Abu Dhabi, United Arab Emirates
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Abu Dhabi, United Arab Emirates
We Have An Experience With About 30 Years Of Working With Global Industries. BICC CABLES is a prominent supplier of high-quality electrical cables, holding a substantial market presence in Egypt. Over the years, the company has consistently delivered durable and reliable solutions to meet the evolving needs of various sectors. Originally under the ownership of BICC in the UK, the company was named “British Insulated Callender’s Cables” and has been actively contributing to the global cable sector since 1890
CONSTRUCTION
1. CONDUCTOR
Copper, semi-rigid class 2
2. INSULATION
Polyvinyl Chloride [PVC]
Alternative: Cross-Linked polyethylene [XLPE]
3. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 KV
APPLICATION
For outdoor and indoor installations in dump and wet locations. They are normally used
for power distribution in urban networks and industrial plants, as well as in
thermopower and hydropower stations.
Maximum operating temperature: Maximum operating temperature: 70°C
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Aluminum, semi-rigid class 2
2. INSULATION
Polyvinyl Chloride [PVC]
Alternative: Cross-Linked polyethylene [XLPE]
3. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 KV
APPLICATION
For indoor and outdoor installations in damp and wet locations.
They are normally used for power distribution in urban networks, industrial
plants as well as in thermopower and hydropower stations.
Maximum operating temperature: 90°C
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Copper, semi-rigid class 2
2. INSULATION
Polyvinyl Chloride [PVC]
3. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 KV
APPLICATION
For outdoor and indoor installations in dump and wet locations.
Maximum operating temperature: 70°C
STANDARDS
IEC 60502-1
IEC 60228
1. CONDUCTOR
Copper, semi-rigid class 2
2. INSULATION
Polyvinyl Chloride [PVC]
3. ARMOUR
Double Steel Tape
4. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 KV
APPLICATION
For indoor and outdoor installations in damp and wet locations, where mechanical
damage is expected to occur.
Maximum operating temperature: 70°C
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Aluminum, semi-rigid class 2
2. INSULATION
Polyvinyl Chloride [PVC]
3. ARMOUR
Double Steel Tape
4. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 KV
APPLICATION
For indoor and outdoor installations in damp and wet locations, where mechanical
damage is expected to occur.
Maximum operating temperature: 70°C
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Copper, semi-rigid class 2
2. INSULATION
Polyvinyl Chloride [PVC]
3. ARMOUR
Galvanized Round Steel Wire
4. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 KV
APPLICATION
For indoor and outdoor installations in damp and wet locations, where mechanical
damage is expected to occur.
Maximum operating temperature: 70°C
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Aluminum, semi-rigid class 2
2. INSULATION
Polyvinyl Chloride [PVC]
3. ARMOUR
Galvanized Round Steel Wire
4. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 KV
APPLICATION
For indoor and outdoor installations in damp and wet locations, where mechanical
damage is expected to occur.
Maximum operating temperature: 70°C
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Copper, semi-rigid class 2
2. INSULATION
Cross-Linked polyethylene [XLPE]
3. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 KV
APPLICATION
Semi-rigid for use in low voltage power distribution in fixed indoor and
outdoor installations.
Maximum operating temperature: 90°C
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Aluminum, semi-rigid class 2
2. INSULATION
Cross-Linked polyethylene [XLPE]
3. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 KV
APPLICATION
For indoor and outdoor installations in damp and wet locations.
Maximum operating temperature: 90°C
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Copper, semi-rigid class 2
2. INSULATION
Cross-linked polyethylene [XLPE]
3. ARMOUR
Double Steel Tape
4. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 Kv
APPLICATION
For indoor and outdoor installations in damp and wet locations.
Where mechanical damage is expected to occur.
Maximum operating temperature: 90°C
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Aluminum, semi-rigid class 2
2. INSULATION
Cross-linked polyethylene [XLPE]
3. ARMOUR
Double Steel Tape
4. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 Kv
APPLICATION
For indoor and outdoor installations in damp and wet locations.
Where mechanical damage is expected to occur.
Maximum operating temperature: 90°C
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Copper, semi-rigid class 2
2. INSULATION
Cross-linked polyethylene [XLPE]
3. ARMOUR
Galvanized Round Steel Wire
4. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 Kv
APPLICATION
For indoor and outdoor installations in damp and wet locations.
Where mechanical damage is expected to occur.
Maximum operating temperature: 90°C
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Aluminum, semi-rigid class 2
2. INSULATION
Cross-linked ployethylene [XLPE]
3. ARMOUR
Galvanized Round Steel Wire
4. SHEATH
Polyvinyl Chloride [PVC]
Rated Voltage: 0.6/1 Kv
APPLICATION
For indoor and outdoor installations in damp and wet locations.
