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Research Laboratories Cable | High Temperature Multicore Braiding Shielded Cable TC/FEP/TCWB/SiR 4x0.20mm² 600V 200°C
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Research Laboratories Cable | High Temperature Multicore Braiding Shielded Cable TC/FEP/TCWB/SiR 4x0.20mm² 600V 200°C

Premium research laboratories cable 4x0.20mm² 600V 200°C.

TC 7/0.20 conductors, FEP insulation, TCWB braid shield, silicone rubber jacket maroon.

High temp shielded multicore.

Request a detailed quote & datasheet!

  • Cable Type Laboratory high temp cable TC/FEP/TCWB/SiR
  • Cable Spec 4x0.20mm²
  • Conductor TC tinned copper (TC, CU, SPC, NPC optional)
  • Construction Stranded wire
  • Insulation FEP compound (FEP, PTFE, PFA, PI, PEEK optional)
  • Pairs 4cores stranded
  • Screen TCWB tinned copper wire braiding
  • Sheath Special silicone flexible compound (FEP, PTFE, PFA, PI, PEEK optional)
  • Rated Voltage 600V
  • Rated Temperature -60℃ to +200℃
  • Cable No. D396
  • Keyword shielded multicore cable
  • Application ideal for Research Laboratories

Research Laboratories Cable – High Temperature Multicore Braiding Shielded Cable TC/FEP/TCWB/SiR 4x0.20mm² 600V 200°C, Conductor: TC Tinned Copper 7/0.20, Insulation: FEP, Polyester Tape Binder, 4 Cores Stranded, Shield: TCWB Tinned Copper Wire Braiding, Jacket: SiR Flexible Silicone Rubber Compound Maroon, Round Cable Construction

This research laboratories cable features 4x0.20mm² shielded multicore construction engineered for high temperature applications requiring reliable signal transmission and EMI protection. The TC tinned copper conductors utilize 7/0.20 fine-strand construction, providing excellent flexibility and corrosion resistance for laboratory environments. FEP insulation delivers outstanding dielectric properties, thermal stability, and chemical resistance at 200°C continuous operation. The four cores are stranded with a polyester tape binder maintaining core geometry and mechanical stability. An overall TCWB tinned copper wire braid shield provides comprehensive EMI protection for sensitive laboratory signals. The maroon silicone rubber jacket offers exceptional flexibility, heat resistance, and durability with a distinctive appearance suitable for research facility identification. Rated at 600V, this round cable is ideal for analytical instruments, test equipment, and laboratory setups requiring reliable high temperature shielded connections.

D396-shielded-silicone-cable-600V-200degree-ygzpf-s-4x0.2-02.jpgD396-shielded-silicone-cable-600V-200degree-ygzpf-s-4x0.2-03.jpg

Key Features & Technical Advantages

  • 4 x 0.20mm² multicore for multi-channel laboratory signals

  • TC tinned copper 7/0.20 fine-strand conductors for flexibility

  • FEP insulation for thermal stability, chemical resistance, and dielectric strength

  • Polyester tape binder for core geometry retention

  • TCWB tinned copper wire braid shield for EMI protection

  • SiR silicone rubber jacket maroon, rated 200°C

  • 600V rating for laboratory instrumentation

  • Round cable construction for easy routing

  • Distinctive maroon color for laboratory identification

Specifications & Construction

Parameter Details
Type Research laboratories high temperature cable
Configuration 4 cores x 0.20mm²
Conductor TC tinned copper, 7/0.20
Insulation FEP compound
Binder Polyester tape
Core Stranding 4 cores stranded
Shield TCWB tinned copper wire braiding
Jacket SiR flexible silicone rubber compound, maroon
Cable Shape Round
Voltage Rating 600V
Temperature Rating 200°C continuous

Why Choose Our Research Laboratories Cable

We specialize in high temperature shielded cables for demanding laboratory and research applications. This 4x0.20mm² design combines FEP insulation with silicone jacketing for reliable 200°C performance in analytical instruments and test setups. The 7/0.20 fine-strand tinned copper conductors provide excellent flexibility for frequent reconfiguration. TCWB braid shielding ensures signal integrity in electrically noisy laboratory environments. The maroon silicone jacket offers a distinctive appearance for easy identification in multi-cable installations while providing superior heat resistance. As a specialized manufacturer, we control all production stages, offering custom configurations and technical support for your specific research requirements.

Typical Applications – Solving Critical Laboratory Challenges

  • Analytical Instruments: Provides reliable shielded connections for spectrometers, chromatographs, and mass spectrometers

  • Test and Measurement Equipment: Delivers flexible, high temperature cabling for oscilloscopes, signal generators, and data acquisition systems

  • Environmental Chambers: Enables signal transmission for sensors inside temperature-controlled test chambers

  • Material Testing Equipment: Supplies flexible connections for strain gauges, extensometers, and thermal analysis instruments

  • Research Furnaces: Provides high temperature cabling for thermocouples and sensors in experimental furnace setups

  • Semiconductor Research: Delivers clean, high temperature cabling for wafer processing and characterization equipment

  • University Laboratories: Supports multi-channel experimental setups requiring flexible, shielded, high temperature connections

FAQ

Q1: Why is 7/0.20 conductor construction ideal for laboratory applications?

A: 7 strands of 0.20mm provide excellent flexibility for frequent equipment reconfiguration while maintaining consistent signal transmission properties.

Q2: What is the advantage of FEP insulation for research cables?

A: FEP offers exceptional thermal stability to 200°C, chemical resistance to laboratory solvents, and low dielectric loss for accurate signal transmission.

Q3: Why is TCWB braid shielding specified for laboratory cables?

A: Tinned copper braid provides robust EMI protection for sensitive signals in electrically noisy laboratory environments with multiple instruments operating simultaneously.

Q4: What is the significance of the maroon jacket color?

A: Maroon offers a distinctive appearance for easy cable identification in research facilities with multiple cables, reducing confusion during equipment reconfiguration.

Q5: Is this cable suitable for vacuum chamber applications?

A: FEP and silicone materials have low outgassing properties suitable for many vacuum applications. Please consult our engineering team for specific vacuum compatibility requirements.