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Methods to improve efficiency of lithium/silver vanadium oxide cell discharge energy in implantable medical device applications

机译:在可植入医疗设备应用中提高锂/银钒氧化物电池放电能量效率的方法

摘要

It is known that reforming implantable defibrillator capacitors at least partially restores and preserves their charging efficiency. An industry-recognized standard is to reform implantable capacitors by pulse discharging the connected electrochemical cell about once every three months throughout the useful life of the medical device. A Li/SVO cell typically powers such devices. The present invention relates to methodologies for accurately determining the precise boundaries of voltage delay and irreversible Rdc growth region in the about 25% to 70% DOD region so that more frequent pulse discharging for the purpose of cell reform is confined to the limits of the region. At the same time, the connected capacitors in the cardiac defibrillator are reformed to maintain them at their rated breakdown voltages.
机译:众所周知,对植入式除颤器电容器进行重整至少可以恢复并保持其充电效率。业界公认的标准是通过在医疗设备的整个使用寿命中每三个月对连接的电化学电池进行一次脉冲放电来对植入式电容器进行改造。 Li / SVO电池通常为此类设备供电。本发明涉及用于在约25%至70%的DOD区域中精确确定电压延迟和不可逆的Rdc生长区域的精确边界的方法,从而为了电池重组的目的更频繁的脉冲放电被限制在该区域的极限内。 。同时,对心脏除颤器中连接的电容器进行改造,以使其保持在其额定击穿电压。

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