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26.6 A programmable receiver front-end achieving >17dBm IIP3 at <1.25×BW frequency offset.

, , , and . ISSCC, page 446-447. IEEE, (2016)

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26.6 A programmable receiver front-end achieving >17dBm IIP3 at <1.25×BW frequency offset., , , and . ISSCC, page 446-447. IEEE, (2016)An LPTV Noise Cancellation Technique for a 0.9-V Filtering-by-Aliasing Receiver Front-End with >67-dB Stopband Rejection., , and . CICC, page 1-4. IEEE, (2019)Design and Analysis of a Programmable Receiver Front End With Time-Interleaved Baseband Analog-FIR Filtering., and . IEEE J. Solid State Circuits, 53 (11): 3197-3207 (2018)Time-varying circuit approaches for software defined and cognitive radio applications., , , and . ISOCC, page 155-156. IEEE, (2016)Errata for "Design and Analysis of a Programmable Receiver Front End Based on Baseband Analog-FIR Filtering Using an LPTV Resistor"., and . IEEE J. Solid State Circuits, 53 (9): 2733 (2018)24.6 A time-interleaved filtering-by-aliasing receiver front-end with >70dB suppression at <4× bandwidth frequency offset., and . ISSCC, page 418-419. IEEE, (2017)Frequency-domain analysis of a mixer-first receiver using conversion matrices., , , and . ISCAS, page 541-544. IEEE, (2015)Frequency-Domain Analysis of N-Path Filters Using Conversion Matrices., , , and . IEEE Trans. Circuits Syst. II Express Briefs, 63-II (1): 74-78 (2016)An Integrated Approach for Finding enRoute Best Alternate Route., and . ICEIS, page 226-234. (2002)Design and Analysis of a Programmable Receiver Front End Based on Baseband Analog-FIR Filtering Using an LPTV Resistor., and . IEEE J. Solid State Circuits, 53 (6): 1592-1606 (2018)