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Are you our next PhD candidate eager to build fast and multi-scale electromagnetic techniques for analyzing state-of-the-art RF applications and systems? Are you interested in making RF system
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electromagnetic techniques for analyzing state-of-the-art RF applications and systems? Are you interested in making RF system design possible in which even the small details can be readily incorporated
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Research Officer with expertise in Radio Frequency (RF) systems, signal processing, and electromagnetic sensing and countermeasure technologies, with a focus on Counter-Unmanned Aircraft System (C-UAS
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generation hybrid RF and optical wireless communication networks. You will be working within the newly granted The Netherlands Growth Fund 6G-FNS (Future Networks and Services). Information Future wireless
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Frequency Lattices and RF-Controlled Comb Dynamics Our group investigates new ways of controlling and confining electromagnetic waves through time as an active design dimension. Rather than engineering wave
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and life sciences. The EuXFEL High Duty-Cycle (HDC) upgrade will enable operation with long RF pulses (duty cycle above 10%) up to continuous wave (100% duty cycle), effectively increasing the number
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measurement of electronic circuits for radio-frequency applications, operating at units of GHz or above. It requires a high level of theoretical knowledge and practical experience in RF Electronics. Selection
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of wireless communication systems, including 6G networks and Industrial Wireless technologies, will require highly efficient, intelligent, and energy-aware radio frequency (RF) hardware capable
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profile for PhD 1: An MSc degree in electrical engineering or a closely related field, with strong experimental academic results. A solid foundation in analogue electronics, RF or microwave engineering
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replacing optical cable connections, current RF wireless infrastructure struggles with spectrum congestion, high power demands, and limited bandwidth. Optical Wireless Communication (OWC) is emerging as a