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Thesis: Laser functionalization of additively manufactured sensor technology(m/w/x)
Performing laser functionalization of additively manufactured sensor technology with class 4 lasers in a research environment for power electronics. Degree in electrical engineering, materials science, or materials engineering required; initial Python, CNC, or laser experience advantageous. Flexible working hours, on-site parking with e-charging station.
Requirements
- Studies in electrical engineering, materials science, materials engineering, or comparable degree
- Interest in laser technology and printed electronics
- Independent, organized, and structured work approach
- Initial experience in Python, CNC languages, or laser technology (advantageous)
Tasks
- Research and record current inkjet and aerosol jet printing processes
- Plan and conduct experiments on printed sensor measuring grid structures
- Perform laser functionalization using class 4 lasers
- Analyze printed thin-film structures using various methods
- Document and discuss your experimental results
Education
- Currently in higher education
Languages
- English – Business Fluent
Tools & Technologies
- Python
- CNC languages
- Laser technology
Benefits
Flexible Working
- Flexible working hours
Parking & Commuter Benefits
- Good transport connections
- On-site parking spaces
- E-charging station
- Parking garage
Not a perfect match?
- Fraunhofer-GesellschaftFull-timeInternshipOn-siteAachen
- Fraunhofer-Gesellschaft
Thesis: Defect detection in laser cladding using scanners and camera technology(m/w/x)
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Thesis: AI-based process development of extreme high-speed laser cladding(m/w/x)
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MA: In-situ analysis of UKP laser structuring in sapphire(m/w/x)
Full-timeOn-siteNot specifiedAachen - Fraunhofer-Gesellschaft
Thesis Projects in the Development of a Vacuum-Ultraviolet Frequency Comb(m/w/x)
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Thesis: Laser functionalization of additively manufactured sensor technology(m/w/x)
Performing laser functionalization of additively manufactured sensor technology with class 4 lasers in a research environment for power electronics. Degree in electrical engineering, materials science, or materials engineering required; initial Python, CNC, or laser experience advantageous. Flexible working hours, on-site parking with e-charging station.
Requirements
- Studies in electrical engineering, materials science, materials engineering, or comparable degree
- Interest in laser technology and printed electronics
- Independent, organized, and structured work approach
- Initial experience in Python, CNC languages, or laser technology (advantageous)
Tasks
- Research and record current inkjet and aerosol jet printing processes
- Plan and conduct experiments on printed sensor measuring grid structures
- Perform laser functionalization using class 4 lasers
- Analyze printed thin-film structures using various methods
- Document and discuss your experimental results
Education
- Currently in higher education
Languages
- English – Business Fluent
Tools & Technologies
- Python
- CNC languages
- Laser technology
Benefits
Flexible Working
- Flexible working hours
Parking & Commuter Benefits
- Good transport connections
- On-site parking spaces
- E-charging station
- Parking garage
About the Company
Fraunhofer Institute for Silicon Technology ISIT
Industry
Research
Description
Fraunhofer ISIT is a research and manufacturing environment focused on power electronics, developing processes and devices based on gallium nitride.
Not a perfect match?
- Fraunhofer-Gesellschaft
BA/MA: Laserfunktionalisierung additiv gefertigter Sensorik(m/w/x)
Full-timeInternshipOn-siteAachen - Fraunhofer-Gesellschaft
Thesis: Defect detection in laser cladding using scanners and camera technology(m/w/x)
Full-timeOn-siteNot specifiedAachen - Fraunhofer-Gesellschaft
Thesis: AI-based process development of extreme high-speed laser cladding(m/w/x)
Full-timeOn-siteNot specifiedAachen - Fraunhofer-Gesellschaft
MA: In-situ analysis of UKP laser structuring in sapphire(m/w/x)
Full-timeOn-siteNot specifiedAachen - Fraunhofer-Gesellschaft
Thesis Projects in the Development of a Vacuum-Ultraviolet Frequency Comb(m/w/x)
Full-timeInternshipOn-siteAachen