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On the design of combined LNA-VCO-mixer for low-power and low-voltage CMOS receiver front-ends.

, , , , , and . Microelectron. J., (2016)

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A low-power 2.4-GHz combined LNA-VCO structure in 0.13-μm CMOS., , , and . NEWCAS, page 1-4. IEEE, (2013)On the use of body biasing to improve linearity in low LO-power CMOS active mixers., , and . Microelectron. J., 45 (8): 1026-1032 (2014)A 219-to-231 GHz Frequency-Multiplier-Based VCO With ~3% Peak DC-to-RF Efficiency in 65-nm CMOS., , , , and . IEEE J. Solid State Circuits, 53 (2): 389-403 (2018)Improving linearity of CMOS Gilbert-cell mixers using body biasing., , and . MWSCAS, page 61-64. IEEE, (2012)A Compact Dual-Core 26.1-to-29.9GHz Coupled-CMOS LC-VCO with Implicit Common-Mode Resonance and FoM of-191 dBc/Hz at 10MHz., , , , , , and . CICC, page 1-4. IEEE, (2020)On the Design of mm-Wave Self-Mixing-VCO Architecture for High Tuning-Range and Low Phase Noise., , , , , , , and . IEEE J. Solid State Circuits, 51 (5): 1210-1222 (2016)A 980μW 5.2dB-NF current-reused direct-conversion bluetooth-low-energy receiver in 40nm CMOS., , , , , and . CICC, page 1-4. IEEE, (2017)Low-Power Design Techniques for Rx RF Front-End., , , and . ICUWB, page 1-5. IEEE, (2015)A linearity enhancement technique and its application to CMOS wideband low-noise amplifiers., , and . ICECS, page 57-60. IEEE, (2012)A Transformer-Based Technique to Improve Tuning Range and Phase Noise of a 20-28GHz LCVCO and a 51-62GHz Self-Mixing LCVCO., , , , , , and . IEEE Trans. Circuits Syst. I Regul. Pap., 69 (6): 2351-2363 (2022)