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A High Frequency CMRR improvement technique for Differential Amplifiers in 45nm CMOS., , , , и . ICCCNT, стр. 1-5. IEEE, (2019)Dynamic Averager Based Sub-1V Bandgap Voltage Reference., , и . MWSCAS, стр. 890-894. IEEE, (2023)A High-Sensitivity and Low-Power Circuit for the Measurement of Abnormal Blood Cell Levels., , , , , и . J. Circuits Syst. Comput., 29 (4): 2050061:1-2050061:14 (2020)A Novel Sub-1V Bandgap Reference with 17.1 ppm/0C Temperature coefficient in 28nm CMOS., , , и . ISCAS, стр. 1914-1917. IEEE, (2022)A Single BJT 10.2 ppm/°C Bandgap Reference in 45nm CMOS Technology., , , и . ICCCNT, стр. 1-4. IEEE, (2020)8.7 A 112Gb/s ADC-DSP-Based PAM-4 Transceiver for Long-Reach Applications with >40dB Channel Loss in 7nm FinFET., , , , , , , , , и 18 other автор(ы). ISSCC, стр. 138-140. IEEE, (2021)High Performance Circuit Techniques for Nueral Front-End Design in 65nm CMOS., , , , , и . ICCCNT, стр. 1-4. IEEE, (2018)A 82μW Mixed-Mode sub-1V Bandgap reference with 25 ppm/°C Temperature Co-efficient with Simultaneous PTAT Generation., , и . VDAT, стр. 1-4. IEEE, (2021)High Speed Clock and Data Recovery Circuit with Novel Jitter Reduction Technique., , , , , и . VLSI Design, стр. 300-305. IEEE Computer Society, (2010)A Positive Feedback-Based Op-Amp Gain Enhancement Technique for High-Precision Applications., , и . J. Circuits Syst. Comput., 29 (14): 2050220:1-2050220:12 (2020)