Title :
An equalization-based adaptive digital background calibration technique for successive approximation analog-to-digital converters
Author :
Liu, Wenbo ; Chiu, Yun
Author_Institution :
Univ. of Illinois at Urbana-Champaign, Urbana
Abstract :
This paper presents an equalization-based digital background error-correction technique for successive approximation analog-to-digital converters (SA-ADCs). Computer simulation indicates that large differential and integral nonlinearities resulting from component errors including capacitor mismatch, comparator offset, and switch-induced offset can be corrected in the digital domain by an FIR adaptive filter, which essentially performs a linear equalization (LE) to align the digital codes of the SA-ADC to those of a slow-but-accurate reference ADC. In return, the size of the sampling capacitors can be scaled down to the kT/C limit without matching concerns. For SA-ADCs with resolutions of 10 bits and above, a large power saving is envisioned using the proposed low-cost, power-efficient digital calibration technique. The treatment improves the scalability and power efficiency of SA-ADCs in deeply scaled CMOS technology.
Keywords :
FIR filters; adaptive filters; analogue-digital conversion; equalisers; FIR adaptive filter; SA-ADC; capacitor mismatch; comparator offset; equalization-based adaptive digital background calibration; integral nonlinearities; linear equalization; power-efficient digital calibration technique; slow-but-accurate reference ADC; successive approximation analog-to-digital converters; switch-induced offset; Adaptive equalizers; Adaptive filters; Analog-digital conversion; CMOS technology; Calibration; Capacitors; Computer errors; Computer simulation; Error correction codes; Finite impulse response filter;
Conference_Titel :
ASIC, 2007. ASICON '07. 7th International Conference on
Conference_Location :
Guilin
Print_ISBN :
978-1-4244-1132-0
Electronic_ISBN :
978-1-4244-1132-0
DOI :
10.1109/ICASIC.2007.4415624