A 72.9-dB SNDR 20-MHz BW 2-2 Discrete-Time Resolution-Enhanced Sturdy MASH Delta-Sigma Modulator Using Source-Follower-Based Integrators

  • Kwak, Yong-Sik; 
  • Cho, Kang-Il; 
  • Kim, Ho-Jin; 
  • Lee, Seung-Hoon; 
  • Ahn, Gil-Cho
Citations

WEB OF SCIENCE

24
Citations

SCOPUS

28

초록

This paper presents a 2-2 discrete-time (DT) resolution-enhanced sturdy multi-stage noise-shaping (SMASH) delta-sigma modulator. It uses source-follower-based integrators to efficiently increase the operating speed of a DT modulator. A SMASH topology that consists of two second-order low-distortion feed-forward stages provides an enhanced linearity by reducing the sensitivity to the non-ideal gain and distortion of the proposed integrator. The resolution of the proposed SMASH architecture is improved by eliminating the first-stage quantization noise from the output. In order to reduce power and area of the modulator, one 5-bit feedback digital-to-analog converter is shared for both stages, and the number of comparators for a 4-bit quantizer in the second stage is reduced by scaling the signal swing range. The prototype delta-sigma modulator fabricated in a 65-nm CMOS process achieves a 75.8-dB dynamic range and 72.9-dB signal-to-noise-and-distortion ratio (SNDR) in a 20-MHz bandwidth. From a 1.2-V supply voltage operating at a 500-MHz clock frequency, the total power consumption of the prototype modulator is 20.4 mW, corresponding to a Walden and Schreier figure of merits of 141.3 fJ/conversion-step and 165.7 dB, respectively.

키워드

Analog-to-digital converter (ADC); delta-sigma modulator; discrete-time (DT); multi-stage noise shaping (MASH); source follower; sturdy MASH (SMASH); ADC; BANDWIDTH; CMOS; DESIGN; DELAY
제목
A 72.9-dB SNDR 20-MHz BW 2-2 Discrete-Time Resolution-Enhanced Sturdy MASH Delta-Sigma Modulator Using Source-Follower-Based Integrators
저자
Kwak, Yong-Sik; Cho, Kang-Il; Kim, Ho-Jin; Lee, Seung-Hoon; Ahn, Gil-Cho
DOI
10.1109/JSSC.2018.2859401
발행일
2018-10
유형
Article; Proceedings Paper
저널명
IEEE Journal of Solid-State Circuits
권
53
호
10
페이지
2772 ~ 2782