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A Wireless Bio-MEMS Sensor for C-Reactive Protein Detection Based on Nanomechanics.

, , , , , , , , , , , and . ISSCC, page 2298-2307. IEEE, (2006)

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A W-band down-conversion mixer in 90 nm CMOS with excellent matching and port-to-port isolation for automotive radars., and . ISWCS, page 54-58. IEEE, (2014)A low noise figure and high conversion gain down-conversion mixer for 94 GHz image radar sensors in 90 nm CMOS., , , , and . RWS, page 107-110. IEEE, (2016)A low power and high conversion gain 94 GHz up-conversion mixer with excellent I/O matching and LO-RF isolation in 90 nm CMOS., , , , , and . RWS, page 183-186. IEEE, (2016)Design and Analysis of a Low-Power 60~113 GHz CMOS Down-Conversion Mixer with High Conversion Gain., and . RWS, page 243-246. IEEE, (2020)A 9.96 mW 3.24±0.5 dB NF 1.9∼22.5 GHz wideband low-noise amplifier using 90 nm CMOS technology., , and . RWS, page 208-210. IEEE, (2014)A 2.87±0.19dB NF 3.1∼10.6GHz ultra-wideband low-noise amplifier using 0.18µm CMOS technology., , , and . RWS, page 227-230. IEEE, (2012)A low-power 3.2∼9.7GHz ultra-wideband low noise amplifier with excellent stop-band rejection using 0.18µm CMOS technology., , , and . RWS, page 199-202. IEEE, (2012)Divide-by-4 Injection-Locked Frequency Divider Using Dual Linear Mixer Technique., , and . RWS, page 76-79. IEEE, (2023)A 90-96 GHz CMOS down-conversion mixer with high conversion gain and excellent LO-RF isolation., , , , , and . RWS, page 162-165. IEEE, (2017)Design and Analysis of a 94 GHz CMOS Power Amplifier Using Miniature Current Combiner., and . RWS, page 5-8. IEEE, (2020)