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A LOW TEMPERATURE INCREASE TRANSCUTANEOUS BATTERY CHARGER FOR IMPLANTABLE MEDICAL DEVICES

机译:用于可植入医疗设备的低温增加瞬态电池充电器

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Many medical groups have used wireless battery charging technology for rechargeable batteries used in implantable devices. During charging, battery heat is lost from the battery and other heat sources within an implantable device, which may be harmful to patients' tissues. Therefore, charging batteries with minimum discomfort to patients while replenishing battery capacity as much as possible is a challenge. In this paper, a constant voltage with a different limiting current strategy for a lithium-ion polymer battery is proposed, thereby modulating the limiting current rate that reduces battery temperature increase. Experiments show that better safety charging performance for 260, 600, and 1000mAh lithium-ion polymer batteries can be obtained by the proposed current-limiting method. Compared with conventional constant-current-constant-voltage charging strategies, the maximum battery temperature increase is improved.
机译:许多医疗团体已将无线电池充电技术用于可植入设备中使用的可充电电池。在充电过程中,电池热量会从电池和可植入设备内的其他热源散失,这可能对患者的组织有害。因此,给患者充电时给患者带来最小的不适感,同时尽可能地补充电池容量是一个挑战。在本文中,提出了一种用于锂离子聚合物电池的具有不同极限电流策略的恒定电压,从而调节了极限电流速率,从而降低了电池温度的升高。实验表明,通过提出的限流方法,可以为260、600和1000mAh的锂离子聚合物电池提供更好的安全充电性能。与传统的恒定电流-恒定电压充电策略相比,最大电池温度升高得到了改善。

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