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Discriminator design considerations for time-interval measurement circuits in collider detector systems

机译:对撞机探测器系统中时间间隔测量电路的鉴别器设计注意事项

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An analysis of timing jitter from leading-edge discriminators (LED's) and constant-fraction discriminators (CFD's) is presented. The jitter is calculated for the cases of random white noise, coherent noise (e.g., digital switching noise or ac power-line hum), and mixed (random and coherent) noise for both discriminator architectures. A general jitter equation valid for all of these conditions is derived. It is shown that the discriminator bandwidth for minimum jitter is strongly dependent on the amount of coherent noise. This effect is shown to be more pronounced for the LED. Even though off-line walk adjustments are possible for many timing measurements, the CFD is shown to provide a major advantage by acting as a correlated double sampler that removes much of the coherent noise expected in large, multichannel collider detector systems.
机译:提出了对来自前沿鉴别器(LED)和恒定分数鉴别器(CFD)的时序抖动的分析。对于两种鉴别器架构,均针对随机白噪声,相干噪声(例如,数字开关噪声或交流电源线嗡嗡声)以及混合(随机和相干)噪声的情况计算抖动。得出了对所有这些条件均有效的通用抖动方程。结果表明,用于最小抖动的鉴别器带宽在很大程度上取决于相干噪声的数量。对于LED来说,这种效果更为明显。即使对于许多定时测量都可以进行离线步行调整,CFD仍显示出主要优势,因为它可以用作相关的双采样器,从而消除了大型多通道对撞机检测器系统中预期的大部分相干噪声。

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