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Design methodology for low power RF LNA based on the figure of merit and the inversion coefficient.

, , , , and . ICECS, page 478-481. IEEE, (2014)

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Low-Power Design Techniques for Rx RF Front-End., , , and . ICUWB, page 1-5. IEEE, (2015)COTS-based modules for far-field radio frequency energy harvesting at 900MHz and 2.4GHz., , , and . NEWCAS, page 1-4. IEEE, (2013)Current reuse CMOS LNA for UWB applications., , and . ESSCIRC, page 294-297. IEEE, (2008)A Novel LNA Topology with Transformer-based Input Integrated Matching and its 60-GHz Millimeter-wave CMOS 65-nm Design., , , , , , and . ICECS, page 1340-1343. IEEE, (2007)Windowed phase comparator for an 80Gbit/s CDR., , , , , , and . ICECS, page 185-188. IEEE, (2012)Reconfigurable Ultra Low Power LNA for 2.4GHz Wireless Sensor Networks., , , , and . ICECS, page 74-77. IEEE, (2010)VHDL-AMS model of an injection locked VCO., , , , , , and . NEWCAS, page 25-28. IEEE, (2012)A Comprehensive Output Conductance Model Valid in All Regions of Inversion., , , and . ISCAS, page 1-5. IEEE, (2024)Narrowband Filtering Low-Noise Amplifier for FMCW Automotive Radar Front-Ends., , , , , and . NewCAS, page 303-307. IEEE, (2024)Design of a 0.9 V 2.45 GHz Self-Testable and Reliability-Enhanced CMOS LNA., , , , and . IEEE J. Solid State Circuits, 43 (5): 1187-1194 (2008)