Method of instantaneous signal synchronization of measuring pulse generators

O. G. Bondar, E. O. Brezhneva, M. D. Pushkarev
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Abstract

The synchronization methods used in the pulse generators of the G5 measuring group in the external trigger mode are analyzed. The factors determining the error in the formation of time intervals in this mode have been studied. It is shown that the main source of errors in the formation of time intervals during external triggering of measuring pulse generators is the variation in the position of the clock generator reference pulses relative to the external trigger pulses. An analytical review of synchronization methods based on the sampling of time intervals by a multi-tap delay line as a pulse signal propagates along it is carried out. The method of instantaneous synchronization of output pulses is proposed, using sampling of the period of the reference pulses of the clock generator with a multi-tap delay line and fixing the position of the edge of the external trigger pulse within the period of the reference frequency by triggers that control the multiplexer, which connects the output of the multi-tap delay line to the output of the device, at which the edge of the next reference clock pulse generator lags by a minimum time from the front of the external trigger pulse. A device is presented that makes it possible to implement the proposed solution. The simulation of the device was carried out, illustrating the details of its functioning. Jitter was assessed on a prototype device using an integrated 5-tap delay line with a total delay of 20 ns. The method can be applied in measuring pulse generators and belongs to the field of pulse technology.
测量脉冲发生器的瞬时信号同步方法
分析了 G5 测量组脉冲发生器在外部触发模式下使用的同步方法。研究了在这种模式下形成时间间隔误差的决定因素。结果表明,测量脉冲发生器外部触发时形成时间间隔误差的主要原因是时钟发生器参考脉冲相对于外部触发脉冲的位置变化。本文对基于脉冲信号沿多抽头延迟线传播时对时间间隔进行采样的同步方法进行了分析评述。提出了输出脉冲瞬时同步的方法,利用多抽头延迟线对时钟发生器参考脉冲的周期进行采样,并通过控制多路复用器的触发器将外部触发脉冲的边缘位置固定在参考频率的周期内,多路复用器将多抽头延迟线的输出连接到设备的输出,在该设备上,下一个参考时钟脉冲发生器的边缘与外部触发脉冲的前沿滞后最短的时间。本文介绍了一种能够实现拟议解决方案的设备。对该设备进行了仿真,说明了其工作细节。在使用总延迟为 20 ns 的集成 5 抽头延迟线的原型设备上对抖动进行了评估。该方法可用于测量脉冲发生器,属于脉冲技术领域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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