IP Library › Granted Patent US 10,432,005
Granted Patent B2
US 10,432,005 · App. 15/181,048 · Granted Oct 1, 2019

Discharge circuit for discharging a battery

Inventors: Andrew J. Namou (West Bloomfield, MI); Todd F. Mackintosh (Macomb, MI)
Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
H02J7/0063B60L3/0007B60L3/0046B60L3/04B60L50/61B60L50/66B60L58/12B60L58/21H01M10/44H02J7/0068H02J7/0072B60L2240/547B60L2270/00H01M2220/20H02J7/0029H02J2007/0067Y02T10/6217Y02T10/7005Y02T10/7011Y02T10/7016Y02T10/7044Y02T10/7061Y02T10/7077
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Quick Facts
Patent No.
US 10,432,005
App. No.
15/181,048
Granted
Oct 1, 2019
Kind
B2
Abstract

A system and method for discharging a high voltage vehicle battery. The system includes a discharge circuit having a reference voltage source providing a reference voltage and a load for discharging the battery. A negative terminal of the voltage source is electrically coupled to a negative terminal of the battery so that upon initiation of the discharging sequence, the battery is discharged through the load to the reference voltage. The discharge circuit can be electrically configured so that the battery, the voltage source and the load are electrically coupled in series or the battery, the voltage source and the load are electrically coupled in parallel.

Claims (26)

1. A discharge circuit for discharging a battery, said battery including a positive terminal and a negative terminal, said circuit comprising:

a reference voltage source providing a reference voltage, said voltage source including a negative terminal and a positive terminal, said voltage source being electrically coupled in parallel with the battery where the negative terminal of the voltage source is electrically coupled to the negative terminal of the battery;

a load electrically coupled in parallel with the battery and the voltage source, wherein a current flow through the load generated by the battery discharges the battery to the reference voltage;

a diode electrically coupled between the voltage source and the battery and preventing current flow from the battery from entering the voltage source; and

a switch, said switch being closed to begin the discharging of the battery;

wherein a first terminal of the switch is directly connected to a negative terminal of the battery.

2. The circuit according to claim 1 wherein the voltage source is a variable voltage source so that the reference voltage can be changed.

3. The circuit according to claim 1 wherein the voltage source and the load are part of a portable unit that can be selectively coupled to the battery.

4. The circuit according to claim 1 wherein the load is one or more resistors.

5. The circuit according to claim 1 wherein the battery is a high voltage battery having a voltage of 400 volts or more.

6. The circuit according to claim 1 where the battery is a vehicle battery.

7. A discharge circuit for discharging a battery on a vehicle, said battery including a positive terminal and a negative terminal, said circuit comprising:

a reference voltage source providing a reference voltage, said voltage source including a negative terminal and a positive terminal, said voltage source being electrically coupled in parallel with the battery where the negative terminal of the voltage source is electrically coupled to the negative terminal of the battery;

a load electrically coupled in parallel with the battery and the voltage source, wherein a current flow through the load generated by the battery discharges the battery to the reference voltage; and

a switch, said switch being closed to begin the discharging of the battery;

wherein a first terminal of the switch is directly connected to a negative terminal of the battery.

8. The circuit according to claim 7 wherein the voltage source and the load are part of a portable unit that can be selectively coupled to the battery.

9. The circuit according to claim 7 further comprising a switch, said switch being closed to begin the discharging of the battery.

10. The circuit according to claim 7 wherein the load is one or more resistors.

11. The circuit according to claim 7 further comprising a diode electrically coupled between the voltage source and the battery and preventing current flow from the battery from entering the voltage source.

12. The circuit according to claim 7 wherein the battery is a high voltage battery having a voltage of 400 volts or more.

13. A discharging circuit for use with a battery having a battery positive terminal and a battery negative terminal, the discharging circuit comprising:

a load having a first load terminal and second load terminal, the first load terminal being directly connected to the battery positive terminal and the second load terminal being directly connected to ground;

a switch having a first switch terminal and a second switch terminal, the first switch terminal being directly connected to the battery negative terminal and the second switch terminal being directly connected to the second load terminal and ground;

a reference voltage source having a positive reference terminal and a negative reference terminal, the negative reference terminal being directly connected to the second load terminal, the second switch terminal, and ground; and

a diode having a cathode and an anode, the anode being directly connected to the positive reference terminal and the cathode being directly connected to the battery positive terminal and the first load terminal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2016
From: NAMOU, ANDREW J.; MACKINTOSH, TODD F.
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 038900/0351 →
Continuity (2)
Division 13545748 · Jul 10, 2012
Related Publication 20160285296A1 · Sep 29, 2016