IEC 62132-4:2006
Current
The latest, up-to-date edition.
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English - French
21-02-2006
Describes a method to measure the immunity of integrated circuits (IC) in the presence of conducted RF disturbances, e.g. resulting from radiated RF disturbances. This method guarantees a high degree of repeatability and correlation of immunity measurements.This standard establishes a common base for the evaluation of semiconductor devices used in equipment functioning in an environment subject to unwanted radio frequency electromagnetic waves.
Committee |
TC 47/SC 47A
|
DevelopmentNote |
Stability Date: 2015. (10/2012)
|
DocumentType |
Standard
|
Pages |
49
|
PublisherName |
International Electrotechnical Committee
|
Status |
Current
|
Standards | Relationship |
NEN EN IEC 62132-4 : 2006 | Identical |
I.S. EN 62132-4:2006 | Identical |
PN EN 62132-4 : 2009 | Identical |
SN EN 62132-4 : 2006 | Identical |
UNE-EN 62132-4:2006 | Identical |
BS EN 62132-4:2006 | Identical |
CEI EN 62132-4 : 2006 | Identical |
EN 62132-4:2006 | Identical |
NF EN 62132-4 : 2006 | Identical |
DIN EN 62132-4:2006-10 | Identical |
BS EN 62228-2:2017 | Integrated circuits. EMC evaluation of transceivers LIN transceivers |
EN 62433-4:2016 | EMC IC modelling - Part 4: Models of integrated circuits for RF immunity behavioural simulation - Conducted immunity modelling (ICIM-CI) |
10/30209944 DC : 0 | BS EN 62215-3 - INTEGRATED CIRCUITS - MEASUREMENT OF IMPULSE IMMUNITY - PART 3: NON-SYNCHRONOUS TRANSIENT INJECTION METHOD |
CEI EN 62228-2 : 1ED 2017 | INTEGRATED CIRCUITS - EMC EVALUATION OF TRANSCEIVERS - PART 2: LIN TRANSCEIVERS |
I.S. EN 62228-2:2017 | INTEGRATED CIRCUITS - EMC EVALUATION OF TRANSCEIVERS - PART 2: LIN TRANSCEIVERS |
CEI EN 62215-3 : 2014 | INTEGRATED CIRCUITS - MEASUREMENT OF IMPULSE IMMUNITY - PART 3: NON-SYNCHRONOUS TRANSIENT INJECTION METHOD |
EN IEC 62969-1:2018 | Semiconductor devices - Semiconductor interface for automotive vehicles - Part 1: General requirements of power interface for automotive vehicle sensors |
17/30350017 DC : 0 | BS EN 62228-1 - INTEGRATED CIRCUITS - EMC EVALUATION OF TRANSCEIVERS - PART 1: GENERAL CONDITIONS AND DEFINITIONS |
14/30310470 DC : 0 | BS EN 62228-2 - INTEGRATED CIRCUITS - EMC EVALUATION OF LIN TRANSCEIVERS |
IEC TS 62215-2:2007 | Integrated circuits - Measurement of impulse immunity - Part 2: Synchronous transient injection method |
14/30310474 DC : 0 | BS EN 62433-4 ED 1.0 - EMC IC MODELLING - PART 4: MODELS OF INTEGRATED CIRCUITS FOR RF IMMUNITY BEHAVIOURAL SIMULATION - CONDUCTED IMMUNITY MODELLING (ICIM-CI) |
BS EN 62132-1:2016 | Integrated circuits. Measurement of electromagnetic immunity General conditions and definitions |
I.S. EN 62215-3:2013 | INTEGRATED CIRCUITS - MEASUREMENT OF IMPULSE IMMUNITY - PART 3: NON-SYNCHRONOUS TRANSIENT INJECTION METHOD (IEC 62215-3:2013 (EQV)) |
I.S. EN 62132-1:2016 | INTEGRATED CIRCUITS - MEASUREMENT OF ELECTROMAGNETIC IMMUNITY - PART 1: GENERAL CONDITIONS AND DEFINITIONS |
IEC TS 62228:2007 | Integrated circuits - EMC evaluation of CAN transceivers |
IEC 62969-1:2017 | Semiconductor devices - Semiconductor interface for automotive vehicles - Part 1: General requirements of power interface for automotive vehicle sensors |
BS EN 62433-4:2016 | EMC IC modelling Models of integrated circuits for RF immunity behavioural simulation. Conducted immunity modelling (ICIM-CI) |
DD IEC/TS 62215-2:2007 | Integrated circuits. Measurement of impulse immunity Synchronous transient injection method |
NF EN 62215-3 : 2014 | INTEGRATED CIRCUITS - MEASUREMENT OF IMPULSE IMMUNITY - PART 3: NON-SYNCHRONOUS TRANSIENT INJECTION METHOD |
05/30137850 DC : DRAFT AUG 2005 | IEC 62215-2 - INTEGRATED CIRCUITS - MEASUREMENT OF IMPULSE IMMUNITY - PART 2: IMPULSE INJECTION METHOD |
12/30268333 DC : 0 | BS EN 62132-1 - INTEGRATED CIRCUITS - MEASUREMENT OF ELECTROMAGNETIC IMMUNITY - PART 1: GENERAL CONDITIONS AND DEFINITIONS |
IEEE 802.3-2012 | IEEE Standard for Ethernet |
IEC 62228-1:2018 | Integrated circuits - EMC evaluation of transceivers - Part 1: General conditions and definitions |
