Control Cable

  • MULTICONDUCTOR, COPPER, PVC INSULATION, PVC SHEATH WITH SCREEN FLAME RETARDANT SHIELDED CONTROL CABLE
  • MULTICONDUCTOR, COPPER, PVC INSULATION, PVC SHEATH WITH SCREEN FLAME RETARDANT SHIELDED CONTROL CABLE
  • MULTICONDUCTOR, COPPER, PVC INSULATION, PVC SHEATH WITH SCREEN FLAME RETARDANT SHIELDED CONTROL CABLE
MULTICONDUCTOR, COPPER, PVC INSULATION, PVC SHEATH WITH SCREEN FLAME RETARDANT SHIELDED CONTROL CABLEMULTICONDUCTOR, COPPER, PVC INSULATION, PVC SHEATH WITH SCREEN FLAME RETARDANT SHIELDED CONTROL CABLEMULTICONDUCTOR, COPPER, PVC INSULATION, PVC SHEATH WITH SCREEN FLAME RETARDANT SHIELDED CONTROL CABLE

MULTICONDUCTOR, COPPER, PVC INSULATION, PVC SHEATH WITH SCREEN FLAME RETARDANT SHIELDED CONTROL CABLE

  • SHIELDED CONTROL CABLE
  • Product description: Control cables are cables used to connect control equipment and actuators. Mechanical equipment control: used to connect control systems of various mechanical equipment, transmit control signals and d
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Control cables are cables used to connect control equipment and actuators. Mechanical equipment control: used to connect control systems of various mechanical equipment, transmit control signals and data signals, and achieve remote control and monitoring. Automated production line: widely used in automated production lines and industrial control systems, used to connect various actuators and control equipment to achieve automated control and adjustment. Power system control: used to connect control equipment in the power system, transmit various control signals and data signals, and realize remote monitoring and control of the power system.
MULTICONDUCTOR, COPPER, PVC INSULATION, PVC SHEATH WITH SCREEN FLAME RETARDANT SHIELDED CONTROL CABLE Structural features:
Multi-core structure: Control cables usually have a multi-core structure, capable of transmitting multiple signals and meeting the connection requirements of complex control systems.
Shielding structure: The control cable adopts aluminum foil shielding, braided shielding and other structures to ensure the stability and reliability of signal transmission.
High-temperature-resistant materials: Control cables usually use high-temperature-resistant materials, which are suitable for control transmission requirements in high-temperature environments.
control cable
REFERENCE: LATEST EDITIONS OF IEC 60228, IEC 60332-3-24, IEC 60502-1.
CONDUCTOR: 1.5 mm2, 2.5 mm2, AND 4.0 mm2- COATED OR UNCOATED ANNEALED COPPER, CLASS 2 STRANDED, MAXIMUM DIAMETER, DC RESISTANCE, AND NUMBER OF STRANDS IN ACCORDANCE WITH IEC 60228, MAXIMUM TEMPERATURE 70°C.
INSULATION: POLYVINYL CHLORIDE (PVC/A), THICKNESS AND CHARACTERISTICS IN ACCORDANCE WITH IEC 60502-1.
ASSEMBLY: THE CORES SHALL BE CABLED TOGETHER WITH FLAME RETARDANT POLYPROPYLENE FILLERS, AS NECESSARY, AND POLYESTER TAPE OR
SPUNBOND TAPE TO MAKE THE FINISHED CABLE ASSEMBLY ROUND.
SCREEN: ONE OR MORE ANNEALED COPPER TAPES.
BINDING TAPE: POLYESTER TAPE OR SPUNBOND TAPE.
CORE BLACK CORE COLOUR WITH WHITE MARKING NUMBER BEGINNING WITH THE NUMBER “BK1” PRINTED ON THE CORE EVERY 100MM, ALONG IDENTIFICATION: THE LENGTH.
OVERSHEATH: BLACK, SUNLIGHT-RESISTANT, FLAME RETARDANT LIMITED SMOKE POLYVINYL-CHLORIDE (FR-PVC), TYPE ST8, THICKNESS AND CHARACTERISTICS IN ACCORDANCE WITH IEC 60502-1.
PRINT LEGEND: A DURABLE MARKING SHALL BE PROVIDED ON THE SURFACE OF THE CABLE AT INTERVALS NOT EXCEEDING ONE METER. MARKING SHALL INCLUDE MANUFACTURER’S NAME, VOLTAGE RATING (kV), INSULATING MATERIAL, SHEATH MATERIAL, CONDUCTOR SIZE IN MM2,DAY/MONTH/YEAR OF MFG, AND SEQUENTIAL FOOTAGE MARKINGS.




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