Talent Take Off Vernetzen Bar Camp und Workshops Fraunhofer IAP Showroom; Zukunft von Talent Take Off und Teamwork

Talent Take Off Vernetzen Bar Camp und Workshops Fraunhofer IAP Showroom; Zukunft von Talent Take Off und Teamwork Donnerstag, 20.08.26 Ab 15.00 Anreise 16.00 – 19.00 Uhr Begrüßung, Vorstellung des Programms Get Together – wer ist da? Wer kennt sich schon? Wer ist neu dabei? „TTO – Collage“ 18.00 – 19.00 Uhr Selbstorganisation – was ist das? Wer ist Verantwortlich? Planen der Mahlzeiten und des Budgets 19.00 Uhr Abendessen (Catering) Abend Offene Fragen; gemeinsamer Spieleabend Einkaufen für die Mahlzeiten (Netto bis 22:00 geöffnet) ...

August 7, 2026

Øyvind Breivik blir havdirektør ved Meteorologisk institutt; forbetre varsling og modellar

Øyvind Breivik blir havdirektør ved Meteorologisk institutt; forbetre varsling og modellar Øyvind Breivik blir havdirektør Øyvind Breivik har takka ja til stillinga som direktør for Havdivisjonen ved Meteorologisk institutt. Han kjem frå stillinga som avdelingsleiar for oseanografi og maritim meteorologi ved instituttet. Som direktør får Breivik ansvar for å leie og vidareutvikle MET sitt arbeid knytt til hav, oseanografi, maritime tenester, fjernmåling og dataforvalting. – Eg gler meg stort til å ta fatt på arbeidet som direktør for dei nesten 90 svært dyktige forskarane i havdivisjonen. Dei er ekspertar på alt frå satellittmålingar av sjøis til drift av radioaktivt materiale. ...

August 7, 2026

Fraunhofer Research Institution for Battery Cell Production FFB Münster; first entirely European manufacturing technology for battery cells.

Fraunhofer Research Institution for Battery Cell Production FFB Münster; first entirely European manufacturing technology for battery cells. The Fraunhofer-Gesellschaft’s 2025 Annual Report The 2025 financial year was one of opportunities, progress and successful collaboration for the Fraunhofer-Gesellschaft. In a dynamic environment and despite a difficult economic climate, we were once again able to demonstrate our strength as one of the leading applied research organizations and to drive significant advances in the areas of innovation and sustainable development. Together with our partners in industry, government and society, we helped bring pioneering technologies closer to real-world deployment and develop tangible solutions to the major challenges of our time. ...

August 6, 2026

Prof. Marc Eichhorn verstärkt die Institutsleitung des Fraunhofer IOSB Ettlingen; Doppelspitze stärkt Lasertechnologie und KI-Robotik

Prof. Marc Eichhorn verstärkt die Institutsleitung des Fraunhofer IOSB Ettlingen; Doppelspitze stärkt Lasertechnologie und KI-Robotik Prof. Marc Eichhorn verstärkt die Institutsleitung des Fraunhofer IOSB August 2026 Seite 1 | 3 Presseinformation — Doppelspitze am Fraunhofer IOSB Prof. Marc Eichhorn verstärkt die Institutslei- tung des Fraunhofer IOSB Das Fraunhofer-Institut für Optronik, Systemtechnik und Bildauswertung IOSB erweitert seine Institutsleitung. Prof. Marc Eichhorn wurde zum 1. Au- gust in die Institutsleitung berufen und führt das Institut künftig gemeinsam mit dem geschäftsführenden Institutsleiter Prof. Jürgen Beyerer. Die Doppel- spitze steht für das verbreiterte Kompetenzspektrum des Instituts von der Lasertechnologie über optronische Systeme und Computer Vision bis zur KI- basierten Robotik. Mit Prof. Eichhorn gewinnt das Fraunhofer IOSB einen ausgewiesenen Laserexperten für die Institutsleitung. Der renommierte Physiker ist seit 2018 Leiter des Bereichs »Photonik und opt- ronische Systeme« sowie des Standorts Ettlingen und übernahm parallel einen neuen Lehr- stuhl für Optronik an der Fakultät für Elektrotechnik und Informationstechnik des Karlsruher Instituts für Technologie (KIT). Optronik bezeichnet das Zusammenspiel von Optik und Elekt- ronik und somit die Umwandlung elektromagnetischer Strahlung in elektrische Signale und umgekehrt. Die Disziplin umfasst u. a. Laserquellen, die Lichtausbreitung in der Atmosphäre und bildgebende Sensoren. Unter der Federführung Eichhorns baute das Fraunhofer IOSB eine eigene Abteilung für Laser- technologie auf. Diese zählt heute rund 35 Mitarbeitende und ist auf Festkörper- und Faserla- sersysteme im Infrarotbereich sowie die zugehörigen photonischen Materialien, Komponen- ten und Prozessschritte spezialisiert. Seine Expertise auf diesem Gebiet hatte Eichhorn zuvor bereits im Rahmen seiner Forschung zu Laserquellen am Deutsch-Französischen Forschungs- institut Saint-Louis (ISL) unter Beweis gestellt. Stärkung der technologischen Souveränität Deutschlands »Von der Automatisierung und Industrie 4.0 über Inspektion und Versorgungsinfrastrukturen bis hin zur Sicherheits- und Verteidigungsforschung – mit seinem einzigartigen Kompetenz- profil treibt das Fraunhofer IOSB Innovationen für zentrale Anwendungsfelder der deutschen Wirtschaft voran,« so Prof. Holger Hanselka, Präsident der Fraunhofer-Gesellschaft. »Das Fraunhofer IOSB hat sich in den letzten zwei Jahrzehnten sehr erfolgreich entwickelt und seine thematische Breite in strategischer Weise ausgebaut. Um dieser Erweiterung Rechnung zu tragen, wird die Institutsleitung des Fraunhofer IOSB erweitert. Es freut mich sehr, dass wir ...

