Method for monitoring end of life for battery
First Claim
1. A process for estimating a level of power depletion in a cardiac pacing system having a lithium battery, a first cardiac pacing device electrically connected to said lithium battery and said first cardiac pacing device operating in an episodic manner and powered by said lithium battery, and a charge storage capacitor electrically connected to said lithium battery, said cardiac pacing system having at least one second device attached to said charge storage capacitor, and the second device:
- a) reads a rate of charge storage within said storage capacitor without disconnecting the electrical connection between said charge storage capacitor and said lithium battery orb) measures both charge added to said charge storage capacitor and a time during which said charge is added to said charge storage capacitor, said measuring of both charge added to said charge storage capacitor and a time during which said charge is added to said charge storage capacitor being performed without disconnecting the electrical connection between said charge storage capacitor and said lithium battery, and calculating a rate of charge storage in said charge storage capacitor,said process comprising the steps of adding charge to said charge storage capacitor from said lithium battery and;
i) finding a relatively quiescent period in powering of said first device in said episodic manner,ii) determining a rate of said charge storage in said charge storage capacitor during said relatively quiescent period, andiii) correlating said rate of charging in said charge storage capacitor to a value of internal resistance in said lithium battery to determine a value for the internal resistance of said lithium battery,said internal resistance estimating a level of power depletion in the cardiac pacing system having said lithium battery.
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Accused Products
Abstract
A system is described which has a battery, a device which is powered by the battery in an episodic manner, and a charge storage capacitor, the system having a device(s) attached to the charge storage capacitor which is capable of:
g) reading the rate of charge storage or
h) measuring both time and charge stored or added to the charge storage capacitor so that a rate of charge storage may be calculated.
The use of this system allows for easy estimation of the estimated replacement time for the battery, particularly for a lithium battery in a pacing device. A process for estimating a level of energy depletion in the system may comprise;
d) finding a relatively quiescent period in powering of the device in the episodic manner,
e) determining a rate of charging in the storage capacitor during the quiescent period, and
f) correlating the rate of charging in the storage capacitor to a value of internal resistance in the battery through a comparison with known relationships for the battery and rate of charging to determine a value for the internal resistance of the battery.
117 Citations
22 Claims
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1. A process for estimating a level of power depletion in a cardiac pacing system having a lithium battery, a first cardiac pacing device electrically connected to said lithium battery and said first cardiac pacing device operating in an episodic manner and powered by said lithium battery, and a charge storage capacitor electrically connected to said lithium battery, said cardiac pacing system having at least one second device attached to said charge storage capacitor, and the second device:
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a) reads a rate of charge storage within said storage capacitor without disconnecting the electrical connection between said charge storage capacitor and said lithium battery or b) measures both charge added to said charge storage capacitor and a time during which said charge is added to said charge storage capacitor, said measuring of both charge added to said charge storage capacitor and a time during which said charge is added to said charge storage capacitor being performed without disconnecting the electrical connection between said charge storage capacitor and said lithium battery, and calculating a rate of charge storage in said charge storage capacitor, said process comprising the steps of adding charge to said charge storage capacitor from said lithium battery and; i) finding a relatively quiescent period in powering of said first device in said episodic manner, ii) determining a rate of said charge storage in said charge storage capacitor during said relatively quiescent period, and iii) correlating said rate of charging in said charge storage capacitor to a value of internal resistance in said lithium battery to determine a value for the internal resistance of said lithium battery, said internal resistance estimating a level of power depletion in the cardiac pacing system having said lithium battery. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 21, 22)
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19. A process for indicating estimated replacement time for a battery in a cardiac pacing system, said system having a) a battery, b) a first device delivering pacing current to a patient, with the first device electrically connected to said battery and the first device operating in an episodic manner and powered by said battery, and c) a second device estimating pacing current from said battery to said first device,
said process comprises said second device estimating said pacing current without said first device being electrically disconnected from said battery, estimating undelivered power available from said battery, and then comparing the estimated pacing current with both 1) programmed pulse rates in said cardiac pacing system and 2) the undelivered power available from said battery to indicate a replacement time for said battery.
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20. A process for estimating a level of energy depletion in a battery in a system having a lithium battery, a first device operating in an episodic manner electrically connected to and powered by said lithium battery, and a charge storage capacitor electrically connected to said lithium battery, said system having second device(s) attached to said charge storage capacitor, and the process comprising said second device(s):
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a) reading a first rate of charge storage of said charge storage capacitor or b) measuring both charge added to said charge storage capacitor and a time during which said charge is added to said charge storage capacitor, said measuring of both charge added to said charge storage capacitor and a time during which said charge is added to said charge storage capacitor being performed without disconnecting the electrical connection between said charge storage capacitor and said lithium battery, and calculating a second rate of charge storage, said process further comprising the steps of adding charge to said charge storage capacitor from said lithium battery and; i) finding a relatively quiescent period in powering of said first device in said episodic manner, ii) determining a third rate of charging in said charge storage capacitor during said relatively quiescent period, iii) correlating said third rate of charging in said charge storage capacitor to a value of internal resistance in said lithium battery to determine a value for internal resistance of said battery, and iv) comparing said value for internal resistance of said lithium battery with known relationships between said internal resistance of said lithium battery and depleted charge from said lithium battery to estimate the level of depletion of said lithium battery.
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Specification