Stoecklin S, Volk T, Yousaf A, Reindl L
Annu Int Conf IEEE Eng Med Biol Soc. 2015;2015:3193-6. doi: 10.1109/EMBC.2015.7319071.
In this paper, an enhanced approach of a class E amplifier being insensitive to coil impedance variations is presented. While state of the art class E amplifiers widely being used to supply implanted systems show a strong degradation of efficiency when powering distance, coil orientation or the implant current consumption deviate from the nominal design, the presented concept is able to detect these deviations on-line and to reconfigure the amplifier automatically. The concept is facilitated by a new approach of sensing the load impedance without interruption of the power supply to the implant, while the main components of the class E amplifier are programmable by software. Therefore, the device is able to perform dynamic impedance matching. Besides presenting the operational principle and the design equations, we show an adaptive prototype reader system which achieves a drain efficiency of up to 92% for a wide range of reflected coil impedances from 1 to 40 Ω. The integrated communication concept allows downlink data rates of up to 500 kBit/s, while the load modulation based uplink from implant to reader was verified of providing up to 1.35 MBit/s.
本文提出了一种对线圈阻抗变化不敏感的E类放大器增强方法。虽然目前广泛用于为植入式系统供电的E类放大器在供电距离、线圈方向或植入物电流消耗偏离标称设计时效率会大幅下降,但本文提出的概念能够在线检测这些偏差并自动重新配置放大器。该概念通过一种在不中断向植入物供电的情况下感测负载阻抗的新方法得以实现,而E类放大器的主要组件可通过软件进行编程。因此,该器件能够执行动态阻抗匹配。除了介绍工作原理和设计方程外,我们还展示了一个自适应原型读取器系统,该系统在1至40Ω的宽范围反射线圈阻抗下,漏极效率高达92%。集成通信概念允许下行数据速率高达500 kBit/s,而从植入物到读取器的基于负载调制的上行链路经验证可提供高达1.35 MBit/s的数据速率。