GST-IFP8 Control Panel

GSTIFP8

The GST-IFP8 is an intelligent fire alarm control panel. Flush-mounted type housing it provides the perfect solution for all medium to large system by utilizing advance GST Protocol. The system is compatible with the complete range of GST Intelligent detectors, Sounders, Call Points, and Interfaces, including intrinsically safe and gaseous extinguishing control. IFP8 is manufactured and certified to EN54 parts 2 and 4 and to BS5839 Par 4.

☆ Standard : EN54 Part 2/4 ; BS5839 Part 4
☆ Approvals : LPCB
☆ Main Input Voltage : 220 ± 10% VAC 50/60 Hz
☆ Input Current Rating : 1Amphere
☆ System Operating Voltage : 24 VDC Nominal (20-27 VDC)
☆ Loop Capacity : Loop 10:242- Address per loop
☆ Loop Length : 1.00mm²-800M-Full Load, 1.5mm²-1.2Km-Full Load, 2.0mm²-1.5Km-Half Load
☆ Loop Topology : Class A and Class B
☆ Zone Capacity : 999 Zones programmable
☆ Sounder Circuits (3) : Fire Routing: 200mA /24Vdc/4.7KΩ EOLR
☆ F.P.E. Output: 500mA /24Vdc/4.7KΩ EOLR
☆ Sounder Circuit Output: 1A /24Vdc/4.7KΩ EOLR
☆ Dry Contact: Optional C-9302 module
☆ Fuses : Mains 2A (20mm A/S ceramic)
☆ Battery: 2A (20mm A/S HRC ceramic), Common Fault Relay Output Volt-free changeover 1.0A at 24 VDC
☆ 24 VDC Fused Output : Maximum load 500mA at 17-28VDC
☆ Standby Batteries : Twin 12 Vdc Bat;38AH
☆ Battery Charging Current : Limit 2A/24Vdc
☆ Dimension: (HLW) Outer: 850 x 484 x 185 mm, Inner: 804 x 440 x 150 mm

☆ Listed to LPCB
☆ 8 x Loops (242) capacity (1936) addressable points
☆ Maximum 10 Loops Standalone
☆ Modular constructed for future expansion
☆ 40 x15 lines Colour Graphical LCD Display.
☆ Up to 999 programmable zones and 140 zone indication
☆ Auto Programming Day and Night Mode
☆ Enable and Disable function
☆ PAS and Acknowledge Function
☆ Dirty Detector Reporting
☆ Duplicate Address Checking
☆ Device Mismatch
☆ Walk Test Function with optional silent mode
☆ Can edit device detailed and programmed
☆ Programmable form PC or Panel
☆ History record-999 fire incident only and 999 event capacity in non-volatile memory Fully simulation of Cause and Effect