IP Library Granted Patent US 6,975,493
Granted Patent B2
US 6,975,493 · App. 10/355,354 · Granted Dec 13, 2005

Overvoltage transient protection for low side circuits

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Quick Facts
Patent No.
US 6,975,493
App. No.
10/355,354
Granted
Dec 13, 2005
Kind
B2
Abstract

A low side overvoltage protection circuit configuration comprising: a first switching device in operable communication with and disposed between a ground and a protected ground; a load in operable communication with and disposed between a voltage source and the protected ground; a control circuit configured to control the first switching device in operable communication with a transient protected voltage source. The first switching device is configured to provide electrical circuit isolation of the protected ground from the ground. Also, a method for providing a low side circuit overvoltage protection comprising: detecting an overvoltage transient on a voltage source; isolating a protected ground from a circuit ground with a first switching device; and controlling the first switching device with a control circuit in operable communication with transient protected voltage source. The control circuit is responsive to an overvoltage transient of the voltage source.

Claims (39)

1. A low side overvoltage protection circuit configuration comprising:

a first switching device in operable communication with and disposed between a ground and a protected ground;

a load in operable communication with and disposed between a voltage source and said protected ground;

a control circuit configured to control said first switching device in operable communication with a transient protected voltage source; and

wherein said first switching device is configured to provide electrical circuit isolation of said protected ground from said ground.

2. The circuit configuration of claim 1 wherein said transient protected voltage source comprises a resistor in series with a zener diode, said resistor in operable communication with said voltage source and said zener diode also in communication with said ground.

3. The circuit configuration of claim 1 wherein said first switching device is a n-channel MOSFET arranged with a drain thereof operably connected to said protected ground, a source thereof operably connected to said ground, and a gate thereof in operable communication with said control circuit and a pull up resistor in operable communication with said voltage source.

4. The circuit configuration of claim 3 further including a zener diode disposed from said gate of said n-channel MOSFET to said source thereof.

5. The circuit configuration of claim 1 wherein said control circuit comprises a comparator operably connected to a reference voltage source and another voltage source based on said voltage source.

6. The circuit configuration of claim 5 wherein said comparator provides a command of substantially ground to said first switching device if said voltage source exceeds a selected threshold.

7. The circuit configuration of claim 5 wherein said reference voltage source comprises a zener diode in series with a resistor, said resistor also in operable communication with said voltage source and said zener diode also in communication with said ground.

8. The circuit configuration of claim 5 wherein said voltage source comprises a series combination of a plurality of resistors, a first resistor of said plurality of resistors also in operable communication with said voltage source and second resister of said plurality of resistors also in communication with said ground.

9. The circuit configuration of claim 1 wherein said control circuit comprises a second switching device operably connected to a second voltage source responsive said voltage source exceeding a selected threshold.

10. The circuit configuration of claim 9 wherein said second switching device is a n-channel MOSFET arranged with a drain thereof operably connected to a gate of said first switching device and a source thereof operably connected to said ground, and a gate thereof in operable communication with said second voltage source.

11. The circuit configuration of claim 9 wherein said second switching device provides a command of substantially ground to said first switching device if said voltage source exceeds a selected threshold.

12. The circuit configuration of claim 9 wherein said second voltage source comprises a resistor in series with a zener diode in series with another resistor, said another resistor also in operable communication with and disposed from a gate of said second switching device to a source thereof and said ground.

13. The circuit configuration of claim 9 wherein said voltage source comprises a series combination of a plurality of resistors, a first resistor of said plurality of resistors also in operable communication with said voltage source and a second resister of said plurality of resistors also in communication with said ground.

14. A method for providing a low side circuit overvoltage protection comprising:

detecting an overvoltage transient on a voltage source;

isolating a protected ground from a circuit ground with a first switching device; and

controlling said first switching device with a control circuit in operable communication with another transient protected voltage source; said control circuit responsive to an overvoltage transient of said voltage source.

15. The method of claim 14 wherein said another transient protected voltage source comprises a resistor in series with a zener diode.

16. The method of claim 14 wherein said isolating comprises providing a substantially open circuit between said protected ground and said circuit ground.

17. The method of claim 14 wherein said first switching device is an n-channel MOSFET arranged with a drain thereof operably connected to said protected ground and a source thereof operably connected to said circuit ground.

18. The method of claim 14 wherein said controlling comprises commanding said first switching device to an off state for said overvoltage transient of said voltage source.

19. The method of claim 14 further including a load in operable communication with, disposed between said voltage source, and said protected ground.

20. A system for providing a low side circuit overvoltage protection comprising:

a means for detecting an overvoltage transient on a voltage source;

a means for isolating a protected ground from a circuit ground with a first switching device; and

a means for controlling said first switching device with a control circuit in operable communication with a transient protected voltage source; said control circuit responsive to an overvoltage transient of said voltage source.

21. A vehicle steering system with a low side overvoltage protection circuit configuration comprising:

a steerable wheel;

a steering mechanism operably connected to said steerable wheel for transmitting a desired steering command to said steerable;

a steering input device in operable communication with said steering mechanism configured to generate said desired steering command;

a motor in operable communication with said steering mechanism to provide a torque and in operable communication with a transient protected voltage source;

a first switching device in operable communication with and disposed between a ground and a protected ground;

a load in operable communication with and disposed between a voltage source and said protected ground, said load including said motor;

a control circuit configured to control said first switching device in operable communication with a transient protected voltage source; and

wherein said first switching device is configured to provide electrical circuit isolation of said protected ground from said ground.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 23, 2018
From: DELPHI TECHNOLOGIES, INC.
To: DELPHI TECHNOLOGIES IP LIMITED
Reel/Frame 045115/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2003
From: STRAYER, LANCE R.; HAZELTON, LAWRENCE D.
To: DELPHI TECHNOLOGIES, INC.
Reel/Frame 013723/0586 →