IP Library Granted Patent US 10,256,626
Granted Patent B2
US 10,256,626 · App. 15/222,846 · Granted Apr 9, 2019

Methods and systems of impedance source semiconductor device protection

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Quick Facts
Patent No.
US 10,256,626
App. No.
15/222,846
Granted
Apr 9, 2019
Kind
B2
Abstract

An electrical network configured to suppress voltage transients includes a capacitor and an electrical impedance in parallel with a diode. The capacitor is in series with the parallel connected diode and electrical impedance. The electrical network is configured to suppress voltage transients occurring across the series combination of the capacitor and the parallel connected diode and electrical impedance.

Claims (72)

1. An electrical network configured to suppress voltage transients, the network comprising:

a capacitor; and

an electrical impedance in parallel with a diode, wherein the capacitor is in series with the parallel connected diode and electrical impedance,

wherein the electrical network is configured to suppress voltage transients occurring across the series combination of the capacitor and the parallel connected diode and electrical impedance,

wherein the electrical impedance comprises a resistor, and

wherein the electrical impedance further comprises at least one of an additional resistor, an additional capacitor, and an inductor.

2. The electrical network of claim 1 , wherein the electrical impedance is actively controlled.

3. The electrical network of claim 1 , further comprising an energy storage element or an energy conversion element in parallel with the capacitor.

4. The electrical network of claim 1 , further comprising a Z source network, wherein the series combination of the capacitor and the parallel connected diode and electrical impedance is connected across first and second nodes of the Z source network, and wherein the series combination of the capacitor and the parallel connected diode and electrical impedance is configured to suppress voltage transients occurring across the first and second nodes.

5. An electrical network configured to suppress voltage transients, the network comprising:

a first capacitor;

an electrical impedance in parallel with a diode, wherein the first capacitor is in series with the parallel connected diode and electrical impedance; and

second and third capacitors, wherein the second and third capacitors are in series with the first capacitor and the parallel connected diode and electrical impedance,

wherein the electrical network is configured to suppress voltage transients occurring across the series combination of the first capacitor, the parallel connected diode and electrical impedance, the second capacitor, and the third capacitor,

wherein the electrical impedance comprises a resistor, and

wherein the electrical impedance further comprises at least one of an additional resistor, a capacitor, and an inductor.

6. The electrical network of claim 5 , wherein the electrical impedance is actively controlled.

7. The electrical network of claim 5 , further comprising an energy storage element or an energy conversion element in parallel with the first capacitor.

8. The electrical network of claim 5 , wherein the first capacitor, the electrical impedance, the diode, the second capacitor, and the third capacitor are integrated in a package.

9. The electrical network of claim 5 , further comprising a Z source network, wherein the series combination of the first capacitor, the parallel connected diode and electrical impedance, the second capacitor, and the third capacitor is connected across first and second nodes of the Z source network, and wherein the series combination of the first capacitor, the parallel connected diode and electrical impedance, the second capacitor, and the third capacitor is configured to suppress voltage transients occurring across the first and second nodes.

10. An electrical network configured to suppress voltage transients, the network comprising:

a capacitor; and

an electrical impedance in parallel with a diode, wherein the capacitor is in series with the parallel connected diode and electrical impedance,

wherein the electrical network is configured to suppress voltage transients occurring across the series combination of the capacitor and the parallel connected diode and electrical impedance, and

wherein the electrical impedance is actively controlled.

11. The electrical network of claim 10 , further comprising an energy storage element or an energy conversion element in parallel with the capacitor.

12. The electrical network of claim 10 , further comprising a Z source network, wherein the series combination of the capacitor and the parallel connected diode and electrical impedance is connected across first and second nodes of the Z source network, and wherein the series combination of the capacitor and the parallel connected diode and electrical impedance is configured to suppress voltage transients occurring across the first and second nodes.

13. An electrical network configured to suppress voltage transients, the network comprising:

a capacitor;

an electrical impedance in parallel with a diode, wherein the capacitor is in series with the parallel connected diode and electrical impedance; and

an energy storage element or an energy conversion element in parallel with the capacitor,

wherein the electrical network is configured to suppress voltage transients occurring across the series combination of the capacitor and the parallel connected diode and electrical impedance.

14. The electrical network of claim 13 , wherein the electrical impedance further comprises at least one of an additional resistor, a capacitor, and an inductor.

15. The electrical network of claim 13 , further comprising a Z source network, wherein the series combination of the capacitor and the parallel connected diode and electrical impedance is connected across first and second nodes of the Z source network, and wherein the series combination of the capacitor and the parallel connected diode and electrical impedance is configured to suppress voltage transients occurring across the first and second nodes.

16. An electrical network configured to suppress voltage transients, the network comprising:

a capacitor;

an electrical impedance in parallel with a diode, wherein the capacitor is in series with the parallel connected diode and electrical impedance; and

a Z source network, wherein the series combination of the capacitor and the parallel connected diode and electrical impedance is connected across first and second nodes of the Z source network, and wherein the series combination of the capacitor and the parallel connected diode and electrical impedance is configured to suppress voltage transients occurring across the first and second nodes.

