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Details

Autor(en) / Beteiligte
Titel
A 0.5-mΩ/√Hz Dry-Electrode Bioimpedance Interface With Current Mismatch Cancellation and Input Impedance of 100 MΩ at 50 kHz
Ist Teil von
  • IEEE journal of solid-state circuits, 2023-06, Vol.58 (6), p.1735-1745
Ort / Verlag
New York: IEEE
Erscheinungsjahr
2023
Link zum Volltext
Quelle
IEEE Xplore
Beschreibungen/Notizen
  • This article describes a high-input-impedance, low-noise bioimpedance (BioZ) sensor interface IC for small-area dry-electrode cardio-respiratory signals monitoring. To facilitate high-precision BioZ sensing with high-impedance dry electrodes, the IC utilizes three key techniques as follows: 1) a bias control loop (BCL) to eliminate the excitation current mismatch, reducing the voltage fluctuation on high-impedance input; 2) a quiet-chopping current feedback instrumentation amplifier (QC-CFIA) to mitigate the input-signal-dependent noise; and 3) a full pre-charge (FPC) technique to cancel the input parasitic capacitance for impedance boosting. Manufactured in a 0.18-<inline-formula> <tex-math notation="LaTeX">\mu \text{m} </tex-math></inline-formula> CMOS process, the BioZ prototype IC occupies an area of 0.4 mm2 while consuming 15.8- and 14.4-128.4-<inline-formula> <tex-math notation="LaTeX">\mu \text{W} </tex-math></inline-formula> current, respectively, from the amplifier and the excitation current generator (CG). With these proposed techniques, this IC achieves a high input impedance of 100 <inline-formula> <tex-math notation="LaTeX">\text{M}\Omega </tex-math></inline-formula> at 50 kHz, 0.5-<inline-formula> <tex-math notation="LaTeX">\text{m}\Omega /\surd </tex-math></inline-formula>Hz sensitivity at 1 Hz, and a 106-dB signal-to-noise ratio (SNR). A gel-free respiration and impedance cardiography (ICG) recording has been successfully demonstrated on the human body with four 0.45-cm2 dry electrodes.

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