> Markdown version of [/jobs/ext/3516891-bachelor-thesis-artificial-intelligence-in-microcontroller-iv](https://www.wearedevelopers.com/jobs/ext/3516891-bachelor-thesis-artificial-intelligence-in-microcontroller-iv). Every page supports `.md` or `Accept: text/markdown`. Links point to the HTML versions so they work for humans too. Agent guide: [/agents.md](https://www.wearedevelopers.com/agents.md). --- # Bachelor Thesis - Artificial Intelligence in Microcontroller iv) - **Company:** Infineon - **Location:** Villach, Austria - **Salary:** €35,060.0 - **Contract:** Temporary contract - **Skills:** Artificial Intelligence, Algorithm Design, Software Code Optimization, Systems Architecture, PIC Microcontroller, Information Technology, Data Pipelines - **Published:** October 2, 2026 - **Apply:** https://jobroom.ams.or.at/jobsuche/FreieSucheVollanzeige.jsp?pk=4207790_21_a7d00dcc-bf32-4565-a0a2-583f8d6 ## About the Role * Education: Pursuing a Bachelor's degree (at least in the 5th semester) in a relevant technical field such as Electrical Engineering, Physics, Information Technology, or similar field * Language Skills: Fluency in English, with German as a plus * Problem-Solving: Ability to recognize problems, evaluate options and take action * Teamwork: Ability to work effectively in a multidisciplinary team environment, collaborating with others to achieve common goals This position is subject to the collective agreement for workers and employees in the electrical and electronics industry (full-time), employment group B for bachelor students (https://www.feei.at/wp-content/uploads/2024/04/minimum-salaries-white-collar-workers-2025.pdf). Please attach the following documents (German or English) to your application ## Description * System Architecture: Define end-to-end system architecture and requirements * Data Pipeline Development: Build data pipelines and simulation/benchmark frameworks with suitable metrics * Algorithm Development: Develop and train algorithms for event/data-efficient inference * Model Optimization: Map and optimize models for edge hardware through techniques like quantization and pruning * Real-time Integration: Implement real-time integration of sensing, compute, and comms with robustness features * Validation and Benchmarking: Validate prototypes and run power, latency, and accuracy benchmarking across scenarios This thesis has to be written in cooperation with a university.