IP Library › Granted Patent US 11,594,906
Granted Patent B2
US 11,594,906 · App. 16/505,258 · Granted Feb 28, 2023

Battery charging method and charging system for charging a battery with a rest period

Inventors: Dong Rak Kim (Yongin-si, KR); Jung Gun Park (Yongin-si, KR); Jung Pil Park (Yongin-si, KR)
Assignee: Samsung SDI Co., Ltd.
H02J7/007H02J7/0071H02J7/007194
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 11,594,906
App. No.
16/505,258
Granted
Feb 28, 2023
Kind
B2
Abstract

The present application relates to a battery charging method and charging system which can prevent degradation of a battery and enhance the lifetime characteristics thereof. In one aspect, the charging method includes charging a battery at a first C-rate higher than a reference C-rate, wherein the C-rate represents charge or discharge current/a rated capacity of the battery. The charging method also includes charging the battery at a second C-rate lower than the reference C-rate. The charging of the battery at the first C-rate includes at least one rest period for temporarily stopping the charging of the battery.

Claims (32)

1. A battery charging method comprising:

charging a battery in an initial charging including charging the battery at a first plurality of C-rates, each of the first plurality of C-rates is higher than a reference C-rate, wherein the C-rate represents the ratio of charge or discharge current to a rated capacity of the battery, wherein the first plurality of C-rates include a first C-rate and a second C-rate higher than the first C-rate, and wherein charging the battery at the second C-rate is performed after charging the battery at the first C-rate;

charging the battery in a subsequent charging including charging the battery at a second plurality C-rates, each of the second plurality of C-rates is lower than the reference C-rate; and

receiving a variation in a temperature of the battery from a sensor,

wherein charging the battery in the initial charging includes at least one rest period for temporarily stopping the charging of the battery, and

wherein the rest period begins when the received temperature variation of the battery is higher than a reference value.

2. The battery charging method of claim 1 , wherein a time point of the rest period corresponds to a time point in which C-rates of the battery are changed.

3. The battery charging method of claim 1 , wherein charging the battery at the second C-rate includes more than two rest periods for temporarily stopping the charging of the battery.

4. The battery charging method of claim 1 , wherein charging the battery at the first C-rate includes no rest period for temporarily stopping the charging of the battery.

5. The battery charging method of claim 1 , wherein the at least one rest period comprises a plurality of rest periods defining intervals therebetween, and wherein at least two of the intervals have different lengths.

6. The battery charging method of claim 1 , wherein the second plurality of C-rates include a third C-rate, a fourth C-rate lower than the third C-rate, and a fifth C-rate lower than the fourth C-rate, wherein charging the battery at the fourth C-rate is performed after charging the battery at the third C-rate, and wherein charging the battery at the fifth C-rate is performed after charging the battery at the fourth C-rate.

7. A battery charging method comprising:

charging a battery in an initial charging including charging the battery at a first plurality of C-rates, each of the first plurality of C-rates is higher than a reference C-rate, wherein the C-rate represents the ratio of charge or discharge current to a rated capacity of the battery, wherein the first plurality of C-rates include a first C-rate and a second C-rate higher than the first C-rate, and wherein charging the battery at the second C-rate is performed after charging the battery at the first C-rate;

subsequent to charging the battery in the initial charging, charging the battery in a subsequent charging including charging the battery at a second plurality C-rates, wherein each of the second plurality of C-rates is lower than the reference C-rate;

providing a rest period for temporarily stopping the charging of the battery at time points when C-rates are changed in the charging of the battery in the initial charging and the charging of the battery in the subsequent charging; and

receiving a variation in a temperature of the battery from a sensor,

wherein the rest period beings when the received temperature variation of the battery is higher than a reference value.

8. The battery charging method of claim 7 , wherein the rest period is provided at least once.

9. The battery charging method of claim 7 , wherein the rest period is provided in the charging of the battery at the first C-rate at least once.

10. The battery charging method of claim 7 , wherein the rest period is provided in the charging of the battery at the second C-rate at least once.

11. A battery charging system comprising:

a main controller configured to control a battery and a charging operation of the battery, wherein the main controller is configured to first charge the battery in an initial charging including charging the battery at a first plurality of C-rates, each of the first plurality of C-rates is higher than a reference C-rate and then allow a rest period for temporarily stopping the charging of the battery while charging the battery at one of the first plurality of C-rates, wherein the C-rate represents charge or discharge current/a rated capacity of the battery, wherein the first plurality of C-rates include a first C-rate and a second C-rate higher than the first C-rate, wherein the main controller is configured to charge the battery at the second C-rate after charging the battery at the first C-rate, and

wherein the main controller is further configured to receive a variation in a temperature of the battery from a sensor, and control the battery and the charging operation of the battery such that the rest period beings when the received temperature variation of the battery is higher than a reference value.

12. The battery charging system of claim 11 , wherein the main controller comprises:

the sensor configured to sense voltages and currents of the battery;

a charge current supply configured to supply charge current of the battery; and

a controller configured to receive information from the sensor and control the charge current supply.

13. The battery charging system of claim 12 , wherein the controller is configured to output a rest command, for temporarily stopping the charging of the battery, to the charge current supply, in response to the temperature variation of the battery being higher than the reference value.

14. The battery charging system of claim 12 , wherein the controller is configured to output a rest command, for temporarily stopping the charging of the battery, to the charge current supply at a time point when C-rates are changed.

15. The battery charging system of claim 11 , wherein the main controller is configured to, subsequent to charging the battery at the first C-rate, charge the battery at a second C-rate lower than the reference C-rate after the first charging.

16. The battery charging system of claim 15 , wherein the main controller is configured to provide the rest period in the second charging at least once.

17. The battery charging system of claim 15 , wherein the main controller is configured to provide the rest period at time points when C-rates are changed in the first charging and the second charging.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 9, 2019
From: KIM, DONG RAK; PARK, JUNG GUN; PARK, JUNG PIL
To: SAMSUNG SDI CO., LTD.
Reel/Frame 049698/0954 →
Priority Claims (1)
KR 10-2017-0010200 · Jan 23, 2017 · national
Continuity (2)
Continuation PCTKR2017012889 · Nov 14, 2017
Related Publication 20190334355A1 · Oct 31, 2019
Cited By (2)
US 12,500,435 US 12,732,012