Title :
A 0.022mm2 98.5dB SNDR hybrid audio delta-sigma modulator with digital ELD compensation in 28nm CMOS
Author :
Tze-Chien Wang ; Yu-Hsin Lin ; Chun-Cheng Liu
Author_Institution :
MediaTek Inc., Hsinchu, Taiwan
Abstract :
An area-efficient hybrid ΔΣ modulator with a 6-bit shared asynchronous successive approximation register (ASAR) quantizer for audio application is proposed and demonstrated in a 28nm CMOS process. The modulator incorporates a 1st-order analog filter and a 1st-order digital filter, which enables high integration of digital signal processing at low power and small area. The 1st-order digital filter is developed to replace the second analog integrator and results in significant area reduction. Moreover, the proposed digital filter provides digital excess loop delay (ELD) compensation and eliminates the conventional analog ELD feedback DAC. In addition, R-DAC is adopted to alleviate the flicker noise issue in 28nm process. The measured result shows 98.5dB SNDR and 100.6dB DR within 24kHz bandwidth, while occupying 0.022mm2 and achieving a FoM of 343fJ/conv. (Power/(2BW·2ENOB)) or 173.8dB (DR+10*log(BW/Power)).
Keywords :
CMOS digital integrated circuits; asynchronous circuits; audio signal processing; compensation; delay filters; delta-sigma modulation; digital filters; flicker noise; quantisation (signal); 1st-order analog filter; 1st-order digital filter; ASAR quantizer; CMOS process; R-DAC; SNDR hybrid audio delta-sigma modulator; analog ELD feedback DAC; area reduction; area-efficient hybrid ΔΣ modulator; bandwidth 24 kHz; digital ELD compensation; digital excess loop delay compensation; digital signal processing; flicker noise; second analog integrator; shared asynchronous successive approximation register; size 28 nm; word length 6 bit; CMOS integrated circuits; Clocks; Delays; Digital filters; Modulation; Signal to noise ratio;
Conference_Titel :
Solid-State Circuits Conference (A-SSCC), 2014 IEEE Asian
Conference_Location :
KaoHsiung
Print_ISBN :
978-1-4799-4090-5
DOI :
10.1109/ASSCC.2014.7008924