In-circuit RF impedance measurement for EMI filter design in switched mode power supplies
To design an electromagnetic interference (EMI) suppression filter for a switched mode power supply (SMPS) systematically, information of the noise source impedance and noise terminating load impedance is essential for selecting the most appropriate filter configuration and choosing the respective f...
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sg-ntu-dr.10356-145652023-07-04T17:00:32Z In-circuit RF impedance measurement for EMI filter design in switched mode power supplies Deng, Junhong See Kye Yak School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering::Power electronics To design an electromagnetic interference (EMI) suppression filter for a switched mode power supply (SMPS) systematically, information of the noise source impedance and noise terminating load impedance is essential for selecting the most appropriate filter configuration and choosing the respective filter elements’ values. Based on a two-current-probe measurement approach, a novel method to determine both common-mode (CM) and differential-mode (DM) noise source impedance of an SMPS has been developed. The proposed method allows measurement of noise source impedance of an SMPS under its normal powered on condition. With proper premeasurement calibration, it is capable of deriving noise source impedance of SMPS in terms of equivalent electrical circuit model with good accuracy. Once the equivalent electrical model of the noise source impedance is derived through measurement, the most effective filter configuration and component’s value for the built-in EMI filter of the SMPS could be designed without the usual guessing approach. DOCTOR OF PHILOSOPHY (EEE) 2008-12-19T01:05:10Z 2008-12-19T01:05:10Z 2008 2008 Thesis Deng, J. (2008). In-circuit RF impedance measurement for EMI filter design in switched mode power supplies. Doctoral thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/14565 10.32657/10356/14565 en 131 p. application/pdf |
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DRNTU::Engineering::Electrical and electronic engineering::Power electronics Deng, Junhong In-circuit RF impedance measurement for EMI filter design in switched mode power supplies |
description |
To design an electromagnetic interference (EMI) suppression filter for a switched
mode power supply (SMPS) systematically, information of the noise source impedance and noise terminating load impedance is essential for selecting the most appropriate filter configuration and choosing the respective filter elements’ values. Based on a two-current-probe measurement approach, a novel method to determine both common-mode (CM) and differential-mode (DM) noise source impedance of an SMPS has been developed. The proposed method allows measurement of noise source impedance of an SMPS under its normal powered on condition. With proper premeasurement calibration, it is capable of deriving noise source impedance of SMPS in
terms of equivalent electrical circuit model with good accuracy. Once the equivalent electrical model of the noise source impedance is derived through measurement, the
most effective filter configuration and component’s value for the built-in EMI filter of the SMPS could be designed without the usual guessing approach. |
author2 |
See Kye Yak |
author_facet |
See Kye Yak Deng, Junhong |
format |
Theses and Dissertations |
author |
Deng, Junhong |
author_sort |
Deng, Junhong |
title |
In-circuit RF impedance measurement for EMI filter design in switched mode power supplies |
title_short |
In-circuit RF impedance measurement for EMI filter design in switched mode power supplies |
title_full |
In-circuit RF impedance measurement for EMI filter design in switched mode power supplies |
title_fullStr |
In-circuit RF impedance measurement for EMI filter design in switched mode power supplies |
title_full_unstemmed |
In-circuit RF impedance measurement for EMI filter design in switched mode power supplies |
title_sort |
in-circuit rf impedance measurement for emi filter design in switched mode power supplies |
publishDate |
2008 |
url |
https://hdl.handle.net/10356/14565 |
_version_ |
1772825204558397440 |