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Increasing the Range of Wireless Power Transmission to Stretchable Electronics

机译:扩大可伸缩电子设备的无线电力传输范围

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摘要

Wireless power transmission is of paramount importance in stretchable electronics due to the challenges of fabricating effective electrical contacts between stretchable systems and the outside world. Poor stretchable inductor performance has been a major factor limiting the range of power transfer to stretchable systems. Here, through the development of stretchable inductors with the highest quality factors on record (as high as 174, more than double the highest previously demonstrated), we are able to increase the range of effective power transfer to stretchable electronics. Our stretchable inductors were fabricated using liquid-metal-filled channels in a soft silicone and can withstand strains up to 100%. Using this approach combined with magnetic resonance techniques, we show systems able to transfer power effectively at distances of one and two coil diameters, significantly beyond the half-coil diameter distance that was the previous state of the art. Using optimized designs, we demonstrate the efficiency of 64% at one coil diameter (40 mm) and a second system with the efficiency of 15.5% at two coil diameters (84 mm).
机译:由于在可拉伸系统与外界之间建立有效的电接触的挑战,无线电力传输在可拉伸电子产品中至关重要。可伸展的电感器性能差已成为限制功率传递到可伸展系统范围的主要因素。在这里,通过开发有记录的最高品质因数的可伸缩电感器(高达174,是先前展示的最高的两倍多),我们能够扩大有效功率传输至可伸缩电子设备的范围。我们的可伸展电感器是使用液态金属填充的通道在柔软的硅酮中制成的,可承受高达100%的应变。使用这种方法与磁共振技术相结合,我们展示了能够在一个和两个线圈直径的距离处有效传输功率的系统,该距离大大超过了现有技术的半线圈直径距离。通过优化设计,我们证明了在一个线圈直径(40毫米)下效率为64%,而在第二个系统中,在两个线圈直径(84毫米)下效率为15.5%。

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