IP Library Granted Patent US 8,854,786
Granted Patent B2
US 8,854,786 · App. 13/684,876 · Granted Oct 7, 2014

System and method for providing surge protection

Inventors: Dengmeng Fu (Shanghai, CN); Marlon Galsim (Shanghai, CN); Qing Yun (Shanghai, CN); Jinsong Lee (Shenzhen, CN)
Assignee: Schneider Electric IT Corporation
H02H9/04H02H9/042H02H9/005
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Quick Facts
Patent No.
US 8,854,786
App. No.
13/684,876
Granted
Oct 7, 2014
Kind
B2
Abstract

Methods and systems described herein provide protection for sensitive circuits against power surges on power lines. A surge protector for protecting a load coupled to a power source is provided. The surge protector includes an input having a first node, a second node and a third node to respectfully couple to line, neutral, and ground connections of a power source, an output having a fourth node, a fifth node, and a sixth node for respectfully coupling to line, neutral and ground connections of the load, a first voltage limiting circuit coupled between the fourth node and the fifth node, a first inductor coupled between the first node and the fourth node, and a second voltage limiting circuit coupled between the first node and the second node.

Claims (37)

1. A surge protector for protecting a load coupled to a power source, the surge protector comprising:

an input having a first node, a second node and a third node to respectfully couple to line, neutral, and ground connections of a power source;

an output having a fourth node, a fifth node, and a sixth node for respectfully coupling to line, neutral and ground connections of the load;

a first voltage limiting circuit coupled between the fourth node and the fifth node;

a first inductor coupled between the first node and the fourth node; and

a second voltage limiting circuit coupled between the first node and the second node, the second voltage limiting circuit including a first gas discharge tube, and a resistive device coupled in series with the first discharge tube, wherein the resistive device comprises a positive temperature coefficient resistor.

2. The surge protector of claim, 1 , further comprising:

a third voltage limiting circuit coupled between the fifth node and the sixth node;

a second inductor coupled between the second node and the fifth node; and

a fourth voltage limiting circuit coupled between the second node and the third node.

3. The surge protector of claim 2 , further comprising a fifth voltage limiting circuit coupled between the fourth node and the sixth node.

4. The surge protector of claim 1 , wherein each of the first, third and fifth voltage limiting circuits includes a metal oxide varistor.

5. The surge protector of claim 4 , wherein the fourth voltage limiting circuit includes a gas discharge tube.

6. A surge protector for protecting a load coupled to a power source, the surge protector comprising:

an input having a first node, a second node and a third node to respectfully couple to line, neutral, and ground connections of a power source;

an output having a fourth node, a fifth node, and a sixth node for respectfully coupling to line, neutral and ground connections of the load;

a first voltage limiting circuit coupled between the fourth node and the fifth node;

a first inductor coupled between the first node and the fourth node;

a second voltage limiting circuit coupled between the first node and the second node; and

a fifth voltage limiting circuit coupled between the fourth node and the sixth node;

wherein each of the first, second, third, fourth and fifth voltage limiting circuits has a trigger voltage, and wherein the trigger voltages of the second and fourth voltage limiting circuits is greater than the trigger voltages of the first, third and fifth voltage limiting circuits.

7. A method of protecting a load from a power surge, the load having a power input having a first node, a second node and a third node to respectively couple to line, neutral and ground connections of a power source, the method comprising:

limiting voltage across the first node and the second node in response to a power voltage surge across the line and neutral connections using a first voltage limiting circuit coupled between the first node and the second node;

limiting current from the power surge across the line and neutral connections through the first voltage limiting circuit using a series inductance coupled between the line connection and the first node;

limiting voltage across the line connection and the neutral connection in response to the power voltage surge across the line and neutral connections using a second voltage limiting circuit coupled between the line connection and the neutral connection of the power source;

using a metal oxide varistor in the first voltage limiting circuit and a gas discharge tube in the second voltage limiting circuit; and

using a positive thermal coefficient resistor in the second voltage limiting circuit coupled in series with the gas discharge tube.

8. The method of claim 6 , further comprising:

limiting voltage across the second node and the third node in response to a power voltage surge across the neutral and ground connections using a third voltage limiting circuit coupled between the second node and the third node;

limiting current from the power surge across the neutral and ground connections through the third voltage limiting circuit using a series inductance coupled between the neutral connection and the second node;

limiting voltage across the neutral connection and the ground connection in response to the power voltage surge across the neutral and ground connections using a fourth voltage limiting circuit coupled between the neutral connection and the ground connection of the power source.

9. The method of claim 8 , further comprising:

limiting voltage across the first node and the third node in response to a power voltage surge across the line and ground connections using a fifth voltage limiting circuit coupled between the first node and the third node.

10. The method of claim 7 , wherein the first voltage limiting circuit has a lower trigger voltage than the second voltage limiting circuit, and wherein the method further includes turning the first voltage limiting circuit on prior to turning the second voltage limiting circuit on.

11. The method of claim 8 , wherein the third voltage limiting circuit has a lower trigger voltage than the fourth voltage limiting circuit, and wherein the method further includes turning the third voltage limiting circuit on prior to turning the fourth voltage limiting circuit on.

12. The method of claim 7 , further comprising using a metal oxide varistor in the third voltage limiting circuit.

13. The method of claim 12 , further comprising using a metal oxide varistor in the fifth voltage limiting circuit.

Assignments (2)
CHANGE OF NAME Recorded Jan 9, 2013
From: AMERICAN POWER CONVERSION CORPORATION
To: SCHNEIDER ELECTRIC IT CORPORATION
Reel/Frame 029592/0405 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 7, 2013
From: FU, DENGMENG; GALSIM, MARLON; YUN, QING; LEE, JINSONG
To: AMERICAN POWER CONVERSION CORPORATION
Reel/Frame 029574/0521 →
Continuity (2)
Continuation 13500797
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