• 250V Tinned Copper Conductor XLPE/Epr Insulation CPE Sheath Shipboard Symmetric Telecommunication Cable
  • 250V Tinned Copper Conductor XLPE/Epr Insulation CPE Sheath Shipboard Symmetric Telecommunication Cable
  • 250V Tinned Copper Conductor XLPE/Epr Insulation CPE Sheath Shipboard Symmetric Telecommunication Cable
  • 250V Tinned Copper Conductor XLPE/Epr Insulation CPE Sheath Shipboard Symmetric Telecommunication Cable
  • 250V Tinned Copper Conductor XLPE/Epr Insulation CPE Sheath Shipboard Symmetric Telecommunication Cable
  • 250V Tinned Copper Conductor XLPE/Epr Insulation CPE Sheath Shipboard Symmetric Telecommunication Cable

250V Tinned Copper Conductor XLPE/Epr Insulation CPE Sheath Shipboard Symmetric Telecommunication Cable

Application: Shipboard
Voltage: Low and Medium Voltage Cable
Current: DC & AC
Insulation Material: XLPE
Sheath Material: PVC
Material Shape: Round Wire
Samples:
US$ 0/Piece 1 Piece(Min.Order)
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Customization:
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Basic Info.

Model NO.
CHJ82 CHJV80 CHJV90 CHJV82 CHJV92
Wire Core Material
Bare Copper Wire
Certification
ABS Lr Dnv Nk Kr BV
Model
Chj82 Chjv80 Chjv90 Chjv82 Chjv92
Brand
Rneda
Certificate
ABS Lr Dnv Nk Kr BV CCS Gl
Size
0.75-2.5
Conductor
Copper or Tinned Copper
Shield
Metal Wire Braid
Sheath
PVC or Cross Linked Po
Core Number
2-61
Transport Package
Wooden & Steel Drum
Specification
IEC DIN ASTM VDE BS
Trademark
RNEDA
Origin
China
HS Code
8544492100
Production Capacity
1000km Per Month

Product Description

Tinned copper conductor XLPE/EPR insulation CPE sheath Shipboard Symmetric Telecommunication Cable

1.Executive Standard
Q/XYT 17.3-2009 (Chinese standard) Shipboard power, control and instrument loop cables.
Part 4: Shipboard control cables for rated voltage 0.15/0.25kV
IEC60092-376 shipboard control cables.
 
 
2.Application Characteristics
(1)   The allowed long-duration maximum working temperature of cable conductor is 90°C.
(2)   The laying temperature of cable shall not be less than 0°C.
(3)   The recommended allowed bending radius shall be:
For Metal braided armoured cable: 6 times value of the outer diameter.
For non-armoured cable with outer diameter exceeding25mm: 6 times value of the outer diameter.
For non-armoured cable with outer diameter below 25 mm: 4 times of the outer diameter
 
 
 3.Lifting and Storage of Cable
(1)   During conveying, the cable and cable drum shall not be damaged and do not push the cable drum directly from the truck. The cable drum shall not be conveyed or stored flat.
(2)   Please don't throw the cable drum or cable ring with cable winded from high space. During conveying, the cable drum must be put stable and fixed using suitable method to prevent from mutual collision or falling over.
(3)   Before conveying or rolling the cable drum, it must be fixed and cable whereon must be winded tightly. When rolling, follow the arrowhead on the cable drum or cable winding direction.
(4)   During storage the cable drum, package and label shall be complete, and the end capping shall be tight. Once any defect is found, immediately dispose of it. In the area where the cable is stored, no water log is allowed.
 
4. Installation and laying of cables
   (1) When laying, tension should be uniform to avoid twist of the cable. If the cable is twisted, insulation core may be cracked and twisted which consequently causes accident.
   (2) When preparing the cable head, strictly follow state codes regarding power construction to use specialized tools.
   (3) When installing, once any mechanical damage of the cable is found, please do conduct relevant checks for the cable to see whether the cable insulation is damaged subject to conditions.
   (4) Before the laying, checks shall be conducted according to following requirements:
     a) Model: specification and voltage of the cable shall be consistent with the design.
     b) The cable exterior shall have no damage and have good insulation, and the cable shall be tested and proven qualified.
      c) Length of each cable shall be calculated according to design and actual route, reasonably arrange each tray of cable to reduce cable joints.
     d) Cable installation in charged area, should have security arrangements.
Model,description and application
 

Model
Combustion characteristic Description
CKEPJ SC Copper core EPR insulator no halogen low smoke flame retardant shipboard control cable with thermosetting sheath
CKEPJ86 SC Copper core EPR insulator copper wire braided and armoured no halogen low smoke flame retardant shipboard control cable with thermoplastic sheath
CKEPJ96 SC Copper core EPR insulator steel wire braided and armoured no halogen low smoke flame retardant shipboard control cable with thermoplastic sheath
CKJPJ SC/NSC Copper core XLPE insulator no halogen low smoke flame retardant shipboard control cable with thermosetting sheath
CKJPJ85 SC/NSC Copper core XLPE insulator copper wire braided and armoured no halogen low smoke flame retardant shipboard control cable with thermosetting sheath
CKJPJ95 SC/NSC Copper core XLPE insulator steel wire braided and armoured no halogen low smoke flame retardant shipboard control cable with thermosetting sheath
CKJPF SC/NSC Copper core XLPE insulator no halogen low smoke flame retardant shipboard control cable with thermoplastic sheath
CKJPF86 SC/NSC Copper core XLPE insulator copper wire braided and armoured no halogen low smoke flame retardant shipboard control cable with thermoplastic sheath
CKJPF96 SC/NSC Copper core XLPE insulator steel wire braided and armoured no halogen low smoke flame retardant shipboard control cable with thermoplastic sheath

 
 

Nominal cross section mm2
DC resistance of conductor at 20°C(≤Ω/km)
Category 2 copper conductor Category 5 coppper conductor
Non-tinning Tinning Non-tinning tinning
0.75 24.5 24.8 26 26.7
1.0 18.1 18.2 19.5 20.0
1.5 12.1 12.2 13.3 13.7
2.5 7.41 7.56 7.98 8.21

 

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Management System Certification
ISO9001:2015, ISO14001:2015, ISO45001:2018