IP Library Granted Patent US 10,109,888
Granted Patent B2
US 10,109,888 · App. 14/525,192 · Granted Oct 23, 2018

Serviceable battery pack

Inventor: Karl F. Scheucher (Waite Hill, OH)
H01M10/4207B60K1/04B60L3/0046B60L3/0053B60L11/182B60L11/185B60L11/1816B60L11/1822B60L11/1824B60L11/1879H01M2/1077H01M2/34H01M10/0525H01M10/425H01M10/482B60K2001/0411B60K2001/0416B60K2001/0455B60K2001/0477B60K2001/0483B60L2210/20B60L2240/525B60L2270/34H01M2/1072H01M10/613H01M10/625H01M10/643H01M10/6557H01M10/6561H01M2200/00H01M2220/20H02J7/0013Y02E60/12Y02T10/7005Y02T10/705Y02T10/7055Y02T10/7072Y02T10/725Y02T90/121Y02T90/122Y02T90/124Y02T90/127Y02T90/128Y02T90/14Y02T90/16Y02T90/34
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Quick Facts
Patent No.
US 10,109,888
App. No.
14/525,192
Granted
Oct 23, 2018
Kind
B2
Abstract

A fail safe battery pack is disclosed and claimed wherein first and second housings are affixed together. A plurality of battery cells reside within and fixedly engage the first and the second housings. First and second printed circuit boards (PCBs) reside within first and second lattice structures of the first and second housings. A variable bias device resides in the first and/or second lattice structure of the first and second housing and engages the first and/or second PCBs. When the bias of the variable bias device is sufficiently large it overcomes a plurality of fixed mechanically biased devices operating between the PCB and the plurality of battery cells and tending to separate same and causes the PCB to electrically communicate with the plurality of battery cells. When the bias of the variable bias device is sufficiently small, the plurality of fixed mechanically biased devices separates the PCB and the plurality of battery cells rendering the battery cells in an electrically safe condition.

Claims (51)

1. A process for operating a battery pack service station to repair a battery pack, said service station includes a controller, said battery pack includes a plurality of cells, comprising the steps of:

determining, using said controller, a failed cell of said plurality of cells of said battery pack;

removing said failed cell from said battery pack;

determining, using said controller, a characteristic of a non-failed cell of said battery pack;

selecting a replacement cell;

determining a characteristic of said replacement cell using said controller;

comparing, using said controller, said characteristic of said replacement cell to said characteristic of said non-failed cell, and

deciding, using said controller, whether said replacement cell can be substituted for said failed cell in said battery pack.

2. A process for operating a battery pack service station to repair a battery pack as claimed in claim 1 , further comprising the step of:

adding said non-failed cell to a cell inventory.

3. A process for operating a battery pack service station to repair a battery pack as claimed in claim 1 , said battery pack includes a controller, further comprising the steps of:

communicating information between said battery pack controller and said service station controller, and

using said information in said step of determining said failed cell.

4. A process for operating a battery pack service station to repair a battery pack as claimed in claim 3 further comprising the step of:

using said information in said step of determining said characteristic of said non-failed cell.

5. A process for operating a battery pack service station to repair a battery pack as claimed in claim 4 wherein said information includes the age of said non-failed cell.

6. A process for operating a battery pack service station to repair a battery pack as claimed in claim 2 , including an owner of said battery pack, further comprising the steps of:

calculating, using said controller, a second characteristic of said non-failed cell;

calculating a remaining value based upon said second characteristic of said non-failed cell, and

crediting said owner with said remaining value when said non-failed cell is added to said cell inventory.

7. A process for operating a battery pack service station, said service station includes a service station controller and an electrical load, said battery pack includes a plurality of cells and a battery pack controller, comprising the steps of:

determining, using said service station controller, a failed cell of said plurality of cells of said battery pack;

removing said failed cell from said battery pack;

matching, using said service station controller and said electrical load, a characteristic of a non-failed cell of said battery pack to a replacement cell using a characteristic of said replacement cell, and

repairing said battery pack using said replacement cell.

