📡 Electromagnetic Field (EMF) Measurement

Environmental PN-T-06580

In short

Measurement of electric (E) and magnetic (H) field intensity at workplaces in the range 0 Hz – 300 GHz. The test is performed according to PN-T-06580-3:2002; Frequency range: 0 Hz – 300 GHz. The procedure comprises 9 steps (about 51–55 min in total); it is used for: EMF measurements at workplaces with devices emitting EMF (welders, induction furnaces), Determination of protection zones around mobile phone base stations, Control of medical personnel exposure (diathermy, MRI, electrotherapy).

At a glance

  • Standard: PN-T-06580-3:2002
  • Category: Environmental
  • Procedure steps: 9
  • Total time of stages: 51 min–55 min
  • Frequency range: 0 Hz – 300 GHz
  • NDN electric field (50 Hz): 10 kV/m (hazard zone > 1 kV/m)
  • NDN magnetic field (50 Hz): 400 A/m (hazard zone > 8 A/m)

Overview

Electromagnetic field (EMF) measurement is a work environment test required by the Labor Code and the Regulation of the Minister of Family and Social Policy on maximum permissible concentrations and intensities of harmful factors. Standard PN-T-06580-3 defines methods of measuring and assessing EMF at workplaces in the frequency range from 0 Hz (static field) to 300 GHz.

Measurements include determination of the electric (E [V/m]) and magnetic (H [A/m]) component intensity of the electromagnetic field and their comparison with limit values for individual protection zones: safe zone, intermediate zone, hazard zone and danger zone. Zones are marked according to PN-T-06260 and labeled with appropriate warning signs.

EMF measurements are performed by accredited testing laboratories equipped with isotropic broadband probes or selective spectrum analyzers. It is required to use meters meeting the requirements of EN standards for EMF measurement instruments. Typical EMF sources in the work environment include: mobile phone base stations, radio and television transmitters, welders, induction furnaces, electrotherapy devices, high-voltage power lines.

The employer is obliged to perform EMF measurements at workplaces every 2 years (hazard zone) or annually (danger zone). Results form the basis for occupational risk assessment and selection of protective measures.

Method principle

Measurement consists of recording the electric field intensity E [V/m] and magnetic field H [A/m] using isotropic measurement probes (3-axis). Broadband probes measure the total field intensity in the entire frequency range, while selective spectrum analyzers allow identification of individual EMF sources and their frequencies. Measurements are performed at points corresponding to the position of the worker's body (head, torso, limbs). Results are compared with tables of limit values dependent on frequency.

Applications

Key parameters

ParameterValue
Frequency range0 Hz – 300 GHz
NDN electric field (50 Hz)10 kV/m (hazard zone > 1 kV/m)
NDN magnetic field (50 Hz)400 A/m (hazard zone > 8 A/m)
Radio frequencies (0.1–300 GHz)Values dependent on frequency according to NDN table
Measurement sensitivity0.1 V/m (E), 0.01 A/m (H) — typically
Measurement uncertainty±2–3 dB (broadband probe)

Standard

Standard number
PN-T-06580-3:2002
Title (PL)
Ochrona pracy w polach i promieniowaniu elektromagnetycznym o częstotliwości od 0 Hz do 300 GHz — Część 3: Metody pomiaru i oceny pola na stanowisku pracy
Title (EN)
Protection of work in electromagnetic fields and radiation from 0 Hz to 300 GHz — Part 3: Methods of measurement and assessment of fields in the workplace

Step-by-step procedure

  1. Identification of EMF sources

    Identify electromagnetic field sources at the workplace. Determine frequencies, powers, device operating modes.

    ⏱ Time: 15 min

  2. Equipment selection

    Select probe appropriate for the source frequency range (low-frequency / radio / microwave). Check calibration validity.

  3. Meter calibration

    Perform probe zeroing in an area free from EMF. Check battery status and proper operation.

    ⏱ Time: 5 min

  4. Measurement point determination

    Establish measurement points corresponding to worker body positions: at head, torso and limb height. Min. 3 points per workplace.

