Title :
A High-Throughput Time-Resolved Mini-Silicon Photomultiplier With Embedded Fluorescence Lifetime Estimation in 0.13
m CMOS
Author :
Tyndall, D. ; Rae, B.R. ; Li, D.D. ; Arlt, J. ; Johnston, Adrian ; Richardson, J.A. ; Henderson, Robert K.
Author_Institution :
CMOS Sensors & Syst. Group, Univ. of Edinburgh, Edinburgh, UK
Abstract :
We describe a miniaturized, high-throughput, time-resolved fluorescence lifetime sensor implemented in a 0.13 m CMOS process, combining single photon detection, multiple channel timing and embedded pre-processing of fluorescence lifetime estimations on a single device. Detection is achieved using an array of single photon avalanche diodes (SPADs) arranged in a digital silicon photomultiplier (SiPM) architecture with 400 ps output pulses and a 10% fill-factor. An array of time-to-digital converters (TDCs) with ≈50 ps resolution records up to 8 photon events during each excitation period. Data from the TDC array is then processed using a centre-of-mass method (CMM) pre-calculation to produce fluorescence lifetime estimations in real-time. The sensor is believed to be the first reported implementation of embedded fluorescence lifetime estimation. The system is demonstrated in a practical laboratory environment with measurements of a variety of fluorescent dyes with different single exponential lifetimes, successfully showing the sensor´s ability to overcome the classic pile-up limitation of time-correlated single photon counting (TCSPC) by over an order of magnitude.
Keywords :
CMOS integrated circuits; avalanche photodiodes; biomedical equipment; fluorescence spectroscopy; photodetectors; photomultipliers; photon counting; time-digital conversion; CMOS; SPAD; SiPM architecture; TCSPC; TDC array; centre of mass method; digital silicon photomultiplier architecture; embedded fluorescence lifetime estimation; embedded preprocessing; high throughput fluorescence lifetime sensor; miniaturized fluorescence lifetime sensor; multiple channel timing; single photon avalanche diodes; single photon detection; size 0.13 mum; time correlated single photon counting; time resolved fluorescence lifetime sensor; time-digital converters; Biosensors; Lifetime estimation; Photomultipliers; Photonics; Throughput; Timing; Biosensors; silicon photomultipliers (SiPMs); single photon avalanche diodes (SPADs); time domain fluorescence lifetime; time-correlated single photon counting (TCSPC); Biomedical Engineering; Equipment Design; Fluorescence; Fluorescent Dyes; High-Throughput Screening Assays; Photochemical Processes; Photons; Semiconductors; Silicon;
Journal_Title :
Biomedical Circuits and Systems, IEEE Transactions on
DOI :
10.1109/TBCAS.2012.2222639