Title :
An inverter-based 6-bit pipelined ADC with low power consumption
Author :
Piatak, Ivan ; Morozov, Dmitriy ; Hauer, Johann
Author_Institution :
St.-Petersburg State Polytech. Univ., St. Petersburg, Russia
Abstract :
A 6-bit pipelined analog-to-digital converter (ADC) with low power consumption has been designed. Inverter-based comparators have been used. To provide 6 bits output code 2 stages of pipeline with resolution of 3 bits have been used. In each stage digital-to-analog converter (DAC) and amplifier were implemented without operational amplifiers (Op-amps). Cascode current mirrors with weighted currents have been used to enhance sampling rate. Thus, the results of computer simulation show that ADC achieves 200 Ms/s sampling rate and 1.87 mW power consumption (at ±0,9 V supply voltage). Reported DNL and INL are 0.67 LSB and 1.05 LSB respectively, SNDR and SFDR are 29.7 dB and 33.5 dB respectively, ENOB is 4.64 bit. Inverter-based comparators with reduced influence of manufacturing process and temperature variations were designed. Test chip for 2 bit stage of pipelined ADC was implemented using 180 nm mixed-mode CMOS UMC technology. The stage occupies 0.0026 mm2. Sampling rate is 500 Ms/s, power consumption is approximately. 970 uW.
Keywords :
CMOS integrated circuits; analogue-digital conversion; comparators (circuits); invertors; low-power electronics; mixed analogue-digital integrated circuits; operational amplifiers; pipeline arithmetic; ENOB; SFDR; SNDR; analog-to-digital converter; cascode current mirrors; computer simulation; inverter-based comparators; inverter-based pipelined ADC; low power consumption; mixed-mode CMOS UMC technology; op-amps; operational amplifiers; power 1.87 mW; size 180 nm; voltage 0.9 V; weighted currents; word length 2 bit; word length 3 bit; word length 4.64 bit; word length 6 bit; CMOS integrated circuits; Computer simulation; Inverters; Mirrors; Power demand; Threshold voltage; Transistors; comparator; inverter; low power; pipelined ADC;
Conference_Titel :
EUROCON, 2013 IEEE
Conference_Location :
Zagreb
Print_ISBN :
978-1-4673-2230-0
DOI :
10.1109/EUROCON.2013.6625247