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Johan Vergauwen
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Journal Articles
- 2022
- [j4]Elisa Sacco, Johan Vergauwen, Georges G. E. Gielen:
A 96.9-dB-Resolution 109-μW Second-Order Robust Closed-Loop VCO-Based Sensor Interface for Multiplexed Single-Ended Resistance Readout in 180-nm CMOS. IEEE J. Solid State Circuits 57(9): 2764-2777 (2022) - 2020
- [j3]Elisa Sacco, Johan Vergauwen, Georges G. E. Gielen:
A 16.1-bit Resolution 0.064-mm2 Compact Highly Digital Closed-Loop Single-VCO-Based 1-1 Sturdy-MASH Resistance-to-Digital Converter With High Robustness in 180-nm CMOS. IEEE J. Solid State Circuits 55(9): 2456-2467 (2020) - 2019
- [j2]Jorge Marin, Elisa Sacco, Johan Vergauwen, Georges G. E. Gielen:
A Robust BBPLL-Based 0.18- $\mu$ m CMOS Resistive Sensor Interface With High Drift Resilience Over a -40 °C-175 °C Temperature Range. IEEE J. Solid State Circuits 54(7): 1862-1873 (2019) - [j1]Elisa Sacco, Jorge Marin, Johan Vergauwen, Georges G. E. Gielen:
Performance Limitation Analysis of Highly-Digital Time-Based Closed-Loop Sensor-to-Digital Converter Architectures. IEEE Trans. Circuits Syst. II Express Briefs 66-II(7): 1114-1118 (2019)
Conference and Workshop Papers
- 2020
- [c7]Elisa Sacco, Johan Vergauwen, Georges G. E. Gielen:
Improving the EMI Robustness of Feedback-based Time-Encoding Readout Architectures for Resistive Sensor Interfaces. ICECS 2020: 1-4 - 2019
- [c6]Elisa Sacco, Johan Vergauwen, Georges G. E. Gielen:
A 16.1-b ENOB 0.064mm2 Compact Highly-Digital Closed-Loop Single-VCO-based 1-1 SMASH Resistance-to-Digital Converter in 180nm CMOS. A-SSCC 2019: 109-112 - [c5]Elisa Sacco, Johan Vergauwen, Georges G. E. Gielen:
From Open-Loop to Closed-Loop Single-VCO-Based Sensor-to-Digital Converter Architectures: theoretical analysis and comparison. IWASI 2019: 29-34 - [c4]Elisa Sacco, Johan Vergauwen, Georges G. E. Gielen:
Architectural Analysis of a Novel Closed-Loop VCO-Based 1-1 Sturdy MASH Sensor-to-Digital Converter. SMACD 2019: 261-264 - 2018
- [c3]Jorge Marin, Elisa Sacco, Johan Vergauwen, Georges G. E. Gielen:
A Single-Temperature-Calibration 0.18-µm CMOS Time-Based Resistive Sensor Interface with Low Drift over a -40°C to 175°C Temperature Range. ESSCIRC 2018: 330-333 - [c2]Elisa Sacco, Jorge Marin, Johan Vergauwen, Georges G. E. Gielen:
Controlled-Oscillator Optimization for Highly-Digital CMOS Time-Based Sensor-to-Digital Converter Architectures. SMACD 2018: 249-252 - 2017
- [c1]Jorge Marin, Elisa Sacco, Johan Vergauwen, Georges G. E. Gielen:
Analysis and modeling of drift-resilient time-based integrated resistive sensor interfaces. IWASI 2017: 183-186
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