DocumentCode :
2419270
Title :
The effect of duty cycle on SMPS common mode emissions: theory and experiment
Author :
Nave, Mark J.
Author_Institution :
EMC Services Inc., Seminole, FL, USA
fYear :
1989
fDate :
23-25 May 1989
Firstpage :
211
Lastpage :
216
Abstract :
The theoretical time- and frequency-domain waveforms of common-mode conducted emissions are derived for a switched mode power supply (SMPS) of arbitrary duty cycle. The dependence of common-mode emissions on duty cycle and switching frequency is derived, modeled, and verified through experimental data. A special fly-back converter was built to isolate the switching transistor heat-sink parasitic capacitance from other potential sources. Data on the common-mode emissions from this source were taken utilizing the line impedance stabilization network measurement method. Time-domain and frequency-domain data were taken for different supply operation parameters (states). The varying common-mode emissions of the supply were compared to that predicted by an earlier model. The magnitudes of the common-mode emissions are shown to be independent of switching transistor risetime. Using Fourier analysis of the common-mode waveform, the model predicts the variation of emissions with duty cycle value
Keywords :
electromagnetic interference; switched mode power supplies; EMI; Fourier analysis; SMPS common mode emissions; common-mode waveform; conducted emissions; duty cycle; fly-back converter; frequency-domain waveforms; line impedance stabilization network; measurement method; parasitic capacitance; supply operation parameters; switched mode power supply; switching transistor heat-sink; time-domain waveform; Electromagnetic compatibility; Electromagnetic interference; Frequency; Laplace equations; Parasitic capacitance; Switched-mode power supply; Switches; Time domain analysis; Virtual manufacturing; Voltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Compatibility, 1989., IEEE 1989 National Symposium on
Conference_Location :
Denver, CO
Type :
conf
DOI :
10.1109/NSEMC.1989.37182
Filename :
37182
Link To Document :
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