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      Urgent! Master Thesis: FE modeling and experimental validation for porosity evaluation in copper sintering Job Opening In Chemnitz – Now Hiring Fraunhofer
 
                        
                          The department System Packaging focuses on innovative packaging technologies for microelectronics and power electronics.   What you will do
                
The main emphasis lies on the development of reliable interconnection and bonding techniques that meet increasing demands in thermal and mechanical stability.
In the context of electromobility and other high- tech applications, we investigate new approaches for using copper as a cost-efficient and high-performance material in packaging solutions.
With the continuous advancement of power electronics, the demand for innovative packaging technologies that ensure high thermal and mechanical reliability is rapidly increasing.
One of the strongest driving forces behind this trend is the electric vehicle (EV) industry, where efficient, robust, and cost-effective packaging solutions are essential for next-generation devices.
Traditionally, silver-based sintering pastes state of the art for die / substrate-attach materials.
However, copper has recently emerged as a promising alternative due to its lower cost, high availability, and excellent electrical and thermal properties.
Despite these advantages, copper sintering presents significant challenges.
Porosity of copper pastes critically influences the thermal conductivity, electrical conductivity and the mechanical stability of the joint, making its evaluation and control a key challenge for industrial adoption.
This thesis project will focus on investigating the porosity evolution in different copper pastes after sintering and its influence on the properties of the sintered interface.
The work will involve conducting sintering experiments using a sintering press with selected copper pastes, followed by detailed characterization of the resulting interfaces in terms of porosity, thermal and mechanical integrity.
In parallel, simulation models will be developed to describe and predict porosity formation and evolution after the sintering process.
We are looking for a motivated and committed student to take on this exciting Master's thesis project and contribute to shaping the future of power electronics packaging.
What you bring to the table
What you can expect
We value and promote the diversity of our employees' skills and therefore welcome all applications - regardless of age, gender, nationality, ethnic and social origin, religion, ideology, disability, sexual orientation and identity.
Severely disabled persons are given preference in the event of equal suitability. 
With its focus on developing key technologies that are vital for the future and enabling the commercial utilization of this work by business and industry, Fraunhofer plays a central role in the innovation process.
As a pioneer and catalyst for groundbreaking developments and scientific excellence, Fraunhofer helps shape society now and in the future. 
Interested?
Apply online now.
Please attach your certificates and a current overview of your grades to your application. 
We look forward to getting to know you!
 
Fraunhofer Institute for Electronic Nano Systems ENAS
Requisition Number: 81312 Application Deadline:
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Unlock Your Master Thesis Potential: Insight & Career Growth Guide
Real-time Master Thesis Jobs Trends in Chemnitz, Germany (Graphical Representation)
Explore profound insights with Expertini's real-time, in-depth analysis, showcased through the graph below. This graph displays the job market trends for Master Thesis in Chemnitz, Germany using a bar chart to represent the number of jobs available and a trend line to illustrate the trend over time. Specifically, the graph shows 1543 jobs in Germany and 4 jobs in Chemnitz. This comprehensive analysis highlights market share and opportunities for professionals in Master Thesis roles. These dynamic trends provide a better understanding of the job market landscape in these regions.
Great news! Fraunhofer is currently hiring and seeking a Master Thesis: FE modeling and experimental validation for porosity evaluation in copper sintering to join their team. Feel free to download the job details.
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The fundamental ethical values are:The average salary range for a Master Thesis: FE modeling and experimental validation for porosity evaluation in copper sintering Jobs Germany varies, but the pay scale is rated "Standard" in Chemnitz. Salary levels may vary depending on your industry, experience, and skills. It's essential to research and negotiate effectively. We advise reading the full job specification before proceeding with the application to understand the salary package.
Key qualifications for Master Thesis: FE modeling and experimental validation for porosity evaluation in copper sintering typically include Engineers and a list of qualifications and expertise as mentioned in the job specification. Be sure to check the specific job listing for detailed requirements and qualifications.
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