Projekt
Breakthrough in micro-bolometer imaging
Micro-bolometer sensors are compact, light, low power, reliable and affordable infrared imaging components. They are ahead of the cooled infrared sensors for these criteria but lag behind them in terms of performance: - Existing micro-bolometer technologies have thermal time constants around 10 msec. This is more than…
Micro-bolometer sensors are compact, light, low power, reliable and affordable infrared imaging components. They are ahead of the cooled infrared sensors for these criteria but lag behind them in terms of performance:
- Existing micro-bolometer technologies have thermal time constants around 10 msec. This is more than 10 times that of cooled detectors.
- Moreover, there is no multispectral micro-bolometer sensor available today for applications such as absolute thermography and optical gas imaging.
BRIGHTER will develop 2 new classes of micro-bolometer solutions to reduce the performance gap with their cooled counterparts:
- Fast thermal micro-bolometer imaging solutions with time constant in the 2.5 to 5 msec range, that is to say 2 to 4 times faster than that of today’s micro-bolometer technologies. Read out integrated circuits able to operate up to 500 frames per seconds will also be investigated.
- Multi-spectral micro-bolometer solutions with at least access at the pixel level to 2 different wavelengths in the range 7 to 12 µm.
The developments will focus on pixel technology, Read Out Integrated Circuit, low power edge image signal processing electronic, optics, and image treatment algorithms. All stakeholders of the value chain are involved: academics, RTO, micro-bolometer manufacturer, algorithm developers, camera integrators and end users. They will collaborate to define the best trade-offs for all use-cases.
The 2 new classes of products that will spring from BRIGHTER will generate concrete benefits. They will make it possible to save on material and energy in the manufacturing sector, perform efficient and affordable monitoring of infrastructures and trains, contribute to autonomous vehicles sensor suite, decrease the road casualties among Vulnerable Road Users, better control gas emission in cities and industrial areas. These new usages served by the European industry will allow Europe to increase its market share in the infrared imaging industry.
Themengebiete
- Industrie 4.0 Industrie 4.0 – Überblick über Forschungsprojekte, Patente und Akteure im TechnologieAtlas.
- Klima und Umwelt Klima und Umwelt – Überblick über Forschungsprojekte, Patente und Akteure im TechnologieAtlas.
Hochschulen
- INSTITUT NATIONAL DE RECHERCHE EN INFORMATIQUE ET AUTOMATIQUE INSTITUT NATIONAL DE RECHERCHE EN INFORMATIQUE ET AUTOMATIQUE – Hochschule bzw. Forschungseinrichtung mit Akt…
- UNIVERSITE GUSTAVE EIFFEL UNIVERSITE GUSTAVE EIFFEL – Hochschule bzw. Forschungseinrichtung mit Aktivitäten in Forschung und Innovation.
- CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS CENTRE NATIONAL DE LA RECHERCHE SCIENTIFIQUE CNRS – Hochschule bzw. Forschungseinrichtung mit Aktivitäten in…
- Marmara University Marmara University – Hochschule bzw. Forschungseinrichtung mit Aktivitäten in Forschung und Innovation.
- INOV INSTITUTO DE ENGENHARIA DE SISTEMAS E COMPUTADORES INOVACAO INOV INSTITUTO DE ENGENHARIA DE SISTEMAS E COMPUTADORES INOVACAO – Hochschule bzw. Forschungseinrichtung mit…
Unternehmen
- SENSIA SOLUTIONS SL SENSIA SOLUTIONS SL – Unternehmen mit Aktivitäten in Forschung und Innovation.
- MACQ SA MACQ SA – Unternehmen mit Aktivitäten in Forschung und Innovation.
- THIMONNIER SAS THIMONNIER SAS – Unternehmen mit Aktivitäten in Forschung und Innovation.
- DOCAPESCA - PORTOS E LOTAS SA DOCAPESCA - PORTOS E LOTAS SA – Unternehmen mit Aktivitäten in Forschung und Innovation.