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concerning the design of particle accelerators for research, medical and industrial applications, - participation in research tasks carried out in the ZNS concerning high-power RF systems; - participation in
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for research in wireless communication, microwave engineering, and applied AI. Our research combines strong theoretical expertise with unique experimental facilities, including advanced RF laboratories
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communication, microwave engineering, and applied AI. Our research combines strong theoretical expertise with unique experimental facilities, including advanced RF laboratories and high-performance computing
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related fields. 10 years or more experiences in RF / Microwave engineering. Proficient in large scale electromagnetic simulations. Strong background in microwave instrumentation, hardware development and
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. Wegner, M. Platino, O. Sander, S. Kempf and M. Weber, “Microwave SQUID Multiplexer Readout Performance Using a Direct-RF RFSoC-Based Software-Defined Radio,” arXiv:2509.23569, 2025
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discipline ? High level skill in RF/microwave signal analysis and system design ? Experience in phase locked loops ? Proficiency in FPGA with Xilinx ZynQ ? Proficiency in Altium Designer ? Familiarity with
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to apply Website https://www.imec-int.com/en/work-at-imec/job-opportunities/rf-ic-designer-em-ba… Requirements Research FieldEngineering » Electronic engineeringEducation LevelMaster Degree or equivalent
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amplification and flexible spectrum use. The research combines RF circuit design, signal processing, and system-level analysis, and includes both theoretical studies and experimental validation. Who we
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-frequency (RF) references with exceptional accuracy and coherence. They are important because they enable a wide range of applications that rely on phase-stable multiwavelength light, including precision
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://ece.osu.edu ) at The Ohio State University invites applications for a tenured Professor in sensor systems. The research area is broadly defined to apply to different areas including, but not limited to RF