Fastening Fixture for Optical Cables

Fastening Fixture for Optical Cables (also known as optical cable clamps or cable hanging hardware) is a specialized overhead line accessory designed for secure, reliable installation of fiber optic cables — including ADSS and OPGW — on transmission towers and utility poles. Engineered to match the exact dimensions of tower main members and pole diameters, these fixtures provide high mechanical strength, easy installation, and long-term stability under wind, ice, and vibration loads.

Fiber Optical Ground Wire (OPGW)

Fiber Optical Ground Wire (OPGW Cable), also known as Optical Ground Wire, is a high-performance composite cable that integrates the traditional functions of an overhead ground wire with advanced optical fiber communication. It delivers reliable lightning protection and short-circuit current carrying capacity while enabling high-speed, interference-free data transmission — making it the ideal choice for smart grid upgrades and high-voltage transmission line projects.

Galvanized Steel Strand Wire for ACSR | High-Strength Galvanized Steel Core Reinforcement

High-strength Galvanized Steel Strand Wire (GSW) for ACSR conductor cores and overhead grounding applications. Hot-dip galvanized for superior corrosion resistance with excellent tensile strength and flexibility. Available in 7-wire and 19-wire configurations across multiple strength grades. Ideal for long-span transmission lines and harsh environments.

Galvanized Steel Tape for Cable and Wire Armouring

Premium hot-dip galvanized steel tape engineered for cable armoring. Manufactured from high-quality cold-rolled carbon steel (Q195/Q235/SPCC) with a uniform zinc coating (80–140 g/m² or higher). Delivers excellent corrosion resistance, high compressive strength, and superior processability on high-speed armoring lines. Widely used as Steel Tape Armor (STA) in medium- and high-voltage power cables for underground, direct-buried, aerial, and harsh-environment installations.

Galvanized Steel Wire For ACSR Conductor | High-Tensile Core Reinforcement for ACSR

High-tensile Galvanized Steel Wire for ACSR (0.57–4.8 mm) with uniform heavy zinc coating. Engineered as core reinforcement for overhead conductors with excellent mechanical strength, corrosion resistance, and smooth pay-off for high-speed stranding. Compliant with ASTM B498.

Galvanized Steel Wire For Cable Armoring

Our premium hot-dip galvanized steel wire delivers exceptional mechanical strength and long-term corrosion protection as the armor layer in steel wire armored (SWA) power cables, telecommunication cables, and specialty cables. Engineered for the demanding environments of Saudi Arabia and the GCC, it ensures reliable performance in underground, submarine, and industrial installations while meeting international standards including BS EN 10257-1/2.

Halogen Free Flame Retardant PP Fibrillated Filler Yarn | HFFR Cable Filler Material

Halogen Free Flame Retardant PP Fibrillated Filler Yarn, also known as HFFR PP Filler Yarn (Not Twist), is a high-performance, environmentally friendly cable filler material produced from premium polypropylene with advanced halogen-free flame retardant additives. Through a specialized fibrillation process, it forms a strong mesh structure that provides excellent filling, rounding, and mechanical reinforcement for cables while delivering superior flame retardancy and low smoke emission. This non-twisted fibrillated yarn is the ideal choice for high-grade flame-retardant cables requiring compliance with strict environmental and fire-safety standards.

Joint Box for Optical Cables | Fiber Optic Splice Closure for ADSS & OPGW

Joint Box for Optical Cables (also known as Fiber Optic Splice Closure or Optical Cable Joint Enclosure) is a robust, high-reliability enclosure designed for direct splicing and multi-branch joints of aerial fiber optic cables, including ADSS and OPGW. Engineered for overhead transmission and distribution lines, it delivers superior air-tightness, excellent oxidative resistance, and long-term environmental protection, ensuring uninterrupted optical signal transmission in harsh outdoor conditions.

Maleic Anhydride Glycidyl Methacrylate Grafted Elastomer Resin

Maleic Anhydride Glycidyl Methacrylate Grafted Elastomer Resin is a high-performance functional polymer produced via reactive extrusion. It uses premium elastomer bases (such as POE, PO, or styrene-olefin elastomers) grafted with maleic anhydride (MAH) or glycidyl methacrylate (GMA) monomers. This advanced grafting technology creates a versatile compatibilizer and toughening agent that significantly improves the compatibility and mechanical performance of engineering plastics in cable compounds and other high-demand applications.

Maleic Anhydride Grafted Polypropylene PE

Maleic Anhydride Grafted Polyethylene (PE-g-MAH) is a high-performance functional polymer produced through reactive extrusion. It uses premium polyethylene bases (LLDPE, m-LLDPE, HDPE, etc.) grafted with maleic anhydride (MAH) monomer. This advanced grafting technology delivers high grafting efficiency, excellent processing performance, and very low impurity content, making it an essential compatibilizer and toughening agent for modified polyolefin systems and cable compounds.

Mica Tape for Fire Resistant Cables Manufacturer

High-performance Fire Resistant Cable Mica Tape with precise technical specifications. Phlogopite and Calcined grades deliver 90–180+ minutes circuit integrity per IEC 60331 and BS 6387. Custom widths, thicknesses, and full technical support from a trusted B2B cable materials supplier. Inquiry Now for datasheets and quotations.

MV Semi-conductive Outer Shielding Material for Power Cables

MV Semi-conductive Outer Shielding Material, specifically the 0835 Cross-linkable Semi-conductive Outer Shielding Compound, is a high-performance strippable insulation shield engineered for medium-voltage (MV) cross-linked polyethylene (XLPE) insulated power cables rated up to 35 kV. This advanced semi-conductive compound ensures smooth electrical field distribution at the insulation interface, minimizing partial discharge and enhancing long-term cable reliability in demanding power distribution networks.