IP Library Granted Patent US 7,973,533
Granted Patent B2
US 7,973,533 · App. 12/038,693 · Granted Jul 5, 2011

In-circuit testing for integrity of solid-state switches

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Quick Facts
Patent No.
US 7,973,533
App. No.
12/038,693
Granted
Jul 5, 2011
Kind
B2
Abstract

A switching and fault detection circuit comprises two controllable switches capable of coupling a power source to a load. A controller can control the switches and test them for faults, and a voltage sensor can read the output voltage going to the load. Dual-redundant switches and fault detection circuitry can provide correct operation if one should fail. Control and feedback logic can determine if each of the solid-state switches is operating correctly during the power-on and power-off cycles and can also check for a fail-open condition during normal operations. If it is determined that a solid switch has failed open or closed, a fault can be generated.

Claims (21)

1. A method of testing first and second switches, wherein the first switch has first and second terminals and a control input, and wherein the second switch has first and second terminals and a control input, and wherein the second terminal of the first switch is in communication with the first terminal of the second switch, and wherein the first terminal of the first switch is adapted to be placed in communication with a power supply, and wherein the second terminal of the second switch is adapted to be placed in communication with a load, using a controller that is in communication with the control input of the first switch and the control input of the second switch, comprising the following steps performed in any order: a) causing the controller to direct the first switch to open and to direct the second switch to close; and causing the controller to sense the presence of power at the second terminal of the second switch, and, if power is present at the second terminal of the second switch, to indicate a fault; b) causing the controller to direct the first switch to close, and causing the controller to direct the second switch to open; and causing the controller to sense the presence of power at the second terminal of the second switch, and, if power is present at the second terminal of the second switch, to indicate a fault.

2. A method as in claim 1 , further comprising causing the controller to direct the first switch to close and to direct the second switch to close, and causing the controller to sense power at the second terminal of the second switch and, if power is not present, to indicate a fault.

3. A power switching apparatus with integrity testing, comprising: a) a first power switch, having first and second terminals and a control input, capable of communicating power from the first terminal to the second terminal responsive to a signal on the control input, with the first terminal of the first switch adapted to be placed in communication with a power supply; b) a second power switch, having first and second terminals and a control input, capable of communicating power from the first terminal to the second terminal responsive to a signal on the control input, with the first terminal of the second switch in communication with the second terminal of the first switch, and with the second terminal adapted to be placed in communication with a load; c) a controller, in communication with the control input of the first switch and with the control input of the second switch, and configured to test the integrity of the first and second switches applying the method of claim 1 .

4. An apparatus as in claim 3 , wherein the controller has an input terminal, and initiates the integrity test responsive to a signal on the input terminal directing the controller to perform an integrity test.

5. An apparatus as in claim 3 , wherein the controller has an input terminal, and initiates the integrity test responsive to a signal on the input terminal directing the controller to place the power supply in communication with the load, and performs the integrity test before placing the power supply in communication with the load.

6. An apparatus as in claim 3 , wherein the first and second switches comprise a MOSFET with built-in circuit protection.

7. An apparatus as in claim 3 , wherein the controller comprises a microprocessor or a field programmable logic device.

8. An aircraft power switching apparatus, comprising a power switch apparatus as in claim 3 , in communication with an electrical power source on board the aircraft, and in communication with an electrical load on board the aircraft.

9. A method as in claim 1 , wherein a predetermined amount of time is allowed to elapse after directing the first or second switch to open before causing the controller to sense the presence of power at the second terminal of the second switch.

10. A method of testing first and second switches, wherein the first switch has first and second terminals and a control input and a status output, and wherein the second switch has first and second terminals and a control input, and wherein the second terminal of the first switch is in communication with the first terminal of the second switch, and wherein the first terminal of the first switch is adapted to be placed in communication with a power supply, and wherein the second terminal of the second switch is adapted to be placed in communication with a load, using a controller that is in communication with the control input of the first switch and the control input of the second switch and the status output of the first switch, comprising the following steps performed in any order: a) causing the controller to direct the first switch to open and to direct the second switch to close; and causing the controller to sense the presence of power at the second terminal of the second switch, and, if power is present at the second terminal of the second switch, to indicate a fault; b) causing the controller to direct the first switch to close, and causing the controller to direct the second switch to open; and causing the controller to sense the presence of power at the second terminal of the second switch, and, if power is present at the second terminal of the second switch, to indicate a fault; c) causing the controller to sense the status output of the first switch and, if a fault is indicated by the status output of the first switch, to indicate a fault.

