Milena Erceg

dr Milena Erceg

Assistant Professor | Faculty of Electrical Engineering

Milena Erceg was born on March 30, 1984. She received the B.Sc., M.Sc., and Ph.D. degrees in electrical engineering from the University of Montenegro, Podgorica, Montenegro, in 2005, 2008, and 2012, respectively. Since 2007, she has been with the University of Montenegro, Faculty of Electrical Engineering as a Teaching Assistant. She received summer research grants at the Vienna University of Technology during 2008, 2009, 2011, and 2012. Her main research interests are in the fields of analog integrated circuit design and integrated microsystems.

Selected Publications

Year Category Authors Title Source
2023SCI, SCIE, SSCI, A&HCI
Tadić, N., Rešetar, M., Erceg, M. & Dervić, A.,A Current-Mode Interface With Mixed Single/Dual Slope Integration for Differential Capacitive SensorsIEEE Transactions on Instrumentation and Measurement
2023SCI, SCIE, SSCI, A&HCI
Tadić, N., Ratković, G., Erceg, M. & Dervić, A.RC-to-Digital Converter Using Single-Slope Integration With Bisection of the Reference VoltageIEEE Transactions on Instrumentation and Measurement
2023SCI, SCIE, SSCI, A&HCI
Erceg, M., Marković, A. & Tadić, N.A 30 kHz/√V Sensitivity Square-Rooting Voltage-to-Frequency ConverterIEEE Transactions on Instrumentation and Measurement
2022SCI, SCIE, SSCI, A&HCI
Radović, N., Prelević, V., Erceg, M. & Antunović, TMachine learning approach in mortality rate prediction for hemodialysis patientComputer Methods in Biomechanics and Biomedical Engineering
2021SCI, SCIE, SSCI, A&HCI
Tadić, N., Dervić, A., Erceg, M. & Zimmermann, H.A 40 µW –30 mW generated power, 280Ω - 1.68 kΩ load resistance CMOS controllable constant-power source for thermally-based sensor applicationsAnalog Integrated Circuits and Signal Processing
2021SCI, SCIE, SSCI, A&HCI
Tadić, N., Petrić, D., Erceg, M. & Dervić, A.CMRR Enhancement in Instrumentation Amplifiers Using an Algorithmic Approach With Dynamic Analog Signal ProcessingIEEE Transactions on Instrumentation and Measurement
2021SCI, SCIE, SSCI, A&HCI
Radović, N. & Erceg, M.Hardware implementation of the upper confidence-bound algorithm for reinforcement learningComputers and Electrical Engineering
2019SCI, SCIE, SSCI, A&HCI
Tadić, N., Dervić, A., Erceg, M., Goll, B., & Zimmermann, H.A 54.2 dB Current Gain Dynamic Range, 1.78 GHz Gain-Bandwidth Product CMOS Voltage-Controlled Current Amplifier/AttenuatorIEEE Transactions on Circuits and Systems II: Express Briefs
2019SCI, SCIE, SSCI, A&HCI
Tadić, N., Dervić, A., Erceg, M., Goll, B. & Zimmermann, H.1.3 V supply voltage, high bandwidth, 100 nA minimum amplitude BiCMOS voltage-controlled current sourceAnalog Integrated Circuits and Signal Processing
2018SCI, SCIE, SSCI, A&HCI
Erceg, M.A Controllable Constant Power Generator in 0.35 μm CMOS Technology for Thermal-Based Sensor ApplicationsJournal of Sensors
2018SCI, SCIE, SSCI, A&HCI
Tadić, N., Erceg, M., Dervić, A. & Gobović, D. An analog controllable CMOS constant-power source for a thermally-based sensor interface using a resistive mirror architectureIEEE Sensors Journal
2014SCI, SCIE, SSCI, A&HCI
Tadić, N., Zogović, M. & Gobović, D.A CMOS controllable constant-power source for variable resistive loads using resistive mirror with large load resistance dynamic rangeIEEE Sensors Journal
2013SCI, SCIE, SSCI, A&HCI
Tadić, N., Zogović, M., Gaberl, W. & Zimmermann, H.On frequency response and stability of an optical frontend with variable-gain current amplifier using a BJT translinear loopInternational Journal of Circuit Theory and Applications
2011SCI, SCIE, SSCI, A&HCI
Tadić, N., Zogović, M., Gaberl, W., & Zimmermann, H.A 78.4 dB photo-sensitivity dynamic range, 285 THz transimpedance bandwidth product BiCMOS optical sensor for optical storage systemsIEEE Journal of Solid-State Circuits
2011SCI, SCIE, SSCI, A&HCI
Tadić, N., Gaberl, W., Zogović, M. & Zimmermann, H.A BJT Translinear Loop Based Optoelectronic Integrated Circuit with Variable Transimpedance for Optical Storage SystemsAnalog Integrated Circuits and Signal Processing
2010SCI, SCIE, SSCI, A&HCI
Tadić, N., Zogović, M., Banjević, M. & Zimmermann, H.A Low-Voltage CMOS Adapter Circuit Suitable for Input Rail-to-Rail OperationInternational Journal of Electronics
2010SCOPUS
Tadić, N. & Zogović, M.A low-voltage CMOS voltage-controlled resistor with wide resistance dynamic rangeProc. of 27th International Conference on Microelectronics, MIEL 2010

Information from Courses

Elektronika telekomunikacije i računari, smjer Elektronika-Fizičko-tehnička mjerenja

New announcement - 06.01.2024 14:56

Elektronika telekomunikacije i računari, smjer Elektronika-Fizičko-tehnička mjerenja

New announcement - 26.12.2023 23:38

Elektronika telekomunikacije i računari, smjer Elektronika-Fizičko-tehnička mjerenja

New announcement - 20.11.2023 13:43

Elektronika telekomunikacije i računari, smjer Elektronika-Fizičko-tehnička mjerenja

New announcement - 20.11.2023 10:55

Elektronika telekomunikacije i računari, smjer Elektronika-Fizičko-tehnička mjerenja

New announcement - 03.09.2023 14:03

Elektronika telekomunikacije i računari, smjer Elektronika-Fizičko-tehnička mjerenja

New announcement - 25.01.2023 17:15