利用智能手机和继电器线圈增加充电功率的可植入无线充电器系统×8.91

Hankyu Lee, Seungchul Jung, Yeunhee Huh, Jaechun Lee, Chisung Bae, Sang Joon Kim
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引用次数: 4

摘要

植入式生物医学设备作为有前途的慢性疾病诊断和治疗解决方案而备受关注,提供持续的管理。为了扩大其应用范围,无线充电技术是必不可少的,因为它可以大大减少系统体积,而无需在数十年内更换电池。然而,目前的植入式设备需要针对特定设备进行优化的专用无线充电器,这在成本和便利性方面都很麻烦。在此,我们提出了一种使用普通智能手机而无需任何物理修改的植入式生物医学设备的高效无线充电解决方案。为了实现更高的功率传输效率,我们采用了继电器线圈和阻抗匹配技术,在很大程度上提高了传输功率。通过这些方法,我们已经证明,在植入深度为1cm时,电池充电功率显著增加×8.91。所有这些测量都是通过三星Galaxy Note 10作为无线电源发射器实现的。根据我们的测量结果,它(b)被高度期望拓宽用户体验,为植入式生物医学设备市场的快速增长做出贡献,并为融合移动电子和医疗设备提供巨大潜力。
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An Implantable Wireless Charger System with ×8.91 Increased Charging Power Using Smartphone and Relay Coil
Implantable biomedical devices are spotlighted as promising diagnostic and treatment solutions for chronic diseases providing continuous management. In order to expand its applications, wireless charging technology is essential in that it can significantly reduce the system volume without additional surgery for battery replacement for decades. However, current implantable devices require a dedicated wireless charger optimized for a specific device, which is cumbersome in terms of cost and convenience. Here, we propose a highly efficient wireless charging solution for the implantable biomedical devices using a common smartphone without any physical modifications. To achieve high power transfer efficiency, we adopt a relay coil and an impedance matching technique, enhancing the amount of power transferred to a great extent. With these approaches, we have shown that the battery charging power was remarkably increased by ×8.91 at an implant depth of 1cm. All these measurements were achieved with a Samsung Galaxy Note 10 as a wireless power transmitter. Based on our measurement results, it (b) is highly expected to broaden user experience and contribute to the rapid growth of the implantable biomedical device market as well as provide huge potential to fuse the mobile electronics and medical devices.
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