用于高能物理实验的全数字化和全合成TDC

Paride Bifulco, V. Izzo, S. Mastroianni, A. Aloisio, R. Giordano, F. Ameli, V. Bocci, S. Cadeddu, L. Casu, A. Lai, A. Loi
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引用次数: 6

摘要

高能物理(HEP)实验的触发和数据采集系统(TDAQ)大量使用时间测量来校准信号,并在不同元素之间进行同步。通常,用于时间测量的电子系统是使用经典的混合信号方法设计的,而如今全数字架构正在由最先进的研究进行探索和研究。事实上,虽然优化的混合信号设计达到了更好的性能,但它需要大量的设计时间,而不是全数字设计。此外,与全数字IP相比,模拟IP块不容易移植到新技术中。在这项工作中,我们提出了一个基于完全可合成的DCO的全数字TDC应用。TDC测量40 MHz参考时钟和被测定时信号之间的相位关系。DCO设计独立于技术,可以使用高级硬件描述语言对其进行描述;此外,由于其特殊的特性,它可以使用自动工具进行合成、放置和布线。在这项工作中,我们介绍了DCO和TDC的架构,它们的性能和在130纳米ASIC原型上的初步实现结果。TDC计划用于欧洲核子研究中心大型强子对撞机实验中介子探测器读出电子的升级。本文提出的TDC的任务是测量40 MHz LHC机器时钟与来自介子探测器的数字信号之间的相位差。TDC的主要限制之一是相位差分辨率,为了满足实验所需的分辨率,相位差分辨率必须在1.5 ns左右。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A fully-digital and fully synthetizable TDC for high energy physics experiments
Trigger and data acquisition systems (TDAQ) of High Energy Physics (HEP) experiments intensively use time measurements for calibration of signals and synchronization between their different elements. Typically, electronics systems for time measurement are designed using a classical mixed-signal approach, while all-digital architectures are nowadays being explored and studied by state-of-art research. Indeed, although an optimized mixed-signal design reaches better performances, it requires a significant amount of design time w.r.t. a fully-digital design. Moreover, an analog IP blocks cannot be easily ported into a new technology, if compared with full digital IPs. In this work, we present a fully-digital TDC application, which is based on a fully synthesizable DCO. The TDC measures the phase relationship between a 40 MHz reference clock and a timing signal under measurement. The DCO design is independent from the technology and it can be described by using a high level Hardware Description Language; moreover, due to its specific characteristics, it can be synthesized, placed and routed by using automatic tools. In this work, we present the architecture of the DCO and of the TDC, their performances and the results on a preliminary implementation on a 130 nm ASIC prototype. The TDC is planned to be used in the upgrade of the Muon detector readout electronic in LHCb experiment at CERN. The TDC presented in this paper has the task of measuring the phase difference between the 40 MHz LHC machine clock and a digital signal coming from the muon detector. One of the main constraints of the TDC is on the phase difference resolution, which has to be about 1.5 ns, in order to cope with to the required resolution of the experiment.
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