Long Xu, Johan H. Huijsing, Kofi A.A. Makinwa (2018), A ±4A high-side current sensor with 25V input CM range and 0.9% gain error from -40°C to 85°C using an analog temperature compensation technique, L.C. Fujino (Eds.), In 2018 IEEE International Solid-State Circuits Conference, ISSCC 2018 Volume 61 p.324-326, IEEE.
Hui Jiang, Kofi A.A. Makinwa (2018), Energy-Efficient Bridge-to-Digital Converters, In Proceedings - 2018 IEEE Custom Integrated Circuits Conference, CICC 2018 p.1-7, IEEE.
Kamran Souri, Kofi Makinwa (2018), Energy-Efficient Smart Temperature Sensors in CMOS Technology, Springer.
Pieter Harpe, Kofi A.A. Makinwa, Andrea Baschirotto (Eds.) (2018), Hybrid ADCs, Smart Sensors for the IoT, and Sub-1V and Advanced Node Analog Circuit Design: Advances in Analog Circuit Design 2017, Springer.
Jiawei Xu, Refet Firat Yazicioglu, Chris Van Hoof, Kofi Makinwa (2018), Low Power Active Electrode ICs for Wearable EEG Acquisition, Springer.
Vikram Chaturvedi, Mohammad Reza Nabavi, Johan Vogel, Kofi A.A. Makinwa, Stoyan Nihtianov (2017), A 0.6nm Resolution 19.8mW Eddy-Current Displacement Sensor Interface with 126MHz Excitation, Laura C. Fujino (Eds.), In 2017 IEEE International Solid-State Circuits Conference, ISSCC 2017 Volume 60 p.174-175, IEEE.
Long Xu, Johan H. Huijsing, Kofi A.A. Makinwa (2017), A 10kHz-BW 93.7dB-SNR Chopped ΔΣ ADC with 30V Input CM Range and 115dB CMRR at 10kHz, In 2017 IEEE Asian Solid-State Circuits Conference (A-SSCC) p.49-52, IEEE.
Long Xu, Johan H. Huijsing, Kofi A.A. Makinwa (2017), A 12μW NPN-based Temperature Sensor with a 18.4pJ.K2 FOM in 0.18μm BCD CMOS, In Proceedings - 2017 7th International Workshop on Advances in Sensors and Interfaces, IWASI 2017 p.180-182, IEEE.
Pierluigi Cenci, Muhammed Bolatkale, Robert Rutten, Gerard Lassche, Kofi Makinwa, Lucien Breems (2017), A 28 nm 2 GS/s 5-b single-channel SAR ADC with gm-boosted StrongARM comparator, In 43rd IEEE European Solid-State Circuits Conference (ESSCIRC 2017) p.171-174, IEEE.
Vikram Chaturvedi, Johan G. Vogel, Kofi A.A. Makinwa, Stoyan Nihtianov (2017), A 9.1 mW inductive displacement-to-digital converter with 1.85 nm resolution, In Digest of Technical Papers - 2017 Symposium on VLSI Circuits p.C80-C81, IEEE.