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Wire & Cable
Reliable, Efficient, and High-Performance Thermal Solutions
CEIA USA delivers advanced induction heating systems built for the wire & cable sector which support processes like annealing, brazing of conductor joints, surface hardening, and thermal treatment. From telecom cables to power transmission wire, our technology helps ensure product durability, electrical performance, and sustainable production practices.
Request a Consultation to see how CEIA USA can enhance your wire & cable manufacturing with superior thermal control and reliability.

Advancing Wire & Cable Production with Induction Heating
Annealing for Improved Flexibility & Conductivity
Wire & cable materials (copper, aluminum, alloys) often require annealing post-drawing to relax internal stress, improve ductility, and enhance conductivity. CEIA USA’s induction annealing offers uniform, high-speed cycles, reducing defects and ensuring consistent quality.
Conductor Joint Brazing & Welding
For splices, joints, and terminations, induction brazing or welding provides strong, reliable electrical and mechanical connections. Our systems deliver oxidation-controlled and repeatable joint quality for power cable, telecom, and specialty wire assemblies.
Surface Hardening & Damage Resistance
Wire & cable components such as cable armoring, connectors, or strain reliefs benefit from surface hardening to resist abrasion, impact, and fatigue. Induction heat treatment upgrades performance in demanding environments.
Shrink Fitting & Precision Assembly
In cable connector assembly, shrink fitting provides precise fits for sleeves, connectors, ferrules, and junctions. CEIA USA’s induction solutions ensure accurate, repeatable results without damaging insulation or conductor integrity.
Key Wire & Cable Applications
Application |
Common Components / Materials |
Benefits |
| Annealing | Copper, aluminum, alloys | Improved flexibility, conductivity & reduced brittleness |
| Conductor Brazing / Welding | Cable splices, joints, connectors | Strong electrical & mechanical integrity |
| Surface Hardening | Armor wires, connectors, strain reliefs | Enhanced abrasion & impact resistance |
| Shrink Fitting | Ferrules, sleeves, connector fittings | Tight mechanical fit, reduces assembly error |
| Thermal Treatment / Stress Relief | Drawn wire, coiled cable | Reduced residual stress, stabilized physical properties |
Partner With CEIA USA for Wire & Cable Innovation
From annealing and conductor brazing to connector assembly, surface hardening, and stress relieving, CEIA USA delivers precision, durability, and efficiency in wire & cable thermal processes.
CEIA USA Expertise in Wire & Cable Thermal Technology
CEIA USA has decades of experience serving the wire & cable industry. Our expertise includes delivering systems with real-time temperature control, closed-loop feedback, and specialized coil designs for delicate insulation and conductor geometries.
Our Capabilities Include:
- High throughput induction annealing for drawn wire & ribbon
- Precision brazing / welding of cable joints & connectors
- Custom coil tooling to preserve insulation & minimize thermal damage
- Integration with smart manufacturing & quality monitoring
Experience and Authority
We partner with leading wire & cable manufacturers globally. CEIA USA has completed projects with documented improvements in conductivity, flexibility, and assembly yield. Our engineers are certified in relevant industry standards and materials science, ensuring reliable, safe, high-quality outputs.
Sustainable & Energy-Efficient Manufacturing
Induction heating supports sustainable manufacturing in the wire & cable industry by delivering:
- Localized heating that reduces energy waste and operational costs
- Faster processing with fewer defects and reduced material scrap
- Cleaner operations with no open flame, fewer emissions, better safety
- Extended wire product life thanks to improved thermal and mechanical properties
By integrating CEIA USA’s induction heating solutions, wire & cable manufacturers can improve performance and sustainability simultaneously.
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