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Mathematical model of glitches in DAC with weight redundancy

机译:具有权重冗余的DAC中的毛刺数学模型

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摘要

Glitches appear in digital-to-analog converters and lead to significant limitations of conversion accuracy and speed,which is critical for DAC and limits their usage, especially in the direct digital synthesis systems. This paper researchesthe causes, the specificity of the appearance of glitches in DAC and the possibility of using weight redundancy in orderto reduce glitches in DAC. There had been suggested and analyzed the mathematical model of glitches in DAC withweight redundancy. There had also been proved that glitch amplitude is significantly influenced by the value of thevoltage control of the DAC and the parasitic capacities of the digital keys. There had been shown that the attenuationtime (duration) of the glitch is significantly influenced by the value of load resistance. The paper shows the expediencyof using the DAC based on redundant positional number systems including Fibonacci p-codes. The simulation resultsprove that with the increase of the parameter p, the characteristics of glitch are significantly improved in comparisonwith the classical binary system, namely the amplitude and the attenuation time of glitch decrease.
机译:毛刺出现在数模转换器中,并导致转换精度和速度的显着限制,这对于DAC至关重要,并限制了它们的使用,尤其是在直接数字合成系统中。本文研究了原因,DAC中毛刺出现的特殊性以及使用权重冗余以减少DAC中毛刺的可能性。已经提出并分析了具有重量冗余的DAC中的毛刺的数学模型。还已经证明,毛刺幅度受DAC的电压控制值和数字键的寄生电容的影响很大。已经表明,毛刺的衰减\ r \ n时间(持续时间)受负载电阻值的影响很大。本文显示了基于DAC(包括Fibonacci p码)的冗余位置数字系统使用DAC的权宜之计。仿真结果\ r \ n证明,随着参数p的增加,与经典二元系统相比,毛刺的特性得到了显着改善,即毛刺的幅度和衰减时间减小。

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  • 来源
    《Optical fibers and their applications 2018》|2018年|1104511.1-1104511.12|共12页
  • 会议地点 0277-786X;1996-756X
  • 作者单位

    Vinnytsia National Technical University, 95 Khmelnytske shose, 21021Vinnytsia, Ukraine azarov2@vntu.edu.ua phone +380 (0432) 325-718 fax +380 (0432) 465-772;

    Vinnytsia National Technical University, 95 Khmelnytske shose, 21021Vinnytsia, Ukraine;

    Vinnytsia National Technical University, 95 Khmelnytske shose, 21021Vinnytsia, Ukraine;

    Lublin University of Technology, ul. Nadbystrzycka 38A, 20-618 Lublin, Poland;

    Kazakhstan Engineering Technological University, pr. Al-Farabi 93/5, 050060, Almaty, Kazakhstan;

    Al-Farabi Kazakh National University, 71 al-Farabi Ave., Almaty, Kazakhstan;

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