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    • 1. 发明授权
    • Battery status indicator compensating for battery voltage recovery
    • 电池状态指示灯补偿电池电压恢复
    • US07355376B2
    • 2008-04-08
    • US11072905
    • 2005-03-03
    • Rajesh GandhiJohn DyjachShawn KelleyKristofer JamesPaul McNamee
    • Rajesh GandhiJohn DyjachShawn KelleyKristofer JamesPaul McNamee
    • G05F5/00H02J7/00H01N27/416
    • G01R31/362A61N1/3708G01R31/3651G01R31/3693Y10S320/11
    • A method for determining a recovery voltage in a battery includes detecting a transient increased current draw event drawing current from the battery, the transient increased current draw event starting at a start time and ending at an end time; and in response to detecting the transient increased current draw event, waiting until time and/or voltage criteria are met to determine recovered battery voltage. An implantable pulse generator (PG) device for stimulating a human organ includes a battery, a power sink drawing current from the battery, wherein drawing increased current from the battery for transient periods causes battery voltage to decrease; and a status indicator detecting a transient increased current draw event and waiting a minimum time duration after the transient increased current draw event to measure battery voltage in order to determine a recovery voltage.
    • 一种用于确定电池中的恢复电压的方法包括:检测来自电池的瞬时增加的电流消耗事件绘制电流,从开始时间开始并在结束时间结束的瞬时增加的电流消耗事件; 并且响应于检测到瞬时增加的电流汲取事件,等待直到时间和/或电压标准被满足以确定恢复的电池电压。 用于刺激人体器官的可植入脉冲发生器(PG)装置包括电池,从电池抽取电流的功率吸收器,其中从电池中抽出增加的电流用于瞬变时段导致电池电压降低; 以及状态指示器,其检测瞬时增加的电流消耗事件,并​​且在瞬态增加的电流拉伸事件之后等待最小持续时间以测量电池电压以便确定恢复电压。
    • 2. 发明申请
    • Battery status indicator compensating for battery voltage recovery
    • 电池状态指示灯补偿电池电压恢复
    • US20060197536A1
    • 2006-09-07
    • US11072905
    • 2005-03-03
    • Rajesh GandhiJohn DyjachShawn KelleyKristofer JamesPaul McNamee
    • Rajesh GandhiJohn DyjachShawn KelleyKristofer JamesPaul McNamee
    • G01N27/416
    • G01R31/362A61N1/3708G01R31/3651G01R31/3693Y10S320/11
    • A method for determining a recovery voltage in a battery includes detecting a transient increased current draw event drawing current from the battery, the transient increased current draw event starting at a start time and ending at an end time; and in response to detecting the transient increased current draw event, waiting until time and/or voltage criteria are met to determine recovered battery voltage. An implantable pulse generator (PG) device for stimulating a human organ includes a battery, a power sink drawing current from the battery, wherein drawing increased current from the battery for transient periods causes battery voltage to decrease; and a status indicator detecting a transient increased current draw event and waiting a minimum time duration after the transient increased current draw event to measure battery voltage in order to determine a recovery voltage.
    • 一种用于确定电池中的恢复电压的方法包括:检测来自电池的瞬时增加的电流消耗事件绘制电流,从开始时间开始并在结束时间结束的瞬时增加的电流消耗事件; 并且响应于检测到瞬时增加的电流汲取事件,等待直到时间和/或电压标准被满足以确定恢复的电池电压。 用于刺激人体器官的可植入脉冲发生器(PG)装置包括电池,从电池抽取电流的功率吸收器,其中从电池中抽出增加的电流用于瞬变时段导致电池电压降低; 以及状态指示器,其检测瞬时增加的电流消耗事件,并​​且在瞬态增加的电流拉伸事件之后等待最小持续时间以测量电池电压以便确定恢复电压。
    • 4. 发明申请
    • Indicator of remaining energy in storage cell of implantable medical device
    • 可植入医疗器械存储单元中剩余能量的指标
    • US20050007073A1
    • 2005-01-13
    • US10618095
    • 2003-07-11
    • Kristofer JamesShawn Kelley
    • Kristofer JamesShawn Kelley
    • G01R31/36H02J7/00
    • G01R19/16542G01R31/3648
    • A manganese dioxide (MnO2) or silver vanadium oxide (SVO) or other battery of an implantable medical device having a relatively flat quiescent battery voltage during a beginning portion of the battery's useful life, makes it difficult to use quiescent battery voltage as an indicator of remaining battery energy during this portion of the battery life. A substantially constant load current pulse is drawn from the battery and a pair of loaded battery terminal voltage measurements is taken during this pulse. A difference between the voltage measurements is computed. This difference can be expressed as a rate of change, a slope, or a polarization angle, and can be used with stored data from similar batteries to determine remaining energy of the battery. A quiescent battery voltage can also be used in combination with this technique, and/or for distinguishing between different remaining energies corresponding to the same difference, slope, or polarization angle.
    • 在电池使用寿命的开始部分,具有相对平坦的静态电池电压的可植入医疗器械的二氧化锰(MnO 2)或银氧化钒(SVO)或其他电池使得难以使用静态电池电压作为 在这部分电池寿命期间剩余电池能量。 从电池抽出基本恒定的负载电流脉冲,并且在该脉冲期间采取一对负载的电池端子电压测量。 计算电压测量值之间的差异。 该差异可以表示为变化率,斜率或偏振角,并且可以与来自类似电池的存储数据一起使用以确定电池的剩余能量。 静电电池电压也可以与该技术组合使用,和/或用于区分对应于相同差值,斜率或偏振角的不同剩余能量。