Get more replies from employers
Send a job-specific resume in minutes.
Thermo Fisher Scientific Eindhoven is offering an internship in the Mechatronics, Thermal & Dynamics Engineering team within TEM R&D to minimize vibration disturbances and predict their impact on imaging quality. You will develop and validate dynamic models, perform transmissibility measurements and modal analysis, and collaborate across mechanical, electrical, software, and dynamics disciplines.
Participation requires ongoing university study in mechanical engineering or dynamics, with
Standard (Mon-Fri)
Office
Are you passionate about pushing the boundaries of engineering and making a real-world impact? As an intern at Thermo Fisher Scientific Inc., you will have the chance to work on groundbreaking discoveries that tackle the world's toughest challenges. With our investment of over $1 billion annually in R&D, you will be part of a world-class team that strives for flawless execution and ambitious innovation.
The Mechatronics, Thermal & Dynamics Engineering team is one part of the Research and Development organization for Transmission Electron Microscopes (TEM). This group is committed to develop breakthrough technologies, modules and software that enable us to deliver innovative TEM microscopes for our demanding markets and customers. We are striving to convert the most promising technological concepts into real products - with the purpose to enable our customers to make the world cleaner, healthier and safer!
Due to increasing demands on optical resolution, it is essential to continuously minimize the impact of internal and external disturbances on our transmission electron microscopes. The turbo molecular pump (TMP), which plays a crucial role in achieving the high and ultra-high vacuum levels necessary for the optimal performance of transmission electron microscopes, is one of many disturbance sources that can deteriorate image quality of our microscopes.
Significant efforts have been spent to isolate the TMP in a robust way via complex decoupling mechanisms, such as bellows, to reduce the impact of mechanical vibrations on the optical column.
Your assignment is about creating a better understanding of the complex transmission paths of the mechanical vibrations. This would allow us to further improve our ability to predict the impact of the TMP on the image quality, set realistic requirements for the TMP, and to further improve the isolation of the TMP.
Diversity in our teams is an important element to build an effective and challenging working environment. Integrity, Intensity, Innovation and Involvement are key characteristics that we expect of all that are part of our community.
Our Mission is to enable our customers to make the world healthier, cleaner and safer.
Thermo Fisher Scientific is an EEO/Affirmative Action Employer and does not discriminate on the basis of race, color, religion, sex, sexual orientation, gender identity, national origin, protected veteran status, disability or any other legally protected status.