IEC 61000-4-x Summary: EMC Immunity Test Basic Standards

Overview of the IEC 61000-4 series (ESD, radiated RF, EFT, surge, conducted RF, magnetic field, voltage dips): test concepts, representative levels and performance criteria.

Last updated: 2026-10-10

This page is a self-written reference summary. Test levels and performance criteria are set by the applicable generic or product standard (for example EN 55035 or IEC 61000-6-1/-2) and may differ by edition, so check the source documents.

At a glance

  • IEC 61000-4-x is the series defining EMC testing and measurement techniques, mainly immunity test methods.
  • They are basic EMC publications: they define only test methods, waveforms and equipment requirements. Which levels apply and what counts as a pass is set by the generic or product standard.
  • For multimedia equipment, for instance, CISPR 35 (EN 55035) cites parts 4-2, 4-3, 4-4, 4-5, 4-6, 4-8, 4-11 and others and sets levels and criteria.

Main parts at a glance

PartTestPhenomenon
4-2Electrostatic discharge (ESD) immunityStatic discharge from people and objects
4-3Radiated RF electromagnetic field immunityExternal RF fields from transmitters
4-4Electrical fast transient/burst (EFT/B) immunityFast pulses from relay and contactor switching
4-5Surge immunityHigh-energy transients from lightning and switching
4-6Immunity to conducted disturbances induced by RF fieldsRF current/voltage coupled onto cables
4-8Power-frequency magnetic field immunityFields near transformers and current-carrying conductors
4-9 / 4-10Pulse magnetic field / damped oscillatory magnetic field immunityMagnetic transients from lightning and switching
4-11Voltage dips, short interruptions and variations immunityDegraded mains quality
4-12 / 4-18Ring wave / damped oscillatory wave immunityOscillatory transients from switching
4-14 / 4-15Voltage fluctuation immunity / flickermeterFluctuating or flickering supply voltage

The series also covers test facilities (4-20 TEM waveguides, 4-21 reverberation chambers, 4-22 fully anechoic rooms), HEMP and power-quality measurement (4-30).

Representative levels and waveforms

PartRepresentative levelsWaveform / condition highlights
4-2 ESDContact ±2, ±4, ±6, ±8 kV / air ±2, ±4, ±8, ±15 kVRise time about 0.7–1 ns; peak current about 15 A for 4 kV contact (about 3.75 A per kV)
4-3 Radiated RFTypically 1, 3, 10 V/m (higher levels per product standard)80 % AM at 1 kHz; test after field calibration over a uniform area
4-4 EFTPower ports ±0.5, ±1, ±2, ±4 kV / signal ports ±0.25, ±0.5, ±1, ±2 kV5/50 ns pulse, repetition rate 5 kHz or 100 kHz
4-5 Surge±0.5, ±1, ±2, ±4 kV1.2/50 µs open-circuit voltage, 8/20 µs short-circuit current; coupling impedance 2 Ω line-line, 12 Ω line-earth
4-6 Conducted RF1, 3, 10 V (e.m.f.)150 kHz–80 MHz, 80 % AM at 1 kHz, coupling/decoupling networks (CDN)
4-8 Mains magnetic field1, 3, 10, 30, 100 A/mContinuous 50/60 Hz field applied with an induction coil
4-11 Voltage dipsResidual voltage such as 0 %, 40 %, 70 % combined with durationsCombinations set by the product standard; phase angle and repetition also specified

The test frequency range of 4-3 differs between editions, and the latest edition extends it up to 6 GHz. Figures shown are representative; the levels that apply to a product come from its product standard.

Performance criteria (A, B, C)

CriterionMeaning
ANormal performance maintained during and after the test, with no degradation or loss of function
BTemporary degradation allowed during the test; the EUT recovers by itself afterwards without operator intervention
CLoss of function allowed during the test, recoverable with operator intervention (reset, reboot); data loss rules are specified separately

Which criterion applies to which test is set by the product standard (for example EN 55035). Write the judging method in the test plan in advance.

Practical points per test

  • ESD: prefer contact discharge and use air discharge on non-conductive surfaces. Decide in advance which points are discharge targets (connector shells, metal enclosure, buttons). Indirect discharge to coupling planes (HCP/VCP) is included as well.
  • Radiated RF: field-uniformity calibration comes first, and because of 80 % AM the amplifier needs about +5 dB of peak-power headroom over unmodulated. Estimate the required power with the "Radiated immunity required power" calculator.
  • EFT/surge: repeat for each coupling path (line-line / line-earth), polarity and phase angle. Placement of the power filter and TVS (near the entry, shortest ground path) often decides pass or fail.
  • Conducted RF (4-6): setup depends on cable length and CDN type. If a malfunction occurs only at certain frequencies, suspect a cable resonance.
  • Voltage dips (4-11): input capacitor size and hold-up time dominate the result.

Official sources

  • Check the latest edition of each part in the IEC webstore (https://webstore.iec.ch). Revision cycles differ per part.

Related calculators

Standards summaries

Results and summaries are for reference. For certification and test reports use the latest official standard text and calibrated instrument data.