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Ultra-Low-Power Implantable Medical Devices: Optical Wireless Communication Approach

机译:超低功耗植入医疗设备:光学无线通信方法

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Implantable medical devixes (IMDs) have been gaining increasing interest for their advantages of precise monitoring and diagnostics of chronic diseases. The usefulness of IMDs resides in improving the power efficiency of the implantsto- surface communication, which consumes most of the battery power. To tackle this challenging requirement, this article introduces a novel optical wireless communication approach that employs an unsynchronized pulse interval modulation technique dedicated to IMDs. A design principle for ultra-low-power optical wireless communication is addressed, and a prototype design is implemented within a small form factor of 10 mm & xf0b4; 10 mm & xf0b4; 2.3 mm. Experiments over biological channels ensure that the transmitted signal penetrates skin samples in various ranges of thickness with sub-milliwatt-level power consumption as low as 392 mW. Finally, technical challenges that will be faced in the extension of applications are discussed. The developed approach opens new opportunities for realizing ultra-low-power communication electronics for viable future applications in wireless communications, including medical devices, inter-chip communication, and free-space optics.
机译:植入医疗魔鬼(IMDS)一直在越来越令他们对慢性疾病的精确监测和诊断的优势的利益。 IMD的有用性在于提高了工厂 - 表面通信的功率效率,这消耗了大部分电池电量。为了解决这一具有挑战性的要求,本文介绍了一种新颖的光学无线通信方法,该方法采用了专用于IMD的非同步脉冲间隔调制技术。解决了超低功耗光学无线通信的设计原理,并且在10mm&XF0b4的小形式尺寸范围内实现了原型设计; 10 mm&xf0b4; 2.3毫米。在生物通道上的实验确保传输信号在各种厚度范围内穿透皮肤样品,其具有低至392兆瓦的子毫瓦级功耗。最后,讨论了延长申请的技术挑战是讨论的。开发方法为实现无线通信中可行的未来应用,包括医疗设备,芯片间通信和自由空间光学器件,开发出新的机会。

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