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用于智能隐形眼镜的能量收集微系统。

Power Scavenging Microsystem for Smart Contact Lenses.

作者信息

Pourshaban Erfan, Karkhanis Mohit U, Deshpande Adwait, Banerjee Aishwaryadev, Hasan Md Rabiul, Nikeghbal Amirali, Ghosh Chayanjit, Kim Hanseup, Mastrangelo Carlos H

机构信息

Department of Electrical and Computer Engineering, University of Utah, Salt Lake City, UT, 84112, USA.

出版信息

Small. 2024 Aug;20(32):e2401068. doi: 10.1002/smll.202401068. Epub 2024 Mar 13.

DOI:10.1002/smll.202401068
PMID:38477701
Abstract

On-the-eye microsystems such as smart contacts for vision correction, health monitoring, drug delivery, and displaying information represent a new emerging class of low-profile (≤ 1 mm) wireless microsystems that conform to the curvature of the eyeball surface. The implementation of suitable low-profile power sources for eye-based microsystems on curved substrates is a major technical challenge addressed in this paper. The fabrication and characterization of a hybrid energy generation unit composed of a flexible silicon solar cell and eye-blinking activated Mg-O metal-air harvester capable of sustainably supplying electrical power to smart ocular devices are reported. The encapsulated photovoltaic device provides a DC output with a power density of 42.4 µW cm and 2.5 mW cm under indoor and outdoor lighting conditions, respectively. The eye-blinking activated Mg-air harvester delivers pulsed power output with a maximum power density of 1.3 mW cm. A power management circuit with an integrated 11 mF supercapacitor is used to convert the harvesters' pulsed voltages to DC, boost up the voltages, and continuously deliver ≈150 µW at a stable 3.3 V DC output. Uniquely, in contrast to wireless power transfer, the power pack continuously generates electric power and does not require any type of external accessories for operation.

摘要

诸如用于视力矫正、健康监测、药物递送和信息显示的智能隐形眼镜等眼上微系统代表了一类新兴的低剖面(≤1毫米)无线微系统,其符合眼球表面的曲率。为基于眼睛的微系统在弯曲基板上实现合适的低剖面电源是本文所解决的一项重大技术挑战。本文报道了一种由柔性硅太阳能电池和眨眼激活的镁-氧金属空气能量收集器组成的混合能量产生单元的制造与特性,该单元能够持续为智能眼部设备供电。封装后的光伏器件在室内和室外照明条件下分别提供功率密度为42.4微瓦/平方厘米和2.5毫瓦/平方厘米的直流输出。眨眼激活的镁-空气能量收集器提供脉冲功率输出,最大功率密度为1.3毫瓦/平方厘米。带有集成11毫法超级电容器的电源管理电路用于将收集器的脉冲电压转换为直流,升压,并在稳定的3.3伏直流输出下持续提供约150微瓦的功率。独特的是,与无线电力传输不同,该电源组持续发电,且运行不需要任何类型的外部配件。

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引用本文的文献

1
Smart Contact Lenses in Ophthalmology: Innovations, Applications, and Future Prospects.眼科中的智能隐形眼镜:创新、应用与未来前景。
Micromachines (Basel). 2024 Jun 30;15(7):856. doi: 10.3390/mi15070856.