DocumentCode
646672
Title
Termination effects on attenuation properties of ferrites installed around cable conductors
Author
Moongilan, Dheena
Author_Institution
Bell Labs., Alcatel-Lucent, Murray Hill, NJ, USA
fYear
2013
fDate
5-9 Aug. 2013
Firstpage
107
Lastpage
112
Abstract
A Ferrite installed around an electrical conductor attenuates the flow of RF power. The ferrite suppresses the flow of RF power at specific frequencies due to its inductive and core loss characteristics. The core loss is the heat dissipated within the ferrite and is represented as an equivalent resistance. A new technique that accurately measures the electrical properties of ferrites using a RF Current Probe Calibration Fixture (CPCF) is described. RF amplitude attenuation and phase angle properties for several ferrites were investigated for different precision terminations connected to the CPCF. Radiated emissions measurements were recorded for a product using a RJ45 cable having different terminations while operating both, with and without ferrites. The RF attenuation data obtained using the CPCF measurements and the product measurements were compared and demonstrated good agreement. Variations in the cable terminations significantly affect the RF attenuation provided by a ferrite. The relevance of these termination variations on actual product operation is discussed.
Keywords
cables (electric); conductors (electric); electric resistance; electromagnetic wave scattering; ferrites; losses; CPCF measurements; RF amplitude attenuation; RF attenuation data; RF current probe calibration fixture; RF power flow suppression; RJ45 cable; attenuation properties; cable conductors; cable terminations; core loss characteristics; electrical conductor; electrical properties measurement; equivalent resistance; ferrites; heat dissipation; inductive characteristics; phase angle properties; precision terminations; product measurements; product operation; radiated emissions measurements; termination effects; termination variations; Attenuation; Attenuation measurement; Conductors; Current measurement; Ferrites; Probes; Radio frequency;
fLanguage
English
Publisher
ieee
Conference_Titel
Electromagnetic Compatibility (EMC), 2013 IEEE International Symposium on
Conference_Location
Denver, CO
ISSN
2158-110X
Print_ISBN
978-1-4799-0408-2
Type
conf
DOI
10.1109/ISEMC.2013.6670391
Filename
6670391
Link To Document