Title :
Incremental Analog-to-Digital Converters for High-Resolution Energy-Efficient Sensor Interfaces
Author :
Chia-Hung Chen ; Tao He ; Yi Zhang ; Temes, Gabor C.
Author_Institution :
Sch. of EECS, Oregon State Univ., Corvallis, OR, USA
Abstract :
Integrated sensor interface circuits require power-efficient high-accuracy data converters. In many applications, the best choice is to use incremental A/D converters (IADCs) incorporating extended counting. In this paper, we discuss the operation and design of IADCs, including single-loop and MASH architectures. When using a direct-feed-forward modulator, the IADC accumulates the residue voltage, and it is easily to implement a hybrid scheme of extended counting. Several hybrid schemes are review and discussed. A multi-step extended counting scheme is discussed for high-resolution power-efficient conversion. Optimal trade-off between high order and high oversampling ratio is critical for energy efficiency. A two-step IADC is discussed, which extends the performance of an Nth-order IADC close to that of a (2N-1)th-order IADC, with reduced power. An implemented device uses the circuitry of a second-order IADC (IADC2) to achieve a performance close to that of a third-order IADC. The two-step operation can be extended to multi-step one, and the SQNR performance can be increased significantly. The two-step operation can be extended to multi-step operation, which can boost up the order of SQNR and further improve the energy efficiency drastically.
Keywords :
analogue-digital conversion; energy conservation; feedforward; iterative methods; modulators; sensors; IADC; MASH architecture; SQNR; data converter; direct-feed-forward modulator; energy efficiency; high-resolution energy-efficient sensor interface; incremental analog-to-digital converter; integrated sensor interface circuit; multistep extended counting scheme; oversampling ratio; Analog-digital conversion; Delta-sigma modulation; Multi-stage noise shaping; Quantization (signal); Time-domain analysis; Analog-to-digital converter (ADC); decimation filter; delta sigma $(DeltaSigma)$ ; extended-counting; incremental data converters; low power; measurement and instrumentation; multi-stage noise shaping (MASH); multi-step; sensor interface; time-domain analysis; two step;
Journal_Title :
Emerging and Selected Topics in Circuits and Systems, IEEE Journal on
DOI :
10.1109/JETCAS.2015.2502135