Where mechanical damage is expected to occur.
Maximum operating temperature: 90°C
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1- Conductor
Flexible plain annealed copper Class 5 as per BS EN 60228
2- Sizes
– Circular cables – 0.5 mm² and 0.75 mm² – 2, 3, and 4 cores
– Flat cables – 0.5 mm² and 0.75 mm² – 2 cores Only.
3- Insulation
Polyvinyl Chloride (PVC) Type TI2 to EN 50363-3
4- Sheath
Polyvinyl Chloride (PVC) Type TM2 to EN 50363-4-1
* Outer sheath varies as per standard and according to application
APPLICATION
Light-duty cables designed for use in domestic premises, kitchens and offices.
Suitable for light portable appliances such as radios, table lamps and office equipment.
CONSTRUCTION
1- Conductor
Flexible plain annealed copper Class 5 as per BS EN 60228
2- Sizes
– Circular cables – 0.75 mm² to 4 mm² – 2, 3, 4 and 5 cores
– Flat cables – 0.75 mm² to 1.5 mm² – 2 cores Only
3- Insulation
Polyvinyl Chloride (PVC) Type TI2 to EN 50363-3
4- Sheath
Polyvinyl Chloride (PVC) Type TM2 to EN 50363-4-1
* Outer sheath varies as per standard and according to application
APPLICATION
Ordinary duty PVC cable designed for use in domestic appliances, kitchens, and offices.
Suitable for light portable appliances such as table lamps and office equipment.
Generally unsuitable for outdoor use or industrial applications.
CONSTRUCTION:
1. CONDUCTOR
Stranded Copper class 2
2. INSULATION
Polyvinyl Chloride (PVC)
3. ARMOUR
Galvanized Round Steel Wire (GSWA)
4. SHEATH
Polyvinyl Chloride (PVC)
APPLICATION:
Control cables used as interconnecting cables for control devices.
Armoured cables are used in environments where mechanical damage is expected to occur.
CONSTRUCTION
1. CONDUCTOR
Stranded Copper class 2
2. INSULATION
Cross Linked Polyethylene (XLPE)
3. ARMOUR
Galvanized Round Steel Wire (GSWA)
4. SHEATH
Polyvinyl Chloride (PVC)
APPLICATION
Control cables used as interconnecting cables for control devices.
Armoured cables are used in environments where mechanical damage is expected to occur.
CONSTRUCTION
1. CONDUCTOR
Stranded Copper class 2
2. INSULATION
Polyvinyl Chloride (PVC)
3. SCREEN
Copper Tape Screen (CTS)
4. SHEATH
Polyvinyl Chloride (PVC)
APPLICATION
For interconnecting of control devices and are designed to be complete with
copper tape screen applied helically after bedding.
CONSTRUCTION
1. CONDUCTOR
Stranded Copper class 2
2. INSULATION
Cross Linked Polyethylene (XLPE)
3. SCREEN
Copper Tape Screen (CTS)
4. SHEATH
Polyvinyl Chloride (PVC)
APPLICATION
For interconnecting of control devices and are designed to be complete with
copper tape screen applied helically after bedding.
CONSTRUCTION
1. CONDUCTOR
Stranded Copper class 2
2. INSULATION
Polyvinyl Chloride (PVC)
Alternative: Cross Linked Polyethylene (XLPE)
3. SHIELDING
Overall Shielding
4. SHEATH
Polyvinyl Chloride (PVC)
APPLICATION
Multi Pair/Triple & multi core instrument cables are used as signal carriers
for connecting electrical instrument circuits.
CONSTRUCTION
1. CONDUCTOR
Stranded Copper class 2
2. INSULATION
Polyvinyl Chloride (PVC)
Alternative: Cross Linked Polyethylene (XLPE)
3. SHIELDING
Individual & Overall Shielding
4. SHEATH
Polyvinyl Chloride (PVC)
APPLICATION
Multi Pair/Triple instrument cables are used as signal carriers for
connecting electrical instrument circuits.
CONSTRUCTION:
1. CONDUCTOR
Stranded Copper class 2
2. INSULATION
Polyvinyl Chloride (PVC)
Alternative: Cross Linked Polyethylene (XLPE)
3. SHIELDING
Overall Shielding
4. ARMOUR
Galvanized Round Steel Wire (GSWA)
5. SHEATH
Polyvinyl Chloride (PVC)
APPLICATION:
Multi pair/triple & multi core instrument cables are used as signal
carrier for connecting electrical instrument circuits.
