IP Library Patent Application 12546390
Patent Application
App. No. 12/546,390

VOLTAGE EQUALIZATION APPARATUS AND METHOD FOR BATTERY SYSTEM

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 None
App. No.
12/546,390
Abstract

The present invention provides a voltage equalization apparatus and method for a battery system. The apparatus includes: a mutual inductor or a transformer, which includes a primary winding, a magnetic core and multiple secondary windings; a first switch, connected in series with the primary winding, wherein the first switch and the primary winding are connected in parallel with the battery system; a plurality of second switches, respectively connected in series with the secondary windings, wherein the second switches and the secondary windings are connected in parallel with the cells; and a voltage equalization control circuit, configured to: test voltage of each cell in the battery system and control turning off and turning on of the first switch and second switches.

Claims (36)

1 . A voltage equalization apparatus for a battery system with more than two serial cells, comprising:

a mutual inductor or a transformer, comprising a primary winding, a magnetic core and a plurality of secondary windings;

a first switch, connected in series with the primary winding, wherein the first switch and the primary winding are connected in parallel with the battery system;

a plurality of second switches, respectively connected in series with the secondary windings, wherein the second switches and the secondary windings are connected in parallel with the cells; and

a voltage equalization control circuit, configured to: test voltage of each cell in the battery system and control turning off and turning on of the first switch and second switches; and when the battery system is charged, turn on a second switch in parallel with a cell of highest voltage, and after a first preset time turn off the second switch with the cell of highest voltage and turn on the first switch.

2 . The apparatus of claim 1 , wherein the voltage equalization control circuit is further configured to: when the battery system is discharged, turn on the first switch, and after a second preset time turn off the first switch and turn on a second switch in parallel with a cell of lowest voltage.

3 . The apparatus of claim 2 , wherein the voltage equalization control circuit comprises:

a judging unit, configured to judge whether the battery system is charged or discharged and generate a state signal;

a voltage testing unit, configured to test voltage of each cell in the battery system; and

a controlling unit, connected to the judging unit and the voltage testing unit, and configured to: turn on the second switch in parallel with the cell of highest voltage when the battery system is charged, and turn off the second switch in parallel with the cell of highest voltage and turn on the first switch after the first preset time; or turn on the first switch when the battery system is discharged, and turn off the first switch and turn on the second switch in parallel with the cell of lowest voltage after the second preset time.

4 . The apparatus of claim 2 , wherein the voltage equalization control circuit further comprises:

a resetting unit, connected to the controlling unit, and configured to: turn off the first switch after the first switch is on for a third preset time when the battery system is charged; or turn off the second switch in parallel with the cell of lowest voltage after the second switch in parallel with the cell of lowest voltage is on for a fourth preset time when the battery system is discharged.

5 . The apparatus of claim 1 , wherein:

the first switch and the second switches are triodes or metal-oxide-semiconductor field-effect transistors, MOSFETs.

6 . The apparatus of claim 1 , wherein the voltage equalization control circuit comprises:

a voltage testing unit, configured to test voltage of each cell in the battery system; and

a controlling unit, connected to the judging unit and the voltage testing unit, and configured to: turn on the second switch in parallel with the cell of highest voltage when the battery system is charged, and turn off the second switch in parallel with the cell of highest voltage and turn on the first switch after the first preset time.

7 . The apparatus of claim 1 , wherein the voltage equalization control circuit further comprises:

a resetting unit, connected to the controlling unit, and configured to: turn off the first switch after the first switch is on for a third preset time when the battery system is charged.

8 . A voltage equalization apparatus for a battery system with more than two serial cells, comprising:

a mutual inductor or a transformer, comprising a primary winding, a magnetic core and a plurality of secondary windings;

a first switch, connected in series with the primary winding, wherein the first switch and the primary winding are connected in parallel with the battery system;

a plurality of second switches, respectively connected in series with the secondary windings, wherein the second switches and the secondary windings are connected in parallel with the cells; and

a voltage equalization control circuit, configured to: test voltage of each cell in the battery system and control turning off and turning on of the first switch and second switches; and when the battery system is discharged, turn on the first switch, and after a second preset time turn off the first switch and turn on a second switch in parallel with a cell of lowest voltage.

9 . The apparatus of claim 8 , wherein the voltage equalization control circuit comprises:

a voltage testing unit, configured to test voltage of each cell in the battery system; and

a controlling unit, connected to the judging unit and the voltage testing unit, and configured to: turn on the first switch when the battery system is discharged, and turn off the first switch and turn on the second switch in parallel with the cell of lowest voltage after the second preset time.

10 . The apparatus of claim 8 , wherein the voltage equalization control circuit further comprises:

a resetting unit, connected to the controlling unit, and configured to: turn off the second switch in parallel with the cell of lowest voltage after the second switch in parallel with the cell of lowest voltage is on for a fourth preset time when the battery system is discharged.

11 . A voltage equalization method for a battery system with more than two serial cells, comprising:

judging whether the battery system is charged or discharged;

testing voltage of each cell in the battery system; and

when the battery system is charged, turning on a second switch in parallel with a cell of highest voltage, and turning off the second switch in parallel with a cell of highest voltage and turning on a first switch in parallel with the battery system after the second switch in parallel with a cell of highest voltage is on for a first preset time; or when the battery system is discharged, turning on the first switch in parallel with the battery system; and turning off the first switch and turning on the second switch in parallel with a cell of lowest voltage after the first switch is on for a second preset time;

wherein second switches are respectively connected in series with secondary windings of a mutual inductor or a transformer, and the second switches and the secondary windings are connected in parallel with the cells.

12 . The method of claim 11 , further comprising:

when the battery system is charged, turning off the first switch after the first switch is on for a third preset time, or when the battery system is discharged, turn off the second switch in parallel with a cell of lowest voltage after the second switch in parallel with a cell of lowest voltage is on for a fourth preset time.

Assignments (2)
CHANGE OF NAME Recorded Jan 29, 2010
From: SHENZHEN HUAWEI COMMUNICATION TECHNOLOGIES CO., LTD.
To: HUAWEI DEVICE CO., LTD.
Reel/Frame 023871/0290 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 25, 2009
From: GUO, ZUFENG
To: SHENZHEN HUAWEI COMMUNICATION TECHNOLOGIES CO., LTD.
Reel/Frame 023144/0777 →