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High-Speed Digitizing of Repetitive Waveforms Using Accurate Interleaved Sampling

机译:使用精确的交错采样对重复波形进行高速数字化

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摘要

Random interleaved sampling has become a widespread operating mode for digital storage oscilloscopes. Different repetitions of (notionally) the same waveform are recorded at random time shifts and are interleaved in memory, resulting in an increase of the equivalent sampling frequency. This procedure requires substantial time, particularly if further averaging is required. In this paper, an approach that ensures accurate time shifts is presented for repeated waveform measurements. Operating two independent oscillators with related frequencies forms the accurate shifts. One of these is used to excite a waveform of interest repeatedly, and the other clocks the analog-to-digital converter (ADC). This architecture was implemented using a commercial “off-the-shelf” field programmable gate array. Examples of experimental waveforms, which are sampled at 2160 MHz using an ADC that is clocked at 80 MHz, are presented. They are compared with the simulated and independently measured waveforms where appropriate.
机译:随机交错采样已成为数字存储示波器的一种广泛的工作模式。 (概念上)相同波形的不同重复在随机时移处记录,并在存储器中交织,从而导致等效采样频率增加。此过程需要大量时间,尤其是在需要进一步平均的情况下。在本文中,提出了一种确保精确时移的方法,用于重复波形测量。以相关的频率操作两个独立的振荡器可形成准确的偏移。其中一个用于重复激发感兴趣的波形,另一个用于为模数转换器(ADC)计时。该架构是使用商用“现成”现场可编程门阵列实现的。给出了实验波形的示例,这些示例使用时钟频率为80 MHz的ADC在2160 MHz下采样。适当时将它们与模拟波形和独立测量的波形进行比较。

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