11. A method as in claim 10 , wherein the second switch has a status output, and wherein the controller is in communication with the status output of the second switch, wherein the method further comprises causing the controller to sense the status output of the second switch and, if a fault is indicated by the status output of the second switch, to indicate a fault.

12. A power switching apparatus with integrity testing, comprising: a) a first power switch, having first and second terminals and a control input and a status output, capable of communicating power from the first terminal to the second terminal responsive to a signal on the control input, with the first terminal of the first switch adapted to be placed in communication with a power supply; b) a second power switch, having first and second terminals and a control input and a status output, capable of communicating power from the first terminal to the second terminal responsive to a signal on the control input, with the first terminal of the second switch in communication with the second terminal of the first switch, and with the second terminal adapted to be placed in communication with a load; c) a controller, in communication with the control input of the first switch and with the control input of the second switch and with the status output of the first switch, and configured to test the integrity of the first and second switches applying the method of claim 4 .

13. An apparatus as in claim 12 , wherein the first and second switches comprise a MOSFET with built-in circuit protection.

14. An apparatus as in claim 12 , wherein the controller comprises a microprocessor or a field programmable logic device.

15. A method as in claim 10 , further comprising causing the controller to direct the first switch to close and to direct the second switch to close, and causing the controller to sense power at the second terminal of the second switch and, if power is not present, to indicate a fault.

16. A power switching apparatus with integrity testing, comprising: a) a first power switch, having first and second terminals and a control input and a status output, capable of communicating power from the first terminal to the second terminal responsive to a signal on the control input, with the first terminal of the first switch adapted to be placed in communication with a power supply; b) a second power switch, having first and second terminals and a control input, capable of communicating power from the first terminal to the second terminal responsive to a signal on the control input, with the first terminal of the second switch in communication with the second terminal of the first switch, and with the second terminal adapted to be placed in communication with a load; c) a controller, in communication with the control input of the first switch and with the control input of the second switch and with the status output of the first switch, and configured to test the integrity of the first and second switches applying the method of claim 3 .

17. An apparatus as in claim 16 , wherein the first and second switches comprise a MOSFET with built-in circuit protection.

18. An apparatus as in claim 16 , wherein the controller comprises a microprocessor or a field programmable logic device.

19. A method of controlling power communication from a power supply to a load, comprising: a) providing a first switch; b) providing a second switch, wherein the first and second switches are connected in series between the power supply and the load; c) accepting an input indicating that power is to be communicated to the load; d) closing the first switch and opening the second switch, and, if power is present at the load, indicating a fault; e) opening the first switch and closing the second switch, and, if power is present at the load, indicating a fault; f) closing the first switch and closing the second switch, and, if power is not present at the loads indicating a fault.

20. A method as in claim 19 , wherein the first switch has a status output, and wherein the second switch has a status output, and further comprising indicating a fault if the status output of the first switch indicates a fault or if the status output of the second switch indicates a fault.

21. A method as in claim 19 , further comprising accepting an input indicating that power is not to be communicated to the load, opening the first switch and opening the second switch, and, if power is present at the load, indicating a fault.

