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首页> 外文期刊>Circuits and Systems II: Express Briefs, IEEE Transactions on >A Sensitive Method to Measure the Integral Nonlinearity of a Digital-to-Time Converter Based on Phase Modulation
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A Sensitive Method to Measure the Integral Nonlinearity of a Digital-to-Time Converter Based on Phase Modulation

机译:基于相位调制的数字时间转换器积分非线性的灵敏测量方法

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摘要

A digital-to-time converter (DTC) produces a time delay based on a digital code. Similar to data converters, linearity is a key metric for a DTC and it can be characterized by its integral nonlinearity (INL). However, measuring the INL of a subpicosecond-resolution DTC is problematic, even when using the best available high-speed oscilloscopes. In this brief we propose a new method to measure the INL of a DTC by applying digital phase modulation and measuring the output spectrum with a spectrum analyzer. The frequency selectivity of this method allows for an improved measurement resolution down to a few femtoseconds and allows measuring an INL below 100 fs. The proposed method is verified by behavioral simulations and is employed to measure the INL of a high-resolution DTC realized in the 65-nm CMOS, with a time resolution of 25 fs and a standard deviation of 27 fs.
机译:数模转换器(DTC)根据数字代码产生时间延迟。与数据转换器相似,线性度是DTC的关键指标,可以通过其积分非线性(INL)来表征。但是,即使使用最佳可用的高速示波器,也要测量亚皮秒级DTC的INL,这是有问题的。在本文中,我们提出了一种新的方法来测量DTC的INL,方法是应用数字相位调制并使用频谱分析仪测量输出频谱。这种方法的频率选择性可以将测量分辨率提高到几飞秒,并可以测量低于100 fs的INL。通过行为仿真验证了该方法的有效性,并将其用于测量在65 nm CMOS中实现的高分辨率DTC的INL,其时间分辨率为25 fs,标准偏差为27 fs。

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