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Michal Sovcik
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2020 – today
- 2023
- [c14]Lukás Nagy, Michal Sovcik, Viera Stopjaková:
Design of Ultra-Low Power Comparator in 65 NM CMOS Technology with Rail-to-Rail Input Range. AFRICON 2023: 1-4 - 2022
- [c13]Lukás Nagy, Daniel Arbet, Martin Kovác, Miroslav Potocný, Michal Sovcik, Viera Stopjaková:
Low-Power Rail-to-Rail Comparator in 130 nm CMOS Technology. RADIOELEKTRONIKA 2022: 1-4 - 2021
- [j3]Miroslav Potocný, Martin Kovác, Daniel Arbet, Michal Sovcik, Lukás Nagy, Viera Stopjaková, Richard Ravasz:
Low-Voltage DC-DC Converter for IoT and On-Chip Energy Harvester Applications. Sensors 21(17): 5721 (2021) - [c12]Lukás Nagy, Daniel Arbet, Martin Kovác, Miroslav Potocný, Michal Sovcik, Viera Stopjaková:
EKV MOS Transistor Model For Ultra Low-Voltage Bulk-Driven IC Design. DDECS 2021: 6-10 - [c11]David Maljar, Michal Sovcík, Daniel Arbet, Viera Stopjaková:
Enhanced Reliability of Fully Differential Difference Amplifier Through On-chip Digital Calibration. DDECS 2021: 119-122 - 2020
- [c10]Lukás Nagy, Daniel Arbet, Martin Kovác, Miroslav Potocný, Michal Sovcik, Viera Stopjaková:
Dynamic Properties Of Ultra Low-Voltage Rail-to-Rail Comparator Designed In 130 nm CMOS Technology. DDECS 2020: 1-4 - [c9]Martin Kovác, Daniel Arbet, Lukás Nagy, Michal Sovcik, Viera Stopjaková:
Multi-Topology DC-DC Converter for Low-Voltage Energy Harvesting Systems. MIPRO 2020: 77-82 - [c8]Miroslav Potocný, Michal Sovcík, Viera Stopjaková:
Development of test equipment for evaluation of low-power AC/DC converter ASIC. RADIOELEKTRONIKA 2020: 1-5 - [c7]Michal Sovcík, Viera Stopjaková, Daniel Arbet, Miroslav Potocný:
Autonomous On-Chip Digital Calibration for Analog ICs in Nanotechnologies. RADIOELEKTRONIKA 2020: 1-5
2010 – 2019
- 2019
- [c6]Lukás Nagy, Daniel Arbet, Martin Kovác, Miroslav Potocný, Michal Sovcik, Viera Stopjaková:
Performance Analysis Of Ultra Low-Voltage Rail-to-Rail Comparator In 130 nm CMOS Technology. AFRICON 2019: 1-5 - [c5]Martin Kovác, Daniel Arbet, Viera Stopjaková, Michal Sovcik, Lukás Nagy:
Investigation of Low-Voltage, Sub-threshold Charge Pump with Parasitics Aware Design Methodology. DDECS 2019: 1-4 - 2018
- [j2]Michal Sovcik, Martin Kovác, Daniel Arbet, Viera Stopjaková, Miroslav Potocný:
Ultra-low-voltage boosted driver for self-powered systems. Microelectron. Reliab. 80: 155-163 (2018) - [c4]Daniel Arbet, Martin Kovác, Lukás Nagy, Viera Stopjaková, Michal Sovcik:
Two-Stage Bulk-Driven Variable Gain Amplifier for Low-Voltage Applications. DDECS 2018: 45-50 - 2017
- [j1]Daniel Arbet, Viera Stopjaková, Martin Kovác, Lukás Nagy, Matej Rakus, Michal Sovcik:
130 nm CMOS Bulk-Driven Variable Gain Amplifier for Low-Voltage Applications. J. Circuits Syst. Comput. 26(8): 1740003:1-1740003:19 (2017) - [c3]Michal Sovcik, Martin Kovác, Daniel Arbet, Viera Stopjaková:
Ultra-low-voltage driver for large load capacitance in 130nm CMOS technology. DDECS 2017: 127-132 - 2016
- [c2]Michal Sovcik, Michal Matuska, Daniel Arbet, Viera Stopjaková:
CMOS variable-gain amplifier for low-frequency applications. DDECS 2016: 243-246 - [c1]Daniel Arbet, Martin Kovác, Lukás Nagy, Viera Stopjaková, Michal Sovcik:
Variable-gain amplifier for ultra-low voltage applications in 130nm CMOS technology. MIPRO 2016: 51-56
Coauthor Index
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