov, G. (Principal Investigator), Hamoudi, H. (Lead Principal Investigator) & Wang, B. (Principal Investigator)
1/06/21 → 31/12/24
Project: Applied Research
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HBKU-OVPR-TG-01-7: A Miniaturized High-Dynamic-Range Bioluminescence and Fluorescence Biosensing System for Biomedical Applications
Wang, B. (Lead Principal Investigator), Biswas, K. H. (Principal Investigator), Geethakumari, A. M. (Post Doctoral Fellow) & Ahmed, W. (Graduate Student)
1/06/21 → 15/11/23
Project: Applied Research
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Subranging BJT-Based CMOS Temperature Sensor With a ±0.45 °C Inaccuracy (3σ) From-50°C to 180°C and a Resolution-FoM of 7.2 pJ.K<SUP>2</SUP> at 150°
Wang, B. & Law, M. K., 1 Dec 2022, In: IEEE Journal of Solid-State Circuits. 57, 12, p. 3693-3703 11 p.Research output: Contribution to journal › Article › peer-review
Open Access14 Citations (Scopus) -
A Sub-5mW Monolithic CMOS-MEMS Thermal Flow Sensing SoC With ± 6 m/s Linear Range
Xu, W., Li, Z., Fang, Z., Wang, B., Hong, L., Yang, G., Han, S.-T., Zhao, X. & Wang, X., May 2024, In: IEEE Journal of Solid-State Circuits. 59, 5, p. 1486-1496 11 p.Research output: Contribution to journal › Article › peer-review
11 Citations (Scopus) -
Cryo-CMOS Dual-Qubit Homodyne Reflectometer Array with Degenerate Parametric Amplification
Geng, Y., Lin, H., Wang, B. & Wang, C., 30 Jul 2024, In: IEEE Journal of Solid-State Circuits. 59, 10, p. 3290-3306 17 p.Research output: Contribution to journal › Article › peer-review
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An Asynchronous CMOS Current Readout With 124-dB Dynamic Range for Bioluminescence Sensing
Awan, M. A., Ahmad, K., Bermak, A., Biswas, K. H. & Wang, B., 2 Aug 2024, In: IEEE Solid-State Circuits Letters. 7, p. 223-226 4 p.Research output: Contribution to journal › Article › peer-review
2 Citations (Scopus) -
L2min2/2s: Efficient Linear Reconstruction Filter for Incremental Delta-Sigma ADCs
Wang, B., Law, M.-K. & Schneider, J., 2023, In: IEEE Transactions on Signal Processing. 71, p. 3229-3241 13 p.Research output: Contribution to journal › Article › peer-review
1 Citation (Scopus)