Our Requirements
Fire Sprinkler Control System
Heat-activated sprinklers: Each nozzle reacts to its immediate temperature (usually 57–74°C) on an individual basis. Upon reaching its activation temperature, a glass bulb containing heat-sensitive fluid shatters, thereby releasing a valve plug and permitting the passage of water. The quickest response is achieved by consistently pressurising wet pipes with water.
Detection & Alarm Integration
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Smoke detectors: These local unit alarms operate independently (e.g., kitchen cooking), triggering audio alerts within the unit.
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Fire panel-connected smoke detectors: These feed into the main fire alarm control panel and activate:
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Audible evacuation speakers/horns, which amplify warnings and guide occupants out through the emergency exits.
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Fire service dispatch/gate access, alerting fire control personnel promptly.
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Water flow switch: Detects sprinkler operation and triggers alarms via the fire panel
Passive Fire Protection & FRL
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FRL rating: Three-part Fire Resistance Level: structural adequacy (load-bearing support), integrity (resisting flame/gas passage), and insulation (limiting heat transfer). Expressed in minutes, e.g., 120/120/120
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Material selection: Components (walls, doors, and floors) are chosen based on their FRL and location to ensure compartmentation and prevent fire spread over required timeframes.
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Combustible vs. non-combustible classifications also factor into FRL requirements and material compliance.
The Standard
Designing such a system also involves ensuring hydraulic integrity and compliance with inspection regimes. System design—such as selecting single or double interlock and setting air pressure (atmospheric for areas ≤200 m², pressurized for larger)—is tailored according to building occupancy, fire load, and asset value, as mandated by AS 2118.1 . Water supply requirements have also been simplified: a single primary source is often sufficient but must meet both sprinkler and hydrant demands simultaneously



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