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XLPE Insulated Power Cable with the Rated Voltage at 35KV and Below
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XLPE Insulated Power Cable with the Rated Voltage at 35KV and Below

  Executive Standard
  This product is manufactured in accordance with the general industry standard entitled Q/AXHTD07-2000 which refers to the JGS.


  Usage
  It is suitable to be used for the copper-cored or copper alloy-cored plastic insulating and sheathed branch cable for power, electrical and lighting device whose AC rated voltage is 0.6/1kV in residential areas, high-rise office buildings, tunnels and factories, which is quite easy to install.


  Model and Name

Model

Name

FZYJV-0.6/1kV

Copper-cored XLPE insulating PVC sheathed branch cable with the rated voltage at 0.6/1kV

FZVV-0.6/1kV

Copper-cored PVC insulating PVC sheathed branch cable with the rated voltage at 0.6/1KV


  Description of Each Code in Model


Project Item

 Code

Description Explanation

Series

FZ

branch cable

Insulation 

V

PVC

YJ

Sheath

V

XLPE

Specifications

cores × cross-section mm2

PVC


  Example 
  This product is mainly described by model, specification, numbers of core, nominal cross-sectional area of the main line, nominal cross-sectional area of the branch cable, insulating effectiveness, color and the standard number. For instance:
  FZVV-O. 6/1kV 1 × 185 (95) or Q/XH11 or QIAXHT007-2000 can be made use of to represent the single-core, copper-cored polyoxyethylene insulating Yun poly ethylene sheathed branch cable with the main line’s cross-sectional area at 185mm2 and the branch line’s cross-sectional area at 95mm2.


  Characteristic Features
  ① Rated voltage (Uo /U): 0.6/1kV.
  ② The highest long-term allowable working temperature for the cable’s conductor:
It is 70℃ for the PVC insulated cables while 90℃ for the XLPE insulated ones.
  ③ The ambient temperature should not be less than 0 ℃ while laying the cable. When it is below 0℃, it should be pre-heated in advance.
  ④ The recommended bending radius of the cable should be no less than 12 times of its outer diameter.
  ⑤ The conductor’s DC resistance of the cable is shown in Table 3 while the insulation resistance is supposed to be no less than 200MΩ.
  ⑥ The molded branch section of the branch cable should be able to withstand the heat cycle test for 250 times.
  ⑦ The branch cable is supposed to be able to withstand the 3.5kV/5min AC voltage test.

Nominal Cross -sectional Area of Conductor mm2 Conductor's
Resistance at 20 ℃ ≤ Ω /km
Nominal Cross-sectional Area of Conductor mm2 Conductor's DC Resistance at 20 ℃ ≤ Ω /km Nominal Cross-sectional Area of Conductor mm2  Conductor's DC Resistance at 20 ℃ ≤ Ω /km
6 3.08 50 0.387 185 0.0991
10 1.83 70 0.268 240 0.0754
16 1.15 95 0.193 300 0.0601
25 0.727 120 0.153 400 0.0470
35 0.524 150 0.124 500 0.0366