IP Library Granted Patent US 9,502,982
Granted Patent B2
US 9,502,982 · App. 14/340,809 · Granted Nov 22, 2016

Method and apparatus of frequency modulation for power saving of adaptive power converter

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Quick Facts
Patent No.
US 9,502,982
App. No.
14/340,809
Granted
Nov 22, 2016
Kind
B2
Abstract

The present invention proposes a method for controlling an adaptive power converter. The method comprises: generating an output-sense signal by sampling a reflected voltage of a transformer; receiving a feedback signal related to an output power of the adaptive power converter; generating a clock signal in response to the feedback signal and the output-sense signal; generating a switching signal for switching the transformer and regulating an output voltage of the adaptive power converter. The reflected voltage is correlated to the output voltage of the adaptive power converter. The switching signal is generated in response to the feedback signal. The frequency of the switching signal is determined by the clock signal. The frequency of the switching signal is decreased in response to a decrement of the feedback signal.

Claims (26)

1. A control circuit of an adaptive power converter, comprising:

a sample-hold circuit, coupled to a transformer to generate an output-sense signal correlated to an output voltage of said adaptive power converter;

an input circuit, coupled to receive a feedback signal correlated to an output power of said adaptive power converter;

an oscillation circuit, generating a clock signal in response to said feedback signal and said output-sense signal; and

a PWM circuit, generating a switching signal for switching said transformer and regulating said output voltage of said adaptive power converter,

wherein said switching signal is generated in response to said feedback signal,

wherein a frequency of said switching signal is determined by said clock signal, and said frequency of said switching signal is decreased in response to the decrement of said feedback signal,

wherein said output voltage of said adaptive power converter is programmable,

wherein when said output voltage of said adaptive power converter is regulated at a first output level, said frequency of said switching signal will start to decrease from a maximum frequency once said output power of said adaptive power converter falls below a first threshold,

wherein when said output voltage of said adaptive power converter is regulated at a second output level, said frequency of said switching signal will start to decrease from said maximum frequency once said output power of said adaptive power converter falls below a second threshold, and

wherein the first threshold is different from the second threshold.

2. The control circuit as claimed in claim 1 , wherein said frequency of said switching signal decreases in response to an increment of said output voltage of said adaptive power converter under light-load or no-load conditions.

3. The control circuit as claimed in claim 1 , wherein said first output level is higher than the second output level, and said first threshold is higher than said second threshold.

4. A method for controlling an adaptive power converter, comprising:

generating an output-sense signal by sampling a reflected voltage of a transformer;

receiving a feedback signal related to an output power of said adaptive power converter;

generating a clock signal in response to said feedback signal and said output-sense signal; and

generating a switching signal for switching said transformer in response to said feedback signal and said clock signal and regulating an output voltage of said adaptive power converter,

wherein said reflected voltage is correlated to said output voltage of said adaptive power converter,

wherein said frequency of said switching signal is determined by said clock signal, and said frequency of said switching signal is decreased in response to a decrement of said feedback signal, and

wherein said output voltage of said adaptive power converter is programmable,

wherein when said output voltage of said adaptive power converter is regulated at a first output level, said frequency of said switching signal will start to decrease from a maximum frequency once said output power of said adaptive power converter falls below a first threshold,

wherein when said output voltage of said adaptive power converter is regulated at a second output level, said frequency of said switching signal will start to decrease from said maximum frequency once said output power of said adaptive power converter falls below a second threshold, and

wherein the first threshold is different from the second threshold.

5. The method as claimed in claim 4 , wherein said frequency of said switching signal decreases in response to an increment of said output voltage of said adaptive power converter under light-load or no-load conditions.

6. The method as claimed in claim 4 , wherein said first output level is higher than the second output level, and said first threshold is higher than said second threshold.

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 Apr 25, 2017
From: FAIRCHILD (TAIWAN) CORPORATION (FORMERLY SYSTEM GENERAL CORPORATION)
To: SEMICONDUCTOR COMPONENTS INDUSTRIES, LLC
Reel/Frame 042328/0318 →
CHANGE OF NAME Recorded May 3, 2016
From: SYSTEM GENERAL CORPORATION
To: FAIRCHILD (TAIWAN) CORPORATION
Reel/Frame 038599/0078 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 25, 2014
From: YANG, TA-YUNG; CHEN, JUNG-SHENG; LIN, LI
To: SYSTEM GENERAL CORPORATION
Reel/Frame 033391/0476 →