CONSTRUCTION
1. CONDUCTOR
Stranded Copper class 2
2. INSULATION
Polyvinyl Chloride (PVC)
Alternative: Cross Linked Polyethylene (XLPE)
3. SHIELDING
Individual & Overall Shielding
4. ARMOUR
Galvanized Round Steel Wire (GSWA)
5. SHEATH
Polyvinyl Chloride (PVC)
APPLICATION
Multi pair/triple instrument cables are used as signal carrier for
connecting electrical instrument circuits.
CONSTRUCTION
1. CONDUCTOR
Copper, semi-rigid class 2
2. FIRE RESISTANCE MATERIAL
MICA Glass Tape
3. INSULATION
Low Smoke Zero Halogen [LSOH]
Rated Voltage: 450/750 V
APPLICATION
These cables are used in hazardous areas where safety and circuit integrity
are highly required during fire conditions.
1. CONDUCTOR
Copper, semi-rigid class 2
2. FIRE RESISTANCE MATERIAL
MICA Glass Tape
3. INSULATION
Cross Linked Polyethylene (XLPE)
4. SHEATH
Low Smoke Zero Halogen [LSOH]
Rated Voltage: 0.6/1 kV
APPLICATION
These cables are used in hazardous areas where safety and circuit integrity
are highly required during fire conditions.
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Copper, semi-rigid class 2
2. FIRE RESISTANCE MATERIAL
MICA Glass Tape
3. INSULATION
Cross Linked Polyethylene (XLPE)
4. SHEATH
Low Smoke Zero Halogen [LSOH]
Rated Voltage: 0.6/1 kV
APPLICATION
These cables are used in hazardous areas where safety and circuit integrity
are highly required during fire conditions.
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Copper, semi-rigid class 2
2. FIRE RESISTANCE MATERIAL
MICA Glass Tape
3. INSULATION
Cross Linked Polyethylene (XLPE)
4. ARMOUR
Galvanized Round Steel Wire
5. SHEATH
Low Smoke Zero Halogen [LSOH]
Rated Voltage: 0.6/1 kV
APPLICATION
These cables are used in hazardous areas where safety and circuit integrity
are highly required during fire conditions.
STANDARDS
IEC 60502-1
IEC 60228
CONSTRUCTION
1. CONDUCTOR
Stranded Copper class 2
2. FIRE RESISTANCE MATERIAL
MICA Glass Tape
3. INSULATION
Cross Linked Polyethylene (XLPE)
Alternative: Low Smoke Zero Halogen (LSOH)
4. SHEATH
Low Smoke Zero Halogen (LSOH)
APPLICATION
These cables are used for interconnecting control devices mainly in hazardous
areas where safety and circuit integrity are highly required during fire
conditions.
CONSTRUCTION
1. CONDUCTOR
Stranded Copper class 2
2. FIRE RESISTANCE MATERIAL
MICA Glass Tape
3. INSULATION
Cross Linked Polyethylene (XLPE)
Alternative: Low Smoke Zero Halogen (LSOH)
4. ARMOUR
Galvanized Round Steel Wire (GSWA)
5. SHEATH
Low Smoke Zero Halogen (LSOH)
APPLICATION
These cables are used for interconnecting control devices mainly in hazardous
areas where safety and circuit integrity are highly required during fire
conditions.
CONSTRUCTION
1. CONDUCTOR
Stranded Copper class 2
2. FIRE RESISTANCE MATERIAL
MICA Glass Tape
3. INSULATION
Cross Linked Polyethylene (XLPE)
Alternative: Low Smoke Zero Halogen (LSOH)
4. SHIELDING
Overall Shielded
5. SHEATH
Low Smoke Zero Halogen (LSOH)
APPLICATION
These cables are used as signal carrier for connecting electrical
instrument circuits mainly in hazardous areas where safety and
circuit integrity are highly required during fire conditions.
CONSTRUCTION
1. CONDUCTOR
Stranded Copper class 2
2. FIRE RESISTANCE MATERIAL
MICA Glass Tape
3. INSULATION
Cross Linked Polyethylene (XLPE)
Alternative: Low Smoke Zero Halogen (LSOH)
4. SHIELDING
Individual & Overall Shielded
5. SHEATH
Low Smoke Zero Halogen (LSOH)
APPLICATION
These cables are used as signal carrier for connecting electrical
instrument circuits mainly in hazardous areas where safety and
circuit integrity are highly required during fire conditions.
