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October 21, 2013IEEE Journal of Solid-State Circuits194 citationsOpen Access

A Fully Digital 8\, \, 16 SiPM Array for PET Applications With Per-Pixel TDCs and Real-Time Energy Output

LBLeo H. C. BragaLGLeonardo GaspariniLGLindsay A. Grant

Key Points

  • To design and evaluate a fully digital 8 × 16 CMOS silicon photomultiplier array featuring per-pixel time-to-digital converters and real-time energy calculation for PET imaging applications.
  • Fabricated an 8 × 16 pixel CMOS array where each 570 × 610 μm² pixel contains four digital mini-SiPMs (720 total SPADs, 35.7% fill factor), two 7-bit counters, and two 12-bit 64-ps TDCs.
  • Implemented an on-chip adder tree running at up to 100 Msamples/s to sum counts, detect asynchronous gamma events, and output energy data in real time.
  • Coupled the array with a 3 × 3 × 5 mm³ LYSO scintillator to characterize 511-keV gamma detection performance at 20°C.
  • Achieved a 511-keV gamma energy resolution of 10.9% at 20°C.
  • Demonstrated a coincidence timing resolution of 399 ps.

Abstract

An 8 × 16 pixel array based on CMOS small-area silicon photomultipliers (mini-SiPMs) detectors for PET applications is reported. Each pixel is 570 × 610 μm 2 in size and contains four digital mini-SiPMs, for a total of 720 SPADs, resulting in a full chip fill-factor of 35.7%. For each gamma detection, the pixel provides the total detected energy and a timestamp, obtained through two 7-b counters and two 12-b 64-ps TDCs. An adder tree overlaid on top of the pixel array sums the sensor total counts at up to 100 Msamples/s, which are then used for detecting the asynchronous gamma events on-chip, while also being output in real-time. Characterization of gamma detection performance with an 3 × 3 × 5 mm 3 LYSO scintillator at 20°C is reported, showing a 511-keV gamma energy resolution of 10.9% and a coincidence timing resolution of 399 ps.

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Cite This Study

Braga et al. (2013) studied this question.

synapsesocial.com/papers/69dc04671e0ecb2eb49c7b70https://doi.org/10.1109/jssc.2013.2284351
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