AU748552B2

Use of double cells to power an implantable medical device

Abstract

This record has no abstract on file.

AU748552B2, drawing sheet 1
Sheet 1 of 28

Term

Term ended

Expired 18 November 2018, 7.8 years ago.

  1. Priority
  2. Filed
  3. Granted
  4. Expired
  5. Today

49 claims: 2 independent, 47 dependent

  1. 2
    4. The combination of claim 1 wherein the first and second cells each include a lithium anode and a solid cathode.
    3
    5. The combination of claim 1 wherein for each of the cells, the anode includes lithium anode active material in electrical contact with a nickel current collector and the cathode includes silver vanadium oxide active material in electrical contact with a titanium current collector and wherein the anode and the cathode are activated with the electrolyte solution including 1.0 M LiAsF 6 in a 50:50 mixture, by volume, of propylene carbonate and 1,2-dimethoxyethane.
    4
    6. The combination of claim 1 wherein the second cell has less discharge capacity than the first cell before the cells are discharged.
    5
    7. The combination of claim 1 wherein the two cells are housed in a common casing.
    6
    8. The combination of claim 1 wherein the first and second substantially constant discharge current are about 1 microampere to about 100 milliamperes.
    7
    9. The combination of claim 1 wherein the first and second current pulse discharges are about 1 ampere to about 4 amperes.
    8
    10. The combination of claim 1 wherein the first and second substantially constant discharge current are about 1 microampere to about 100 milliamperes and the first and second current pulse discharges are of at least about 1 ampere.
  2. 9
    11. In combination with an implantable medical device requiring a substantially constant discharge current during a medical device monitoring function and at least one current pulse discharge for a medical device operating function, at least two electrochemical cells, which includes:b) a first electrochemical cell serving as a first power source for the medical device to deliver a first substantially constant discharge current interruptable from time-to-time to deliver a first current pulse discharge;b) a second electrochemical cell serving as a second power source for the medical device to deliver a second substantially constant discharge current interruptable from time-to-time to deliver a second current pulse discharge;and c) a switch coupled between the first and second cells and the medical device, wherein the switch is actuatable to initially connect the first cell as the sole power source for the medical device monitoring function and the medical device operating function until the first cell's energy capacity is depleted to a first predetermined threshold and wherein the switch is then actuatable to connect the second cell to the medical device as the power source for the medical device operating function while the first cell continues to provide the power for the medical device monitoring function, wherein the switch is then actuatable at such time as the first cell's energy capacity is depleted to a second predetermined threshold to disconnect the first cell as the power source for the medical device.
  3. 31
    33. A method of powering an implantable medical device requiring a substantially constant discharge current during a device monitoring function interrupted from time-to-time by at least one current pulse discharge for a medical device operating function, including the steps of:a) providing a first electrochemical cell and a second electrochemical cell coupled to the medical device by a switch;b) connecting the first cell to the medical device as the sole power source for the medical device monitoring function and the medical device operating function and discharging the first cell until the first cell's energy capacity is depleted to a first predetermined threshold;c) actuating the switch to connect the second cell to the medical device as the power source for the medical device operating function with the first cell continuing to provide the power for the medical device monitoring function;and d) actuating the switch to disconnect the first cell from the medical device at such time as the first cell's energy capacity is depleted to a second predetermined threshold.