8. A process for operating a battery pack service station to repair a battery pack as claimed in claim 1 , said battery pack service station comprises an electrical load, a voltage sensor, and an electrical current sensor, wherein said controller uses, in said steps of determining said characteristic of said non-failed cell and said characteristic of said replacement cell, said electrical load, said voltage sensor and said electrical current sensor.

9. A process for operating a battery pack service station to repair a battery pack as claimed in claim 8 wherein said characteristic of said non-failed cell is capacity and said characteristic of said replacement cell is capacity.

10. A process for operating a battery pack service station to repair a battery pack as claimed in claim 8 wherein said characteristic of said non-failed cell is internal impedance and said characteristic of said replacement cell is internal impedance.

11. A process for operating a battery pack service station to repair a battery pack as claimed in claim 8 , said battery pack service station further comprises a temperature sensor, wherein said controller uses, in said steps of determining said characteristic of said non-failed cell and said characteristic of said replacement cell, said temperature sensor.

12. A process for operating a battery pack service station to repair a battery pack as claimed in claim 11 wherein said characteristic of said non-failed cell is thermal performance and said characteristic of said replacement cell is thermal performance.

13. A process for operating a battery pack service station as claimed in claim 7 wherein said characteristic of said non-failed cell is capacity and said characteristic of said replacement cell is capacity.

14. A process for operating a battery pack service station as claimed in claim 7 wherein said characteristic of a said non-failed cell is internal resistance and said characteristic of said replacement cell is internal resistance.

15. A process for operating a battery pack service station as claimed in claim 7 wherein said characteristic of said non-failed cell is age and said characteristic of said replacement cell is age.

16. A process for operating a battery pack service station as claimed in claim 7 wherein said characteristic of said non-failed cell is voltage and said characteristic of said replacement cell is voltage.

17. A process for operating a battery pack service station as claimed in claim 7 wherein said characteristic of said non-failed cell is the combination of size, chemistry, and energy density and said characteristic of said replacement cell is the combination of size, chemistry, and energy density.

18. A process for operating a battery pack service station as claimed in claim 7 wherein said characteristic of said non-failed cell is the combination of size, chemistry, and power density and said characteristic of said replacement cell is the combination of size, chemistry, and power density.

19. A process for operating a battery pack service station comprising the steps of:

detecting, using a controller, a failed cell in a battery pack;

selecting, using said controller, a non-failed cell of said battery pack;

measuring, using said controller and a temperature sensor, a first temperature of said non-failed cell;

measuring, using said controller, a characteristic of said non-failed cell at said first temperature;

measuring, using said controller and said temperature sensor, a second temperature of said non-failed cell;

measuring, using said controller, said characteristic of said non-failed cell at said second temperature;

selecting a replacement cell from an inventory of cells;

measuring, using said controller and said temperature sensor, a third temperature of said replacement cell;

measuring, using said controller, a characteristic of said replacement cell at said third temperature;

measuring, using said controller and said temperature sensor, a fourth temperature of said replacement cell;

measuring, using said controller, said characteristic of said replacement cell at said fourth temperature;

comparing said characteristic of said non-failed cell measured at said first and second temperatures to said characteristic of said replacement cell measured at said third and fourth temperatures, and

deciding whether said replacement cell is compatible with said non-failed cell.

20. A process for operating a battery pack service station as claimed in claim 19 wherein said characteristic of said non-failed cell is internal resistance and said characteristic of said replacement cell is internal resistance.

Continuity (10)
Continuation 12883175 · Sep 15, 2010
Continuation In Part 11851504 · Sep 7, 2007
Continuation In Part 11672853 · Feb 8, 2007
Continuation In Part 11672957 · Feb 8, 2007
Continuation In Part 11673551 · Feb 9, 2007
Provisional Application 61242782 · Sep 15, 2009
Provisional Application 60771771 · Feb 9, 2006
Provisional Application 60781959 · Mar 12, 2006
Provisional Application 60911564 · Apr 13, 2007
Related Publication 20150044518A1 · Feb 12, 2015
Cited By (3)
US 12,463,456 US 12,625,480 US 12,633,762