Naveed
This is a likely match — the affiliation was inferred from OpenAlex, ORCID, and web sources but has not been fully confirmed. Treat with appropriate caution.
Researcher
Also affiliated: Karachi Institute of Economics and Technology (2017–2022)
Unknown Researcher
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Naveed's research focuses on the design and implementation of low-power integrated circuits, particularly for wireless sensor networks and energy harvesting applications. His recent work includes the development of ultra-low-power temperature sensors operating at 0.8 V with power consumption as low as 60 nW, suitable for battery-less systems. He has also investigated and designed resistor-less, nano-watt CMOS voltage references with high power supply rejection ratio and low-power delay-locked loop-based frequency multipliers. Naveed has explored RF rectifier designs for energy harvesting and efficient wireless sensor nodes. His research also extends to radiation-hardened analog-to-digital converters (ADCs) with fault-tolerant logic for mitigating single-event upsets. Naveed has published nine papers and has an h-index of 3, with 14 citations. He has collaborated with Jeff Dix on six publications.
Metrics
- h-index: 3
- Publications: 9
- Citations: 15
Selected Publications
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A Radiation-Hardened 4-Bit Flash ADC with Compact Fault-Tolerant Logic for SEU Mitigation (2025)
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An efficient wireless sensor node for autonomous sensing in the ISM band (2025)
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An Ultra-Low-Power 0.8 V, 60 nW Temperature Sensor for Battery-Less Wireless Sensor Networks (2025)
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Design of a Low-Power Delay-Locked Loop-Based 8× Frequency Multiplier in 22 nm FDSOI (2023)
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Comparison of Two RF Rectifiers Designed in FDSOI 22nm for RF Energy Harvesting (2022)
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A Resistor-less, Nano-Watt CMOS Voltage Reference with High PSRR (2021)
Collaboration Network
Top Collaborators
- A Resistor-less, Nano-Watt CMOS Voltage Reference with High PSRR
- An Ultra-Low-Power 0.8 V, 60 nW Temperature Sensor for Battery-Less Wireless Sensor Networks
- Design of a Low-Power Delay-Locked Loop-Based 8× Frequency Multiplier in 22 nm FDSOI
- A Radiation-Hardened 4-Bit Flash ADC with Compact Fault-Tolerant Logic for SEU Mitigation
- Comparison of Two RF Rectifiers Designed in FDSOI 22nm for RF Energy Harvesting
Showing 5 of 6 shared publications
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