Electromagnetic shielding

G-iron® shielding systems are designed to protect people and electronic equipment from the effects of magnetic induction and exposure to electromagnetic fields (EMF).

Why use electromagnetic shielding

G-iron shielding systems are designed to protect people and electronic equipment from the effects of magnetic induction and exposure to electromagnetic fields (EMF).

Thanks to the unique properties of G-iron – flexibility, lightness and high shielding efficiency – the solutions can be installed in any architectural context, both in existing buildings and new developments, without compromising functionality, aesthetics or structural performance.

Risks associated with exposure to electromagnetic fields

 

Exposure of biological organisms, even for short periods, to high-intensity electromagnetic fields can generate adverse health effects.

Several scientific studies show that prolonged exposure to electromagnetic fields, even at levels below the limits set by current regulations, may represent a risk factor for certain diseases.

In addition to health effects, electromagnetic fields, even of low intensity, can interfere with the proper functioning of electronic equipment, causing malfunctions, damage, operational risks or disruption, as indicated by relevant technical standards (e.g. CEI EN 61000-4-8, CEI 61602).

Application areas of G-iron electromagnetic shielding

 

G-iron is capable of designing and implementing targeted electromagnetic shielding solutions across numerous high-tech and critical sectors, including:

  • Civil/industrial shielding
  • Shielding for nurseries, schools and universities
  • Shielding for data centres
  • Shielding for microscopes
  • Shielding for electric vehicles
  • Shielding for MRI systems

Each intervention is preceded by preliminary analyses, instrumental measurements and technical assessments, in order to ensure maximum shielding effectiveness, regulatory compliance and certifiable results.

#Shielding APPLICATION AREAS

Civil/industrial shielding

Towers, skyscrapers, factories, hotels, MV/LV substations where electromagnetic induction is related to the installed electrical power.
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Shielding for nurseries, schools and universities

These are areas where a high level of protection is essential for future generations.
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Shielding for data centres:

Electromagnetic fields and photons are the enemies of storage systems; their mitigation increases security.
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Shielding for microscopes

In high-tech environments, where results cannot tolerate errors, and in contexts where technology meets everyday operations, where SEM, TEM and STEM microscopy systems require very low levels of static and dynamic induction.
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Shielding for electric vehicles

The necessary power cabling of the battery–inverter–electric motor system inevitably generates electromagnetic induction that must be assessed to protect passengers and drivers.
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Shielding for MRI systems:

In hospitals, where equipment has very low tolerance to magnetic interference and responses and diagnoses must be precise; during recovery, a “low magnetic radiation” environment is essential to speed up the healing process.
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