IEC 62215-3:2013 | Integrated circuits - Measurement of impulse immunity - Part 3: Non-synchronous transient injection method |
IEC 62132-1:2015 | Integrated circuits - Measurement of electromagnetic immunity - Part 1: General conditions and definitions |
CEI EN 62433-4 : 1ED 2017 | EMC IC MODELLING - PART 4: MODELS OF INTEGRATED CIRCUITS FOR RF IMMUNITY BEHAVIOURAL SIMULATION - CONDUCTED IMMUNITY MODELLING (ICIM-CI) |
BS EN 62215-3:2013 | Integrated circuits. Measurement of impulse immunity Non-synchronous transient injection method |
16/30336986 DC : 0 | BS EN 62969-1 - SEMICONDUCTOR DEVICES - SEMICONDUCTOR INTERFACE FOR AUTOMOTIVE VEHICLES - PART 1: GENERAL REQUIREMENTS OF POWER INTERFACE FOR AUTOMOTIVE VEHICLE SENSORS |
DD IEC/TS 62228:2007 | Integrated circuits. EMC evaluation of CAN transceivers |
ISO/IEC/IEEE 8802-3:2017 | Information technology Telecommunications and information exchange between systems Local and metropolitan area networks Specific requirements Part 3: Standard for Ethernet |
IEC 62228-2:2016 | Integrated circuits - EMC evaluation of transceivers - Part 2: LIN transceivers |
IEC 62433-4:2016 | EMC IC modelling - Part 4: Models of integrated circuits for RF immunity behavioural simulation - Conducted immunity modelling (ICIM-CI) |
EN 62132-1:2016 | Integrated circuits - Measurement of electromagnetic immunity - Part 1: General conditions and definitions |
EN 62228-2:2017 | Integrated circuits - EMC evaluation of transceivers - Part 2: LIN transceivers |
EN 62215-3:2013 | Integrated circuits - Measurement of impulse immunity - Part 3: Non-synchronous transient injection method |
ISO 11452-3:2016 | Road vehicles — Component test methods for electrical disturbances from narrowband radiated electromagnetic energy — Part 3: Transverse electromagnetic (TEM) cell |
ISO 11452-4:2011 | Road vehicles Component test methods for electrical disturbances from narrowband radiated electromagnetic energy Part 4: Harness excitation methods |
ISO 11451-3:2015 | Road vehicles Vehicle test methods for electrical disturbances from narrowband radiated electromagnetic energy Part 3: On-board transmitter simulation |
IEC 62132-1:2015 | Integrated circuits - Measurement of electromagnetic immunity - Part 1: General conditions and definitions |
IEC 61000-4-6 : 4.0 | ELECTROMAGNETIC COMPATIBILITY (EMC) - PART 4-6: TESTING AND MEASUREMENT TECHNIQUES - IMMUNITY TO CONDUCTED DISTURBANCES, INDUCED BY RADIO-FREQUENCY FIELDS |
IEC 61000-4-6:2013 | Electromagnetic compatibility (EMC) - Part 4-6: Testing and measurement techniques - Immunity to conducted disturbances, induced by radio-frequency fields |
ISO 11898-1:2015 | Road vehicles — Controller area network (CAN) — Part 1: Data link layer and physical signalling |
IEC 61967-4:2002+AMD1:2006 CSV | Integrated circuits - Measurement of electromagnetic emissions, 150 kHz to 1 GHz - Part 4: Measurement of conducted emissions - 1 Ω/150 Ω direct coupling method |
ISO 11452-2:2004 | Road vehicles Component test methods for electrical disturbances from narrowband radiated electromagnetic energy Part 2: Absorber-lined shielded enclosure |
ISO 11452-1:2015 | Road vehicles Component test methods for electrical disturbances from narrowband radiated electromagnetic energy Part 1: General principles and terminology |
ISO 11452-5:2002 | Road vehicles — Component test methods for electrical disturbances from narrowband radiated electromagnetic energy — Part 5: Stripline |
ISO 11451-2:2015 | Road vehicles Vehicle test methods for electrical disturbances from narrowband radiated electromagnetic energy Part 2: Off-vehicle radiation sources |
ISO 11452-7:2003 | Road vehicles Component test methods for electrical disturbances from narrowband radiated electromagnetic energy Part 7: Direct radio frequency (RF) power injection |
ISO 11451-4:2013 | Road vehicles Vehicle test methods for electrical disturbances from narrowband radiated electromagnetic energy Part 4: Bulk current injection (BCI) |
ISO 11451-1:2015 | Road vehicles Vehicle test methods for electrical disturbances from narrowband radiated electromagnetic energy Part 1: General principles and terminology |
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