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A High Performance LIA-Based Interface for Battery Powered Sensing Devices

机译:基于高性能LIA的电池供电传感设备接口

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摘要

This paper proposes a battery-compatible electronic interface based on a general purpose lock-in amplifier (LIA) capable of recovering input signals up to the MHz range. The core is a novel ASIC fabricated in 1.8 V 0.18 µm CMOS technology, which contains a dual-phase analog lock-in amplifier consisting of carefully designed building blocks to allow configurability over a wide frequency range while maintaining low power consumption. It operates using square input signals. Hence, for battery-operated microcontrolled systems, where square reference and exciting signals can be generated by the embedded microcontroller, the system benefits from intrinsic advantages such as simplicity, versatility and reduction in power and size. Experimental results confirm the signal recovery capability with signal-to-noise power ratios down to −39 dB with relative errors below 0.07% up to 1 MHz. Furthermore, the system has been successfully tested measuring the response of a microcantilever-based resonant sensor, achieving similar results with better power-bandwidth trade-off compared to other LIAs based on commercial off-the-shelf (COTS) components and commercial LIA equipment.
机译:本文提出了一种基于电池的电子接口,该接口基于通用锁定放大器(LIA),能够恢复高达MHz范围的输入信号。内核是采用1.8 V 0.18 µm CMOS技术制造的新型ASIC,其中包含一个双相模拟锁定放大器,该放大器由精心设计的模块组成,可以在较宽的频率范围内进行配置,同时保持低功耗。它使用方形输入信号进行操作。因此,对于电池供电的微控制系统,其中嵌入式微控制器可以产生平方参考信号和激励信号,该系统受益于内在优势,例如简单性,多功能性以及功率和尺寸的减小。实验结果证实了信号恢复能力,信噪比低至-39 dB,在1 MHz时相对误差低于0.07%。此外,该系统已成功测试了基于微悬臂梁的共振传感器的响应,与基于商用现货(COTS)组件和商用LIA设备的其他LIA相比,具有相似的结果,但功率带宽的权衡更好。

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