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F. T Cable Co., Ltd.

  • China ,Shaanxi
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China Mica High Temperature Cable Industrial Grade Heat Resistant Transmission
China Mica High Temperature Cable Industrial Grade Heat Resistant Transmission

  1. China Mica High Temperature Cable Industrial Grade Heat Resistant Transmission
  2. China Mica High Temperature Cable Industrial Grade Heat Resistant Transmission
  3. China Mica High Temperature Cable Industrial Grade Heat Resistant Transmission

Mica High Temperature Cable Industrial Grade Heat Resistant Transmission

  1. MOQ: 1000
  2. Price: Usd 0.25 ~ 1.5 / meter
  3. Get Latest Price
Conductor Stranded Copper
Insulation Mica Tape
Payment Terms L/C,D/A,D/P,T/T,Western Union
Application Industrial heating, furnaces, fire-resistant circuits
Supply Ability 800–1500 kilometers per month
Delivery Time 7-15 Working Days
Temperature Rating High-temperature resistant
Rated Voltage 300V / 600V
Packaging Details Wooden Drum、cardboard box、wooden pallet
Product Name High-Temperature Mica Cable
Model Number high temperature cable
Certification CE,VDE,SO 9001
Place of Origin china
Brand Name F.T

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  1. Product Details
  2. Company Details

Product Specification

Conductor Stranded Copper Insulation Mica Tape
Payment Terms L/C,D/A,D/P,T/T,Western Union Application Industrial heating, furnaces, fire-resistant circuits
Supply Ability 800–1500 kilometers per month Delivery Time 7-15 Working Days
Temperature Rating High-temperature resistant Rated Voltage 300V / 600V
Packaging Details Wooden Drum、cardboard box、wooden pallet Product Name High-Temperature Mica Cable
Model Number high temperature cable Certification CE,VDE,SO 9001
Place of Origin china Brand Name F.T
High Light Mica High Temperature Cable600V High Temperature Cable300V mica tape cable

High-Temperature Mica Cable – Industrial-Grade Heat-Resistant Transmission Solution

Product Positioning & Technical Overview

This product series utilizes high-purity fluorophlogopite (synthetic mica) tape as the primary insulation medium, reinforced externally with a continuous fiberglass braid to form a composite insulation structure that combines rigidity with flexibility. The inherent layered silicate crystal structure of mica effectively suppresses electric arc tracking and carbonization path formation, enabling stable dielectric performance across an extreme temperature range of 600°C to 1000°C.

This cable is more than a simple "heat-resistant conductor"—it is a fire-integrity power transmission assembly engineered for active fire protection. In the event of a fire, the insulation layer neither melts nor drips, nor releases toxic smoke. Under standard flame conditions, it maintains emergency power circuit continuity for a critical duration, buying precious time for personnel evacuation and equipment shutdown procedures.

Structural Layer Diagram

Layer-by-Layer Functional Breakdown:

  1. Current-Carrying Core: Stranded or solid conductor, with copper-based or nickel-based material selection based on temperature rating, ensuring efficient power transmission with low resistivity.

  2. Functional Insulator: Synthetic mica tape precision-wrapped around the conductor at a minimum overlap rate of 55% , forming a dense mineral insulation barrier—the "fire-resistant soul" of the cable.

  3. Armor Protection Layer: High-count alkali-free fiberglass braid with coverage density ≥90%, providing not only mechanical scratch protection during installation but also securing the mica tape in position and preventing loosening under high temperatures.

  4. Surface Treatment Layer (optional): Impregnated with specialized high-temperature silicone resin or PTFE emulsion for enhanced moisture resistance, anti-fungal properties, and chemical spray resistance.

Key Technical Specifications

Parameter Specification Data
Rated Temperature 350°C ~ 1000°C (grade-dependent)
Ambient Temperature Range Long-term: -60°C ~ 500°C; Special grades: 600°C ~ 1000°C
Rated Voltage Standard: 300V / 600V; Multi-layer reinforced insulation: up to 1000V
Conductor Material Annealed bare copper / Nickel-plated copper / Pure nickel
Conductor Cross-Section 0.25 mm² ~ 125 mm² (AWG 26 ~ 4/0)
Core Count 1 ~ 12 cores
Primary Insulation High-purity fluorophlogopite mica tape + Alkali-free fiberglass composite
Outer Sheath/Braid Fiberglass braid (optional silicone resin or PTFE coating)
Dielectric Strength AC 1000V / 50Hz, leakage current <0.25mA (3m test segment)
Insulation Resistance DC 500V megger test, ≥100MΩ (minimum, 3m length)
Fire Integrity ≥90 min continuous energization under 750°C–1000°C flame (fuse intact)
Conductor DC Resistance Complies with GB/T 3956 requirements, ≤0.5Ω/M/3m (cross-section dependent)
Bending Cycle Life 300g load, ±90° flex, 6 cycles/min, >3000 cycles without open circuit
Compliance Standards GB/T 19666-2019; IEC 60331 (fire resistance); UL 5108; BS 6387 Categories C/W/Z

Typical Application Scenarios

  • Ferrous Metallurgy & High-Temperature Kilns: Deployed in blast furnace hot blast stoves, reheating furnaces, coke oven temperature measurement devices, and continuous caster high-current transmission systems—directly exposed to furnace body radiant heat and molten splash.

