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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >Single-Cycle-PLL Detection for Real-Time FM-AFM Applications
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Single-Cycle-PLL Detection for Real-Time FM-AFM Applications

机译:用于实时FM-AFM应用的单周期PLL检测

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In this paper we present a novel architecture for phase-locked loop (PLL) based high-speed demodulation of frequency-modulated (FM) atomic force microscopy (AFM) signals. In our approach, we use single-sideband (SSB) frequency upconversion to translate the AFM signal from the position sensitive detector to a fixed intermediate frequency (IF) of 10 MHz. In this way, we fully benefit from the excellent noise performance of PLL-based FM demodulators still avoiding the intrinsic bandwidth limitation of such systems. In addition, the upconversion to a fixed IF renders the PLL demodulator independent of the cantilever's resonance frequency, allowing the system to work with a large range of cantilever frequencies. To investigate if the additional noise introduced by the SSB upconverter degrades the system noise figure we present a model of the AM-to-FM noise conversion in PLLs incorporating a phase-frequency detector. Using this model, we can predict an upper corner frequency for the demodulation bandwidth above which the converted noise from the single-sideband upconverter becomes the dominant noise source and therefore begins to deteriorate the overall system performance. The approach is validated by both electrical and AFM measurements obtained with a PCB-based prototype implementing the proposed demodulator architecture.
机译:在本文中,我们提出了一种新颖的架构,用于基于锁相环(PLL)的调频(FM)原子力显微镜(AFM)信号的高速解调。在我们的方法中,我们使用单边带(SSB)频率上变频将AFM信号从位置敏感检测器转换为10 MHz的固定中频(IF)。这样,我们充分受益于基于PLL的FM解调器的出色噪声性能,仍然避免了此类系统的固有带宽限制。此外,上变频至固定IF使得PLL解调器独立于悬臂的谐振频率,从而使系统可以在较大范围的悬臂频率下工作。为了研究由SSB上变频器引入的额外噪声是否会降低系统噪声系数,我们提出了一个包含相频检测器的PLL中AM到FM噪声转换的模型。使用该模型,我们可以预测解调带宽的上拐角频率,高于该频率时,来自单边带上变频器的转换后的噪声将成为主要噪声源,从而开始恶化整个系统的性能。该方法通过使用基于PCB的原型实现拟议的解调器架构而获得的电气和AFM测量进行了验证。

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