Acrologic Cables manufactures premium-quality ACSR and AAAC Overhead Conductors engineered for efficient and reliable transmission and distribution of electrical power.
Manufactured using high-quality aluminium, aluminium alloy, and galvanized steel reinforcement where applicable, our overhead conductors combine excellent electrical conductivity, mechanical strength, durability, and dependable long-term performance.
Designed for demanding overhead power networks, Acrologic Conductors provide reliable solutions for Transmission Lines, Distribution Networks, Power Utilities, Substations, Rural Electrification, and Infrastructure Projects.
ACSR Standard: IS 398 (Part 2)
AAAC Standard: IS 398 (Part 4)

Overhead transmission and distribution networks require conductors capable of carrying electrical power efficiently while withstanding mechanical loads and challenging outdoor conditions.
Acrologic offers ACSR – Aluminium Conductor Steel Reinforced and AAAC – All Aluminium Alloy Conductors for a broad range of overhead power applications.
Our conductors are designed with a strong focus on:
High Conductivity | Mechanical Strength | Durability | Reliable Transmission | Long Service Life
Aluminium Conductor Steel Reinforced
Acrologic ACSR Conductors combine aluminium strands with a steel reinforced core to provide an effective balance of electrical conductivity and mechanical strength.
The aluminium component provides efficient electrical conductivity, while the steel reinforcement enhances tensile strength, making ACSR conductors particularly suitable for overhead transmission and distribution lines requiring dependable mechanical performance over longer spans.
Standard : IS 398 (Part 2)
Key Features
- Excellent Electrical Conductivity
- High Mechanical Strength
- Steel Reinforced Construction
- Suitable for Long Spans
- Reliable Transmission Performance
- Durable Construction
- Long Service Life
Applications
Transmission Lines | Distribution Networks | Utility Networks | Power Infrastructure
All Aluminium Conductors
AAC – All Aluminium Conductors are manufactured using high-quality aluminium strands and designed to provide excellent electrical conductivity.
They are suitable for overhead electrical distribution applications where high conductivity is required and mechanical loading requirements are comparatively moderate.
Key Features
- High Electrical Conductivity
- Lightweight Construction
- Excellent Current Carrying Performance
- Reliable Power Distribution
- Easy Handling & Installation
- Consistent Long-Term Performance
Applications
Power Distribution Networks | Urban Distribution | Utility Networks | Short & Medium Span Applications
All Aluminium Alloy Conductors
AAAC – All Aluminium Alloy Conductors are manufactured using high-quality aluminium alloy to provide an excellent combination of electrical conductivity, mechanical strength, and durability.
Their improved strength-to-weight characteristics make them suitable for demanding overhead transmission and distribution applications.
Key Features
- Excellent Electrical Performance
- High Mechanical Strength
- Lightweight Construction
- Good Strength-to-Weight Ratio
- Reliable Overhead Performance
- Durable Construction
- Long Service Life
Applications
Transmission Networks | Distribution Networks | Utility Infrastructure | Overhead Power Lines
Connecting Power Across Transmission & Distribution Networks
- Transmission Networks
- Distribution Networks
- Utility Distribution Networks
- Residential Areas
- Rural Electrification
- Infrastructure Projects
Strength, Conductivity & Reliability
Acrologic Cables combines quality raw materials, precision manufacturing, advanced production processes, and stringent testing to deliver dependable overhead power solutions.
Our products are designed to provide:
High Conductivity | Mechanical Strength | Electrical Safety | Network Reliability | Durable Construction | Efficient Distribution | Long Service Life
From conventional overhead transmission conductors to modern insulated ABC distribution systems, our solutions support reliable power infrastructure across urban and rural networks.