  • Petrochemical & Gas Processing: Installed in cracking units, hydrotreating reactors, and oil/gas wellhead control cabinets—meeting both intrinsic safety explosion-proof requirements and extreme thermal radiation protection needs.

  • Power & Energy Systems: Nuclear reactor containment instrumentation circuits, thermal power plant boiler burner controls, hydroelectric excitation systems, and other critical redundancy channels.

  • Aerospace & Defense Equipment: Rocket engine ignition wiring (verified to maintain structural integrity for 45 seconds under 1800°C transient thermal shock), engine compartment instrumentation harnesses.

  • New Energy Vehicle High-Voltage Platforms: Battery pack internal module connection cables, drive motor lead wires, and high-voltage DC charging socket heat-resistant sheaths—adapting to the stringent thermal management constraints within PACK assemblies.

  • Life Safety Systems: Fire pumps, smoke exhaust fans, emergency evacuation lighting, and fire alarm controller trunk circuits in high-rise buildings.

  • Commercial & Household Heating Appliances: Internal lead wires for high-power commercial ovens, electric water heating boilers, radiant heating tubes, and lighting fixtures.

  • Marine & Offshore Engineering: Specialized wiring scenarios in drilling platforms and ship engine rooms characterized by high temperature, high humidity, and confined spaces.

FAQ

Q1: How do I select the appropriate temperature rating for my specific application?

Selection should be based on the long-term steady-state operating temperature of the equipment, with an additional 20%–30% safety margin to cover instantaneous overload or fault temperature rise. For example: household ovens with a normal internal temperature of 250°C should use 350°C-rated cables; lithium battery thermal runaway protection scenarios are recommended to directly select 800°C+ grade solutions.

Q2: What are the practical engineering differences between synthetic mica and natural mica?

Synthetic fluorophlogopite mica (melting point up to 1375°C) offers superior flexural resistance and high-temperature volume resistivity, making it suitable for dynamic bending or frequent vibration environments. Natural phlogopite/muscovite mica (temperature limit approximately 750°C–830°C) is more cost-effective but relatively brittle, suitable only for fixed installation without vibration.

Q3: What are the easily overlooked installation precautions?

Because the mica insulation layer is a mineral-pressed material, rough pulling, heavy stepping, and sharp-angle bending must be avoided. Stripping operations should use specialized circular cutting tools to prevent scratching the mica tape layer. When passing through metal perforations, protective bushings or sleeves must be installed. Storage environments must remain dry and well-ventilated to prevent moisture absorption that could temporarily degrade insulation resistance.

Q4: Can this cable be used in high-voltage circuits above 600V?

Standard single-layer mica tape wrapping has a safe voltage margin designed for the 600V class. For applications requiring 1000V or higher, a double-layer mica tape separation or mica + silicone rubber composite insulation structure is required. For high-voltage applications, it is strongly recommended to confirm operating conditions with the manufacturer's technical department.

Contact us today for bulk pricing, custom lengths, and fast shipping.

Company Details

Bronze Gleitlager

,

Bronze Sleeve Bushings

 and 

Graphite Plugged Bushings

 from Quality China Factory
  • Business Type:

    Manufacturer

  • Year Established:

    2024

  • Total Annual:

    15Million-60Million

  • Employee Number:

    200~250

  • Ecer Certification:

    Verified Supplier

F.T Cable Co., Ltd. is a professional cable manufacturing factory specializing in overseas export markets, integrating cable R&D and design, large-scale production, personalized customization, and export trade. Rooted in China's power cable industry cluster, the company focuses on serving the gl... F.T Cable Co., Ltd. is a professional cable manufacturing factory specializing in overseas export markets, integrating cable R&D and design, large-scale production, personalized customization, and export trade. Rooted in China's power cable industry cluster, the company focuses on serving the gl...

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  • F. T Cable Co., Ltd.
  • No. 9-1, Fengxi Science and Technology Park, No. 1999 North Fengpei Road, Fengxi New City, Xixian New Area, Shaanxi Province, China
  • https://www.ftcable.com/

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