• DocumentCode
    3605527
  • Title

    A Continuous-Time Sturdy-MASH \\Delta \\Sigma Modulator in 28 nm CMOS

  • Author

    Do-Yeon Yoon ; Ho, Stacy ; Hae-Seung Lee

  • Author_Institution
    Massachusetts Inst. of Technol., Cambridge, MA, USA
  • Volume
    50
  • Issue
    12
  • fYear
    2015
  • Firstpage
    2880
  • Lastpage
    2890
  • Abstract
    This paper presents a practical way to achieve both wide signal bandwidth and high dynamic range in a continuous- time (CT) delta-sigma modulator. Quantization noise is suppressed aggressively by increasing the effective order of the noise transfer function based on a sturdy multi-stage noise-shaping (SMASH) architecture. The proposed CT SMASH architecture has a much wider signal bandwidth which was limited in the discrete-time (DT) SMASH architecture due to the inherent sampling frequency limitation of DT implementation. Furthermore, the proposed CT SMASH architecture provides better quantization noise suppression by more completely canceling the quantization noise from the 1st-loop. The CT SMASH architecture is implemented with several efficient circuit techniques suitable for high operation speed. As a result, the prototype fabricated in 28 nm CMOS achieves DR of 85 dB, peak SNDR of 74.9 dB, SFDR of 89.3 dBc, and Schreier FOM of 172.9 dB over a 50 MHz bandwidth at a 1.8 GHz sampling frequency.
  • Keywords
    continuous time systems; delta-sigma modulation; quantisation (signal); transfer functions; continuous-time delta-sigma modulator; continuous-time sturdy-MASH modulator; frequency 1.8 GHz; high dynamic range; noise transfer function; quantization noise; sampling frequency; size 28 nm; sturdy multi-stage noise-shaping architecture; wide signal bandwidth; Bandwidth; Delays; Feedforward neural networks; Multi-stage noise shaping; Noise; Quantization (signal); Transfer functions; Analog-to-digital converter (ADC); analog delay; continuous-time (CT); delta-sigma; multi-stage noise-shaping;
  • fLanguage
    English
  • Journal_Title
    Solid-State Circuits, IEEE Journal of
  • Publisher
    ieee
  • ISSN
    0018-9200
  • Type

    jour

  • DOI
    10.1109/JSSC.2015.2466459
  • Filename
    7244336