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2YSLCY-J - Flexible control cable, PE insulated, screened, for motor connections, (0.6/1 kV) Maximize

2YSLCY-J - Flexible control cable, PE insulated, screened, for motor connections, (0.6/1 kV)

2YSLCY-J control cable (0.6/1 kV) - Construction

Conductor            : flexible copper wires, plain; IEC 60228 Class 5,
                             DIN EN 60228 Class 5.
Insulation             : PE compound.
Core identification : 4 cores: bk, br, bl, gn-ye coloured cores.
Lay-up                 : cores laid up in layers of optimum pitch.
Separator             : polyester tape.
1.Screen              : aluminium polyester tape.
2.Screen              : braid of tinned copper wires, approximately
                            % 80 coverage.
Outer Sheath       : PVC compound.
Sheath Colour      : RAL 7001, Grey (to be agreed upon the shade of grey).

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2YSLCY-J control cable (0.6/1 kV) - Technical data and tests

Standard                    : VDE 0250.
Insulation resistance    : min. 200 MΩ/km.
Mutual capacitance      : core / core    :  70 ~ 250 nF/km;
  
                                   core / screen :110 ~ 410 nF/km.
Rated voltage Uo/U     : 0.6/1 kV.
Test voltage (50 Hz )   : 4000 V.
Temperature range     : fixed   : - 40° C ~ + 70° C; 
  
                                   mobile :   - 5° C ~ + 70° C.
Min. bending radius     : fixed    :  7.5 x D; 
  
                                   mobile  :   15 x D.
Flame retardance test  : IEC 60332-1 & EN 50265-2-1.
EMC                           : electromagnetic compatibility.
 

* Core identification for coloured cores is according to HD 308 S2.

2YSLCY-J control cable (0.6/1 kV) - Applications
These double screened low capacitance motor supply cables are for frequency converters, assure electromagnetic compability in plants, buildings, anywhere the fields of electromagnetic interference might cause adverse effects on the surroundings.
Due to optimal screening, an interference-free operation of frequency converters is achieved.
The screen protects against external interference pulses and ensures an interference-free transmission; transfer impedance is max. 250 Ω/km at 30 MHz.

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