Title :
Low Voltage, Low Power, Inverter-Based Switched-Capacitor Delta-Sigma Modulator
Author :
Chae, Youngcheol ; Han, Gunhee
Author_Institution :
Dept. of Electr. & Electron. Eng., Yonsei Univ., Seoul
Abstract :
An operational transconductance amplifier (OTA) is a major building block and consumes most of the power in switched-capacitor (SC) circuits, but it is difficult to design low-voltage OTAs in scaled CMOS technologies. Instead of using an OTA, this paper proposes an inverter-based SC circuit and its application to low-voltage, low-power delta-sigma (DeltaSigma) modulators. Detailed analysis and design optimizations are also provided. Three inverter-based DeltaSigma modulators are implemented for an implantable pacemaker, a CMOS image sensor, and an audio codec. The modulator-I for an implantable pacemaker achieves 65-dB peak-SNDR for 120-Hz bandwidth consuming 0.73 muW with 1.5 V supply. The modulator-II for a CMOS image sensor implemented with 320-channel parallel ADC architecture achieves 63-dB peak-SNDR for 8-kHz bandwidth consuming 5.6 muW for each channel with 1.2-V supply. The modulator-III for an audio codec achieves 81-dB peak-SNDR with 20-kHz bandwidth consuming 36 muW with 0.7-V supply. The prototype DeltaSigma modulators achieved high power efficiency maintaining sufficient performances for practical applications.
Keywords :
CMOS image sensors; codecs; delta-sigma modulation; low-power electronics; operational amplifiers; optimisation; pacemakers; switched capacitor networks; CMOS image sensor; audio codec; design optimizations; frequency 120 Hz; frequency 20 kHz; frequency 8 kHz; implantable pacemaker; inverter-based switched-capacitor delta-sigma modulator; noise figure 63 dB; noise figure 65 dB; noise figure 81 dB; operational transconductance amplifier; power 0.73 muW; power 36 muW; power 5.6 muW; scaled CMOS technology; switched-capacitor circuits; voltage 0.7 V; voltage 1.2 V; voltage 1.5 V; Bandwidth; CMOS image sensors; CMOS technology; Circuits; Codecs; Delta modulation; Low voltage; Modulation coding; Pacemakers; Transconductance; Delta-sigma modulator; inverter-based switched-capacitor circuit; operational transconductance amplifier; scaled CMOS technology; switched-capacitor circuit;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2008.2010973