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HOT PRODUCTS
APPLICATIONS
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Fire Resistant Power & Control Cable
300/500V Mica+XLPE Insulated, LSZH Sheathed Power Cables (2-4cores)
FFX200 05mRZ1-R ( CU/MGT+XLPE/LSZH 300/500V Class 2)
Fire Resistant Cables APPLICATION
The 300/500V Mica+XLPE Insulated, LSZH Sheathed Fire Resistant Power Cables are designed for areas where the integrity of the electrical circuit is critical in maintaining power supply. Applications can be found in emergency lightings, control and power circuits, power stations, fire alarm systems, underground tunnels, lifts, escalators, and high-rise buildings.Fire Resistant Cables STANDARDS
Basic design to IEC 60502-1Fire Resistant Cables FIRE PERFORMANCE
| Circuit Integrity | IEC 60331-21; BS 6387 CWZ; DIN VDE 0472-814(FE180); CEI 20-36/2-1; SS229-1; NBN C 30-004 (cat. F3); NF C32-070-2.3(CR1) |
|---|---|
| System circuit integrity | DIN 4102-12, E30 depending on lay system |
| Flame Retardance (Single Vertical Wire Test) | EN 60332-1-2; IEC 60332-1-2; BS EN 60332-1-2; VDE 0482-332-1 ; NBN C 30-004 (cat. F1); NF C32-070-2.1(C2); CEI 20-35/1-2; EN 50265-2-1*; DIN VDE 0482-265-2-1* |
| Reduced Fire Propagation (Vertically-mounted bundled wires & cable test) | EN 60332-3-24 (cat. C); IEC 60332-3-24; BS EN 60332-3-24; VDE 0482-332-3; NBN C 30-004 (cat. F2); NF C32-070-2.2(C1); CEI 20-22/3-4; EN 50266-2-4*; DIN VDE 0482-266-2-4 |
| Halogen Free | IEC 60754-1; EN 50267-2-1; DIN VDE 0482-267-2-1; CEI 20-37/2-1 ; BS 6425-1* |
| No Corrosive Gas Emission | IEC 60754-2; EN 50267-2-2; DIN VDE 0482-267-2-2; CEI 20-37/2-2 ; BS 6425-2* |
| Minimum Smoke Emission | IEC 61034-1&2; EN 61034 -1&2; DIN VDE 0482-1034-1&2; CEI 20-37/3-1&2; EN 50268-1&2*; BS 7622-1&2* |
| No Toxic gases | NES 02-713; NF C 20-454 |
Note: Asterisk * denotes superseded standard.
Fire Resistant Cables VOLTAGE RATING
300/500 VFire Resistant Cables CABLE CONSTRUCTION
Conductor: Plain annealed copper wire, stranded according to IEC(EN) 60228 class 2.Insulation: Mica glass tape covered by extruded cross-linked XLPE compound
Earth Conductor(optional): Uninsulated solid or stranded tinned copper conductor.
Cabling: The cores are cabled together in concentric layers with suitable non-hygroscopic fillers.
Outer Sheath: Thermoplastic LSZH compound type LTS3 as per BS 7655-6.1 (Thermosetting LSZH
compound type SW2-SW4 as per BS 7655-2.6 can be offered.)
COLOUR CODE
Insulation Colour2 - Core: (Brown & Blue)
3 - Core: (Brown, Black & Grey)
4 - Core: (Brown, Black, Grey & Blue)
Sheath Colour
Orange (other colors upon request)
Fire Resistant Cables Physical AND THERMAL PROPERTIES
Temperature range during operation (fixed state): -30°C – +90°CTemperature range during installation (mobile state): -20°C – +50°C
Minimum bending radius: 8 x Overall Diameter
Fire Resistant Cables Electrical PROPERTIES
| Dielectric test: | 2000 V r.m.s. x 5' (core/core) |
|---|---|
| Insulation resistance | 1000 MΩ x km (at 20°C) |
| Short circuit temperature | 250°C |
Fire Resistant Cables CONSTRUCTION PARAMETERS
| Conductor | FFX200 05mRZ1-R | ||||||
|---|---|---|---|---|---|---|---|
| No. of Core X Cross Section | No./ Nominal Diameter of Strands | Nominal Insulation Thickness | Nominal Sheath Thickness | Without Earth Conductor | With Earth Conductor | ||
| Nominal Overall Diameter | Approx. Weight | Nominal Overall Diameter | Approx. Weight | ||||
| No*mm2 | No./mm | mm | mm | mm | kg/km | mm | kg/km |
| 2 Core | |||||||
| 2x1.5 | 7/0.53 | 0.5 | 0.5 | 7.7 | 70 | 8.2 | 80 |
| 2x2.5 | 7/0.67 | 0.5 | 0.5 | 8.8 | 100 | 9.6 | 120 |
| 2x4 | 7/0.85 | 0.5 | 0.5 | 9.8 | 140 | 10.5 | 170 |
| 3 Core | |||||||
| 3x1.5 | 7/0.53 | 0.5 | 0.5 | 8.7 | 90 | 10.5 | 100 |
| 3x2.5 | 7/0.67 | 0.5 | 0.5 | 9.5 | 125 | 10.7 | 150 |
| 3x4 | 7/0.85 | 0.5 | 0.5 | 11.5 | 180 | 12.5 | 220 |
| 4 Core | |||||||
| 4x1.5 | 7/0.53 | 0.5 | 0.5 | 10.3 | 105 | 12.2 | 120 |
| 4x2.5 | 7/0.67 | 0.5 | 0.5 | 11 | 155 | 13 | 190 |
| 4x4 | 7/0.85 | 0.5 | 0.5 | 12.5 | 255 | 13.5 | 270 |
Fire Resistant Cables Electrical PROPERTIES
Conductor Operating Temperature : 90°CAmbient Temperature : 30°C
FFX300 1mRZ1-R Fire Resistant Cables
Current-Carrying Capacities (Amp)
| Conductor crosssection area | Reference Method 4 (enclosed in an conduit insulated wall etc) | Reference Method 3 (enclosed in conduit on a wall or ceiling, or in trunking) | Reference Method 1 (clipped direct) | Reference Method 11 (on a perforated cable tray), or Reference Method | |||
|---|---|---|---|---|---|---|---|
| one 3-core cable or one 4-core cable 3-phase a.c. | one 2-core cable singlephase a.c. or d.c. | one 3-core cable or one 4-core cable 3-phase a.c. | one 2-core cable singlephase a.c. or d.c. | one 3-core cable or one 4-core cable 3-phase a.c. | one 2-core cable singlephase a.c. or d.c. | one 3-core cable or one 4-core cable 3-phase a.c. | |
| 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 |
| mm2 | A | A | A | A | A | A | A |
| 1.5 | 16.5 | 22 | 19.5 | 24 | 22 | 26 | 23 |
| 2.5 | 22 | 30 | 26 | 33 | 30 | 36 | 32 |
| 4 | 30 | 40 | 35 | 45 | 40 | 49 | 42 |
Voltage Drop (Per Amp Per Meter)
| Nominal Cross Section Area | 2-core cable d.c. | 2-core cable single- phase a.c | 3-core or 4-core cable 3-phase a.c. |
|---|---|---|---|
| 1 | 2 | 3 | 4 |
| mm2 | mV/A/m | mV/A/m | mV/A/m |
| 1.5 | 31 | 31 | 27 |
| 2.5 | 19 | 19 | 16 |
| 4 | 12 | 12 | 10 |





