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New Frequency Counting Principle Improves Resolution

机译:新的频率计数原理提高了分辨率

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Frequency counters have gone through several evolution stages in their design since their first appearance on the market in the 1950-ies. Stage 1 until 70-ies Conventional counting Stage 2 1980-ies Reciprocal counting (period measurement + inversion) Stage 3 1990-ies Interpolating Reciprocal Counting Stage 4 2000-ies Multiple Time Stamp Average Continuous Counting This paper describes the counting theory and design of frequency counters, and analyses the improvements in the latest generation of frequency counters. The newly introduced high-resolution CNT-90 Timer/Counter/Analyzer from Pendulum Instruments AB in Sweden is used as commercially available example of the latest design technology in this presentation. The advantages of continuous time-stamping technique are discussed, for example regression analysis to reduce effects of measurement noise and to improve resolution to 12 digits for 1s of measuring time. Another example is the ability for seamless back-to-back measurements without missing any period, which is essential for theoretically correct calculation of Allan Deviation.
机译:自1950年IES在市场上首次出现以来,频率计数器已经在其设计中经历了几个演化阶段。第1阶段,直到70独立实体的常规计数第2阶段1980独立实体倒数计数(周期测量+反转)第3阶段1990独立实体插值倒数计数阶段4 2000 IES多个时间戳平均连续计数本文描述的计数理论和频率的设计计数器,分析了最新一代频率计数器的改进。新引进的高分辨率CNT-90定时器/计数器/分析仪在瑞典中的Pendulum Instruments AB被用作本演示文稿中最新设计技术的商用示例。讨论了连续的时间戳技术的优点,例如回归分析,以减少测量噪声的影响,并将分辨率提高到1S测量时间的12位数。另一个例子是无缝背对背测量的能力而不缺少任何时期,这对于理论上正确计算Allan偏差至关重要。

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