OVERVIEW
Double the power.
Half the losses. One smart upgrade.
Designed for a decarbonized world.
STRANDING
1350 - O Tempered Wires, (Annealed Aluminum Conductivity of 63% IACS)
CORE composition
Carbon Fiber Composite Core of high strength grade with galvanic layer for corrosion protection.
2x
more capacity than ACSR
28%
more aluminium content
10x
lower expansion than steel
40%
reduction in line losses
APPLICATIONS
For Markets that Move the World
ACCC Conductor solutions for infrastructure, industry, and innovation

Transmission & Distribution
solutions
Cost-effective
Right of Way Issues
Low Line Loss

Renewable Integration
solutions
Low Emissions
High Conductivity
Corrosion Resistance

Industrial Power
solutions
Stable Power
Continous Load
Thermal Performance

Smart Cities & Urbanization
solutions
Grid Modernization
Reconductoring
Faster Deployment
OVERVIEW
APPLICATIONS
VARIATIONS
FEATURES
SUCCESS STORIES
SPECIFICATIONS
DOWNLOAD
VARIATIONS
Variants That Match Your Vision
Multiple ACCC profiles, optimized for different conditions — from spans to sag limits
Casablanca (Plus) /
Copenhagen
Oriole
Dhaka /
Brahmaputra /
Warwick
Hyderabad /
Brahmaputra
FEATURES
Engineered for What the Grid Demands
From extreme loads to harsh climates, ACCC® conductors deliver unmatched performance across every challenge.
High reliability
Clean Power.
Every Hour.
ACCC’s carbon core reduces thermal sag by up to 60% compared to conventional steel-core conductors.
Reduced Line Losses
Save more power.
Waste far less.
ACCC cuts line losses by up to 30% vs. ACSR, improving overall grid efficiency.
High Capacity
Same Tower.
More Power.
Carries 2x the current of ACSR on the same corridor—ideal for congested or urban routes.
Cost Saving
Build Smarter.
Save Millions.
Lower losses and reuse of structures deliver long-term capex + opex savings.
Corrosion Resistant
No rust.
No worry.
Carbon core with galvanic barrier resists corrosion—even in marine or industrial zones.
LOW Emissions
Green-ready.
Grid-resilient.
Backed by global utilities, ACCC® supports long-term sustainability and emission reduction strategies.
Fast Execution
Quick Upgrades.
Minimal Shutdown.
Faster stringing and reduced sag help achieve up to 25% faster commissioning than traditional upgrades.
Low Weight
Light on Weight.
Heavy on Power.
High-efficiency conductor that delivers maximum ampacity with minimum stress on your towers.
extreme weather resistance
Storm Ready.
Heat Proof.
ACCC cuts line losses by up to 30% vs. ACSR, improving overall grid efficiency.
Specs
Complete specs, certifications, and customization options delivered upfront — helping you move from intent to order with speed and certainty
SPECIFICATIONS
Procurement-Ready, From Drawing to Delivery
Complete specs, certifications, and customization options delivered upfront — helping you move from intent to order with speed and certainty
Physical
Characteristics
Casablanca
Dhaka
Oriole
alumnium wires (nos)
16
38
22
core construction
1350 - O Tempered Annealed Aluminum Strands (63% IACS)
2 layer, trapezoidal shape
Carbon Fiber Composite Core
1350 - O Tempered Annealed Aluminum Strands (63% IACS)
2 outer layer & inner trapezoidal
Carbon Fiber Composite Core
1350 - O Tempered Annealed Aluminum Strands (63% IACS)
3 layer, trapezoidal shape
Carbon Fiber Composite Core
Cross section area
(MM2)
total area
332.7
alumnium / core
293 / 39.7
total area
795
alumnium / core
724 / 71
total area
795
alumnium / core
724 / 71
overall diameter (mm)
21
32.87
32.87
Electrical
Characteristics
rated strength (core)
85kN
151.7kN
151.7kN
rated strength (conductor)
101.9kN
192.2kN
192.2kN
dc resistance (°C)
0.0954°C
0.0387°C
0.0387°C
current capacity
at 180C (A)
1220A
2193A
2193A
Standards
APPLICABLE STANDARDS
ASTM B857, B609, B987
IEC 62219
BS EN 50540
ASTM B857, B609, B987
IEC 62219
BS EN 50540
ASTM B857, B609, B987
IEC 62219
BS EN 50540
FAQs
Got questions? We’ve got answers. Here’s everything you need to know about working with the Sterlite Team.
Core Design & Composition
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Manufacturing Capability
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Certification
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Quality
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Supply chain, Logistics & Packaging
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