Title :
A Low-Power CT Incremental 3rd Order /spl Sigma//spl Delta/ ADC for Biosensor Applications
Author :
Garcia, J. ; Rodriguez, Saul ; Rusu, Ana
Author_Institution :
Sch. of Inf. & Commun. Technol., KTH R. Inst. of Technol., Kista, Sweden
Abstract :
This paper proposes a 3rd order single-loop continuous-time incremental sigma-delta analogue-to-digital converter (ADC) for time-multiplexed signals. Incremental sigma-delta modulation is used to address medium to high resolution requirements of multi-channel applications, while a 3rd order continuous-time implementation is investigated as an alternative for low-power solutions. A prototype of the proposed modulator, running at 320 kHz, has been fabricated in a 0.15-μm CMOS technology, while the synchronization circuitry to allow incremental operation was built on-board. Measurement results show that the ADC achieves 65.3 dB peak SNR, 64 dB peak SNDR and 68.2 dB dynamic range over a 2 kHz bandwidth. The modulator´s power dissipation is 96 μW from a 1.6 V power supply. This translates into the best figure-of-merit when compared to recently published continuous-time alternatives, while being competitive with respect to state-of-the-art discrete-time counterparts.
Keywords :
CMOS integrated circuits; analogue-digital conversion; biosensors; low-power electronics; microfabrication; modulators; multiplexing; sigma-delta modulation; 3rd order single-loop continuous-time incremental sigma-delta analogue-to-digital converter; CMOS technology; biosensor applications; built on-board incremental operation; continuous-time alternatives; continuous-time implementation; dynamic range; figure-of-merit; high resolution requirements; low-power CT incremental 3rd order ΣΔ ADC; low-power solutions; modulator power dissipation; multichannel applications; power 96 muW; size 0.15 mum; state-of-the-art discrete-time counterparts; synchronization circuitry; time-multiplexed signals; voltage 1.6 V; Bandwidth; Capacitors; Jitter; Modulation; Noise; Quantization; Thyristors; A/D conversion; continuous-time; incremental $SigmaDelta$ ADC;
Journal_Title :
Circuits and Systems I: Regular Papers, IEEE Transactions on
DOI :
10.1109/TCSI.2012.2215753