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at the Division balances the system perspective with the circuit perspective. We design integrated circuits (IC:s) in advanced nanometer silicon (foremost CMOS) technologies, e.g. radio-frequency and millimeter
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- Markovian Processes - Network Based Localisation / Radio based connectivity - Adaptive bandwidth - Mesh networking - Wireless Sensor Networks - Edge Computing - Time Delayed Systems - Adaptive Queuing
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the Swedish national facility for Radio Astronomy. The observatory operates telescopes in Sweden, shares in the APEX telescope in Chile, and hosts the Nordic ALMA Regional Center (ARC). About the
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new concepts in device physics and applications in quantum metrology, topological quantum technology, thermoelectrics, quantum theory, radio astronomy, medical instrumentation, and spintronics. About
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- Control of Communication networks - Markovian Processes - Network Based Localisation / Radio based connectivity - Adaptive bandwidth - Mesh networking - Wireless Sensor Networks - Edge Computing - Time
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for radio transceivers, validated through measured and verified state-of-the-art performance. Results are expected to be disseminated through high-impact international journals and leading conferences in
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to investigate the feasibility and advantages of new design principles for transceiver frontend design, including data converter solutions. Expected outcome is a disruptive and novel approach to co-optimized radio
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and analysis of cellular and wireless communication systems and the sub-blocks therein. It concerns also the physical radio channel and the interaction between this, the antennas and the other parts
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circuits (chips) using advanced nanometer CMOS technologies, including digital signal processors, radio frequency and millimeter-wave front-ends, data converters, as well as larger systems that combine
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principles for transceiver frontend design, including data converter solutions. Expected outcome is a disruptive and novel approach to co-optimized radio transceiver design with measured and verified state