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TUMESA - MEMS tuneable metamaterials for smart wireless applications

Ala-Laurinaho, J. (author)
Aalto University, Finland
Chicherin, Dmitry (author)
Aalto University, Finland
Du, Zhou (author)
Aalto University, Finland
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Simovski, C. (author)
Aalto University, Finland
Zvolensky, T. (author)
Aalto University, Finland
Räisänen, Antti V. (author)
Aalto University, Finland
Sterner, Mikael (author)
KTH,Mikrosystemteknik
Baghchehsaraei, Zargham (author)
KTH,Mikrosystemteknik
Shah, Umer (author)
KTH,Mikrosystemteknik
Dudorov, Sergey (author)
KTH,Mikrosystemteknik
Oberhammer, Joachim (author)
KTH,Mikrosystemteknik
Boriskin, A. V. (author)
IETR, France
Le Coq, L. (author)
IETR, France
Fourn, Erwan (author)
IETR, France
Muhammad, S. A. (author)
IETR, France
Sauleau, Ronan (author)
IETR, France
Vorobyov, Alexander (author)
IETR, France
Bodereau, F. (author)
TRW Autocruise, France
El Haj Shhade, G. (author)
TRW Autocruise, France
Labia, T. (author)
TRW Autocruise, France
Mallejac, P. (author)
TRW Autocruise, France
Åberg, Jan (author)
MicroComp Nordic AB, Sweden
Gustafsson, M. (author)
MicroComp Nordic AB, Sweden
Schier, T. (author)
MicroComp Nordic AB, Sweden
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 (creator_code:org_t)
IEEE, 2012
2012
English.
In: European Microwave Week 2012: "Space for Microwaves", EuMW 2012, Conference Proceedings - 7th European Microwave Integrated Circuits Conference, EuMIC 2012. - : IEEE. - 9782874870286 ; , s. 95-98
  • Conference paper (peer-reviewed)
Abstract Subject headings
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  • This paper describes the main results of the EU FP7 project TUMESA - MEMS tuneable metamaterials for smart wireless applications. In this project, we studied several reconfigurable antenna approaches that combine the new technology of MEMS with the new concept of artificial electromagnetic materials and surfaces (metamaterials and metasurfaces) for realisation of millimetre wave phase shifters and beam-steering devices. MEMS technology allows to miniaturise electronic components, reduce their cost in batch production, and effectively compete with semiconductor and ferroelectric based technologies in terms of losses at millimetre wavelengths. Novel tuneable materials and components proposed in this project perform as smart beam steering devices. Fabricated with MEMS technology in batch and on a single chip, proposed tuneable devices allow substituting of larger and more complex sub-system of, e.g., a radar sensor. This substitution provides a dramatic cost reduction on a system level.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Elektroteknik och elektronik -- Annan elektroteknik och elektronik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Electrical Engineering, Electronic Engineering, Information Engineering -- Other Electrical Engineering, Electronic Engineering, Information Engineering (hsv//eng)

Keyword

Beam steering
Metamaterials
Microelectromechanical systems
Millimeter wave radar
Phase shifters

Publication and Content Type

ref (subject category)
kon (subject category)

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