Coordinatore | UNIVERSITAET DES SAARLANDES
Organization address
address: CAMPUS contact info |
Nazionalità Coordinatore | Germany [DE] |
Totale costo | 4˙619˙315 € |
EC contributo | 3˙399˙995 € |
Programma | FP7-NMP
Specific Programme "Cooperation": Nanosciences, Nanotechnologies, Materials and new Production Technologies |
Code Call | FP7-NMP-2013-SMALL-7 |
Funding Scheme | CP-FP |
Anno di inizio | 2014 |
Periodo (anno-mese-giorno) | 2014-01-01 - 2016-12-31 |
# | ||||
---|---|---|---|---|
1 |
UNIVERSITAET DES SAARLANDES
Organization address
address: CAMPUS contact info |
DE (SAARBRUECKEN) | coordinator | 627˙000.00 |
2 |
SGX SENSORTECH SA
Organization address
address: RUE DES COURTILS 1 contact info |
CH (CORCELLES) | participant | 405˙830.00 |
3 |
LINKOPINGS UNIVERSITET
Organization address
address: CAMPUS VALLA contact info |
SE (LINKOPING) | participant | 354˙941.00 |
4 |
OULUN YLIOPISTO
Organization address
address: Pentti Kaiteran Katu 1 contact info |
FI (OULU) | participant | 350˙208.00 |
5 |
"3S - SENSORS, SIGNAL PROCESSING, SYSTEMS GMBH"
Organization address
address: MAINZER STRASSE 148 contact info |
DE (SAARBRUENCKEN) | participant | 309˙387.00 |
6 |
SARL NANOSENSE
Organization address
address: rue de Bellevue 123 contact info |
FR (BOULOGNE) | participant | 298˙836.00 |
7 |
FRAUNHOFER-GESELLSCHAFT ZUR FOERDERUNG DER ANGEWANDTEN FORSCHUNG E.V
Organization address
address: Hansastrasse 27C contact info |
DE (MUENCHEN) | participant | 298˙690.00 |
8 |
PICODEON LTD OY
Organization address
address: PIISILTA 1 contact info |
FI (HELSINKI) | participant | 288˙000.00 |
9 |
SENSIC AB
Organization address
address: ISAFJORDSGATAN 39 B contact info |
SE (KISTA) | participant | 248˙283.00 |
10 |
EUROPEAN RESEARCH AND PROJECT OFFICE GMBH
Organization address
address: Science Park 1, Stuhlsatzenhausweg 69 contact info |
DE (SAARBRUECKEN) | participant | 218˙820.00 |
Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.
'SENSIndoor aims at the development of novel nanotechnology based intelligent sensor systems for selective monitoring of Volatile Organic Compounds (VOC) for demand controlled ventilation in indoor environments. Greatly reduced energy consumption without adverse health effects caused by the Sick Building Syndrome requires optimized ventilation schemes adapted to specific application scenarios like offices, hospitals, schools, nurseries or private homes. These must be based on selective detection and reliable quantification of relevant VOCs such as formaldehyde or benzene at ppb or even sub-ppb levels in complex environments. Priority scenarios and corresponding target gases and concentrations will be defined together with an advisory board representing health standard experts and major industrial stakeholders. The project addresses two sensor technologies with MEMS-based metal oxide semiconductor gas sensors and SiC-based gas sensitive field effect transistors. Gas sensitive layers for both sensor technologies are realized by Pulsed Laser Deposition for well-defined, stable and highly sensitive nanostructured layers. These are combined with gas pre-concentration to boost the sensitivity of the overall system. Dynamic operation of the gas sensor elements by temperature cycling combined with pattern recognition techniques is employed to further boost sensitivity and selectivity and expanded to optimally use the gas preconcentration. The project thus combines physical and chemical nanotechnologies for extremely sensitive and selective gas sensing, MEMS technologies for low-power operation as well as low-cost manufacture and finally dynamic operating modes together with advanced signal processing for unrivalled system performance. Sensor elements and systems are evaluated under controlled lab conditions derived from priority application scenarios. The final demonstration of the SENSIndoor technology will include field tests with sensor systems integrated into building control systems.'
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