This Master thesis project provides a unique opportunity to contribute to the further development of an established magnetic micro-actuator with direct applications in cancer research. The project is a collaboration between a world leading industrial partner and the Forschungszentrum Jülich. The industrial training will expose the student to cleanroom microfabrication techniques used to manufacture complex MEMS devices. The second part will be to systematically analyze and optimize the performance of the magnetic micro-actuator by investigating the influence of geometry, alloy composition, crystallographic orientation, magnetization, magnetic anisotropy, and environment. By combining fabrication, experimental testing, and numerical modelling, you will develop both a fundamental understanding of magnetic micro-actuator physics and practical skills for MEMS device engineering.
We work on the very latest issues that impact our society and are offering you the chance to actively help in shaping the change! We support you in your work with:
In addition to exciting tasks and a collegial working environment, we offer you much more:
We welcome applications from people with diverse backgrounds, e.g. in terms of age, gender, disability, sexual orientation / identity, and social, ethnic and religious origin. A diverse and inclusive working environment with equal opportunities in which everyone can realize their potential is important to us.
The following links provide further information on diversity and equal opportunities: and on specific support options:
#J-18808-LjbffrVeröffentlichungsdatum:
11 Mär 2026Standort:
WorkFromHomeEinsatzort:
Jülich, GermanyTyp:
VollzeitArbeitsmodell:
Vor OrtKategorie:
Erfahrung:
2+ yearsArbeitsverhältnis:
Angestellt
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