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Low Smoke Zero Halogen Power Cable Single Core Cross Linked Flame Retardant
APPLICATION
Updated harmonised (H1Z2Z2-K) European standard solar cable intended for the interconnection within photovoltaic systems such as solar panel arrays. Suitable for fixed installations, internal and external, within conduit or systems, but not direct burial applications. Our solar cable is ozone-resistant according to BS EN 50396, UV resistant according to HD 605/ A1, and is tested for durability according to EN 60216. For installations where fire, smoke emissions and toxic fumes create a potential risk to life and equipment.
CONSTRUCTION
Conductor
Class 5 flexible tinned copper conductor
Insulation
Halogen-free cross-linked compound
Sheath
Halogen-free cross-linked, flame retardant compound
CABLE STANDARDS
EN 50618:2014, TÜV 2 PfG 1169/08.2007, IEC 60228/VDE 0295, HD 605/A1, BS EN 60811-401, BS EN 60811-404, BS EN 60811-501, BS EN 60811-503-508, BS EN 53505, ASTM D624, BS EN 50289-3-7, HD516, BS EN 50396, BS EN 60068-2-78, IEC/BS EN 60332-1-2, IEC/BS EN 60754-1, IEC/BS EN 61034-1, IEC/BS EN 60754-2, IEC/BS EN 60754-1, IEC/BS EN 60754-2, BS EN 50395 Clause 9
The electrical and dimensional properties of this product are measured by the Technical and Quality Assurance department at the Sunwin Cables laboratory. Cable performance in respect of conductor resistance, construction quality (workmanship), dimensional consistency, and other parameters are verified to published standards and approved product drawings. Conformance to RoHS (Restriction of the use of Hazardous Substances) is determined and confirmed.
CHARACTERISTICS
Voltage Rating (Uo/U) AC: 600/1000V
DC: 900/1800V
Temperature Rating
Fixed: -40°C to +90°C
Minimum Bending Radius Fixed: 4 x overall diameter Flexed: 5 x overall diameter
Maximum Voltage (Umax)
1.8kV DC (conductor/conductor, non earthed system, circuit not under load)
Maximum Conductor Temperature
+120°C (for 20000h)
Test Voltage
6.5kV AC according to BS EN 50395
Sheath Colour
Black
Note
Other colours available on request
SUNWIN PART NO. | NO. OF CORES |
NOMINAL CROSS SECTIONAL AREA mm² |
NOMINAL OVERALL DIAMETER mm |
NOMINAL WEIGHT kg/km |
TENSILE STRENGTH IN OPERATION N |
E6S10025BK000 | 1 | 2.5 | 4.9 | 40 | 37 |
E6S10040BK000 | 1 | 4 | 5.4 | 56 | 60 |
E6S10060BK000 | 1 | 6 | 5.9 | 73 | 90 |
E6S10100BK000 | 1 | 10 | 6.9 | 115 | 150 |
E6S10160BK000 | 1 | 16 | 8.0 | 170 | 240 |
E6S10250BK000 | 1 | 25 | 10.3 | 270 | 375 |
E6S10350BK000 | 1 | 35 | 11.8 | 365 | 525 |
E6S10500BK000 | 1 | 50 | 13.5 | 508 | 750 |
E6S10700BK000 | 1 | 70 | 16.0 | 729 | 1050 |
E6S10950BK000 | 1 | 95 | 17.8 | 923 | 1350 |
E6S11200BK000 | 1 | 120 | 19.8 | 1178 | 1800 |
E6S11500BK000 | 1 | 150 | 21.1 | 1460 | 2250 |
E6S11850BK000 | 1 | 185 | 24.4 | 1777 | 2775 |
E6S12400BK000 | 1 | 240 | 27.1 | 2252 | 3600 |
CONDUCTORS
Class 5 Flexible Copper Conductors for Single Core and Multi-Core Cables
NOMINAL CROSS SECTIONAL AREA mm² |
MAXIMUM RESISTANCE OF CONDUCTOR AT 20ºC |
Metal-Coated Wires ohms/km |
|
2.5 | 8.21 |
4 | 5.09 |
6 | 3.39 |
10 | 1.95 |
16 | 1.24 |
25 | 0.795 |
35 | 0.565 |
50 | 0.393 |
70 | 0.277 |
95 | 0.21 |
120 | 0.164 |
150 | 0.132 |
185 | 0.108 |
240 | 0.0817 |
The above table is in accordance with BS EN 60228 (previously BS 6360)
ELECTRICAL CHARACTERISTICS
NO. OF CORES |
NOMINAL CROSS SECTIONAL AREA mm² |
CURRENT CARRYING CAPACITY |
In Air Amps |
||
1 | 2.5 | 41 |
1 | 4 | 55 |
1 | 6 | 70 |
1 | 10 | 98 |
1 | 16 | 132 |
1 | 25 | 176 |
1 | 35 | 218 |
1 | 50 | 276 |
1 | 70 | 347 |
1 | 95 | 416 |
1 | 120 | 488 |
1 | 150 | 566 |
1 | 185 | 644 |
1 | 240 | 775 |
Based on a 60°C ambient temperature
DE-RATING FACTORS
AIR TEMPERATURE | UP TO 60°C | 70°C | 80°C | 90°C | 100°C | 110°C |
DE-RATING FACTOR | 1.00 | 0.91 | 0.82 | 0.71 | 0.58 | 0.41 |
The information contained within this datasheet is for guidance only and is subject to change without notice or liability. All the information is provided in good faith and is believed to be correct at the time of publication. When selecting cable accessories, please note that actual cable dimensions may vary due to manufacturing tolerances.