Exhibitor Products

Kee Gate® Self-Closing Safety Gate

KEE SAFETY Stand: G114
  • Kee Gate® Self-Closing Safety Gate
  • Kee Gate® Self-Closing Safety Gate
  • Kee Gate® Self-Closing Safety Gate
Kee Gate® Self-Closing Safety Gate Kee Gate® Self-Closing Safety Gate Kee Gate® Self-Closing Safety Gate

Kee Gate® is a robust, modular self‑closing gate system designed to provide continuous protection at hazardous access points such as rooftop hatch openings, ladder entrances, and elevated walkways within data centre environments. Engineered for simplicity and effectiveness, the gate features a spring-loaded hinge mechanism that automatically closes behind the user, minimizing human error and ensuring a secure barrier at all times.

This system is available in three main formats: single width (adjustable up to approximately 1 m), double width (suitable for openings up to 1.8 m), and full-height versions with integrated toeboards for ladder tops—ensuring compliance with EN 4211 for fixed ladder protection Kee SafetyKee Safety. Installation is quick and flexible, with reversible hinges and cut-to-size adjustability that accommodate a wide range of structural layouts and surfaces, including round, square, or flat supports.

Durability is built into every component: gates are hot-dip galvanized to BS EN ISO 1461 standards or powder-coated in safety yellow, achieving over 672 hours of salt spray resistance and withstanding over 50,000 open/close cycles Kee Safety+6Kee Safety+6Kee Safety+6. Fully CE-marked and compliant with OSHA and international fall protection norms, Kee Gate® ensures long-term reliability and peace-of-mind through rigorous testing and proven performance.

Ideal for data centre rooftops where routine inspection and maintenance access are essential, Kee Gate® integrates seamlessly with systems like Kee Guard® guardrails and Kee Walk® walkways. Together, they enable comprehensive, collective safety without reliance on personal protective equipment or specialized user training, maintaining continuous operations without compromise.

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