IP Library Granted Patent US 7,547,987
Granted Patent B2
US 7,547,987 · App. 11/425,751 · Granted Jun 16, 2009

EMI reduced power inverter

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Quick Facts
Patent No.
US 7,547,987
App. No.
11/425,751
Granted
Jun 16, 2009
Kind
B2
Abstract

A power inverter of the type used with hybrid electric vehicles having a circuit board with a power layer having a first and second section which are electrically separated using slits from each other on the power layer. A control circuit is connected to and powered by the first section of the power layer while a switching power supply is connected to and powered by the second section of the power layer. An electromagnetic filter is electrically connected between the sections of the power layer. This electromagnetic filter blocks high frequency noises of the type generated by the switching power supply while enabling the sections to be maintained at the same DC voltage level. Optionally, a ferrite covering is provided around a current bus bar of the power inverter to contain magnetic fields generated by current flow through the bus bar.

Claims (25)

1. A power inverter comprising:

a printed circuit board having at least one power layer with at least a first and a second section, said sections being electrically separated from each other on said power layer and maintained at different voltages in operation,

a circuit component connected to and powered by said first section of the power layer,

a PWM switching power supply mounted in and powered by said second section of the power layer,

an electromagnetic filter electrically connected between said sections of said power layer, said filter configured to block at least a portion of high frequency signals between said sections while enabling said sections to be maintained at the same DC voltage level, wherein said printed circuit board comprises:

a ground layer having a first section and a second section electrically separated from each other on said ground layer,

a load circuit, functioning as control or signal conditioning, connected to said first section of the ground layer,

a PWM switching power supply module connected to said second section of the ground layer,

a second electromagnetic filter electrically connected between said sections of said ground layer, said filter configured to block a portion of high frequency noise from said sections of the ground layer while enabling said sections to be maintained at the same DC voltage level.

2. The invention as defined in claim 1 wherein said electromagnetic filter comprises an inductor.

3. The invention as defined in claim 1 wherein said electromagnetic filter comprises a capacitor.

4. The invention as defined in claim 1 wherein said power inverter is used to power a hybrid electric vehicle.

5. The invention as defined in claim 1 wherein said second electromagnetic filter comprises an inductor.

6. The invention as defined in claim 1 wherein said second electromagnetic filter comprises a capacitor.

7. The invention as defined in claim 1 wherein the power inverter contains a current bus bar and comprising a ferrite covering around said bus bar.

8. A method for attenuating electromagnetic interference on a printed circuit board of a power inverter between a switching power supply and a circuit component electrically connected to a power layer comprising the steps of:

electrically separating the power layer into a first and second section maintained at different voltage levels in operation, said first section connected to the control circuit and said second section connected to the switching power supply,

electrically connecting an electromagnetic filter between the sections of die power layer, said filter being configured to block high frequency signals of the type generated by the switching power supply while enabling the sections to be maintained at the same DC voltage level, wherein the printed circuit board includes a ground layer and further comprising the steps of:

electrically separating the ground layer into a first and second section, said first section connected to the control circuit and said second section connected to the switching power supply,

electrically connecting a second electromagnetic filter between the sections of the ground layer, said filter being configured to block high frequency signals of the type generated by the switching power supply while enabling the sections to be maintained at the same DC voltage level.

9. The invention as defined in claim 8 wherein said filter comprises an inductor.

10. The invention as defined in claim 8 wherein said filter comprises a capacitor.

11. The invention as defined in claim 8 wherein said second electromagnetic filter comprises an inductor.

12. The invention as defined in claim 8 wherein said second electromagnetic filter comprises a capacitor.

13. The invention as defined in claim 8 wherein the power inverter is employed in a hybrid electric vehicle.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 30, 2012
From: HITACHI, LTD.
To: HITACHI AUTOMOTIVE SYSTEMS, LTD.
Reel/Frame 028876/0411 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2006
From: TORIGOE, MAKATO; SHAO, LIANG; SAIKALIS, GEORGE; FUNATO, HIROKI; NAKAMURA, TAKAYOSHI
To: HITACHI, LTD.
Reel/Frame 018009/0768 →