August 6, 2026

Marc Eichhorn joins Fraunhofer IOSB’s Institute Management Team, Ettlingen; dual leadership expands laser tech, optronics focus

Marc Eichhorn joins Fraunhofer IOSB’s Institute Management Team, Ettlingen; dual leadership expands laser tech, optronics focus Marc Eichhorn Joins Fraunhofer IOSB’s Institute Management Team Shared leadership at Fraunhofer IOSB Marc Eichhorn Joins Fraunhofer IOSB’s Institute Management Team The Fraunhofer Institute for Optronics, System Technologies and Image Exploitation IOSB is strengthening its leadership team. Effective August 1, Marc Eichhorn has joined the institute management and will co-lead Fraunhofer IOSB alongside Executive Director Jürgen Beyerer. The new dual leadership structure reflects the institute’s expanded expertise in laser technology, optronic systems, computer vision and AI-based robotics. ...

August 5, 2026

Prof. Marc Eichhorn verstärkt die Institutsleitung des Fraunhofer IOSB Ettlingen; Doppelspitze erhöht Forschungsportfolio in Lasertechnologie.

Prof. Marc Eichhorn verstärkt die Institutsleitung des Fraunhofer IOSB Ettlingen; Doppelspitze erhöht Forschungsportfolio in Lasertechnologie. Prof. Marc Eichhorn verstärkt die Institutsleitung des Fraunhofer IOSB Doppelspitze am Fraunhofer IOSB Prof. Marc Eichhorn verstärkt die Institutsleitung des Fraunhofer IOSB Presseinformation August 2026 Das Fraunhofer-Institut für Optronik, Systemtechnik und Bildauswertung IOSB erweitert seine Institutsleitung. Prof. Marc Eichhorn wurde zum 1. August in die Institutsleitung berufen und führt das Institut künftig gemeinsam mit dem geschäftsführenden Institutsleiter Prof. Jürgen Beyerer. Die Doppelspitze steht für das verbreiterte Kompetenzspektrum des Instituts von der Lasertechnologie über optronische Systeme und Computer Vision bis zur KI-basierten Robotik. Prof. Marc Eichhorn verstärkt die Institutsleitung des Fraunhofer IOSB ...

August 5, 2026

Fraunhofer-Gesellschaft and Institut Mines Télécom (IMT) sign MoU at VivaTech 2026 to deepen partnership; for European strategic innovation projects

Fraunhofer-Gesellschaft and Institut Mines Télécom (IMT) sign MoU at VivaTech 2026 to deepen partnership; for European strategic innovation projects VivaTech 2026: Fraunhofer and Institut Mines Télécom (IMT) to Strengthen Their Research Partnership Fraunhofer and Institut Mines Télécom (IMT) to Strengthen Their Research Partnership The Fraunhofer-Gesellschaft and the French Institut Mines Télécom (IMT) are deepening their partnership in the fields of hydrogen, cybersecurity and smart cities. Both partners signed a memorandum of understanding at VivaTech 2026. The goal is to join forces to advance strategic research and innovation projects and to strengthen Europe’s technological and digital sovereignty. ...

