A Low Noise 10-Bit 59.41dB SNR SAR ADC Using Chopper Comparator for Biomedical Applications
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-50818-9_3
Reference13 articles.
1. Fiedler, P., Mühle, R., Griebel, Pedrosa, P., Fonseca, C., Vaz, F., Zanow, F., Haueisen, J.: Contact pressure and flexibility of multipin dry EEG electrodes. IEEE Trans. Neural Syst. Rehabil. Eng. 26(4), 750–757 (2018)
2. Pham, X.T., Nguyen, N.T., Nguyen, V.-N., Lee, J.-W.: Area and power-efficient capacitively-coupled chopper instrumentation amplifiers in 28 nm CMOS for multi-channel biosensing applications. IEEE Access 9, 86773–86785 (2021)
3. Pham, X.T., Nguyen, V.-N, Kim J.-S., Lee, J.-W.: A 0.52 μW, 38 nV/√Hz chopper amplifier with a low-noise DC servo loop, an embedded ripple reduction loop, and a squeezed inverter stage. IEEE Trans. Circuits Syst. II: Express Briefs. 68(6), 1793–1797 (2021)
4. Murmann, B.: The race for the extra decibel: a brief review of current ADC performance trajectories. IEEE Solid-State Circuits Mag. 7(3), 58–66 (2015)
5. Lee, C., et al.: Dual-loop two-step ZQ calibration for dynamic voltage-frequency scaling in LPDDR4 SDRAM. IEEE J. Solid-State Circuits 53, 2906–2916 (2018)
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