Title :
On Continuous-Time Incremental
ADCs With Extended Range
Author :
Garcia, Julian ; Rodriguez, Saul ; Rusu, Ana
Author_Institution :
Sch. of Inf. & Commun. Technol., KTH R. Inst. of Technol., Kista, Sweden
Abstract :
In this paper, the use of continuous-time implementation in extended-range (ER) incremental sigma-delta analog-to-digital converters is analyzed in order to explore a possible solution to low-power multichannel applications. The operation principle, possible loop filter topologies, and critical issues are considered using a general approach. It is demonstrated that, in order to fully benefit from ER, careful attention has to be paid to the analog-digital transfer function mismatches. A third-order single-bit topology validates the theoretical analysis. Its performance is evaluated while the impact of key circuit nonidealities is quantified through behavioral-level simulations. It is shown that, by applying analog-digital mismatch compensation in the digital domain, it is possible to relax the amplifiers´ finite gain-bandwidth product and finite dc gain requirements, thus allowing a power-conscious alternative.
Keywords :
amplifiers; analogue-digital conversion; delta-sigma modulation; amplifier finite gain-bandwidth product; analog-digital mismatch compensation; analog-digital transfer function mismatch; behavioral-level simulation; circuit nonideality; continuous-time incremental ΣΔ ADC; digital domain; extended-range incremental sigma-delta analog-digital converter; finite dc gain requirement; loop filter topology; low-power multichannel application; power-conscious alternative; third-order single-bit topology; Modulation; Noise cancellation; Quantization; Topology; Transfer functions; A/D conversion; continuous time (CT); extended range (ER); incremental sigma-delta ($SigmaDelta$) ( $hbox{I}SigmaDelta$) analog-to-digital converter (ADC);
Journal_Title :
Instrumentation and Measurement, IEEE Transactions on
DOI :
10.1109/TIM.2012.2212597