August 3, 2026

Fraunhofer IKTS COMOBASE bridge monitoring system in Germany; same conclusions with far lower system complexity

Fraunhofer IKTS COMOBASE bridge monitoring system in Germany; same conclusions with far lower system complexity Efficient Bridge Monitoring Customized structure monitoring with the COMOBASE modular acoustic emission analysis system Efficient Bridge Monitoring Research News June 01, 2026 In its 2022 condition assessment, the German Federal Ministry for Digital and Transport (BMDV) classified 8,000 highway bridges as requiring rehabilitation. In other words, it is time to start continuously monitoring Germany’s bridges. With the COMOBASE modular acoustic emission monitoring system, the Fraunhofer Institute for Ceramic Technologies and Systems IKTS presents an innovative solution for continuous infrastructure monitoring, specially customized for the respective requirements and significantly more economical than conventional technologies. ...

August 3, 2026

Dry Coating Forum to discuss dry battery electrode processing at Fraunhofer Campus in Dresden; 160 participants cap

Dry Coating Forum to discuss dry battery electrode processing at Fraunhofer Campus in Dresden; 160 participants cap Dry Coating Forum: Shaping the Future of Dry Battery Electrode Processing Event details Registration Online Registration Please note that the event is limited to 160 participants (move-up procedure), with a maximum of three participants per company or institution. Registration deadline: August 31, 2026 Costs Regular attendees: 600 EUR Speakers: 400 EUR Sponsors: 1 free ticket Location The workshop will take place at the Fraunhofer Campus in Dresden. Winterbergstrasse 28, 01277 Dresden, Germany Date September 29, 2026 - September 30, 2026 , starting on September 29 at 13:00 (CET) Organization Fraunhofer Institute for Material and Beam Technology IWS Language English ...

August 3, 2026

Fraunhofer IGB researchers join energy-efficient drying with superheated steam industrial drying processes; up to 80% energy savings

Fraunhofer IGB researchers join energy-efficient drying with superheated steam industrial drying processes; up to 80% energy savings Energy-Efficient Electric Drying With Superheated Steam August 3, 2026 Page 1 | 3 Research News — Decarbonization in industry Energy-Efficient Electric Drying With Superheated Steam Industrial drying processes consume large amounts of energy and nega- tively impact the climate since they burn fossil fuels to heat air. Researchers at the Fraunhofer Institute for Interfacial Engineering and Biotechnology IGB are working with industry partners on a new approach to decarbonize this process: Instead of hot air, they are using superheated steam. Combined with a heat pump and smart controls, their superheated steam drying pro- cess saves significant amounts of energy and eliminates the need for natural gas. Drying is a key process widely used across many sectors, including the paper, cement and chemical industries. It is a key step in the production, processing and treatment of minerals, food or detergents, for example. Countless materials, products and raw materials are dried to preserve them, allow further processing or maintain their quality. Current drying processes rely on hot air. Researchers at Fraunhofer IGB are now taking a different approach: In the LowCarbDry project, they are replacing hot air with superheated steam at atmospheric pres- sure while electrifying the drying process using a heat pump. The team is working closely with Evonik Operations GmbH and Pergande Group on this development. The aim of the project is to significantly lower energy consumption and support energy systems integration by shifting from fossil fuels such as natural gas to renewable electricity. By using electricity-generated su- perheated steam, the partners aim to reduce drying energy demand by a factor of 2 to 4, de- pending on the drying method and temperature level. Superheated steam lowers energy consumption “Industrial drying uses a significant amount of energy. During hot-air drying, the air must be heated for the moisture to evaporate. This usually involves burning natural gas, which dra- matically increases carbon emissions. But most importantly, some of the energy is lost to the atmosphere through the warm exhaust air,” says Antoine Dalibard, a research scientist at Fraunhofer IGB. “Instead of drying moist products with hot air, we use superheated, dry steam in a closed-loop system. Closing the process gas circuit minimizes heat loss to the out- side, making the process more energy efficient than traditional hot-air drying methods,” Dalibard explains. The excess steam released from product drying can then be condensed. This produces condensation heat at a temperature of about 90 to 100 °C, which can be re- used for many other processes or fed into a local heating network. ...

August 3, 2026