4.7 Article

A Low-Power Gateable Vernier Ring Oscillator Time-to-Digital Converter for Biomedical Imaging Applications

期刊

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/TBCAS.2015.2434957

关键词

Biomedical imaging; positron emission tomography (PET); time-of-flight (ToF); time-to-digital converter (TDC); Vernier gated-ring oscillator (VGRO)

资金

  1. Canada Research Chair program
  2. NSERC of Canada
  3. CFI
  4. MEDI
  5. FedDev Ontario
  6. NSERC ResEau strategic network
  7. NCE IC-IMPACTS
  8. CMC Microsystems

向作者/读者索取更多资源

In this paper, a high resolution, high precision and ultra-low power consumption time-to-digital converter (TDC) is presented. The proposed TDC is based on the gateable Vernier ring oscillator architecture. Fine resolution is achieved through two ring oscillators arranged in the Vernier configuration. This TDC employs a single-transition end-of-conversion detection circuit and turns off the ring oscillators whenever the conversion is completed to reduce power consumption. The prototype chip is fabricated in a standard 130 nm digital CMOS process and its area is only 0.03 mm(2). Using a 1.2 V supply, the TDC achieves a resolution of 7.3 ps, a single-shot precision of 1.0LSB, and an average power consumption of 1.2 mW. A root-mean-square integral non linearity (INL) of 1.2 LSB is obtained with the help of an INL look-up-table calibration. Compared to previously reported ring-oscillator based TDCs, the proposed design achieves the lowest power consumption to date.

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