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Low-Radiation Cellular Inductive Powering of Rodent Wireless Brain Interfaces: Methodology and Design Guide

机译:啮齿动物无线大脑接口的低辐射细胞感应供电:方法与设计指南

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This paper presents a general methodology of inductive power delivery in wireless chronic rodent electrophysiology applications. The focus is on such systems design considerations under the following key constraints: maximum power delivery under the allowable specific absorption rate (SAR), low cost and spatial scalability. The methodology includes inductive coil design considerations within a low-frequency ferrite-core-free power transfer link which includes a scalable coil-array power transmitter floor and a single-coil implanted or worn power receiver. A specific design example is presented that includes the concept of low-SAR cellular single-transmitter-coil powering through dynamic tracking of a magnet-less receiver spatial location. The transmitter coil instantaneous supply current is monitored using a small number of low-cost electronic components. A drop in its value indicates the proximity of the receiver due to the reflected impedance of the latter. Only the transmitter coil nearest to the receiver is activated. Operating at the low frequency of 1.5 MHz, the inductive powering floor delivers a maximum of 15.9 W below the IEEE C95 SAR limit, which is over three times greater than that in other recently reported designs. The power transfer efficiency of 39% and 13% at the nominal and maximum distances of 8 cm and 11 cm, respectively, is maintained.
机译:本文介绍了无线慢性啮齿动物电生理学应用中感应功率传递的一般方法。重点放在以下主要约束条件下的此类系统设计注意事项:在允许的特定吸收率(SAR)下提供最大功率,低成本和空间可伸缩性。该方法包括低频无铁氧体磁芯功率传输链路中的电感线圈设计注意事项,该链路包括可扩展的线圈阵列功率发送器底板和单线圈植入式或磨损式功率接收器。提出了一个具体的设计示例,其中包括通过动态跟踪无磁体接收器空间位置来实现低SAR蜂窝单发送器线圈供电的概念。使用少量的低成本电子组件监控发送器线圈的瞬时电源电流。它的值下降表示由于接收器的反射阻抗,接收器接近。仅激活最靠近接收器的发射器线圈。感应供电底板在1.5 MHz的低频下运行,最大可提供比IEEE C95 SAR限制低15.9 W的功率,该限制是最新报告的其他设计中三倍以上。在标称距离和最大距离分别为8 cm和11 cm时,功率传递效率分别保持39%和13%。

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