IP Library Granted Patent US 10,050,540
Granted Patent B2
US 10,050,540 · App. 15/175,382 · Granted Aug 14, 2018

Protection circuit and method for flyback power converter

Inventors: Eui-Soo Kim (New Taipei, TW); Jian-Ming Fu (Taichung, TW); Jui-Chien Wang (Taipei, TW); Chou-Sheng Wang (Keelung, TW); Ju-Hyun Kim (Siheung, TW); Tse-Jen Tseng (Taichung, TW)
Assignee: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
H02M3/33523H02M1/08H02M1/32H02M1/36G06F1/26H02H3/087H02H9/02H02J2007/0039H02M2001/0009
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Quick Facts
Patent No.
US 10,050,540
App. No.
15/175,382
Granted
Aug 14, 2018
Kind
B2
Abstract

A protection circuit for a power converter is provided. The protection circuit includes a sensor circuit, a detection circuit and an initial protection circuit. The sensor circuit senses an output current of the power converter to generate a load signal. The detection circuit detects a voltage signal at a signal terminal of the connection port. The initial protection circuit compares the load signal with an initial-protection threshold. When the voltage signal at the signal terminal switches to a high level from a low level after the protection circuit is enabled, the power converter enters an initial protection mode and the initial protection circuit counts an initial period of a port-identification procedure. When the load signal is larger than the initial-protection threshold during the initial period of the port-identification procedure, the initial protection circuit generates a first protection signal to shut down the power converter.

Claims (119)

1. A protection circuit for a power converter having a connection port coupled to an output of the power converter, comprising:

a sensor circuit, coupled to the connection port, sensing an output current of the power converter to generate a load signal;

a detection circuit, coupled to the connection port, detecting a voltage signal at a signal terminal of the connection port; and

an initial protection circuit , coupled to the sensor circuit, receiving the load signal and comparing the load signal with an initial-protection threshold,

wherein when the voltage signal at the signal terminal switches to a high level from a low level after the protection circuit is enabled, the power converter enters an initial protection mode and the initial protection circuit counts an initial period of a port-identification procedure;

wherein when the load signal is larger than the initial-protection threshold during the initial period of the port-identification procedure, the initial protection circuit will generate a first protection signal to shut down the power converter, and

wherein the high level is a level higher than an attachment threshold and the low level is a level lower than the attachment threshold.

2. The protection circuit of claim 1 , wherein the port-identification procedure is a BC1.2 (Battery Charging Specification Revision 1.2) procedure.

3. The protection circuit of claim 1 , further comprising:

a detachment-confirmation circuit , coupled to the sensor circuit and the detection circuit, generating a detachment-confirmation signal according to the load signal and the voltage signal at the signal terminal; and

a detachment-protection circuit , coupled to the detachment-confirmation circuit, receiving the detachment-confirmation signal and the load signal and comparing the load signal with a detachment-protection threshold,

wherein when the voltage signal at the signal terminal becomes less than the attachment threshold from the high level and the load signal is less than a detachment threshold, the detachment-confirmation circuit enables the detachment-confirmation signal and

wherein when the detachment-confirmation signal is enabled and the load signal is larger than the detachment-protection threshold, the detachment protection circuit generates a second protection signal to shut down the power converter.

4. The protection circuit of claim 3 ,

wherein when the voltage signal at the signal terminal is continuously at the low level after the protection circuit is enabled, the detachment-confirmation circuit enables the detachment-confirmation signal,

wherein when the detachment-confirmation signal is enabled and the load signal is larger than the detachment-protection threshold, the detachment protection circuit generates the second protection signal to shut down the power converter.

5. The protection circuit of claim 3 further comprising:

a device-protection circuit , coupled to the sensor circuit and the detection circuit, receiving the load signal and comparing the load signal with a device-protection threshold,

wherein after the power converter leaves the initial protection mode, when the voltage signal at the signal terminal becomes less than the attachment threshold from the high level and the load signal is larger than the device-protection threshold, the device-protection circuit generates a third protection signal to shut down the power converter.

6. The protection circuit of claim 5 , wherein the initial-protection threshold, the detachment-protection threshold and the device-protection threshold are all higher than the detachment threshold.

