We present the architecture, critical design issues, and performance measurements of PETRIC, a 64-channel mixed signal front-end integrated circuit for reading out a photodiode array coupled with Lu/sub 2/SiO/sub 5/[Ce] scintillator crystals for a medical imaging application: positron emission topography. Each channel consists of a low-noise charge-sensitive preamplifier, an RC-CR pulse shaper and a winner-take-all multiplexer that selects the channel with the largest input signal. Triggered by an external timing signal, a switch opens and a capacitor stores the peak voltage of the winner channel. The shaper peaking time is adjustable by means of external current inputs over a continuous range of 0.7 /spl mu/s to 9 /spl mu/s. Power consumption is 5.4 mW per channel, measured equivalent noise charge at 1-/spl mu/s peaking time, zero leakage current is 33 rms electrons plus 7.3 rms electrons per pF of input capacitance. Design is fabricated in 0.5-/spl mu/m 3.3-V complementary metal-oxide semiconductor technology.
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Pedrali-Noy et al. (2001) studied this question.
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