首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Assessment of Electromagnetic Interference with Active Cardiovascular Implantable Electronic Devices (CIEDs) Caused by the Qi A13 Design Wireless Charging Board
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Assessment of Electromagnetic Interference with Active Cardiovascular Implantable Electronic Devices (CIEDs) Caused by the Qi A13 Design Wireless Charging Board

机译:Qi A13设计无线充电板对有源有源植入式电子设备(CIED)产生电磁干扰的评估

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摘要

Electromagnetic interference is a concern for people wearing cardiovascular implantable electronic devices (CIEDs). The aim of this study was to assess the electromagnetic compatibility between CIEDs and the magnetic field of a common wireless charging technology. To do so the voltage induced in CIEDs by Qi A13 design magnetic fields were measured and compared with the performance limits set by ISO 14117. In order to carry this out a measuring circuit was developed which can be connected with unipolar or bipolar pacemaker leads. The measuring system was positioned at the four most common implantation sites in a torso phantom filled with physiological saline solution. The phantom was exposed by using Helmholtz coils from 5 µT to 27 µT with 111 kHz sine-bursts or by using a Qi A13 design wireless charging board (Qi-A13-Board) in two operating modes “power transfer” and “pinging”. With the Helmholtz coils the lowest magnetic flux density at which the performance limit was exceeded is 11 µT. With the Qi-A13-Board in power transfer mode 10.8% and in pinging mode 45.7% (2.2% at 10 cm distance) of the performance limit were reached at maximum. In neither of the scrutinized cases, did the voltage induced by the Qi-A13-Board exceed the performance limits.
机译:电磁干扰是佩戴心血管可植入电子设备(CIED)的人们的关注点。这项研究的目的是评估CIED之间的电磁兼容性和普通无线充电技术的磁场。为此,测量了由Qi A13设计磁场在CIED中感应的电压,并将其与ISO 14117设定的性能极限进行了比较。为此,开发了一种测量电路,该电路可与单极或双极起搏器导线连接。测量系统位于充满生理盐水溶液的躯干体模中的四个最常见的植入位置。通过使用5 µT至27 µT的Helmholtz线圈(111 kHz正弦脉冲)或使用Qi A13设计的无线充电板(Qi-A13-Board)以两种工作模式“功率传输”和“ ping”来暴露体模。对于亥姆霍兹线圈,超过性能极限的最低磁通密度为11 µT。 Qi-A13板在功率传输模式下为10.8%,在ping模式下为45.7%(在10 cm距离处为2.2%)达到了最大性能极限。在没有经过仔细检查的情况下,由Qi-A13电路板感应的电压均未超过性能极限。

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