7. The protection circuit of claim 1 further comprising:

a device-protection circuit, coupled to the sensor circuit and the detection circuit, receiving the load signal and comparing the load signal with a device-protection threshold,

wherein after the power converter leaves the initial protection mode, when the voltage signal of the signal terminal becomes less than the attachment threshold from the high level and the load signal is larger than the device-protection threshold, the device-protection circuit generates a second protection signal to shut down the power converter.

8. The protection circuit of claim 1 , wherein the connection port is configured to connect with a powered device which is charged by the power converter.

9. The protection circuit of claim 1 , wherein the connection port is an USB (Universal Serial Bus) port.

10. A protection circuit for a power converter having a connection port coupled to an output of the power converter, comprising:

a sensor circuit, coupled to the connection port, sensing an output current of the power converter to generate a load signal;

a detection circuit, coupled to the connection port, detecting a voltage signal at a signal terminal of the connection port;

a detachment-confirmation circuit, coupled to the sensor circuit and the detection circuit, generating a detachment-confirmation signal according to the load signal and the voltage signal at the signal terminal; and

a detachment-protection circuit, coupled to the detachment-confirmation circuit, receiving the detachment-confirmation signal and the load signal and comparing the load signal with a detachment-protection threshold,

wherein after the protection circuit is enabled, when the voltage signal at the signal terminal switches to a high level from a low level, the power converter starts a port-identification procedure,

wherein when the voltage signal at the signal terminal becomes less than an attachment threshold and the load signal is less than a detachment threshold, the detachment-confirmation circuit enables the detachment-confirmation signal,

wherein when the detachment-confirmation signal is enabled and the load signal is larger than the detachment-protection threshold, the detachment protection circuit generates a first protection signal to shut down the power converter, and

wherein the high level is a level higher than the attachment threshold and the low level is a level lower than the attachment threshold.

11. The protection circuit of claim 10 , wherein the port-identification procedure is a BC1.2 (Battery Charging Specification Revision 1.2) procedure.

12. The protection circuit of claim 10 ,

wherein when the voltage signal at the signal terminal is continuously at the low level after the protection circuit is enabled, the detachment-confirmation circuit enables the detachment-confirmation signal,

wherein when the detachment-confirmation signal is enabled and the load signal is larger than the detachment-protection threshold, the detachment protection circuit generates the first protection signal to shut down the power converter.

13. The protection circuit of claim 10 further comprising:

a device-protection circuit, coupled to the sensor circuit and the detection circuit, receiving the load signal and comparing the load signal with a device-protection threshold,

wherein after the power converter ends port-identification procedure, when the voltage signal at the signal terminal becomes less than the attachment threshold from the high level and the load signal is larger than the device-protection threshold, the device-protection circuit generates a second protection signal to shut down the power converter.

14. The protection circuit of claim 10 , wherein the detachment-protection threshold and the device-protection threshold are both higher than the detachment threshold.

15. The protection circuit of claim 10 , wherein the connection port is configured to connect with a powered device which is charged by the power converter.

16. The protection circuit of claim 10 , wherein the connection port is an USB (Universal Serial Bus) port.

17. A protection method for a power converter having a connection port coupled to an output of the power converter, comprising:

determining whether a positive edge occurs at a voltage signal at a signal terminal of the connection port;

when the positive edge occurs at the voltage signal at the signal terminal, entering an initial protection mode and determining whether a load signal is larger than an initial-protection threshold during an initial period of a port-identification procedure, wherein the load signal is related to an output current of the power converter; and

when the load signal is larger than the initial-protection threshold during the initial period of the port-identification procedure, shutting down the power converter.

18. The protection method of claim 17 , wherein the connection port is an USB (Universal Serial Bus) port.

19. The protection method of claim 17 further comprising:

when the positive edge doesn't occur at the voltage signal at the signal terminal, determining whether the load signal is larger than a detachment-protection threshold; and

when the positive edge doesn't occur at the voltage signal at the signal terminal and the load signal is larger than the detachment-protection threshold, shutting down the power converter.

20. The protection circuit of claim 19 , wherein the initial-protection threshold can be higher or lower than the detachment-protection threshold.

