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Concrete cooling tower at a power station

Access for high-energy generation sites.

Heavy-duty modular access with reduced conductivity engineered in by design.

High-Energy Access

Electrical switchgear inside a generation facility

Generation environments concentrate energy, and conventional conductive steel access adds a risk category of its own. The Taurus Transom™ is built differently: reduced conductivity is engineered into the system as a design characteristic through polymer joint isolation protected by an international patent family, not added as an accessory. A formal validation program is underway.

High-Energy Site Safety

Engineered for high-consequence environments where electrical safety is paramount.

Reduced conductivity is engineered into the Taurus Transom™ as a design characteristic, relevant on generation sites where conventional steel access is a risk multiplier.

Outage windows are fixed; access should not be the constraint. At roughly half the weight of comparable steel systems (component weigh-in basis, 30 June 2026), the Taurus Transom™ erects and strips with less manual handling and lower crane demand across boiler houses and turbine halls.

Rendered steel beam component on a grey background

Technical Proof

Engineering authority and technical specifications for high-consequence environments.

Reduced conductivity icon
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Reduced conductivity

Reduced conductivity for live sites and high-energy environments.

Structural Weight

Roughly half the weight of comparable steel systems (component weigh-in basis, 30 June 2026); comparable in weight to premium aluminium.

Load Capacity

Rated heavy duty at 6.6 kN (675 kg) per bay, per working platform level under AS/NZS 1576.1.

Request a consultation

Engineered for high-consequence sites. Tell us about your site. We will tell you whether the Taurus Transom™ is the right system for it.

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