IESL-FORTH
Published on IESL-FORTH (http://139.91.197.33)


Researcher ID [1]
Orc ID [2]
Office Phone: (+30) 2810 39 4103
Lab Phone: (+30) 2810 39 4142
Email: aek@physics.uoc.gr
Full CV: Download [3]
Publications PDF: Download [4]
Dr. Konstantinidis George
Research Director
  • About
  • Research Projects
  • Research Groups

Education

  • 1988, Ph.D in Solid state electornics, University of Salford, Department of Electronic & Electrical Engineering, U.K.
  • 1985, M.Sc in Solid state electronics, University of Salford, Department of Electronic & Electrical Engineering, U.K.
  • 1982, B.Sc in Applied physics, University of Salford, Department of Pure & Applied Physics, U.K.

Career

  • 12/2016 - today, Research director, Microelectornics Research Group, FORTH - IESL, Greece
  • 04/2004 - 12/2016, Senior application scientist, Microelectornics Research Group, FORTH - IESL, Greece
  • 07/1998 - 04/2004, Principal application scientist, Microelectornics Research Group, FORTH - IESL, Greece
  • 07/1995 - 07/1998, Associated application scientist, Microelectornics Research Group, FORTH - IESL, Greece
  • 05/1990 - 07/1995, Postdoctoral fellow, Microelectornics Research Group, FORTH - IESL, Greece
  • 12/1989 - 05/1990, Software developer, Eltrans international transport S.A,
  • 03/1989 - 11/1989 Software developer, National defense research centre, Greece
  • 02/1988 - 05/1988, Postdoctoral fellow, Microelectornics Research Group, FORTH - IESL, Greece

Interests

  • High frequency & high power devices: FETs, HEMTs, PHEMTs, MO(I)SFETs (III-arsenides & III-nitrides)
  • High power devices: MESFETS, JFETs, IMPATT & ZENER diodes (SiC)
  • High frequency & high power MMICs (III-arsenides & III-nitrides)
  • THz diodes (III-arsenides)
  • III-nitrides Nanowire and FINFET transistors
  • Magnonics
  • 2D materials based transistors, CNT based devices
  • GaN based Qubits
  • III-nitrides based UV detectors
  • III-arsenides & III-nitrides photovoltaics
  • III-nitrides SAW & FBAR based sensors
  • III-nitrides CHEMFET based chemical sensors
  • III-nitrides LAMB based biosensors
  • Arrays of polymeric microneedles based EEG sensors
  • Piezoelelectric sensors for gait monitoring
  • RF MEMS Piezoelectric (III-nitrides) cantilevers
  • Thermoelectric materials and devices
  • Left handed & photonic structures
  • Reconfigurable front end transmission/reception modules
  • 3D system in chip (SiP) solutions for high power miniaturized modules

Awards/Prizes/Distinctions

  • 2018, Elected as Vice President of the Greek Micro and Nano Society
  • 2016, Re-elected to the Scientific Council of IESL (1st in preference)
  • 2013, Elected to the Scientific Council of IESL
  • 2007, Re-elected Vice President of the Greek Micro and Nano Society
  • 2005, Key member of the research team of FORTH (project FP6 “DALHM”) that won one of the EU Descartes prizes
  • 2004, Elected as Vice President of the Greek Micro and Nano Society
  • 2003, Elected to the Board of Directors of the European Microwave Association (EuMA) for 3 years
  • 2003, Prize "Tudor Tanasescu" of the Romanian Academy of Sciences for my work in the membrane supported active & passive devices
  • 2002, MRG Leader in the project FP4 INCO-COPERNICUS project "MEMSWAVE" (co- ordinated by IMT Bucharest), that was among the 10 finalists for the EU Descartes prize.
  • Quantum Technologies [5]
  • High frequency electronics & smart systems [6]
  • Semiconductor heterostructures & Nanostructures [7]
European Innovative GaN Advanced Microwave Integration [8]
Novel 3D heterogeneous integration for future miniaturized power RF Transceiver front ends [9]
Smart, heterogeneous technological platform extending the power and frequency limits of flexible nanoelectronics [10]
Heterogeneous material and technological platform for a new domain of power nanoelectronics [11]
3D Integration Technologies of Radio for Phase Shift in Phase-Array antenna Systems [12]
Predictive Reliability for High Power RF MEMS [13]
A system for monitoring sleep and healthy living with low energy radio technology [14]
Intelligent Reliability 4.0 [15]
Pilot line production of transceiver modules of the next generation of smart RF power applications [16]
Heterogeneous 3D integration using breakthrough nanotechnologies for new generation microwave power transceivers [17]
Integrated Qubits towards Future High-Temperature Silicon Quantum Computing Hardware Technologies [18]
Spin Wave Computing for Ultimately-Scaled Hybrid Low-Power Electronics [19]
Experimental and theoretical studies of physical properties of low dimensional quantum nanoelectronic systems [20]
Carbon Based Smart Systems For wireless applications [21]

Links
[1] http://www.researcherid.com/rid/A-1719-2014 [2] http://orcid.org/0000-0002-1072-9618 [3] http://139.91.197.33/sites/default/files/cv-en/George%20Konstantinidis%20APRIL%202021%20CV.pdf [4] http://139.91.197.33/sites/default/files/publications/George%20Konstantinidis%20APRIL%202021%20List%20of%20Publications.pdf [5] http://139.91.197.33/en/research/MRG_quantum [6] http://139.91.197.33/en/research/MRG_RF_systems [7] http://139.91.197.33/en/research/MRG_material [8] http://139.91.197.33/en/project/agamieurigami [9] http://139.91.197.33/en/project/powerpack [10] http://139.91.197.33/en/project/powerflex [11] http://139.91.197.33/en/project/nanomat [12] http://139.91.197.33/en/project/3d-topos [13] http://139.91.197.33/en/project/prime [14] http://139.91.197.33/en/project/healthsonar [15] http://139.91.197.33/en/project/irel40 [16] http://139.91.197.33/en/project/smartec [17] http://139.91.197.33/en/project/radar [18] http://139.91.197.33/en/project/iqubits [19] http://139.91.197.33/en/project/chiron [20] http://139.91.197.33/en/project/einstein [21] http://139.91.197.33/en/project/nanorf