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High Temperature 500°C Cable – Pure Nickel Conductor, Fiberglass Braiding, 450/750V Heat Resistant Cable 0.2mm²

High Temperature 500°C Cable – Pure Nickel Conductor, Fiberglass Braiding, 450/750V Heat Resistant Cable 0.2mm²

Brand Name: DINGZUN CABLE
Model Number: D539 GN500
MOQ: 300meters
Price: To be negotiated
Packaging Details: By Carton, Drum, or Wooden Box
Payment Terms: T/T
Detail Information
Place of Origin:
China
Certification:
UL CE ISO9001
Cable Type:
500°C High Temperature Extreme Heat Cable
Section Area:
0.20mm2 (OEM)
Conductor:
Pure Nickel, Circular
Insulation:
MGT Wrapping + Glassfiber Braiding
Rated Voltage:
450/750V
Rated Temperature:
+500℃
Application:
For Extreme Heat Applications
Keyword:
Nickel Cable
Supply Ability:
10000Meters/DAY
Product Description
High Temperature 500degree Cable Pure Nickel Conductor Fiberglass Glassfiber Braiding 450/750V Heat Resistant Cable 0.2mm2

Premium high temperature 500°C cable with pure nickel conductor and fiberglass braiding. 450/750V rated, -60°C to +500°C, halogen-free, flame retardant. For extreme heat applications.

High Temperature 500°C Cable – Pure Nickel Conductor, Fiberglass Braiding, 450/750V Heat Resistant Cable 0.2mm²

Key Features & Technical Advantages
  • Pure nickel stranded conductor for extreme oxidation resistance up to 500°C
  • Mica tape + fiberglass braid insulation system for superior thermal protection
  • 450/750V rated for industrial power and control circuits
  • Temperature range -60°C to +500°C continuous operation
  • Halogen-free, flame retardant, non-combustible
Specifications & Construction
Parameter Details
Type 500°C high temperature extreme heat cable
Conductor Pure nickel stranded, 0.2mm²
Insulation System Mica tape wrapping + fiberglass braiding
Voltage Rating 450/750V
Temperature Range -60°C to +500°C continuous
Features Halogen-free, flame retardant, chemical resistant, non-combustible
Why Choose This 500°C Extreme Heat Cable

This cable is engineered for environments where standard PVC, silicone, or even FEP cables cannot survive.

Typical Applications – Solving Critical Extreme Heat Challenges
  • Metallurgical Furnaces: Provides reliable connections for electric arc furnaces, ladle preheating, and molten metal handling equipment
  • Petrochemical Plants: Delivers heat-resistant cabling for refinery furnaces, cracking units, and high temperature process control
  • Industrial Kilns: Supplies durable cabling for ceramic sintering, glass manufacturing, and cement production
  • Aerospace Test Stands: Supports engine testing and high temperature instrumentation in extreme thermal environments
  • Power Generation: Enables reliable connections in boiler monitoring, turbine control, and high temperature sensor systems
  • Heat Treatment Equipment: Provides long-term reliability in annealing furnaces, hardening lines, and thermal processing
Request a Quote or Custom Specification

Ready to specify your high temperature wire configuration? Contact our technical sales team today.

Frequently Asked Questions
Q1: Why is pure nickel used as the conductor material for 500°C cables?
A: Pure nickel offers exceptional oxidation resistance and maintains mechanical integrity at high temperatures up to 500°C, with a melting point approximately twice that of copper, ensuring long-term reliability in extreme heat environments.
Q2: What is the insulation system for 500°C cables?
A: The insulation consists of fire-resistant mica tape wrapping combined with high-strength fiberglass braiding, providing superior thermal protection, dielectric strength, and mechanical durability at continuous 500°C operation.
Q3: What is the voltage rating of this cable?
A: Rated at 450/750V, suitable for industrial power and control circuits in high temperature applications.
Q4: Is this cable suitable for outdoor or corrosive environments?
A: Yes, the cable offers excellent chemical resistance to acids, alkalis, and aggressive media, making it suitable for petrochemical and industrial environments.
Q5: What industries commonly use 500°C high temperature cables?
A: Metallurgy, petrochemical, aerospace, power generation, heat treatment, glass manufacturing, and other industries requiring reliable connections in extreme thermal environments.