DocumentCode :
357873
Title :
Estimation of spatial distribution of electromagnetic noise radiated from PCB
Author :
Kasuga, Takashi ; Tanaka, Motoshi ; Komakine, Takashi ; Inoue, Hiroshi
Author_Institution :
Akita Univ., Japan
Volume :
1
fYear :
2000
fDate :
2000
Firstpage :
369
Abstract :
This study aims to clarify the frequency characteristics of the spatial distribution of electromagnetic noise inside a distance of 3 m around a printed circuit board (PCB) by simulation and experiment. It is also shows that the finite difference time domain method (FDTD method) is a useful tool to estimate the frequency characteristic of the spatial distribution for the electric and magnetic field around the PCB. By comparison between the electric and magnetic near field spectrum above the printed line by simulation, these spectra are shown to have differences in the resonance frequency: when the characteristics of the electric and magnetic field strength at 60 ns after the excitation is calculated, the electric field is decreased, the magnetic field is not decreased, as the distance from PCB is farther. From the characteristics of particular frequencies, the electric field spectrum at 3 MHz, i.e, clock pulse, is decreased, whereas the magnetic field is not decreased. The electric and magnetic field strength at the resonance frequency, 417 MHz, is decreased in inverse proportional to the square of the distance. It is also clear that the low frequency magnetic field strength may be superior to higher frequency
Keywords :
electric field measurement; electric noise measurement; electromagnetic compatibility; electromagnetic interference; finite difference time-domain analysis; frequency estimation; magnetic field measurement; noise; printed circuits; resonance; 3 MHz; 3 m; 417 MHz; 60 ns; EMC; FDTD method; HF magnetic field strength; LF magnetic field strength; PCB; clock pulse; distance; electric field spectrum; experiment; finite difference time domain method; frequency characteristic estimation; frequency characteristics; low frequency magnetic field strength; near field spectrum; printed circuit board; printed line; radiated electromagnetic noise; resonance frequency; simulation; spatial distribution estimation; Circuit noise; Circuit simulation; Electromagnetic interference; Finite difference methods; Frequency estimation; Magnetic fields; Magnetic noise; Magnetic resonance; Printed circuits; Resonant frequency;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electromagnetic Compatibility, 2000. IEEE International Symposium on
Conference_Location :
Washington, DC
Print_ISBN :
0-7803-5677-2
Type :
conf
DOI :
10.1109/ISEMC.2000.875595
Filename :
875595
Link To Document :
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