IEC - International Electrotechnical Commission - IEC 60118-13:1997

Hearing aids - Part 13: Electromagnetic compatibility (EMC)

revised
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Organization: IEC - International Electrotechnical Commission
Publication Date: 26 September 1997
Status: revised
Page Count: 25
ICS Code (Electroacoustics): 17.140.50
ICS Code (Immunity): 33.100.20
abstract:

Covers all relevant EMC phenomena for hearing aids. Specifies measurement methods and acceptance levels for hearing aid immunity to high frequency electromagnetic fields originating from digital... View More

Document History

October 29, 2019
Electroacoustics - Hearing aids - Part 13: Requirements and methods of measurement for electromagnetic immunity to mobile digital wireless devices
IEC 60118-13:2019 covers the relevant EMC phenomena for hearing aids. Hearing aid immunity to high frequency fields originating from digital wireless devices such as mobile phones was identified as...
January 6, 2016
Electroacoustics - Hearing aids - Part 13: Electromagnetic compatibility (EMC)
IEC 60118-13:2016 covers relevant EMC phenomena for hearing aids. Hearing aid immunity to high frequency fields originating from digital wireless devices such as mobile phones was originally...
April 11, 2011
Electroacoustics - Hearing aids - Part 13: Electromagnetic compatibility (EMC)
IEC 60118-13:2011 in principle covers all relevant EMC phenomena for hearing aids. Hearing aid immunity to high frequency electromagnetic fields originating from digital wireless devices operating in...
November 15, 2004
Electroacoustics - Hearing aids - Part 13: Electromagnetic compatibility (EMC)
Covers all relevant EMC phenomena for hearing aids. EMC phenomena, such as RF emission and electrostatic discharge, are not currently known to be a significant problem in connection with hearing aids...
IEC 60118-13:1997
September 26, 1997
Hearing aids - Part 13: Electromagnetic compatibility (EMC)
Covers all relevant EMC phenomena for hearing aids. Specifies measurement methods and acceptance levels for hearing aid immunity to high frequency electromagnetic fields originating from digital...
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