21. The protection method of claim 17 further comprising:

during the initial period of the port-identification procedure, when the load signal is not larger than the initial-protection threshold, determining whether the voltage signal at the signal terminal is larger than an attachment threshold;

during the initial period of the port-identification procedure, when the voltage signal at the signal terminal is not larger than the attachment threshold, determining whether the load signal is less than a detachment threshold; and

during the initial period of the port-identification procedure, when the load signal is less than the detachment threshold, determining whether the load signal is larger than a detachment-protection threshold; and

when the load signal is larger than the initial-protection threshold during the initial period of the port-identification procedure, shutting down the power converter.

22. The protection method of claim 21 further comprising:

when the voltage signal at the signal terminal is larger than the attachment threshold, determining whether the initial period of the port-identification procedure ends;

when the initial period of the port-identification procedure ends, determining whether the voltage signal at the signal terminal is larger than the attachment threshold during a remaining period of the port-identification procedure following the initial period thereof;

during the remaining period of the port-identification procedure, when the voltage signal at the signal terminal is not larger than the attachment threshold, determining whether the load signal is less than the detachment threshold;

during the remaining period of the port-identification procedure, when the load signal is less than the detachment threshold, determining whether the load signal is larger than the detachment-protection threshold; and

when the load signal is larger than the detachment-protection threshold during the remaining period of the port-identification procedure, shutting down the power converter.

23. The protection method of claim 22 further comprising:

when the voltage signal at the signal terminal is larger than the attachment threshold during the remaining period of the port-identification procedure, determining whether a period during which the voltage signal at the signal terminal is larger than the attachment threshold exceeds a period of the port-identification procedure;

when the period during which the voltage signal at the signal terminal is larger than the attachment threshold exceeds the period of the port-identification procedure, enabling a device signal protection mode;

during the device signal protection mode, determining whether the voltage signal at the signal terminal is less than the attachment threshold;

during the device signal protection mode, when the voltage signal at the signal terminal is less than the attachment threshold, determining whether the load signal is larger than a device-protection threshold (V F2 ); and

when the load signal is larger than the device-protection threshold during the device signal protection mode, shutting down the power converter.

24. The protection method of claim 23 further comprising:

during the device signal protection mode, when the load signal is not larger than the device-protection threshold during, determining whether the load signal is less than the detachment threshold;

when the load signal is less than the detachment threshold, disabling the device signal protection mode and determining whether the load signal is larger than the detachment-protection threshold;

when the load signal is larger than the detachment-protection threshold, shutting down the power converter.

25. The protection method of claim 24 further comprising:

during the device signal protection mode, when the load signal is not less than the detachment threshold, determining whether the device signal protection mode ends;

when the device signal protection mode ends, determining whether the voltage signal at the signal terminal is less than the attachment threshold; and

when the device signal protection mode doesn't end, determining whether the load signal is larger than the device-protection threshold.

26. The protection method of claim 23 , wherein the initial-protection threshold, the detachment-protection threshold and the device-protection threshold are all higher than the detachment threshold.

27. The protection method of claim 17 further comprising:

when the load signal is not larger than the initial-protection threshold, determining whether the voltage signal at the signal terminal is larger than an attachment threshold (V TH ) during the initial protection mode;

when the voltage signal at the signal terminal is larger than the attachment threshold during a remaining period of the port-identification procedure following the initial period thereof, determining whether a period during which the voltage signal at the signal terminal is larger than the attachment threshold exceeds a period of the port-identification procedure;

when the period during which the voltage signal at the signal terminal is larger than the attachment threshold exceeds the period of the port-identification procedure, enabling a device signal protection mode;

during the device signal protection mode, determining whether the voltage signal at the signal terminal is less than the attachment threshold;

during the device signal protection mode, when the voltage signal at the signal terminal is less than the attachment threshold, determining whether the load signal is larger than a device-protection threshold (V F2 ); and

when the load signal is larger than the device-protection threshold during the device signal protection mode, shutting down the power converter.

28. The protection method of claim 27 further comprising:

during the device signal protection mode, when the load signal is not larger than the device-protection threshold, determining whether the device signal protection mode ends;

when the device signal protection mode ends, disabling the device signal protection mode and determining whether the positive edge occurs at the voltage signal at the signal terminal; and

when the device signal protection mode doesn't end, determining whether the load signal is larger than the device-protection threshold.

