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Wireless power transfer with on-chip inductor and class-E power amplifier for implant medical device applications

机译:具有片上电感器和E类功率放大器的无线功率传输,可用于植入医疗设备应用

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The popular use of biomedical implants has been going on in numerous applications that include the use of pacemakers and emerging retina prostheses, together with brain-computer interfaces. Other popular uses include drug delivery and smart orthopaedic implants. The avoidance of batteries or piercing wirings has made the wireless powering of these implantable devices highly attractive. In this paper, a design of a class-E power amplifier which has inductive loading appropriate for implant application was made using 130nm Silterra CMOS process at 2.4V supply. A presentation of high-Q on-chip inductors is made as a way of improving the efficiency of the wireless power transfer (WPT) system at 37.5MHz industrial, scientific and medical (ISM) band. Wireless power transfer efficiency of 59???89% is obtained for distance variation up to 10mm of the implant coil from the transmit power coil. DC voltage of more 3V is obtained for distance up to 10mm of the implant coil; and the on-chip implant inductor measures a smaller size of 10mm??10mm making the design more suitable for the application of medical implant.
机译:生物医学植入物的广泛使用已在许多应用中进行,包括使用起搏器和新兴的视网膜假体以及脑机接口。其他受欢迎的用途包括药物输送和智能骨科植入物。避免电池或穿刺布线使得这些可植入设备的无线供电变得非常有吸引力。在本文中,采用130nm Silterra CMOS工艺在2.4V电源下设计了具有适合于植入应用的电感负载的E类功率放大器。提出了一种高Q片上电感器,以提高37.5MHz工业,科学和医学(ISM)频段上的无线功率传输(WPT)系统的效率。对于距离发射功率线圈最多10mm的植入线圈的距离变化,可获得59%〜89%的无线功率传输效率。植入线圈的最大距离为10mm时,可获得3V以上的DC电压;片上植入电感器的尺寸更小,仅为10mm×10mm,从而使该设计更适合于医疗植入物的应用。

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