DocumentCode
1330963
Title
Potential interference issues between FCC part 15 compliant UHF ISM emitters and equipment passing standard immunity testing requirements
Author
Novotny, D.R. ; Guerrieri, J.R. ; Kuester, D.G.
Author_Institution
Nat. Inst. of Stand. & Technol., Boulder, CO, USA
Volume
1
Issue
3
fYear
2012
Firstpage
92
Lastpage
96
Abstract
The potential for electromagnetic (EM) interference between multi-channel, FCC Part 15 UHF (902-928 MHz) ISM (Industiral, Scientific, and Medical) [1] emitters and devices that have passed immunity requirements under international standards [2] is examined. At close ranges, the fields from a Part 15.247 compliant emitter may exceed minimum standard immunity testing levels. This does not imply interference will occur, only that the device may not be qualified to operate in the EM environment near the emitter. Some recent studies have shown minimal interference between Section 15.247 equipment and commercial devices [3, 4]. Other studies have indicated that (EU) UHF interference potential can exist [5, 6]. The range at which Part 15 devices may pose a risk to electronic devices compliant with standard immunity regulations is estimated and compared to these studies. Because Radio Frequency Identification (RFID), especially passive UHF RFID, emitters may be deployed in numerous locations and in close proximity to many devices, it has been the focus of many of the studies of interference potential. RFID emitters may be one of the largest populations of the Part 15 devices, but the EMI potential of general Section 15.247 emitters is addressed.
Keywords
UHF devices; electromagnetic interference; immunity testing; radiofrequency identification; telecommunication equipment testing; FCC Part 15 compliance; Part 15.247 compliant emitter; Section 15.247 emitters; UHF ISM emitters; UHF interference potential; electromagnetic interference; equipment passing standard immunity testing requirements; frequency 902 MHz to 928 MHz; immunity regulations; passive UHF RFID; radiofrequency identification; Electric potential; FCC; IEC standards; Immune system; Immunity testing; Radiofrequency identification;
fLanguage
English
Journal_Title
Electromagnetic Compatibility Magazine, IEEE
Publisher
ieee
ISSN
2162-2264
Type
jour
DOI
10.1109/MEMC.2012.6347063
Filename
6347063
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