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A 104-dB Dynamic Range Transimpedance-Based CMOS ASIC for Tuning Fork Microgyroscopes.

, , and . IEEE J. Solid State Circuits, 42 (8): 1790-1802 (2007)

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CMOS ASIC for MHz silicon BAW gyroscope., , , and . ISCAS, page 2458-2461. IEEE, (2008)A 2.5-V 14-bit ΣΔ CMOS SOI capacitive accelerometer., and . IEEE J. Solid State Circuits, 39 (12): 2467-2476 (2004)A Chopper-Stabilized Lateral-BJT-Input Interface in 0.6μm CMOS for Capacitive Accelerometers., , and . ISSCC, page 584-585. IEEE, (2008)Micromachined inertial sensors., , and . Proc. IEEE, 86 (8): 1640-1659 (1998)Hermetically-Encapsulated Unidirectional Accelerometer Contact Microphone for Wearable Applications., , , , and . IEEE SENSORS, page 1-4. IEEE, (2019)Fully Integrated High-Frequency MEMS and CMOS Inertial Measurement Systems: Taking a Journey from Silicon to Silicon Carbide., , , , and . PLANS, page 18-24. IEEE, (2023)A band-reject nested-PLL phase-noise reduction scheme for clock-cleaners., and . ISCAS, page 470-473. IEEE, (2011)A 104dB SNDR Transimpedance-based CMOS ASIC for Tuning Fork Microgyroscopes., , and . CICC, page 655-658. IEEE, (2006)Environmentally-Robust High-Performance Silicon TIMU Chip., , , and . PLANS, page 16-23. IEEE, (2020)Precision wearable accelerometer contact microphones for longitudinal monitoring of mechano-acoustic cardiopulmonary signals., , , , , and . npj Digit. Medicine, (2020)