17. The electrical network of claim 16 , wherein the electrical impedance further comprises at least one of an additional resistor, a capacitor, and an inductor.

18. The electrical network of claim 16 , further comprising an energy storage element or an energy conversion element in parallel with the capacitor.

19. An electrical network configured to suppress voltage transients, the network comprising:

a first capacitor;

an electrical impedance in parallel with a diode, wherein the first capacitor is in series with the parallel connected diode and electrical impedance; and

second and third capacitors, wherein the second and third capacitors are in series with the first capacitor and the parallel connected diode and electrical impedance,

wherein the electrical network is configured to suppress voltage transients occurring across the series combination of the first capacitor, the parallel connected diode and electrical impedance, the second capacitor, and the third capacitor,

wherein the electrical impedance is actively controlled.

20. The electrical network of claim 19 , further comprising an energy storage element or an energy conversion element in parallel with the first capacitor.

21. The electrical network of claim 19 , further comprising a Z source network, wherein the series combination of the first capacitor and the parallel connected diode and electrical impedance is connected across first and second nodes of the Z source network, and wherein the series combination of the first capacitor and the parallel connected diode and electrical impedance is configured to suppress voltage transients occurring across the first and second nodes.

22. An electrical network configured to suppress voltage transients, the network comprising:

a first capacitor;

an electrical impedance in parallel with a diode, wherein the first capacitor is in series with the parallel connected diode and electrical impedance;

second and third capacitors, wherein the second and third capacitors are in series with the first capacitor and the parallel connected diode and electrical impedance; and

an energy storage element or an energy conversion element in parallel with the first capacitor,

wherein the electrical network is configured to suppress voltage transients occurring across the series combination of the first capacitor, the parallel connected diode and electrical impedance, the second capacitor, and the third capacitor.

23. The electrical network of claim 22 , wherein the electrical impedance further comprises at least one of an additional resistor, a capacitor, and an inductor.

24. The electrical network of claim 22 , further comprising a Z source network, wherein the series combination of the first capacitor, the parallel connected diode and electrical impedance, the second capacitor, and the third capacitor is connected across first and second nodes of the Z source network, and wherein the series combination of the first capacitor, the parallel connected diode and electrical impedance, the second capacitor, and the third capacitor is configured to suppress voltage transients occurring across the first and second nodes.

25. An electrical network configured to suppress voltage transients, the network comprising:

a first capacitor;

an electrical impedance in parallel with a diode, wherein the first capacitor is in series with the parallel connected diode and electrical impedance; and

second and third capacitors, wherein the second and third capacitors are in series with the first capacitor and the parallel connected diode and electrical impedance,

wherein the electrical network is configured to suppress voltage transients occurring across the series combination of the first capacitor, the parallel connected diode and electrical impedance, the second capacitor, and the third capacitor, and

wherein the first capacitor, the electrical impedance, the diode, the second capacitor, and the third capacitor are integrated in a package.

26. The electrical network of claim 25 , further comprising an energy storage element or an energy conversion element in parallel with the first capacitor.

27. The electrical network of claim 25 , further comprising a Z source network, wherein the series combination of the first capacitor and the parallel connected diode and electrical impedance is connected across first and second nodes of the Z source network, and wherein the series combination of the first capacitor and the parallel connected diode and electrical impedance is configured to suppress voltage transients occurring across the first and second nodes.

28. An electrical network configured to suppress voltage transients, the network comprising:

a first capacitor;

an electrical impedance in parallel with a diode, wherein the first capacitor is in series with the parallel connected diode and electrical impedance;

second and third capacitors, wherein the second and third capacitors are in series with the first capacitor and the parallel connected diode and electrical impedance; and

a Z source network, wherein the series combination of the first capacitor and the parallel connected diode and electrical impedance is connected across first and second nodes of the Z source network, and wherein the series combination of the first capacitor and the parallel connected diode and electrical impedance is configured to suppress voltage transients occurring across the first and second nodes,

wherein the electrical network is configured to suppress voltage transients occurring across the series combination of the first capacitor, the parallel connected diode and electrical impedance, the second capacitor, and the third capacitor.

29. The electrical network of claim 28 , wherein the electrical impedance further comprises at least one of an additional resistor, a capacitor, and an inductor.

30. The electrical network of claim 28 , further comprising an energy storage element or an energy conversion element in parallel with the first capacitor.

Assignments (2)
CHANGE OF NAME Recorded Sep 17, 2020
From: DRS POWER & CONTROL TECHNOLOGIES, INC.
To: DRS NAVAL POWER SYSTEMS, INC.
Reel/Frame 053805/0123 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 13, 2017
From: HARPER, CHRISTOPHER; FISCHER, JEFFERY; WALLACE, IAN
To: DRS POWER & CONTROL TECHNOLOGIES, INC.
Reel/Frame 041243/0732 →