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Overview
APPLICATION

Self-supporting isolated and projected cable (ABC Cable) is a very innovative concept for overhead power distribution as compared to the conventional bare conductor overhead distribution system. It provides higher level of safety and reliability, lower power losses and ultimate system economy by reducing installation, maintenance and operative cost.
 
Tano Cable Self-supporting isolated and projected cables are designed to supply 0.6/1, 20, 35, Kilo volt aerial service for temporary service at construction sites, as a service drop (power pole to service entrance), as a secondary cable (pole to pole) or street lighting. This overhead cable provides reinforced insulation acc. IEC 61140 and fulfill therefore Class II acc. IEC 61140. It is not flame retardant. But this could be if requested change to a flame retardant cable.

STANDARD

Basic design to GOST 31946 standard.
 
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CABLE DATASHEET
0.6/1kV
20kV
35kV
GOST 31946
DISTRIBUTION CIRCUITS
HOUSEHOLD CONNECTIONS
BY COLOR STRIPE
Specifications
ELECTRICAL PERFORMANCE
0.6/1kV
20kV
35kV
STANDARD
GOST 31946
APPLICATION
DISTRIBUTION CIRCUITS
HOUSEHOLD CONNECTIONS
CORE IDENTIFICATION
BY COLOR STRIPE
CHEMICAL PERFORMANCE
Chemical & UV & Oil resistance:Good
MECHANICAL PERFORMANCE
Minimum bending radius:x18 cable diameter
FIRE PERFORMANCE
N/A
THERMINAL PERFORMANCE
XLPE Insulation
Maximum service temperature:90℃
Maximum short-circuit temperature:250℃(max. 5s)
Other Properties
APPROVALS
N/A
INSTALLATION CONDITIONS
OPEN AIR
CABLE MARKING
OIL INK PRINTING
LASER PRINTING
EMBOSSING PRINTING
PACKAGING
BY ROLL
BY POLYWOOD OR WOODEN OR STEEL-WOODEN REEL/DRUM
CONSTRUCTION
1. Conductor: 
 
Aluminium conductor, round stranded compressed (RM)
 
2. Insulation:
 
XLPE compound, UV-resistant
 
Stranding:
 
Around a load-bearing element of high traction resistance that can be made of aluminum or aluminum alloy. One, two or three conductors for phase, being able to carry one or two additional conductors for public lighting.
 
DESCRIPTION
 
Self-supporting isolated and projected cable
 
SIP-1 AMKA (Finland)
 
Self-supporting wire with aluminum conductors, insulated from light-stabilized cross-linked polyethylene, with zero bearing insulated aluminum alloy conductor. Wires with a zero carrier core of 50 mm2 or more can be made with one, two or three auxiliary cores. Nominal cross section of auxiliary conductors for outdoor lighting circuits 16, 25 or 35 mm2, for control circuits 1.5; 2.5 or 4 mm2. Lighting conductors with a cross section of 16 mm2 only stranded
 
SIP-2 Torsada (France)
 
Self-supporting wire with aluminum conductors, insulated from light-stabilized cross-linked PE, with zero load-bearing insulated aluminum alloy conductor
 
SIP-3 SAX (Finland) PAS-W (Poland)
 
Protected self-supporting wire with a conductive core made of aluminum alloy, with protective insulation made of light-stabilized cross-linked PE
 
SIP-4, SIP-5 ALUS, EX Four Core (Sweden), AsXsn (Poland)
 
Self-supporting insulated wire without bearing element, with aluminum conductors with light-stabilized cross-linked PE insulation. Stranded conductors with a cross section of 16 mm2 (SIP-4) or a cross section of 16 to 150 mm2 (SIP-5). Conductors with a cross section of 16 mm2 for SIP-5 can be seamless
 
PARAMETER

SIP-1 0.6/1kV
SIP-2 0.6/1kV
SIP-3 20kV
SIP-3 35kV
SIP-4 0.6/1kV
Number of Cores
Cross Section
Nominal thickness of
phase insulation
Overall
Diameter
Weight Maximum Conductor
Resistance Ω/Km
No.×mm2 mm mm Kg/Km Phase
1x16+1x25 1.3 15 135 1.910
3x16+1x25 1.3 22 270 1.910
3x25+1x35 1.3 26 390 1.200
3x35+1x50 1.3 30 530 0.868
3x50+1x50 1.5 32 685 0.641
3x50+1x70 1.5 35 740 0.641
3x70+1x70 1.7 37 930 0.443
3x70+1x95 1.7 41 990 0.443
3x95+1x70 1.7 41 1190 0.320
3x95+1x95 1.7 43 1255 0.320
3x120+1x95 1.7 46 1480 0.253
3x150+1x95 1.7 48 1715 0.206
3x185+1x95 1.9 52 2330 0.164
3x240+1x95 1.9 56 2895 0.125
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Number of Cores
Cross Section
Nominal thickness of
phase insulation
Overall
Diameter
Weight Maximum Conductor
Resistance Ω/Km
No.×mm2 mm mm Kg/Km Phase
3x16+1x25 1.3 24 308 1.910
3x16+1x54.6 1.3 28 427 1.910
3x25+1x35 1.3 27 424 1.200
3x25+1x35 1.3 30 512 1.200
3x25+1x54.6 1.3 31 571 1.200
3x35+1x50 1.3 32 606 0.868
3x35+1x54.6 1.3 34 727 0.868
3x50+1x50 1.5 35 762 0.641
3x50+1x54.6 1.5 36 798 0.641
3x50+1x70 1.5 39 973 0.641
3x70+1x70 1.7 40 1010 0.443
3x70+1x95 1.7 41 1087 0.443
3x95+1x70 1.7 43 1240 0.320
3x95+1x95 1.7 45 1319 0.320
3x120+1x95 1.7 48 1553 0.253
3x150+1x95 1.7 50 1787 0.206
3x185+1x95 1.9 55 2403 0.164
3x240+1x95 1.9 60 2968 0.125
Expand More
Number of Cores
Cross Section
Nominal thickness of
phase insulation
Overall
Diameter
Weight Maximum Conductor
Resistance 
No.×mm2 mm mm Kg/Km Ω/Km
1x35 2.3 12 165 0.986
1x50 2.3 13 215 0.720
1x70 2.3 15 282 0.630
1x95 2.3 16 364 0.363
1x120 2.3 18 445 0.288
1x150 2.3 19 540 0.236
1x185 2.3 21 722 0.188
1x240 2.3 24 950 0.145
Expand More
Number of Cores
Cross Section
Nominal thickness of
phase insulation
Overall
Diameter
Weight Maximum Conductor
Resistance Ω/Km
No.×mm2 mm mm Kg/Km Phase
1x35 3.5 14 209 0.986
1x50 3.5 16 263 0.720
1x70 3.5 17 334 0.630
1x95 3.5 19 421 0.363
1x120 3.5 20 518 0.288
1x150 3.5 22 618 0.236
1x185 3.5 24 808 0.188
1x240 3.5 26 1045 0.145
Expand More
Number of Cores
Cross Section
Nominal thickness of
phase insulation
Overall
Diameter
Weight Maximum Conductor
Resistance Ω/Km
No.×mm2 mm mm Kg/Km Phase
2x16 1.3 15 139 1.910
4x16 1.3 18 278 1.910
2x25 1.3 17 196 1.200
4x25 1.3 21 392 1.200
Expand More
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