Assignments (9)
SECURITY INTEREST Recorded Nov 13, 2025
From: ASTRONICS CORPORATION; ASTRONICS ADVANCED ELECTRONIC SYSTEMS CORP.; ASTRONICS TEST SYSTEMS INC.; ASTRONICS AEROSAT CORPORATION; ASTRONICS CONNECTIVITY SYSTEMS & CERTIFICATION CORP.; PECO, INC.; DIAGNOSYS INC.
To: HSBC BANK USA, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 073580/0550 →
RELEASE OF SECURITY INTEREST Recorded Oct 23, 2025
From: HSBC BANK USA, NATIONAL ASSOCIATION, AS AGENT
To: ASTRONICS CONNECTIVITY SYSTEMS & CERTIFICATION CORP.; ASTRONICS AEROSAT CORPORATION; ASTRONICS CORPORATION; PECO, INC.; ASTRONICS ADVANCED ELECTRONIC SYSTEMS CORP.; ASTRONICS TEST SYSTEMS INC.; DIAGNOSYS INC.; LUMINESCENT SYSTEMS, INC.
Reel/Frame 073227/0325 →
RELEASE OF SECURITY INTEREST Recorded Dec 4, 2024
From: HSBC BANK USA, N.A., AS AGENT
To: ASTRONICS CORPORATION; ASTRONICS ADVANCED ELECTRONIC SYSTEMS CORP.; ASTRONICS AEROSAT CORPORATION; ASTRONICS TEST SYSTEMS INC.; LUMINESCENT SYSTEMS, INC.; ASTRONICS CONNECTIVITY SYSTEMS & CERTIFICATION CORP.; PECO, INC.; DIAGNOSYS INC.
Reel/Frame 069491/0184 →
RELEASE OF SECURITY INTEREST Recorded Jul 12, 2024
From: GREAT ROCK CAPITAL PARTNERS MANAGEMENT, LLC
To: ASTRONICS AEROSAT CORPORATION; ASTRONICS CONNECTIVITY SYSTEMS & CERTIFICATION CORP.; PECO, INC.; ASTRONICS ADVANCED ELECTRONIC SYSTEMS CORP.; ASTRONICS CORPORATION; ASTRONICS TEST SYSTEMS INC.; DIAGNOSYS INC.; LUMINESCENT SYSTEMS, INC.
Reel/Frame 068311/0938 →
SECURITY INTEREST Recorded Jul 11, 2024
From: ASTRONICS CORPORATION; ASTRONICS ADVANCED ELECTRONIC SYSTEMS CORP.; ASTRONICS AEROSAT CORPORATION; ASTRONIC TEST SYSTEMS INC.; LUMINESCENT SYTEMS, INC.; ASTRONICS CONNECTIVITY SYSTEMS & CERTIFICATION CORP.; PECO, INC.; DIAGNOSYS INC.
To: HSBC BANK USA, N.A.
Reel/Frame 068283/0900 →
SECURITY INTEREST Recorded Jan 20, 2023
From: ASTRONICS CUSTOM CONTROL CONCEPTS INC.; ASTRONICS DME LLC; ASTRONICS CORPORATION; LUMINESCENT SYSTEMS, INC.; ASTRONICS TEST SYSTEMS INC.; ASTRONICS ADVANCED ELECTRONIC SYSTEMS CORP.; ASTRONICS CONNECTIVITY SYSTEMS & CERTIFICATION CORP.; ASTRONICS AEROSAT CORPORATION; PECO, INC.; DIAGNOSYS INC.
To: GREAT ROCK CAPITAL MANAGEMENT, LLC
Reel/Frame 062444/0836 →
SECURITY INTEREST Recorded Jan 20, 2023
From: ASTRONICS AEROSTAT CORPORATION; ASTRONICS CONNECTIVITY SYSTEMS & CERTIFICATION CORP.; ASTRONICS CORPORATION; PECO, INC.; ASTRONICS ADVANCED ELECTRONICS SYSTEMS CORP.; ASTRONICS TEST SYSTEMS INC.; DIAGNOSYS INC.; LUMINESCENT SYSTEMS, INC.
To: HSBC BANK USA, NATIONAL ASSOCIATION, AS AGENT
Reel/Frame 062445/0342 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2013
From: VERTICAL POWER, INC.
To: ASTRONICS ADVANCED ELECTRONIC SYSTEMS, CORP.
Reel/Frame 031797/0513 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2008
From: AUSMAN, MARC; DEVRIES, KEVIN; DOSTAL, JAKE
To: VERTICAL POWER, INC.
Reel/Frame 020793/0005 →