宽带微波取样器的信号调理电路设计
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1.中北大学信息与通信工程学院 太原 030051; 2.中北大学前沿交叉科学研究院 太原 030051

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TN710

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山西省自然科学基金(201901D111145,201901D111163)项目资助


Design of signal conditioning circuit for broadband microwave sampler
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1.School of Information and Communication Engineering,North University of China,Taiyuan 030051, China; 2.Research Institute of Frontier Interdisciplinary Sciences, North University of China,Taiyuan 030051, China

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    摘要:

    采样示波器在宽带测量领域被广泛应用,取样器作为采样示波器的关键器件,其是基于梳状波卷积理论将高频信号转换为低频信号,且取样器输出信号为瞬态值、两路输出信号对称性差等问题,本论文将在分析微波宽带取样器原理基础上,对取样器输出中频信号的阻抗积分电路、偏移调控电路进行设计。实验验证,基于所设计的取样器、阻抗积分放大电路可将20 GHz信号转换为50 kHz的中频信号,偏移调控电路可实现信号偏移的校准,可以用于采样示波器的模拟前端。

    Abstract:

    sampling oscilloscope is widely used in the field of broadband measurement. As the key device of sampling oscilloscope, sampler converts high-frequency signal into low-frequency signal based on comb wave convolution theory, and the output signal of sampler is transient value, and the symmetry of two output signals is poor. Based on the analysis of the principle of microwave broadband sampler, this paper will analyze the impedance integration circuit of IF signal output by sampler The offset control circuit is designed. Experimental verification shows that based on the designed sampler and impedance integral amplification circuit, 20 GHz RF signal can be converted into 50 kHz IF signal, and the offset control circuit can realize the calibration of signal offset, which can be used in the analog front end of sampling oscilloscope.

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杨坤,张敏娟.宽带微波取样器的信号调理电路设计[J].电子测量技术,2022,45(24):48-53

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  • 在线发布日期: 2024-03-08
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