    ⏱ Time: 10 min

  5. Field intensity measurement

    Place probe on non-conductive tripod at measurement point. Perform measurement for min. 6 minutes (averaging). Operator should stand min. 2 m from probe.

    ⏱ Time: 6–10 min / point

  6. Supplementary measurements

    Perform measurements at additional points around the source to determine protection zone boundaries.

  7. Comparison with NDN

    Compare measured E and H values with limit value tables for given frequency (according to Ministry Regulation). Determine zone.

  8. Zone marking

    Determine protection zone boundaries (safe, intermediate, hazard, danger). Recommend marking.

    ⏱ Time: 15 min

  9. Documentation

    Prepare measurement report containing: source identification, results, protection zones, location diagrams, recommendations.

Required equipment and apparatus

EquipmentExampleIndicative price
Broadband EMF meterNarda NBM-550, Narda SRM-3006, Wavecontrol SMP225 000–80 000 PLN
Isotropic E-field probeNarda EF 0691 (100 kHz–6 GHz), EHP-200A (9 kHz–30 MHz)10 000–30 000 PLN
Isotropic H-field probeNarda EHP-200A (combined E+H probe), HP 0191 (1 Hz–400 kHz)10 000–25 000 PLN
Spectrum analyzerRohde & Schwarz FSH, Keysight N9918B FieldFox40 000–120 000 PLN
Non-conductive tripodWooden or plastic tripod (without metal)500–2 000 PLN

Reagents, media and consumables

ReagentCASDetails
EMF calibration sourceEMF probe calibrator with current calibration certificate (required every 12–24 months)
Measuring tapeFor determining distances from EMF source and protection zone boundaries
Warning signsEMF protection zone signs according to PN-T-06260:1974

Health and safety (OHS)

Frequently asked questions

Which standard describes this test?

The test is performed according to PN-T-06580-3:2002 — “Protection of work in electromagnetic fields and radiation from 0 Hz to 300 GHz — Part 3: Methods of measurement and assessment of fields in the workplace”.

How does this method work?

Measurement consists of recording the electric field intensity E [V/m] and magnetic field H [A/m] using isotropic measurement probes (3-axis). Broadband probes measure the total field intensity in the entire frequency range, while selective spectrum analyzers allow identification of individual EMF sources and their frequencies.

What is the measuring range and accuracy?

Frequency range: 0 Hz – 300 GHz; NDN electric field (50 Hz): 10 kV/m (hazard zone > 1 kV/m); NDN magnetic field (50 Hz): 400 A/m (hazard zone > 8 A/m); Radio frequencies (0.1–300 GHz): Values dependent on frequency according to NDN table.

How long does the test take?

The times given for the individual stages add up to approximately 51 min–55 min. The procedure comprises 9 steps.

What equipment is required?

Broadband EMF meter, Isotropic E-field probe, Isotropic H-field probe, Spectrum analyzer, Non-conductive tripod. Indicative cost of the core instrument (Broadband EMF meter): 25 000–80 000 PLN.

Where is this test used?

EMF measurements at workplaces with devices emitting EMF (welders, induction furnaces); Determination of protection zones around mobile phone base stations; Control of medical personnel exposure (diathermy, MRI, electrotherapy); EMF measurements around high-voltage power transmission lines; Tests for environmental protection purposes (EMF emission measurements); Conformity assessment of telecommunications installations with legal requirements; Exposure tests at radio and television transmitters.

What safety precautions apply?

Do not approach EMF sources above NDN without protective measures; People with pacemakers — absolute prohibition of staying in hazard and danger zones; Measurement tripod must be non-conductive (wood, plastic) — metal disturbs measurement; Meter operators: protective glasses for strong microwave fields; Maintain min. 2 m distance from probe during measurement (human body disturbs field).

Which laboratory can perform this test?

The test is performed by laboratories accredited to ISO/IEC 17025. On LabCoda you can find them by the standard number PN-T-06580.

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