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A 28GHz Quadrature Up-conversion Transmitter in 65nm CMOS for 5G mmWave Radio.

, , , , and . ISOCC, page 31-32. IEEE, (2019)

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Session 2 overview: RF frequency synthesis techniques., and . ISSCC, page 34-35. IEEE, (2016)Session 23 overview: LO generation: RF subcommittee., , and . ISSCC, page 364-365. IEEE, (2018)On-the-fly speed and power scaling of an E-TSPC dual modulus prescaler using forward body bias in 0.25 μm CMOS., , and . ISCAS, page 1775-1778. IEEE, (2010)A 28GHz Direct Conversion Receiver in 65nm CMOS for 5G mmWave Radio., , , , and . ISOCC, page 29-30. IEEE, (2019)A Wide-Band CMOS LC VCO With Linearized Coarse Tuning Characteristics., , , and . IEEE Trans. Circuits Syst. II Express Briefs, 55-II (5): 399-403 (2008)Highly linear variable gain amplifiers with programmable temperature compensation for CDMA wireless applications., , , , and . ISCAS, page 467-470. IEEE, (2000)Design of a Low-Power Complex Baseband Filter with Tunable Gain and Bandwidth in 65nm CMOS., , , , , and . ISOCC, page 109-110. IEEE, (2018)Design of a 400-MHz 1-V 1.4-mW CMOS RF receiver for MICS applications., , , and . ISOCC, page 228-229. IEEE, (2017)A 28GHz Quadrature Up-conversion Transmitter in 65nm CMOS for 5G mmWave Radio., , , , and . ISOCC, page 31-32. IEEE, (2019)A 28 GHz 5-Bit Phase Shifter MMIC with 5.4° RMS Phase Error in GaN HEMT Process., , , and . ICEIC, page 1-4. IEEE, (2024)