Qualcomm

Master's Thesis

As part of my Master's thesis at Qualcomm in Munich, I worked with Kimmo Kokkonen to develop a full-field interferometric system for detecting vibrations in MEMS components. The system combines software-driven stabilization with a custom user interface that provides live measurement feedback. I implemented both MATLAB and Python backends for coordinated communication between connected devices, using different architectural approaches while serving the same React-based frontend. The frontend uses Plotly.js for interactive data visualization. While MATLAB is not my prefered coding strategy, this work strengthened my understanding of MATLAB application architecture and gave me my first practical experience building an API-driven backend with FastAPI.

Rohde & Schwarz

Internship

During a three-month internship at Rohde & Schwarz, I gained hands-on experience with modern telecommunications technologies through two distinct projects supervised by Meik Kottkamp and Adam Tankielun. In the first project, I worked with antenna simulations and channel-capacity estimation, developing a stronger understanding of MIMO systems and 3GPP standardization practices. In the second, I developed a proof-of-concept application for the R&S SMW200A vector signal generator. Using Flask for the first time, I expanded my full-stack development skills while deepening my knowledge of vector signal generation, digital modulation, and wireless communication systems.

Lab Class Nano Technology

Exploration of nanoscale devices and measurement techniques

The nanotechnology lab class at my university focused on equipping students with practical knowledge and skills in nanoscale research methods. Key topics included the fabrication of thin films through techniques such as sputtering and evaporation, which were thoroughly explored. Additionally, advanced measurement methods like atomic force microscopy and ellipsometry were rigorously studied and applied in practice. The course also provided students with the opportunity to observe quantum mechanical phenomena in semiconductor heterostructures. All experiments conducted during the course were meticulously documented in detailed lab reports.

Lab Class Micro Technology

Manufacturing a Surface Acoustic Wave (SAW) Filter

The microtechnology lab class at my university aimed at educating the students in the various fabrication methods of microelectronic devices and concluded in the successfull fabrication of SAW-filters. The various stages of this fabrication process have been documented in detailed lab reports.

Infineon Technologies

Internship and Bachelor's Thesis

As part of my mandatory university internship I was fortunate enough to work along side Alexander Schade in the Electromagnetic-Compatibility (EMC) department at Infineon. The focus of my work there was the analysis of parasitic effects in an IC. After my successfull completion of a half year internship, I was given the opportunity there to conduct research for my Bachelor's thesis which dealt with the analysis of substrate impedances for a particular IC-technology.

Project related content:

Simulation Project

Reaction Kinetic Modeling

As part of a project study I have been given the task to simulate the kinetcs of methanol reformation reaction process used for a hydrogen powered fuel cell. For this project, I used the python library "Cantera".

Project related content: