An Approach for Characterizing the Frequency Response of Sampling-Oscilloscopes Using a Large-Signal Network Analyzer

A. Boaventura, Dylan F. Williams, P. Hale, G. Avolio
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引用次数: 7

Abstract

We propose an approach for characterizing the complex frequency response of sampling oscilloscopes using a calibrated large-signal network analyzer (LSNA) and a broadband pulse source. First, we perform a full wave-parameter calibration of the LSNA using its internal continuous wave (CW) sources. Then, we replace the internal CW sources with an external broadband pulse source and measure it with the calibrated LSNA and oscilloscope connected to the LSNA test port. The complex frequency response of the oscilloscope’s sampler is derived in the frequency domain as the ratio of the oscilloscope signal spectrum to the calibrated LSNA signal spectrum. We achieve less than 0.7 dB amplitude and 5 degrees phase difference up to 45 GHz between the proposed LSNA calibration and previous NIST electro-optic sampling (EOS) characterization of the same sampler.
用大信号网络分析仪表征采样示波器频率响应的方法
我们提出了一种使用校准的大信号网络分析仪(LSNA)和宽带脉冲源来表征采样示波器的复频率响应的方法。首先,我们使用内部连续波(CW)源对LSNA进行了全波参数校准。然后,我们用外部宽带脉冲源取代内部连续波源,并使用校准后的LSNA和连接到LSNA测试端口的示波器进行测量。在频域中,示波器采样器的复频率响应推导为示波器信号频谱与校准后的LSNA信号频谱之比。我们在相同采样器的LSNA校准和之前的NIST电光采样(EOS)表征之间实现了小于0.7 dB的幅度和高达45 GHz的5度相位差。
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