IP Library Granted Patent US 10,291,046
Granted Patent B2
US 10,291,046 · App. 15/626,553 · Granted May 14, 2019

Method for fast charging lithium-ion batteries

Inventors: Nikhil Ravi (Redwood City, CA); Anantharaman Subbaraman (Mountain View, CA); Reinhardt Klein (Mountain View, CA); Ashish Krupadanam (Cupertino, CA); Anahita MirTabatabaei (San Francisco, CA); Gerd Simon Schmidt (Cupertino, CA); Christoph Klee (Stuttgart, DE)
Assignee: Robert Bosch GmbH
H02J7/0057G01R31/3624H02J7/007H02J7/0045H02J7/0083H02J2007/0096
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,291,046
App. No.
15/626,553
Granted
May 14, 2019
Kind
B2
Abstract

A method for charging a battery comprises: measuring a battery voltage with a voltage sensor and a battery current with a current sensor; applying, with a charging circuit, a first charging current to the battery until the measured battery voltage exceeds a predetermined voltage threshold, a magnitude of the first charging current being held at a first constant value; applying, with the charging circuit, in response to the measured battery voltage exceeding the predetermined voltage threshold, a second charging current to the battery until a cutoff criterion is satisfied, a magnitude of the second charging current being such that the battery voltage exceeds a steady state voltage limit for the battery; after the cutoff criterion is satisfied, determining a rest voltage of the battery; and updating the cutoff criterion based on a difference between the determined rest voltage and a target rest voltage.

Claims (59)

1. A method for charging a battery, the method comprising:

measuring a battery voltage of the battery with a voltage sensor and a battery current of the battery with a current sensor;

applying, with a charging circuit, a first charging current to the battery until the measured battery voltage exceeds a predetermined voltage threshold, a magnitude of the first charging current being held at a first constant value;

applying, with the charging circuit, in response to the measured battery voltage exceeding the predetermined voltage threshold, a second charging current to the battery until a cutoff criterion is satisfied, a magnitude of the second charging current being such that the measured battery voltage exceeds a steady state voltage limit for the battery;

after the cutoff criterion is satisfied, determining a rest voltage of the battery; and

updating the cutoff criterion based on a difference between the determined rest voltage of the battery and a target rest voltage of the battery.

2. The method of claim 1 , the applying of the second charging current further comprising:

varying the magnitude of the second charging current in response to difference between the measured battery voltage and a target monotonically increasing battery voltage.

3. The method of claim 1 , the applying of the second charging current further comprising:

varying the magnitude of the second charging current in response to a difference between the measured battery current and a target monotonically decreasing battery current.

4. The method of claim 1 , the applying of the second charging current further comprising:

varying the magnitude of the second charging current in response to difference between the measured battery voltage and a target constant battery voltage, the target constant battery voltage being greater than the steady state voltage limit for the battery,

wherein the predetermined voltage threshold is greater than the steady state voltage limit for the battery.

5. The method of claim 1 , the applying of the second charging current further comprising:

holding the magnitude of second charging current at a second constant value that is less than the first constant value.

6. The method of claim 1 , the applying of the second charging current until the cutoff criterion is satisfied further comprising:

comparing a measured current with a predetermined current threshold; and

ceasing the application of the second charging current in response to the measured current falling below the predetermined current threshold.

7. The method of claim 1 , the applying of the second charging current until the cutoff criterion is satisfied further comprising:

comparing an amount of time since a start of the application of the second charging current with a predetermined threshold amount of time; and

ceasing the application of the second charging current in response to the amount of time since the start of the application of the second charging current exceeding the predetermined threshold amount of time.

8. The method of claim 1 further comprising, before the applying of the first charging current:

receiving, with the charging circuit, the cutoff criterion from battery electronics of the battery.

9. The method of claim 1 further comprising:

transmitting the updated cutoff criterion from the charge controller to battery electronics of the battery.

10. The method of claim 1 further comprising:

storing the updated cutoff criterion on a memory of the battery.

11. A charging system for charging a battery, the charging system comprising:

a charging circuit configured to connect to a power source and to the battery, the charging circuit configured to draw current from the power source to apply charging currents to the battery;

a voltage sensor configured to measure a battery voltage of the battery;

a current sensor configured to measure a battery current of the battery; and

a charge controller operably connected to the charging circuit, the voltage sensor, and the current sensor, the charge controller configured to:

operate the voltage sensor to measure a battery voltage of the battery and operate the current sensor to measure a battery current of the battery;

operate the charging circuit to apply a first charging current to the battery until the measured battery voltage exceeds a predetermined voltage threshold, a magnitude of the first charging current being held at a first constant value; and

operate the charging circuit to apply, in response to the measured battery voltage exceeding the predetermined voltage threshold, a second charging current to the battery until a cutoff criterion is satisfied, a magnitude of the second charging current being such that the measured battery voltage exceeds a steady state voltage limit for the battery,

wherein at least one of the charge controller and a battery controller of the battery is configured to:

after the cutoff criterion is satisfied, determine a rest voltage of the battery; and

update the cutoff criterion based on a difference between the determined rest voltage of the battery and a target rest voltage of the battery.

12. The charging system of claim 11 , the charge controller further configured to:

operate the charging circuit to vary the magnitude of the second charging current in response to difference between the measured battery voltage and a target monotonically increasing battery voltage.

13. The charging system of claim 11 , the charge controller further configured to:

operate the charging circuit to vary the magnitude of the second charging current in response to a difference between the measured battery current and a target monotonically decreasing battery current.

14. The charging system of claim 11 , the charge controller further configured to:

operate the charging circuit to vary the magnitude of the second charging current in response to difference between the measured battery voltage and a target constant battery voltage, the target constant battery voltage being greater than the steady state voltage limit for the battery,

wherein the predetermined voltage threshold is greater than the steady state voltage limit for the battery.

15. The charging system of claim 11 , the charge controller further configured to:

operate the charging circuit to hold the magnitude of second charging current at a second constant value that is less than the first constant value.

16. The charging system of claim 11 , the charge controller further configured to:

compare a measured current with a predetermined current threshold; and

operate the charging circuit to cease the application of the second charging current in response to the measured current falling below the predetermined current threshold.

17. The charging system of claim 11 , the charge controller further configured to:

compare an amount of time since a start of the application of the second charging current with a predetermined threshold amount of time; and

operate the charging circuit to cease the application of the second charging current in response to the amount of time since the start of the application of the second charging current exceeding the predetermined threshold amount of time.

18. The charging system of claim 11 , the charge controller further configured to, before operating the charging circuit to apply the first charging current:

receive the cutoff criterion from battery electronics of the battery.

19. The charging system of claim 11 , the charge controller further configured to, after the cutoff criterion is updated:

transmit the updated cutoff criterion to battery electronics of the battery.

20. The charging system of claim 11 , wherein battery controller of the battery is configured to, after the cutoff criterion is updated:

store the updated cutoff criterion on a memory of the battery.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 23, 2018
From: RAVI, NIKHIL; SUBBARAMAN, ANANTHARAMAN; KLEIN, REINHARDT; KRUPADANAM, ASHISH; MIRTABATABAEI, ANAHITA; SCHMIDT, GERD SIMON; KLEE, CHRISTOPH
To: ROBERT BOSCH GMBH
Reel/Frame 045879/0736 →
Continuity (2)
Provisional Application 62425683 · Nov 23, 2016
Related Publication 20180145526A1 · May 24, 2018
Cited By (2)
US 12,434,596 US 12,654,581