Title :
A 0.1 mm
, Wide Bandwidth Continuous-Time
ADC Based on a Time Encoding Qu
Author :
Prefasi, Enrique ; Hernandez, Luis ; Paton, Susana ; Wiesbauer, Andreas ; Gaggl, Richard ; Pun, Ernesto
Author_Institution :
Electron. Technol. Dept., Carlos III Univ., Leganes, Spain
Abstract :
The ADC shown in this paper uses an innovative sigma-delta (SigmaDelta) architecture that replaces the flash quantizer and mismatch corrected DAC of a multibit continuous time (CT) modulator by a time domain encoder similar to a PWM modulator to reduce the effective ADC area. The modulator achieves the resolution of a multibit design using single bit circuitry by concentrating most of the quantization error energy around a single frequency, which is afterwards removed, seizing the zeros of a sinc decimation filter. The non flat error spectrum is accomplished by use of two filter loops, one of which is made to operate in a self-oscillating mode. An experimental CT-SigmaDelta ADC prototype has been fabricated in 0.13 mum CMOS which implements a third order modulator with two operating modes. Measurements show an effective number of bits (ENOB) of 10 bits and 12 bits in a signal bandwidth of 17 MHz and 6.4 MHz, respectively, and a power-efficient figure of merit (FoM = Pwr/2 middot BW middot 2ENOB) of 0.48 pJ/conversion at 1.5 V supply. The active area of the ADC is 0.105 mm2.
Keywords :
CMOS digital integrated circuits; sigma-delta modulation; CMOS; PWM modulator; bandwidth 17 MHz; bandwidth 6.4 MHz; effective number of bits; filter loops; flash quantizer; multibit continuous time modulator; non flat error spectrum; quantization error energy; self-oscillating mode; sigma-delta architecture; single bit circuitry; size 0.13 mum; time encoding quantizer; voltage 1.5 V; wide bandwidth continuous-time SigmaDelta ADC; Bandwidth; Circuits; Computed tomography; Delta-sigma modulation; Energy resolution; Filters; Frequency; Prototypes; Pulse width modulation; Quantization; Analog-to-digital conversion; continuous-time filters; low-pass filters; low-voltage design; pulse width modulation; sigma-delta modulation; time encoding quantizer;
Journal_Title :
Solid-State Circuits, IEEE Journal of
DOI :
10.1109/JSSC.2009.2027550