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Harmonization of Space-Borne Infra-Red Sensors Measuring Sea Surface Temperature.

, , , , , and . Remote Sensing, 12 (6): 1048 (2020)

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Harmonization of Space-Borne Infra-Red Sensors Measuring Sea Surface Temperature., , , , , and . Remote Sensing, 12 (6): 1048 (2020)Low Cost MEMS Based Systems Augmenting Location and Navigation Performance in Consumer and Industrial Electronics Applications., , , and . PLANS, page 1439-1443. IEEE, (2020)Unravelling urban sustainability.: How the Flemish City Monitor acknowledges complexities., , and . Ecol. Informatics, (2013)Low phase noise millimeter-wave frequency sources using InP-based HBT MMIC technology., , , , , , , , , and . IEEE J. Solid State Circuits, 31 (10): 1419-1425 (1996)Ultrahigh-efficiency power amplifier for space radar applications., , , , , , , , , and 3 other author(s). IEEE J. Solid State Circuits, 37 (9): 1126-1134 (2002)A monolithically integrated HEMT-HBT low noise high linearity variable gain amplifier., , , , and . IEEE J. Solid State Circuits, 31 (5): 714-718 (1996)Gate metal interdiffusion induced degradation in space-qualified GaAs PHEMTs., , , , , , , , and . Microelectron. Reliab., 46 (1): 24-40 (2006)A 108-GHz InP-HBT monolithic push-push VCO with low phase noise and wide tuning bandwidth., , , , , , , and . IEEE J. Solid State Circuits, 34 (9): 1225-1232 (1999)A 44-GHz-high IP3 InP HBT MMIC amplifier for low DC power millimeter-wave receiver applications., , , , , , , , and . IEEE J. Solid State Circuits, 34 (9): 1188-1195 (1999)