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A CMOS 210-GHz Fundamental Transceiver With OOK Modulation.

, , , , , and . IEEE J. Solid State Circuits, 49 (3): 564-580 (2014)

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Polar Quantizer for Wireless Receivers: Theory, Analysis, and CMOS Implementation., , , and . IEEE Trans. Circuits Syst. I Regul. Pap., 61-I (3): 877-887 (2014)A CMOS 210-GHz Fundamental Transceiver With OOK Modulation., , , , , and . IEEE J. Solid State Circuits, 49 (3): 564-580 (2014)A 210GHz fully integrated differential transceiver with fundamental-frequency VCO in 32nm SOI CMOS., , , , , and . ISSCC, page 136-137. IEEE, (2013)19.1 A fundamental-frequency 114GHz circular-polarized radiating element with 14dBm EIRP, -99.3dBc/Hz phase-noise at 1MHz offset and 3.7% peak efficiency., , and . ISSCC, page 322-323. IEEE, (2017)A CMOS Two-Element 170-GHz Fundamental-Frequency Transmitter With Direct RF-8PSK Modulation., , and . IEEE J. Solid State Circuits, 55 (2): 282-297 (2020)A high-power multi-port 0.46THz radiation source in nano-scale silicon technology using fundamental-frequency oscillation beyond fMAX of transistors., , and . NANOCOM, page 26:1-26:6. ACM, (2017)Analysis and Design of a Millimeter-Wave Cavity-Backed Circularly Polarized Radiator Based on Fundamental Theory of Multi-Port Oscillators., , and . IEEE J. Solid State Circuits, 52 (12): 3293-3311 (2017)An SQNR Improvement Technique Based on Magnitude Segmentation for Polar Quantizers., , and . IEEE Trans. Commun., 62 (11): 3835-3841 (2014)Energy Efficient 100+ GHz Transceivers Enabling Beyond-5G Wireless Communications., , , and . IEEE Wirel. Commun., 28 (1): 144-151 (2021)