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Design of a tunable multi-band differential LC VCO using 0.35 µm SiGe BiCMOS technology for multi-standard wireless communication systems.

, , , , and . Microelectron. J., 40 (6): 983-990 (2009)

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Design of a low-jitter wideband frequency synthesizer for 802.11ad wireless OFDM systems using a frequency sixtupler., , , , and . ISCAS, page 1-4. IEEE, (2017)A 15-50GHz Multiplexer Circuit in 130nm SiGe BiCMOS Technology for Ultra-Wide Frequency Ramps in FMCW Radar., , , and . NORCAS, page 1-4. IEEE, (2018)An Investigation of Phase Noise of a Fractional-N PLL in the Course of FMCW Chirp Generation., , , and . ISCAS, page 1-4. IEEE, (2018)Experimental Evaluation of Millimeter-Wave FMCW Radar Ranging Precision., , , , and . RWS, page 70-72. IEEE, (2021)Phase Noise Modeling for Integrated PLLs in FMCW Radar., , and . IEEE Trans. Circuits Syst. II Express Briefs, 60-II (3): 137-141 (2013)A Study of Phase Noise and Frequency Error of a Fractional-N PLL in the Course of FMCW Chirp Generation., , , and . IEEE Trans. Circuits Syst. I Regul. Pap., 66-I (5): 1670-1680 (2019)Low-power and low-noise programmable frequency dividers in a 130 nm SiGe BiCMOS technology., , , , and . NEWCAS, page 105-108. IEEE, (2017)A novel approach to fractional-N PLLs generating ultra-fast low-noise chirps for FMCW radar., , and . Integr., (2021)Design of a tunable multi-band differential LC VCO using 0.35 µm SiGe BiCMOS technology for multi-standard wireless communication systems., , , , and . Microelectron. J., 40 (6): 983-990 (2009)