The RP Series emergency lighting unit provides a proven, reliable source of egress lighting housed in a classically designed package. Available in a wide variety of battery wattages, the RP incorporates high-performance electronics in an attractive, impact-resistant thermoplastic housing.
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The RP Series emergency lighting unit provides a proven, reliable source of egress lighting housed in a classically designed package. Available in a wide variety of battery wattages, the RP incorporates high-performance electronics in an attractive, impact-resistant thermoplastic housing.
Tucson Mini Series Single Phase, Indoor Standby Emergency Lighting Inverter 75 to 375 Watt
The Tucson Mini Inverter specification describes a single phase, standby, solid state inverter system utilizing the patented ECM technology. Each system will consist of a solid-state inverter, a temperature compensated rectifier/battery charger, a continuous duty static switch, an internal maintenance bypass switch, battery plant, status/control panel, and synchronizing circuitry. The Tucson Mini Inverter is designed to function in conjunction with the existing building electrical system to provide high quality power conditioning, back-up power protection and distribution for lighting loads and other critical loads.
The LED90 Series combines a low-profile, contemporary appearance with LED economy and dependability. Fully adjustable heads complement any application.
ELV-H Series Elevator Emergency Inverter, Harsh Environment, Three Phase, Online
The ELV-H Series maintains efficient AC Emergency Power to operate all elevators, providing superior dependability and security to commercial/industrial environments in a small footprint. Suitable for harsh environments, the inverter features a NEMA or NEMA 4X rating. The ELV-H is made to handle elevators starting and stopping when batteries are the only source of power. The ELV-H is designed to absorb elevator regeneration energy when operating on battery power during a utility outage without adding other equipment. Under normal operation, when the utility power is available, the regeneration energy is absorbed in the normal building loads.