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Proceedings ArticleDOI

125 kHz Wireless Energy and 25 kbps Data Transfer for Wearable Device

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TLDR
In this article, a 125 kHz wireless energy and 25 kbps data transfer system for a wearable device is presented, where the wireless transfer link is through a coupled transformer, and the mismatch between measured and simulated coupling value is within 3 %.
Abstract
This paper presents a 125 kHz wireless energy and 25 kbps data transfer system for a wearable device. In this system, the wireless transfer link is through a coupled transformer. The model of a coupled transformer is discussed, and the mismatch between measured and simulated coupling value is within 3 %. For a wearable scenario, the coupled transformer is designed to fit the bending degree of the wrist. The designed transformer achieves a best coupling factor of 0.42 with ±15mm displacement tolerance. The wireless data link can support 25 kbps data transfer in ASK modulation, and the system wireless power transfer link achieves a 40% efficiency in the optimized position, which fits the application requirement.

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Radio-Frequency Rectifier for Electromagnetic Energy Harvesting: Development Path and Future Outlook

TL;DR: A set of performance criteria and development considerations, required to meet the need of applications of ambient electromagnetic energy harvesting, are derived from the radiating source analysis and calculated from a simple measurement of the I-V nonlinear behavior of RF rectification devices such as diodes and transistors.
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Atrial fibrillation detection using photo-plethysmography and acceleration data at the wrist

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TL;DR: A 900 MHz RF energy harvesting system is proposed for a far-field wireless power transfer application and the co-design of a cross-coupled CMOS rectifier and an impedance matching network is described to optimize RF-DC conversion efficiency for the target input power.
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17.4 A sub-mW antenna-impedance detection using electrical balance for single-step on-chip tunable matching in wearable/implantable applications

TL;DR: A fully integrated adaptive front-end with a tunable matching network (TMN) using low-power and fast impedance detection is highly desirable for robust and efficient operation.
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A brief history of radiative wireless power transfer

TL;DR: In this paper, the position of radiative wireless power transfer (WPT) in the spectrum of power harvesting is given and a brief history starting with the work of Faraday is presented.
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