EMI filter and switching power supply with the same

US10069406B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-10069406-B2
Application numberUS-201615368770-A
CountryUS
Kind codeB2
Filing dateDec 5, 2016
Priority dateDec 22, 2015
Publication dateSep 4, 2018
Grant dateSep 4, 2018

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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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Abstract

Official abstract text for this publication.

An EMI filter configured for an AC-DC switching power supply, and that is coupled between a DC-DC converter and a rectifier circuit that receives an AC power supply, can include: an input capacitor coupled in parallel to input terminals of the DC-DC converter; a transistor having a first terminal coupled to a first terminal of the input capacitor, and a second terminal coupled to ground; and a control circuit configured to generate a control signal that controls the transistor according to a feedback voltage that represents ripple information of an input voltage to the DC-DC converter, and at least one of a current that flows through the transistor, and a voltage at the first terminal of the transistor, where the control signal is used to regulate the voltage at the first terminal of the transistor to substantially eliminate switching frequency ripples from an input current of the DC-DC converter.

First claim

Opening claim text (preview).

What is claimed is: 1. An electromagnetic interference (EMI) filter configured for an AC-DC switching power supply, said EMI filter being coupled between a DC-DC converter and a rectifier circuit that receives an AC power supply, the EMI filter comprising: a) an input capacitor coupled in parallel to two input terminals of said DC-DC converter; b) a transistor having two power terminals coupled in series with said input capacitor between two output terminals of said rectifier circuit; and c) a control circuit configured to generate a control signal that controls a control terminals of said transistor to control a current that flows through said transistor in order to substantially eliminate a switching frequency ripple component; d) wherein said control circuit comprises a first voltage sense circuit configured to generate a first voltage sampling signal from a drain voltage of said transistor, a first reference signal generator configured to generate a current reference signal according to said first voltage sampling signal, and a first control signal generator configured to generate said control signal according to said current reference signal and said current that flows through said transistor. 2. The EMI filter of claim 1 , wherein said control circuit further comprises: a) a second voltage sense circuit configured to receive said voltage at a first terminal of said transistor, and to generate a second voltage sampling signal; b) a second reference signal generator configured to generate a voltage reference signal according to said second voltage sampling signal; and c) a second control signal generator configured to generate said control signal according to said voltage reference signal and said voltage at said first terminal of said transistor. 3. The EMI filter of claim 1 , wherein said first voltage sense circuit comprises: a) a differentiating circuit coupled between a first terminal of said transistor and said ground, and being configured to receive said voltage at said first terminal of said transistor, and to generate a differential voltage signal and a differential current signal via differential operation; b) a zero-crossing detecting circuit configured to generate a zero-crossing detection signal according to at least one of said differential voltage signal and said differential current signal; and c) a sample and hold circuit configured to generate a first voltage sampling signal according to said voltage at said first terminal of said transistor and said zero-crossing detection signal. 4. The EMI filter of claim 1 , wherein said first reference signal generator comprises: a) an operational amplifier having a non-inverting input terminal configured to receive said first voltage sampling signal, and an inverting input terminal configured to receive a reference voltage; and b) a compensation circuit coupled between an output terminal of said operational amplifier and ground, and being configured to output said current reference signal. 5. A switching power supply, comprising said EMI filter of claim 1 . 6. The EMI filter of claim 2 , wherein said second voltage sense circuit comprises a ripple voltage sense circuit configured to receive said voltage at a second terminal of said input capacitor and said voltage at said first terminal of said transistor, and to generate a voltage across said input capacitor, wherein said ripple voltage sense circuit is configured to sample ripples of said voltage across said input capacitor, and to generate said second voltage sampling signal. 7. The EMI filter of claim 2 , wherein said second reference signal generator comprises a superimpose circuit configured to subtract said second voltage sampling signal from a DC bias voltage, and to generate said voltage reference signal. 8. The EMI filter of claim 7 , wherein said second reference signal generator further comprises a DC bias generator configured to generate said DC bias voltage according to said second voltage sampling signal. 9. An electromagnetic interference (EMI) filter configured for an AC-DC switching power supply, said EMI filter being coupled between a DC-DC converter and a rectifier circuit that receives an AC power supply, the EMI filter comprising: a) an input capacitor coupled in parallel to two input terminals of said DC-DC converter; b) a transistor having two power terminals coupled in series with said input capacitor between two output terminals of said rectifier circuit; and c) a control circuit configured to generate a control signal to control a control terminal of said transistor to control a drain voltage of said transistor to compensate a ripple component of a voltage signal across said input capacitor; d) wherein said control circuit comprises a voltage sense circuit configured to generate a voltage sampling signal from said voltage across said input capacitor, a reference signal generator configured to generate a voltage reference signal according to said voltage sampling signal, and a control signal generator configured to generate said control signal according to said voltage reference signal and said drain voltage of said transistor. 10. The EMI filter of claim 9 , wherein said voltage sense circuit comprises a ripple voltage sense circuit configured to receive said voltage at a second terminal of said input capacitor and said voltage at a first terminal of said transistor, and to generate a voltage across said input capacitor, wherein said ripple voltage sense circuit is configured to sample ripples of said voltage across said input capacitor, and to generate said voltage sampling signal. 11. The EMI filter of claim 9 , wherein said reference signal generator comprises a superimpose circuit configured to subtract said voltage sampling signal from a DC bias voltage, and to generate said voltage reference signal. 12. A switching power supply, comprising said EMI filter of claim 9 . 13. The EMI filter of claim 11 , wherein said reference signal generator further comprises a DC bias generator configured to generate said DC bias voltage according to said voltage sampling signal.

Assignees

Inventors

Classifications

  • using discharge tubes without control electrode or semiconductor devices without control electrode · CPC title

  • including plural semiconductor devices as final control devices for a single load · CPC title

  • Multiple-port networks · CPC title

  • H02M1/143Primary

    using compensating arrangements (for reducing noise from the supply in transmission systems H04B15/005) · CPC title

  • in a bridge configuration · CPC title

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What does patent US10069406B2 cover?
An EMI filter configured for an AC-DC switching power supply, and that is coupled between a DC-DC converter and a rectifier circuit that receives an AC power supply, can include: an input capacitor coupled in parallel to input terminals of the DC-DC converter; a transistor having a first terminal coupled to a first terminal of the input capacitor, and a second terminal coupled to ground; and a …
Who is the assignee on this patent?
Silergy Semiconductor Technology Hangzhou Ltd
What technology area does this patent fall under?
Primary CPC classification H02M1/143. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Sep 04 2018 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).