Chengdu Xinwei Welding Technology Co., Ltd.
                                                                                                           
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Stable Conductivity Water Cooling Secondary Cable for Spot Welders High Efficiency

Price Negotiable
Price: $85-330 / set
MOQ: 10 sets
Delivery Time: 25-45 working days
Brand: Xinwei
Product Description
Stable Conductivity Water Cooling Secondary Cable for Spot Welders High Efficiency
Product Description

Kickless Cable (or Secondary Water-Cooled Cable) is a uniquely structured type of insulated conductor. Its ingenious design features a compact cross-section capable of handling extremely high operating currents, paired with efficient heat dissipation via internal water circulation. The cable employs stranded soft copper wires as the core conductor, sheathed in a special rubber water jacket, creating an annular cooling water passage between them. The conductor ends are welded to copper terminals, secured externally by a steel ferrule. The terminals incorporate internal water ports connected to the cable's waterway. This construction makes it particularly suitable for electrical equipment operating under low voltage and high current conditions. It offers excellent bending and mobility characteristics and serves as a critical component for ensuring stable power transmission and thermal equilibrium in automated welding, induction heating, and similar applications

Technical Parameters
Item specifiction
300mm² 400mm²
Impedance 2.0M 480±15μΩ 358±15μΩ
2.4M 593±15μΩ 445±15μΩ
Dc impedance value 2.0M 475μΩ 355μΩ
2.4M 587μΩ 440μΩ
Resistance 2.0M 78μΩ 74μΩ
2.4M 82μΩ 88μΩ
Power
=0.99 =0.99
Cooling water capacity
7.0L/Min 7.0L/Min
Temperature rise characteristic 2.0M 45℃/5900A 45℃/6800A
2.4M 45℃/5400A 45℃/6200A
Weight 2.0M 10.4kg 13.2kg
2.4M 12.2kg 15.3kg
Main Features
  • Excellent Conductive Transmission Efficiency: The conductor is made of high-quality electrolytic copper, ensuring minimal power transmission loss and impedance from the power source to the load, providing a clean, efficient energy channel for high-power equipment.

  • Superior Operational Flexibility & Torsional Fatigue Resistance: The overall structure is optimized for dynamic operation, demonstrating exceptional flexibility and resistance to twisting. It maintains the integrity of internal water and electrical circuits during frequent bending and movement, extending service life.

  • Efficient Cooling & Low Flow Resistance Design: The optimized water channel geometry results in minimal flow resistance and water pressure drop. Efficient coolant circulation provides significant heat dissipation, ensuring controlled temperature rise under sustained high loads.

  • Robust Physical & Thermal Protection: The special synthetic rubber outer jacket, combined with internal reinforcement layers, offers outstanding pressure resistance, high-temperature tolerance, abrasion resistance, and chemical corrosion resistance, protecting the cable core in harsh industrial environments.

  • Minimal Electromagnetic Interference Impact: Precise conductor stranding and shielding design effectively suppress parasitic inductance and electromagnetic induction effects, minimizing the electromagnetic interference generated during operation and ensuring stable performance of surrounding equipment.

  • Convenient Maintenance & Replacement: Standardized interfaces and reliable connection technology enable quick and easy on-site installation and replacement, significantly reducing equipment maintenance downtime and improving production line availability.

  • Long Service Life & Cost-Effectiveness: Durable, selected materials and proven manufacturing processes grant the cable an extended service life. Combined with its high reliability and low maintenance requirements, it delivers excellent long-term return on investment for users

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Have questions about our products or want to discuss a custom order? Our team is ready to help you.

Company Chengdu Xinwei Welding Technology Co., Ltd.
Location No.538 Xingfu Road,Xindu,Chengdu,China
Contact Person Wang

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