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首页> 外文期刊>Circuits, systems and signal processing >A 10-Bit, 12 ps Resolution CMOS Time-to-Digital Converter Dedicated to Ultra-Fast Optical Timing Applications
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A 10-Bit, 12 ps Resolution CMOS Time-to-Digital Converter Dedicated to Ultra-Fast Optical Timing Applications

机译:专门用于超快速光学定时应用的10位,12 ps分辨率CMOS时数字转换器

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摘要

This paper reports the design of a 10-bit, high-resolution time-to-digital converter (TDC) based on Vernier residues amplification which is a novelty. This TDC architecture allows the measurement of wide time intervals with high picosecond-range resolution. The key benefits of the proposed TDC are that it reduces conversion jitter and provides more design flexibility to enhance matching performances of delay cells and thus reach high conversion linearity regardless of the process technology, which is a strong aspect of the approach. Simulations results show that the TDC achieves a timing resolution of 12 ps rms in a long 12.5 ns timing window, a low core power consumption of 4.8 mW and estimated differential and integral nonlinearities (DNL and INL) of 0.73 and 2.02 LSB with a standard deviation of 0.17 and 0.94 LSB respectively. The TDC, implemented in 0.13 mm CMOS technology, occupies a total silicon area of 1.83 2.23 mm including pads. Such a TDC will find useful applications in tomographic systems, where several time-correlated single photon counting (TCSPC) channels need to be used in a massively parallel configuration such as in diffuse optical tomography or in time-of-flight positron emission tomography.
机译:本文报道了一种基于游标残基放大的10位高分辨率时间数字转换器(TDC)的设计,这是一个新颖的设计。这种TDC架构允许以皮秒范围内的高分辨率测量宽的时间间隔。所提出的TDC的主要优点在于,它减少了转换抖动,并提供了更多的设计灵活性,以增强延迟单元的匹配性能,从而无论处理技术如何都达到了很高的转换线性度,这是该方法的重要方面。仿真结果表明,TDC在较长的12.5 ns时序窗口内实现了12 ps rms的时序分辨率,低内核功耗为4.8 mW,估计的差分和积分非线性(DNL和INL)为0.73和2.02 LSB,具有标准偏差。分别为0.17和0.94 LSB。采用0.13 mm CMOS技术实现的TDC,包括焊盘在内,总硅面积为1.83 2.23 mm。这种TDC将在层析成像系统中找到有用的应用,在这种层析成像系统中,需要在大规模并行配置中使用几个与时间相关的单光子计数(TCSPC)通道,例如在漫射光学层析成像或飞行时间正电子发射层析成像中。

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