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-frequency design of selected structures in electronic packaging (e.g. transmission lines, vias, solder balls) for high performance computing (HPC), radar sensing or wireless communication (e.g. 6G
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) for a selected application in the field of radar sensing or wireless communication Analysis of the advantages and disadvantages of different antenna configurations with regard to the selected application
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antennas (e.g. at 60 GHz, 140 GHz or 240 GHz) for a selected application in the field of radar sensing or wireless communication Analysis of the advantages and disadvantages of different antenna
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packaging (e.g. transmission lines, vias, solder balls) for high performance computing (HPC), radar sensing or wireless communication (e.g. 6G) applications Electromagnetic modeling, simulation and layout
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you will do Support the research of fundamentals and applications in the field of wireless communications and networks Contributions to exciting scientific projects, e.g: Support for the implementation
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-THz range for the next generation optical and wireless sensor and communication systems. You explore and evaluate novel devices for your design and collaborate across teams and organizations to find
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of photonic microsystems, related technologies including nanoelectronics and wireless communication solutions, we create - in flexible and interdisciplinary teams - technologies for innovative products in a
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of photonic microsystems, related technologies including nanoelectronics and wireless communication solutions, we create - in flexible and interdisciplinary teams - technologies for innovative products in a
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of photonic microsystems, related technologies including nanoelectronics and wireless communication solutions, we create - in flexible and interdisciplinary teams - technologies for innovative products in