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Nilanjan Pal
Nilanjan Pal
University of Illinois at Urbana–Champaign
Computer science
CMOS
Electrical efficiency
Voltage
Electrical engineering
7
Papers
10
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A second-order temperature compensated 1μW/MHz 100MHz RC oscillator with ±140ppm inaccuracy from -40°C to 95°C
2021
CICC | Custom Integrated Circuits Conference
Kyu Sang Park
Amr Khashaba
Ahmed Abdelrahman
Yongxin Li
Tianyu Wang
Ruhao Xia
Nilanjan Pal
Pavan Kumar Hanumolu
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A 91.15% Efficient 2.3-5-V Input 10-35-V Output Hybrid Boost Converter for LED-Driver Applications
2021
IEEE Journal of Solid-state Circuits
Nilanjan Pal
Adam Fish
William J. McIntyre
Nathanael Griesert
Greg Winter
Travis Eichhorn
Robert C.N. Pilawa-Podgurski
Pavan Kumar Hanumolu
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3.5 A 34µW 32MHz RC Oscillator with ±530ppm Inaccuracy from −40°C to 85°C and 80ppm/V Supply Sensitivity Enabled by Pulse-Density Modulated Resistors
2020
ISSCC | International Solid-State Circuits Conference
Amr Khashaba
Junheng Zhu
Mostafa Gamal Ahmed
Nilanjan Pal
Pavan Kumar Hanumolu
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A Fast Startup CMOS Crystal Oscillator Using Two-Step Injection
2019
IEEE Journal of Solid-state Circuits
Karim M. Megawer
Nilanjan Pal
Ahmed Elkholy
Mostafa Gamal Ahmed
Amr Khashaba
Danielle Griffith
Pavan Kumar Hanumolu
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Citations (6)
18.5 A 54MHz Crystal Oscillator With 30× 18.5 Start-Up Time Reduction Using 2-Step Injection in 65nm CMOS
2019
ISSCC | International Solid-State Circuits Conference
Karim M. Megawer
Nilanjan Pal
Ahmed Elkholy
Mostafa Gamal Ahmed
Amr Khashaba
Danielle Griffith
Pavan Kumar Hanumolu
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