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Karlstad University is looking for a Postdoc in Nonlinear Power-Efficient Transmit Array Architecture in Gothenburg, Sweden. The role involves designing microwave components and conducting innovative research in collaboration with industry partners.
The ideal candidate has a doctoral degree in Electrical Engineering or related fields, expertise in wireless communications, and experience in microwave circuit design. This temporary full-time position offers a dynamic work environment and employee benefits.
Our goal is to focus on competence, knowledge and collaboration in order to play an important, demonstrable role in social development.
Current transmitters are limited in terms of their bandwidth, energy efficiency and linearity. In this research project you will work on the intersectional area of antenna design, circuit design and signal processing to investigate novel nonlinear multi‑antenna transmitters that overcome these limitations. By utilizing antenna mutual coupling for effective amplitude modulation – a shift from the traditional view that considers it detrimental – you will overcome existing limitations in frequency, efficiency, power, and linearity, thereby fostering sustainable digital transformation.
The position is hosted by the Microwave Electronics Laboratory at MC2 which focuses on research, innovation and education within the fields of future electronics, photonics, bio‑ and nanosystems. A close collaboration with Swedish and international partners within academia, industry and society enables scientific excellence and creates an innovative environment. In addition to the 200 researchers and PhD students, MC2 houses a 1000 square meter cleanroom for micro‑ and nanofabrication with the latest equipment.
You will work in a complementary team to investigate a new transmitter topology. Your responsibility will be to design microwave components such as power amplifiers and antenna arrays but also derive the theory on how to feed the individual amplifiers for the most energy‑efficient transmission in a certain direction. The goal is to develop a new scalable transmitter architecture that embraces mutual antenna coupling as a means of load modulation – allowing neighboring elements to efficiently create modulated signals similar to classical Chireix out‑phasing, but using the antenna aperture as a combining element. The position is hosted at the Department of Microtechnology and Nanoscience where you will have access to state‑of‑the‑art microwave measurement facilities at the Kollberg lab. The project is supported by collaboration agreements with semiconductor manufacturers that allow fabrication in CMOS, GaAs and GaN processes.
You are expected to be somewhat accustomed to teaching, and to demonstrate good potential within research and education.
Your major responsibilities as postdoctoral researcher are to independently conduct research and publish results, but also co‑supervise some Ph.D. students and prepare reports for funding agencies.
One doctoral student is already working in this area, and you are expected to take on some supervision responsibilities as well and efficiently work on the research question as a team.
The position is meritorious for future roles in academia, industry, or the public sector.
The position is a temporary full‑time employment for two years with the possibility of a one‑year extension. The position requires physical presence throughout the entire employment. A valid residence permit must be presented by the start date, otherwise the offer may be withdrawn.