首页 /研究 /A 20 μ W, 0.05mm<sup>2</sup> Duty-Cycled Resistor and Frequency-Locked-Loop-based Wheatstone Bridge Interface for Low Resistance Sensing Systems
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A 20 μ W, 0.05mm<sup>2</sup> Duty-Cycled Resistor and Frequency-Locked-Loop-based Wheatstone Bridge Interface for Low Resistance Sensing Systems

Jinyong Kim, Callen Votzke, Soumya Bose, Arun Natarajan, Matthew L. Johnston

发表年份
2021
引用次数
8

摘要

The growing need for ubiquitous, ultra-low-power sensors has driven continuous advancement in low-power performance and energy efficiency for read-out circuits, with broad applications in environmental sensing of temperature / humidity and barometric pressure. In these sensor architectures, a Wheatstone bridge circuit provides balanced readout. While this approach is efficient for large sensor resistance (5k0-500k0), measuring small resistance (<;1k0) with low power consumption presents a fundamental challenge that is increasingly necessary for a growing class of sensors for strain and force in wearable devices and robotics.

关键词

Wheatstone bridgeResistorWearable computerElectrical engineeringElectronic circuitInterface (matter)Computer scienceWearable technologyPressure sensorPower (physics)

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