CONSTRUCTION
1. CONDUCTOR
Stranded Copper class 2
2. FIRE RESISTANCE MATERIAL
MICA Glass Tape
3. INSULATION
Cross Linked Polyethylene (XLPE)
Alternative: Low Smoke Zero Halogen (LSOH)
4. SHIELDING
Overall Shielded
5. ARMOUR
Galvanized Round Steel Wire (GSWA)
6. SHEATH
Low Smoke Zero Halogen (LSOH)
APPLICATION
These cables are used as signal carrier for connecting electrical
instrument circuits mainly in hazardous areas where safety and
circuit integrity are highly required during fire conditions.
CONSTRUCTION
1. CONDUCTOR
Stranded Copper class 2
2. FIRE RESISTANCE MATERIAL
MICA Glass Tape
3. INSULATION
Cross Linked Polyethylene (XLPE)
Alternative: Low Smoke Zero Halogen (LSOH)
4. SHIELDING
Individual & Overall Shielded
5. ARMOUR
Galvanized Round Steel Wire (GSWA)
6. SHEATH
Low Smoke Zero Halogen (LSOH)
APPLICATION
These cables are used as signal carrier for connecting electrical
instrument circuits mainly in hazardous areas where safety and
circuit integrity are highly required during fire conditions.
CONSTRUCTION
Copper, semi-rigid class 2
Polyvinyl Chloride [PVC]
APPLICATION
For indoor fixed installations in dry locations.
They can be laid in conduits, as well as in steel support brackets.
Maximum operating temperature: 70°C
CONSTRUCTION
Copper, flexible class 5
Polyvinyl Chloride [PVC]
APPLICATION
For indoor fixed installations in dry locations where particular flexibility is required.
Used for electrical panels connection or electrical apparatus.
They can be laid in groups around steel sheet.
Maximum operating temperature: 70°C
CONSTRUCTION
Aluminum, semi-rigid class 2
Polyvinyl Chloride [PVC]
APPLICATION
For indoor fixed installations in dry locations.
They can be laid in conduits, as well as in steel support brackets.
Maximum operating temperature: 70°C
CONSTRUCTION
Conductor: Bare Copper
Soft annealed copper wires stranded in successive layers, in opposite
direction, to form the copper stranded conductor. It can be circular or
circular compacted.
CONSTRUCTION
AAC is the most favoured type for use in the construction of relatively
short-span distribution schemes and is in common use on lines for voltages
up to 60 KV.
CONSTRUCTION
The mixed construction of ACSR (Aluminum Conductor Steel Reinforced) offers
significant flexibility from a design perspective. By varying the proportion
of aluminum (H14) and steel, an ideal conductor can be produced for any
specific application.
Generally, ACSR consists of a galvanized steel core, which can be made up of
1, 7, or 19 wires, surrounded by concentric layers of aluminum wire.
For applications requiring high current-carrying capacity with comparatively
lower strength, special constructions with higher aluminum content are
available.
CONSTRUCTION
Aerial Bundled Cables (ABC), also known as aerial bundled conductors, are
overhead power lines consisting of several insulated phase conductors bundled
tightly together. The conductors are made of aluminum and are insulated with
XLPE (cross-linked polyethylene) with 2.5% carbon black.
This category of cable is manufactured from aluminum conductors (H14)
insulated with XLPE and assembled to form configurations of two (duplex),
three (triplex), four (quadruplex), or more conductors.
CONSTRUCTION
1- Conductor
Flexible tinned annealed copper Class 5 as per IEC 60228
2- Insulation
Cross-Linked special Polyolefin (XLPO)
3- Sheath
Cross-Linked special Polyolefin (XLPO)
APPLICATION
The BICC © PV H1Z2Z2-K cable is suitable for both fixed and mobile solar
installations (solar farms, rooftop solar installations and floating plants).
It is a highly flexible cable compatible with all major connectors and
specially designed for the connection of photovoltaic panels.
This versatile single-conductor cable is designed to meet the varying needs
of the solar industry. Suitable for wet, damp and humid locations.
CONSTRUCTION
– Copper or Aluminum
– Circular Compacted Conductor
– SC/XLPE/SC Insulation
– Copper Wires Screen PVC Jacket
– Operating Temperature: 90°C
CONSTRUCTION
– Copper or Aluminum
– Circular Compacted Conductor
– SC/XLPE/SC Insulation
– Copper Tape Screen PVC Jacket
– Operating Temperature: 90°C.
CONSTRUCTION:
– Copper or Aluminum
– Circular Compacted Conductor
– SC/XLPE/SC Insulation
– Copper Tape Screen
– Double Steel Tape Armouring
– PVC Jacket
– Operating Temperature: 90°C.
CONSTRUCTION
– Copper or Aluminum
– Circular Compacted Conductor
– SC/XLPE/SC Insulation
– Copper Tape Screen
– Double Steel Wire Armouring
– PVC Jacket
– Operating Temperature: 90°C.