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基于斜坡脉冲的多米诺环形采样器(DRS4)采样间隔不均匀校准方法研究

张惊蛰 张博 刘美洋 肖金凤 赵久瑶 苟想想 师成成 王小睿

电子科技大学学报2025,Vol.54Issue(3):339-346,8.
电子科技大学学报2025,Vol.54Issue(3):339-346,8.DOI:10.12178/1001-0548.2024131

基于斜坡脉冲的多米诺环形采样器(DRS4)采样间隔不均匀校准方法研究

Research of ramp pulse-based non-uniform sampling interval calibration method for Domino ring sampler(DRS4)

张惊蛰 1张博 1刘美洋 1肖金凤 1赵久瑶 1苟想想 1师成成 1王小睿1

作者信息

  • 1. 兰州理工大学能源与动力工程学院,兰州 730050
  • 折叠

摘要

Abstract

A novel non-uniform sampling interval calibration method is proposed for the Domino ring sampler(DRS4).This method calculates the calibration value of the sampling interval by maintaining a fixed proportionality(equal slope)between the amplitude difference of the ramp pulse and the sampling interval of each two consecutive sampling cells,utilizing the ramp pulse as the calibration source.The signal generator produces two ramp pulses with a period of 200 ns and a slope of±4.5 mV/ns.These ramp pulses are then sent to the waveform sampling digitizer to calculate the sampling intervals of 1 024 sampling cells in the linear increase/decrease process.The average sampling interval of the sampling cells is found to be 200.288 ps,with an RMS of 15.603 ps.Test results comparing this method with the"zero-crossing of sine wave"and"sawtooth wave"methods show that the relative errors of the average sampling interval are 0.14%,2.49%,and 2.48%,respectively.These results indicate that the calibration accuracy of the ramp method is the highest.Furthermore,the ramp method has no frequency range limitation for the calibration source signal,and conducting 3 000 iterations is adequate to achieve the necessary measurement accuracy.This makes it more suitable for applications with real-time calibration requirements.

关键词

开关电容矩阵/波形数字化/多米诺环形采样器/采样间隔校准/斜坡脉冲

Key words

switched capacitor array/waveform digitization/Domino ring sampler/sampling interval calibration/ramp pulse

分类

核科学

引用本文复制引用

张惊蛰,张博,刘美洋,肖金凤,赵久瑶,苟想想,师成成,王小睿..基于斜坡脉冲的多米诺环形采样器(DRS4)采样间隔不均匀校准方法研究[J].电子科技大学学报,2025,54(3):339-346,8.

基金项目

国家重点研发计划子课题(2020YFB2009803) (2020YFB2009803)

电子科技大学学报

OA北大核心

1001-0548

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