A Tunable CMOS Sine Waveform Generator for On-Chip Impedance Spectroscopy
Erick Iván Barros de la Cruz, Juan David Salazar Cardona, Maria Teresa Sanz-Pascual, Nicolás Medrano, Belén CalvoThis paper presents a low-power fully integrated sine signal generator for on-chip bioimpedance spectroscopy applications. The circuit is based on a relaxation oscillator, which generates a triangular signal, followed by a sixth-order Gm-C bandpass filter (BPF) that linearizes the waveform. Both blocks, designed in a 0.18 μm CMOS process with 1.8 V supply, make use of a current division technique to generate low-frequency signals without requiring high-valued passive components. The relaxation oscillator features an extended frequency tuning range from 300 Hz to 300 kHz, controlled via a tuning current and a digital capacitor bank. The sine output waveform spans from 1 kHz to 50 kHz, and exhibits a −48.8 dB total harmonic distortion at 10 kHz with 18 mV amplitude. The overall system area is 0.7 mm2 and the power consumption is lower than 30 μW.