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Circuitry for Charging a Battery in an Implantable Medical Device in Accordance with Historical Parameters Impacting Battery Capacity

机译:根据影响电池容量的历史参数为可植入医疗设备中的电池充电的电路

摘要

An algorithm programmed into the control circuitry of a rechargeable-battery Implantable Medical Device (IMD) is disclosed that can adjust the charging current (Ibat) provided to the rechargeable battery over time (e.g., the life of the IMD) in accordance with one or more of the parameters having an effect on rechargeable battery capacity, such as number of charging cycles, charging current, discharge depth, load current, and battery calendar age. The algorithm consults such parameters as stored over the history of the operation of the IMD in a parameter log, and in conjunction with a battery capacity database reflective of the effect of these parameters on battery capacity, estimates a change in the capacity of the battery, and adjust the charging current in one or both of trickle and active charging paths to slow the loss of battery capacity and extend the life of the IMD.
机译:公开了一种编程到可再充电电池可植入医疗设备(IMD)的控制电路中的算法,该算法可以根据一个或多个时间调整提供给可再充电电池的充电电流(Ibat)(例如,IMD的寿命)。影响充电电池容量的更多参数,例如充电周期数,充电电流,放电深度,负载电流和电池寿命。该算法在参数日志中查询IMD运行历史中存储的此类参数,并结合反映这些参数对电池容量影响的电池容量数据库估算电池容量的变化,并调整trick流和有源充电路径之一或两者的充电电流,以减慢电池容量的损失并延长IMD的寿命。

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