Burst mode power supply method and burst mode power supply apparatus

US9502965B1 · US · B1

Patent metadata
FieldValue
Publication numberUS-9502965-B1
Application numberUS-201514740570-A
CountryUS
Kind codeB1
Filing dateJun 16, 2015
Priority dateJun 16, 2015
Publication dateNov 22, 2016
Grant dateNov 22, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A power supply apparatus ( 10 ) includes a voltage input side ( 102 ), a power switch circuit ( 104 ), a voltage output side ( 106 ) and a pulse width modulation signal generating circuit ( 108 ). According to a pulse width modulation signal ( 112 ), the pulse width modulation signal generating circuit ( 108 ) controls the power switch circuit ( 104 ), so that the power supply apparatus ( 10 ) enters a burst mode. A pulse quantity of each of burst clumps of the power supply apparatus ( 10 ), a pulse frequency of each of the burst clumps of the power supply apparatus ( 10 ) and a pulse duty cycle of each of the burst clumps of the power supply apparatus ( 10 ) are fixed and constant after the power supply apparatus ( 10 ) enters the burst mode.

First claim

Opening claim text (preview).

What is claimed is: 1. A burst mode power supply method comprising: a. fixing a pulse quantity of each of burst clumps of a power supply apparatus ( 10 ), a pulse frequency of each of the burst clumps of the power supply apparatus ( 10 ) and a pulse duty cycle of each of the burst clumps of the power supply apparatus ( 10 ) when the power supply apparatus ( 10 ) works in a burst mode, wherein the pulse frequency of each of the burst clumps and the pulse duty cycle of each of the burst clumps are the same in the burst mode; only a burst frequency of the burst clump is changed according to a load ( 20 ) in the burst mode; the burst frequency increases if the load ( 20 ) increases in the burst mode thus rendering a quantity of the burst clumps increases; the burst frequency decreases if the load ( 20 ) decreases in the burst mode thus rendering the quantity of the burst clumps decreases. 2. The burst mode power supply method in claim 1 , wherein the pulse quantity of each of the burst clumps is one, two or n, wherein n is a positive integer greater than zero. 3. The burst mode power supply method in claim 1 , wherein the pulse duty cycle of each of the burst clumps is fifty percent conduction. 4. A burst mode power supply method comprising: a. a power supply apparatus ( 10 ) entering a burst mode; b. fixing a pulse quantity of each of burst clumps of the power supply apparatus ( 10 ) after the power supply apparatus ( 10 ) enters the burst mode; c. fixing a pulse frequency of each of the burst clumps of the power supply apparatus ( 10 ) after the power supply apparatus ( 10 ) enters the burst mode; and d. fixing a pulse duty cycle of each of the burst clumps of the power supply apparatus ( 10 ) after the power supply apparatus ( 10 ) enters the burst mode, wherein the pulse frequency of each of the burst clumps and the pulse duty cycle of each of the burst clumps are the same in the burst mode; only a burst frequency of the burst clump is changed according to a load ( 20 ) in the burst mode; the burst frequency increases if the load ( 20 ) increases in the burst mode thus rendering a quantity of the burst clumps increases; the burst frequency decreases if the load ( 20 ) decreases in the burst mode thus rendering the quantity of the burst clumps decreases. 5. The burst mode power supply method in claim 4 , wherein the pulse quantity of each of the burst clumps is one, two or n, wherein n is a positive integer greater than zero. 6. The burst mode power supply method in claim 4 , wherein the pulse duty cycle of each of the burst clumps is fifty percent conduction. 7. A power supply apparatus ( 10 ) comprising: a voltage input side ( 102 ); a power switch circuit ( 104 ) electrically connected to the voltage input side ( 102 ); a voltage output side ( 106 ) electrically connected to the power switch circuit ( 104 ); and a pulse width modulation signal generating circuit ( 108 ) electrically connected to the power switch circuit ( 104 ), wherein the pulse width modulation signal generating circuit ( 108 ) controls the power switch circuit ( 104 ) by a pulse width modulation signal ( 112 ), so that the power supply apparatus ( 10 ) enters a burst mode; a pulse quantity of each of burst clumps of the power supply apparatus ( 10 ) is fixed and constant after the power supply apparatus ( 10 ) enters the burst mode; a pulse frequency of each of the burst clumps of the power supply apparatus ( 10 ) is fixed and constant after the power supply apparatus ( 10 ) enters the burst mode; a pulse duty cycle of each of the burst clumps of the power supply apparatus ( 10 ) is fixed and constant after the power supply apparatus ( 10 ) enters the burst mode; wherein the pulse frequency of each of the burst clumps and the pulse duty cycle of each of the burst clumps are the same in the burst mode; only a burst frequency of the burst clump is changed according to a load ( 20 ) in the burst mode; the burst frequency increases if the load ( 20 ) increases in the burst mode thus rendering a quantity of the burst clumps increases; the burst frequency decreases if the load ( 20 ) decreases in the burst mode thus rendering the quantity of the burst clumps decreases. 8. The power supply apparatus ( 10 ) in claim 7 , wherein an input voltage ( 114 ) is sent to the power switch circuit ( 104 ) through the voltage input side ( 102 ); the pulse width modulation signal generating circuit ( 108 ) sends the pulse width modulation signal ( 112 ) to the power switch circuit ( 104 ), so that the power switch circuit ( 104 ) is controlled by the pulse width modulation signal ( 112 ) to convert the input voltage ( 114 ) into an output voltage ( 116 ); the power switch circuit ( 104 ) outputs the output voltage ( 116 ) through the voltage output side ( 106 ). 9. The power supply apparatus ( 10 ) in claim 7 , wherein the pulse quantity of each of the burst clumps is one, two or n, wherein n is a positive integer greater than zero. 10. The power supply apparatus ( 10 ) in claim 7 , wherein the pulse duty cycle of each of the burst clumps is fifty percent conduction.

Assignees

Inventors

Classifications

  • H02M3/156Primary

    with automatic control of output voltage or current, e.g. switching regulators · CPC title

  • with automatic control of the output voltage or current, e.g. flyback converters (H02M3/33561, H02M3/33569 take precedence) · CPC title

  • comprising at least one synchronous rectifier element (H02M3/1582, H02M3/1584 take precedence) · CPC title

  • H02M3/04Primary

    by static converters · CPC title

  • using burst mode control · CPC title

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What does patent US9502965B1 cover?
A power supply apparatus ( 10 ) includes a voltage input side ( 102 ), a power switch circuit ( 104 ), a voltage output side ( 106 ) and a pulse width modulation signal generating circuit ( 108 ). According to a pulse width modulation signal ( 112 ), the pulse width modulation signal generating circuit ( 108 ) controls the power switch circuit ( 104 ), so that the power supply apparatus ( 10 ) …
Who is the assignee on this patent?
Chicony Power Tech Co Ltd
What technology area does this patent fall under?
Primary CPC classification H02M3/156. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Nov 22 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).