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Design considerations on CMOS limiting amplifiers for wearable biomedical systems.

, , , and . ECCTD, page 294-297. IEEE, (2011)

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Continuous-time Common-mode Feedback Networks for Fully-differential Amplifiers: a Comparative Study.. ISCAS, page 1267-1270. IEEE, (1993)Wideband low-power current-feedback instrumentation amplifiers for bioelectrical signals., , , and . SSD, page 1-5. IEEE, (2012)VERDI: an acoustically programmable and adjustable CMOS mixed-mode signal processor for hearing aid applications., , , , , , , and . IEEE J. Solid State Circuits, 31 (5): 634-645 (1996)1-V rail-to-rail operational amplifiers in standard CMOS technology., , , , and . IEEE J. Solid State Circuits, 35 (1): 33-44 (2000)1.8-V second-order ΣΔ modulator in 0.18-μm CMOS technology., , , , and . ECCTD, page 197-200. IEEE, (2005)Comparative study of CMOS lock-in amplifiers for wideband bioelectrical impedance measurements., , and . ICECS, page 416-419. IEEE, (2016)A noise-shaping SC sine-wave oscillator., , , and . ISCAS, page 2849-2852. IEEE, (2008)Design of robust pseudo-resistors with optimized frequency response., , , and . ECCTD, page 1-4. IEEE, (2017)Compact low-voltage rail-to-rail bulk-driven CMOS opamp for scaled technologies., , , , and . ECCTD, page 263-266. IEEE, (2009)Low-Gm CMOS Transconductors with Wide Tuning Range for Bioimpedance Spectroscopy., , , , , and . SMACD, page 1-4. IEEE, (2023)