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A multistandard, triple band wireless transceiver in a 130 nm CMOS technology with integrated PAs for IoT applications., , , , , , , , , и . RWS, стр. 88-90. IEEE, (2018)Advanced digital current prediction for current ripple reduction in DC-DC converters for photovoltaic applications., , , и . IECON, стр. 6968-6973. IEEE, (2013)A low complexity multi standard dual band CMOS polar transmitter for smart utility networks., , , , , , и . SoCC, стр. 426-430. IEEE, (2014)Design of a low power multistandard transceiver chain based on current-reuse VCO., , , , и . SoCC, стр. 393-396. IEEE, (2014)Compensating imperfections in RF-DAC based transmitters using LUT-based predistortion., , , и . SoCC, стр. 312-316. IEEE, (2014)A submodular boost converter ASIC for output energy improvements in photovoltaic applications., , , и . IECON, стр. 1944-1949. IEEE, (2014)Maximum power point tracker for small number of solar cells connected in series., , , , и . IECON, стр. 5732-5737. IEEE, (2012)12.4 A 7.5W-output-power 96%-efficiency capacitor-free single-inductor 4-channel all-digital integrated DC-DC LED driver in a 0.18μm technology., , , , , , и . ISSCC, стр. 1-3. IEEE, (2015)A digital centric transmitter architecture with arbitrary ratio baseband-to-LO upsampling., , , , и . ISCAS, стр. 954-957. IEEE, (2013)A Low-Power Low-Complexity Multi-Standard Digital Receiver for Joint Clock Recovery and Carrier Frequency Offset Calibration., , , и . IEEE Trans. Circuits Syst. I Regul. Pap., 61-I (12): 3478-3486 (2014)