IP Library Granted Patent US 11,575,308
Granted Patent B1
US 11,575,308 · App. 17/469,858 · Granted Feb 7, 2023

High-attenuation wideband active common-mode EMI filter section

Inventors: Kun Zhang (Hong Kong, HK); Shu Hung Henry Chung (Hong Kong, HK)
Assignee: City University of Hong Kong
H02M1/123G05F3/265H02M1/126H02M1/44
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Quick Facts
Patent No.
US 11,575,308
App. No.
17/469,858
Granted
Feb 7, 2023
Kind
B1
Abstract

An active common mode filter is configured to be positioned between a power supply and a switching converter-device/load for reducing common mode noise. The active common mode filter includes an active capacitor that has a sensing stage including one or more sensing capacitors, an amplifying stage including a common collector amplifier for mitigating an input voltage divider effect coupled to a common emitter amplifier for providing high gain, and an injection stage including one or more injection capacitors. Depending on the required attenuation in different applications, a multistage active common mode filter may be formed with a necessary number of stages, each stage including an active capacitor and an inductor.

Claims (23)

1. An active common mode filter configured to be positioned between a power supply and a switching converter coupled to a device or to a load for reducing common mode noise comprising:

an active capacitor including:

a sensing stage including one or more sensing capacitors;

an amplifying stage including a common collector amplifier for mitigating an input voltage divider effect coupled to a common emitter amplifier for providing high gain and further comprising an asymmetric current mirror coupled to the common emitter amplifier;

an injection stage including one or more injection capacitors.

2. The active common mode filter of claim 1 , wherein the common collector amplifier is cascaded with the common emitter amplifier.

3. The active common mode filter of claim 1 , wherein the sensing stage includes two capacitors with the same capacitance.

4. The active common mode filter of claim 1 wherein the injection stage includes two capacitors with the same capacitance.

5. A multistage active common mode filter configured to be positioned between a power supply and a switching converter coupled to a device or to a load for reducing common mode noise, comprising:

a first stage including a first active capacitor and a first inductor to generate a first-filtered current from an input current supplied by the power supply, the first active capacitor including:

a first sensing stage including one or more first sensing capacitors;

a first amplifying stage including a first common collector amplifier coupled to

a first common emitter amplifier;

a first injection stage including one or more first injection capacitors;

a second stage including a second active capacitor and a second inductor configured to generate a second-filtered current from the first-filtered current, the second active capacitor including:

a second sensing stage including one or more second sensing capacitors;

a second amplifying stage including a second common collector amplifier coupled to a second common emitter amplifier;

a second injection stage including one or more second injection capacitors.

6. The multistage active common mode filter of claim 5 , wherein the first and second common collector amplifiers are cascaded the first and second common emitter amplifiers, respectively.

7. The multistage active common mode filter of claim 5 , wherein the first and second common emitter amplifiers are each a common emitter amplifier with active load.

8. The multistage active common mode filter of claim 5 , wherein the each of the first and second amplifying stages further comprises an asymmetric current mirror coupled to the first and second common emitter amplifiers, respectively.

9. The multistage active common mode filter of claim 5 , wherein the first and second sensing stages each include two capacitors with the same capacitance.

10. The multistage active common mode filter of claim 5 , wherein the first and second injection stages each include two capacitors with the same capacitance.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 8, 2021
From: ZHANG, KUN; CHUNG, SHU HUNG HENRY
To: CITY UNIVERSITY OF HONG KONG
Reel/Frame 057418/0495 →