The NEXLEDS Double Remote LED Head utilizes advanced LED technology to deliver bright, focused emergency illumination while consuming significantly less energy than traditional halogen or incandescent remote heads. Each lamp head features a high-performance LED module engineered for long operational life, dramatically reducing the need for bulb replacements — a critical advantage in hard-to-reach exterior mounting locations. The efficient design ensures maximum light output is sustained throughout the full emergency discharge period.
Durability is at the core of this fixture's design. Carrying a robust IP66 weatherproof rating, the unit is fully protected against powerful water jets and complete dust ingress, making it suitable for exposed outdoor installations, coastal environments, and industrial-adjacent residential properties. The sealed housing incorporates effective thermal management to maintain optimal LED junction temperatures, which preserves light output consistency and extends the overall lifespan of the components even in extreme Canadian climates.
This remote head is cUL listed and certified to Canadian electrical standards, ensuring full compliance with national and provincial building and fire codes. It operates on a low-voltage circuit compatible with standard emergency lighting battery units, and the dual-head adjustable design allows installers to direct light precisely where coverage is needed most. The efficient LED driver ensures stable, flicker-free performance and reliable startup during emergency activation.
Compared to conventional emergency remote heads, this LED unit offers substantial energy savings and significantly reduced maintenance costs over its operational lifetime. The lower power draw per head means compatible battery units can support longer emergency duration or additional remote heads on the same circuit. For homeowners undertaking renovations or new construction, choosing LED emergency lighting rated for wet and exposed locations is a forward-thinking investment that meets modern safety requirements while minimizing long-term upkeep.