电子科技 ›› 2020, Vol. 33 ›› Issue (3): 21-25.doi: 10.16180/j.cnki.issn1007-7820.2020.03.005

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一种基于锁相环梳状谱发生器的设计

刘汉子,石玉,张玮   

  1. 电子科技大学 电子科学与工程学院,四川 成都 611731
  • 收稿日期:2019-02-20 出版日期:2020-03-15 发布日期:2020-03-25
  • 作者简介:刘汉子(1993-),男,硕士研究生。研究方向:射频、微波电路与系统。|石玉(1965-),男,教授,博士生导师。研究方向:微波射频器件的宽带和高线性化、功率磁性器件的小型化和高压特种电源。
  • 基金资助:
    国家自然科学基金(61471086)

Design of a Comb Generator Based on PLL

LIU Hanzi,SHI Yu,ZHANG Wei   

  1. School of Electronic Science and Engineering,University of Electronic Science and Technology of China,Chengdu 611731,China
  • Received:2019-02-20 Online:2020-03-15 Published:2020-03-25
  • Supported by:
    National Natural Science Foundation of China(61471086)

摘要:

针对传统模拟梳状谱发生器难以实现高平坦度、窄间距、灵活操控的缺陷,文中提出了一种基于锁相环机理实现梳状信号的新方式。该方法利用锁相环反馈回路的N分频器对压控振荡器输出的高频信号进行分频以得到脉冲宽度窄的脉冲信号,然后再令其通过滤波器得到满足目标带宽的高平坦度梳状谱信号。通过对分频器进行灵活编程控制可以得到不同间距的谱线,且不需要修改硬件电路设计。实验结果表明,这种基于锁相环机理及的梳状谱发生器所产生的谱线具备信号带宽大、幅度一致性高、间距可调、小型化、低功耗等优点。

关键词: 梳状谱发生器, 锁相环, 信号带宽大, 幅度一致性高, 间距可调, 小型化低功耗

Abstract:

It is difficult for the traditional analog comb generator to achieve high flatness, small frequency spacing and flexible adjustment. This study proposed a new way to realize comb signal based on phase-locked loop mechanism. Specifically, the output of the N divider in the phase-locked loop feedback branch generated a pulse signal with a narrow pulse width by dividing high frequency signal of the voltage-controlled oscillator. The pulse passed through the filter to obtain a high-flatness comb signal that satisfies the target bandwidth. By flexible programming control of the divider, the comb signal with different frequency spacing was obtained without modifying the hardware circuit design. The experimental results showed that the spectral line generated by the comb spectrum generator based on PLL had the advantages of large signal bandwidth, high amplitude uniformity, adjustable frequency spacing, miniaturization and low power consumption.

Key words: comb generator, phase locked loop, large signal bandwidth, high amplitude uniformity, adjustable frequency spacing, miniaturization and low power consumption

中图分类号: 

  • TN784+.1