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An area-efficient, standard-cell based on-chip NMOS and PMOS performance monitor for process variability compensation., , , , и . COOL Chips, стр. 1-3. IEEE Computer Society, (2012)A 7uW deep-sleep, ultra low-power WLAN baseband LSI for mobile applications., , , , , , , , , и 4 other автор(ы). COOL Chips, стр. 1-3. IEEE Computer Society, (2011)A 1024-QAM Capable WLAN Receiver with -56.3dB Image Rejection Ratio Using Self-Calibration Technique., , , , , , и . IEICE Trans. Electron., 101-C (7): 457-463 (2018)High-Throughput, Low-Power Software-Defined Radio Using Reconfigurable Processors., , , , , , , , и . IEEE Micro, 31 (6): 19-28 (2011)An 802.11ax 4 × 4 High-Efficiency WLAN AP Transceiver SoC Supporting 1024-QAM With Frequency-Dependent IQ Calibration and Integrated Interference Analyzer., , , , , , , , , и 18 other автор(ы). IEEE J. Solid State Circuits, 53 (12): 3688-3699 (2018)A Standard-Cell Based On-Chip NMOS and PMOS Performance Monitor for Process Variability Compensation., , , , и . IEICE Trans. Electron., 96-C (6): 894-902 (2013)A multimodal wireless baseband core using a coarse-grained dynamic reconfigurable processor., , , , , , , , и . COOL Chips, стр. 1-3. IEEE Computer Society, (2011)A 1024-QAM capable WLAN receiver with -56.3 dB image rejection ratio using self-calibration technique., , , , , , и . ISCAS, стр. 1-4. IEEE, (2017)An 802.11ax 4×4 spectrum-efficient WLAN AP transceiver SoC supporting 1024QAM with frequency-dependent IQ calibration and integrated interference analyzer., , , , , , , , , и 43 other автор(ы). ISSCC, стр. 442-444. IEEE, (2018)