29. The protection method of claim 27 , wherein the initial-protection threshold can be higher or lower than the device-protection threshold.

30. The protection method of claim 17 further comprising:

enabling the power converter to charge a powered device through the connection port.

31. A protection method for a power converter having an connection port coupled to an output of the power converter, comprising:

determining whether a positive edge occurs at a voltage signal at a signal terminal of the connection port;

when the positive edge occurs at the voltage signal at the signal terminal, entering a port-identification procedure and determining whether the voltage signal at the signal terminal is larger than an attachment threshold;

during the port-identification procedure, when the voltage signal at the signal terminal is not larger than the attachment threshold, determining whether the load signal is less than a detachment threshold; and

during the port-identification procedure, when the load signal is less than the detachment threshold, determining whether a load signal is larger than a detachment-protection threshold, wherein the load signal is related to an output current of the power converter; and

when the load signal is larger than the detachment-protection threshold during the port-identification procedure, shutting down the power converter.

32. The protection method of claim 31 , wherein the connection port is an USB (Universal Serial Bus) port.

33. The protection method of claim 31 further comprising:

when the positive edge doesn't occur at the voltage signal at the signal terminal, determining whether the load signal is larger than the detachment-protection threshold; and

when the positive edge doesn't occur at the voltage signal at the signal terminal and the load signal is larger than the detachment-protection threshold, shutting down the power converter.

34. The protection method of claim 31 further comprising:

when the voltage signal at the signal terminal is larger than the attachment threshold during the port-identification procedure, determining whether a period during which the voltage signal at the signal terminal is larger than the attachment threshold exceeds a period of the port-identification procedure;

when the period during which the voltage signal at the signal terminal is larger than the attachment threshold exceeds the period of the port-identification procedure, enabling a device signal protection mode;

during the device signal protection mode, determining whether the voltage signal at the signal terminal is less than the attachment threshold;

during the device signal protection mode, when the voltage signal at the signal terminal is less than the attachment threshold, determining whether the load signal is larger than a device-protection threshold; and

when the load signal is larger than the device-protection threshold during the device signal protection mode, shutting down the power converter.

35. The protection method of claim 34 further comprising:

during the device signal protection mode, when the load signal is not larger than the device-protection threshold during, determining whether the load signal is less than the detachment threshold;

when the load signal is less than the detachment threshold, disabling the device signal protection mode and determining whether the load signal is larger than the detachment-protection threshold;

when the load signal is larger than the detachment-protection threshold, shutting down the power converter.

36. The protection method of claim 31 further comprising:

during the device signal protection mode, when the load signal is not less than the detachment threshold, determining whether the device signal protection mode ends;

when the device signal protection mode ends, determining whether the voltage signal at the signal terminal is less than the attachment threshold; and

when the device signal protection mode doesn't end, determining whether the load signal is larger than the device-protection threshold.

37. The protection method of claim 31 further comprising:

enabling the power converter to charge a powered device through the connection port.

Assignments (5)
RELEASE OF SECURITY INTEREST IN PATENTS RECORDED AT RECORDED AT REEL 046410, FRAME 0933 Recorded Jun 22, 2023
From: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC; FAIRCHILD SEMICONDUCTOR CORPORATION
Reel/Frame 064072/0001 →
PATENT SECURITY AGREEMENT Recorded Jun 22, 2018
From: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
To: DEUTSCHE BANK AG NEW YORK BRANCH, AS COLLATERAL AGENT
Reel/Frame 046410/0933 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2017
From: FAIRCHILD (TAIWAN) CORPORATION (FORMERLY SYSTEM GENERAL CORPORATION)
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
Reel/Frame 043022/0289 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 25, 2017
From: FAIRCHILD (TAIWAN) CORPORATION (FORMERLY SYSTEM GENERAL CORPORATION)
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
Reel/Frame 042328/0318 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 7, 2016
From: KIM, EUI-SOO; FU, JIAN-MING; WANG, JUI-CHIEN; WANG, CHOU-SHENG; KIM, JU-HYUN; TSENG, TSE-JEN
To: FAIRCHILD (TAIWAN) CORPORATION
Reel/Frame 038829/0923 →
Continuity (1)
Related Publication 20170353115A1 · Dec 7, 2017