IP Library Granted Patent US 7,116,565
Granted Patent B1
US 7,116,565 · App. 11/209,822 · Granted Oct 3, 2006

Over-power protection apparatus for self-excited power converter

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Quick Facts
Patent No.
US 7,116,565
App. No.
11/209,822
Granted
Oct 3, 2006
Kind
B1
Abstract

An over-power protection apparatus for self-excited power converter comprises a soft-start unit, an adjusting unit and a timing unit. A PWM unit of the self-excited power converter generates a switching signal in response to a compensating signal of the soft-start unit to control the output power of the self-excited power converter. The soft-start unit couples to the adjusting unit. The adjusting unit drives the soft-start unit and the PWM unit for modulating the switching signal to reduce the pulse width of the switching signal and the output power of the self-excited power converter once the short-circuit and over-load are happened at the output of the self-excited power converter. In the meantime, a timing unit starts to count. The timing unit drives the self-excited power converter to stop supplying the power source after the counting and the over-power lasting for a period of time.

Claims (19)

1. An over-power protection circuit for a self-excited power converter, comprising:

a soft-start unit, generating a compensating signal in response to a feedback signal of said self-excited power converter, a PWM unit of said self-excited power converter generating a switching signal in response to said compensating signal, wherein said switching signal controls the output power of said self-excited power converter;

an adjusting unit, coupled to said soft-start unit in response to an over-power signal and a second threshold signal of said self-excited power converter, wherein said adjusting unit drives said soft-start unit and said PWM unit to modulate said switching signal for reducing the output power of said self-excited power converter once said over-power signal is higher than said second threshold signal; and

a timing unit, receiving said over-power signal and a first threshold signal of said self-excited power converter, wherein said timing unit starts to count once said over-power signal is higher than said first threshold signal while said timing unit generates a latch signal to make said self-excited power converter stop supplying power source after the timing unit counting for a period of time.

2. The over-power protection circuit for a self-excited power converter of claim 1 , wherein said soft-start unit further comprising:

a charging unit, generating a start-up voltage;

a regulating unit, coupled to said charging unit for regulating voltage;

an error amplifier, with a positive input coupled to said charging unit and said regulating unit for receiving said start-up voltage, a negative input coupled to receive said feedback signal of said self-excited power converter; the output of said error amplifier generating said compensating signal; and

a clamp diode, coupled between the output and the negative input of said error amplifier.

3. The over-power protection circuit for a self-excited power converter of claim 2 , wherein said regulating unit is a unit gain buffer or an operation amplifier; the positive input of said operation amplifier receives a reference voltage and the negative input of said operation amplifier is coupled to the output of said operation amplifier and said charging unit in response to said start-up voltage; the output of said operation amplifier is coupled to the positive input of said error amplifier.

4. The over-power protection circuit for a self-excited power converter of claim 2 , wherein said charging unit comprises a first power source and a start-up capacitor; said first power source is coupled to said start-up capacitor for charging said start-up capacitor to generate said start-up voltage.

5. The over-power protection circuit for a self-excited power converter of claim 2 , wherein said adjusting unit that drives said soft-start unit and said PWM unit to modulate said switching signal comprising:

a second power source coupled to a ground reference;

a first switch, coupled between said charging unit and said second power source;

a second comparator, with a positive input for receiving said over-power signal of said self-excited power converter, a negative input coupled to receive said second threshold signal of said self-excited power converter, wherein the output of said second comparator outputs a signal to turn on said first switch for discharging said charging unit to reduce said start-up voltage once said over-power signal is higher than said second threshold signal.

6. The over-power protection circuit for a self-excited power converter of claim 5 , wherein said adjusting unit further comprises a second switch coupled between said charging unit and said ground reference; said second switch is on so that said charging unit is discharging for reducing said start-up voltage in response to a reset signal.

7. The over-power protection circuit for a self-excited power converter of claim 1 , wherein said timing unit comprises a first comparator and a timer coupled with each other while a positive input of said first comparator receives said over-power signal of said self-excited power converter and a negative input of said first comparator receives said first threshold signal of said self-excited power converter; said first comparator outputs a high level signal to said timer so that said timer starts counting once said over-power signal is higher than said first threshold signal.

8. The over-power protection circuit for a self-excited power converter of claim 1 , wherein said adjusting unit drives said soft-start unit for reducing the voltage level of said compensating signal as well as the output power of said self-excited power converter once said over-power signal is higher than said second threshold signal.

9. The over-power protection circuit for a self-excited power converter of claim 1 , wherein said over-power protection circuit is disposed in a PWM controller of said self-excited power converter.

Assignments (4)
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 Apr 25, 2017
From: FAIRCHILD (TAIWAN) CORPORATION (FORMERLY SYSTEM GENERAL CORPORATION)
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
Reel/Frame 042328/0318 →
CHANGE OF NAME Recorded Jun 8, 2016
From: SYSTEM GENERAL CORP.
To: FAIRCHILD (TAIWAN) CORPORATION
Reel/Frame 038906/0030 →