Noise filter

US12355346B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-12355346-B2
Application numberUS-202018028255-A
CountryUS
Kind codeB2
Filing dateNov 11, 2020
Priority dateNov 11, 2020
Publication dateJul 8, 2025
Grant dateJul 8, 2025

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  1. Title

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  2. Abstract

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A noise filter includes: a voltage detector that detects a common-mode voltage; a voltage divider circuit that outputs a divided voltage divided from the common-mode voltage; multiple common-mode transformers that are connected separately to respective power lines of multiline systems connected in parallel relation to each other to an input or output of the power converter, and that superimpose a superimposing voltage having an opposite polarity to the common-mode voltage on each of the power lines of multiline systems; and an injection waveform generator that generates at least one output voltage to be outputted to primary sides of the multiple common-mode transformers, on the basis of the divided voltage. The injection waveform generator generates as the output voltage, a voltage with which a difference between the superimposing voltage to be super-imposed on each of the power lines and the common-mode voltage is within an allowable value.

First claim

Opening claim text (preview).

The invention claimed is: 1. A noise filter which reduces a common-mode voltage produced by a power converter that performs power conversion using switching operations of semiconductor elements, said noise filter comprising: a voltage detector that detects the common-mode voltage produced by the power converter; a voltage divider circuit that outputs a divided voltage divided from the common-mode voltage detected by the voltage detector; multiple common-mode transformers that are connected separately to respective power lines of multiline systems connected in parallel relation to each other to an input or output of the power converter, and that superimpose a superimposing voltage having an opposite polarity to the common-mode voltage on each of the power lines of multiline systems; and an injection waveform generator that generates at least one output voltage to be outputted to primary sides of the multiple common-mode transformers, on a basis of the divided voltage; wherein the injection waveform generator generates as the output voltage, a voltage with which a difference between the superimposing voltage to be superimposed on each of the power lines and the common-mode voltage is within an allowable value. 2. The noise filter of claim 1 , wherein the common-mode transformers are connected one by one to each of the power lines of multiline systems; and wherein the superimposing voltage is an injection voltage that is outputted by each of the common-mode transformers at its secondary side. 3. The noise filter of claim 1 , wherein the common-mode transformers are composed of equal numbers of plural common-mode transformers that are connected to the respective power lines of multiline systems; and wherein the superimposing voltage is a total injection voltage resulting from summation of injection voltages that are outputted by the plural common-mode transformers connected to each one of the power lines, at their secondary sides. 4. The noise filter of claim 2 , wherein the injection waveform generator outputs as the output voltage, a same voltage to all of the primary sides of the multiple common-mode transformers. 5. The noise filter of claim 3 , wherein the plural common-mode transformers connected to one of the power lines of multiline systems, is comprised of a first common-mode transformer and a second common-mode transformer; and wherein the first common-mode transformer and the second common-mode transformer are different from each other in at least one of core material, core cross-section area, core outer diameter, core inner diameter and turn ratio. 6. The noise filter of claim 3 , wherein the plural common-mode transformers connected to each one of the power lines of multiline systems, are comprised of a first common-mode transformer and a second common-mode transformer; and wherein the first common-mode transformer and the second common-mode transformer are different from each other in at least one of core material, core cross-section area, core outer diameter, core inner diameter and turn ratio. 7. The noise filter of claim 6 , wherein the injection waveform generator has a first output terminal and a second output terminal, to thereby output from the first output terminal to the primary sides of the first common-mode transformers connected to the respective power lines of multiline systems, a first output voltage as the output voltage that is common to the first common-mode transformers; and to thereby output from the second output terminal to the primary sides of the second common-mode transformers connected to the respective power lines of multiline systems, a second output voltage as the output voltage that is common to the second common-mode transformers and is different from the first output voltage. 8. The noise filter of claim 6 , wherein the injection waveform generator has a first waveform generator and a second waveform generator, to thereby output from the first waveform generator to the primary sides of the first common-mode transformers connected to the respective power lines of multiline systems, a first output voltage as the output voltage that is common to the first common-mode transformers; and to thereby output from the second waveform generator to the primary sides of the second common-mode transformers connected to the respective power lines of multiline systems, a second output voltage as the output voltage that is common to the second common-mode transformers and is different from the first output voltage. 9. The noise filter of claim 2 , wherein the common-mode transformers are equal in core material, core cross-section area, core outer diameter, core inner diameter and turn ratio. 10. The noise filter of claim 3 , wherein the injection waveform generator has a plurality of output terminals, to thereby output from the output terminals, different voltages as the output voltage, each to the primary side of each corresponding one of the common-mode transformers. 11. The noise filter of claim 3 , wherein the injection waveform generator has a plurality of waveform generators; and wherein the waveform generators output different voltages as the output voltage, each to the primary side of each corresponding one of the common-mode transformers. 12. The noise filter of claim 10 , wherein the different voltages outputted by the injection waveform generator are different in voltage value. 13. The noise filter of claim 7 , wherein the first output voltage and the second output voltage are different in voltage value. 14. The noise filter of claim 10 , wherein the injection waveform generator includes a band limiter that changes a frequency band of the divided voltage; and wherein the different voltages outputted by the injection waveform generator are different in frequency band. 15. The noise filter of claim 7 , wherein the injection waveform generator includes a band limiter that changes a frequency band of the divided voltage; and wherein the first output voltage and the second output voltage are different in frequency band. 16. The noise filter of claim 3 , wherein the injection waveform generator includes an amplifier that amplifies the divided voltage, and wherein a gain of the amplifier is set on a basis of a number of the common-mode transformers and turn ratios thereof. 17. The noise filter of claim 3 , wherein the injection waveform generator outputs as the output voltage, a same voltage to all of the primary sides of the multiple common-mode transformers. 18. The noise filter of claim 6 , wherein the injection waveform generator has a plurality of output terminals, to thereby output from the output terminals, different voltages as the output voltage, each to the primary side of each corresponding one of the common-mode transformers. 19. The noise filter of claim 6 , wherein the injection waveform generator has a plurality of waveform generators; and wherein the waveform generators output different voltages as the output voltage, each to the primary side of each corresponding one of the common-mode transformers. 20. The noise filter of claim 11 , wherein the different voltages outputted by the injection waveform generator are different in voltage value.

Assignees

Inventors

Classifications

  • Electrical filters or coupling circuits · CPC title

  • Circuits specially adapted for the purpose of modifying, or compensating for, electric characteristics of transformers, reactors, or choke coils (circuits for controlling transformers, reactors or choke coils, for the purpose of obtaining a desired output H02P13/00; impedance networks H03H) · CPC title

  • Common mode choke coil · CPC title

  • Common-mode filters (H02J3/01 and H02M1/126 takes precedence) · CPC title

  • using semiconductor devices only · CPC title

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What does patent US12355346B2 cover?
A noise filter includes: a voltage detector that detects a common-mode voltage; a voltage divider circuit that outputs a divided voltage divided from the common-mode voltage; multiple common-mode transformers that are connected separately to respective power lines of multiline systems connected in parallel relation to each other to an input or output of the power converter, and that superimpose…
Who is the assignee on this patent?
Mitsubishi Electric Corp, Mitsubishi Electric Eng
What technology area does this patent fall under?
Primary CPC classification H02M1/44. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Jul 08 2025 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 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).