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CMOS 3D-Stacked FSI Multi-Channel Digital SiPM for Time-of-Flight PET Applications

机译:CMOS 3D堆叠FSI多通道数字SIPM,用于飞行时间PET应用

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We present a frontside-illuminated (FSI) multichannel digital silicon photomultiplier (MD-SiPM) fabricated in 0.18 µm/0.18 µm 3D-stacked CMOS technology. The top tier is dedicated to the FSI photodetectors, while the bottom tier comprises timestamping, processing, and communication electronics. The MD-SiPM is segmented in two arrays of 8×8 clusters of 64 single-photon avalanche diode (SPAD) pixels each. A dedicated time-to-digital converter (TDC) is included within each cluster. The pixel pitch is 50 µm, the fill factor 67%, and the peak PDE 35% at 500 nm. The TDC is triggered by the first firing SPAD, and its identification code or address is propagated and stored by a winner-take-all architecture. The 128+1 TDCs, which are based on a multi-path gated ring oscillator, exhibit an LSB of 8 ps and a single-shot resolution of 50 ps (RMS) as determined through initial measurements on an independent structure. The power consumption per TDC is below 1.8 mW. The data is validated and read out from the clusters through an on-chip scheduling controller, while a random-access architecture enables access of each cluster individually. Preliminary characterization demonstrates the suitability of the system for the target application.
机译:我们介绍了在0.18μm/0.18μm的3D堆叠CMOS技术中制造的前侧照射(FSI)多通道数字硅光电倍增管(MD-SIPM)。顶级专用于FSI光电探测器,而底层包括时间戳,处理和通信电子设备。 MD-SIPM在每个64个单光子雪崩二极管(SPAD)像素的两个8×8簇阵列中分段。每个群集中都包含一个专用的时间 - 数字转换器(TDC)。像素间距为50μm,填充因子67%,峰PDE 35%在500nm。 TDC由第一个触发器触发,其识别码或地址被赢得的所有架构传播和存储。基于多路径门控振荡器的128 + 1 TDC,其显示为8ps的LSB和50ps(RMS)的单次分辨率,如通过独立结构上的初始测量所确定的。每个TDC的功耗低于1.8 MW。数据被验证并通过片上调度控制器从群集读出,而随机访问架构可以单独访问每个群集。初步表征展示了系统对目标应用的适用性。

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