- Exide Industries is advancing its Bengaluru lithium-ion facility with production targeted for FY2027 and early customer sampling in Q1 FY2027.
- The plant will start with 6 GWh capacity and scale to 12 GWh, supporting both cylindrical and prismatic cells using LFP and NMC chemistries.
Exide Industries has confirmed steady progress in establishing its greenfield lithium-ion cell manufacturing facility in Bengaluru through its subsidiary Exide Energy Solutions Limited. The project remains aligned with its planned operational timeline, targeting full-scale production readiness during FY2027. This development marks a significant step in strengthening domestic battery manufacturing capabilities in India, particularly as demand for advanced energy storage solutions continues to grow across electric mobility and stationary applications.
Production Timeline and Operational Milestones
The manufacturing roadmap outlines a phased production ramp-up beginning with cylindrical cell lines, which are expected to start customer sample deliveries by Q1 FY2027. Following this, prismatic cell lines will move into product trial phases shortly thereafter. Key pre-production activities such as installation, validation, customer sampling, and homologation are already in advanced stages, indicating strong execution momentum and readiness for industrial-scale manufacturing.
Investment and Capacity Expansion Plan
During Q4 FY2026, Exide Industries invested INR 6 billion into its subsidiary to accelerate project development. The Bengaluru facility is designed with an initial production capacity of 6 GWh, with scalability provisions to expand up to 12 GWh based on future demand and market conditions. This flexible capacity approach enables the company to adapt to evolving battery requirements across automotive and energy sectors while maintaining cost efficiency and operational scalability.
Battery Technology and Manufacturing Scope
The plant will operate four production lines covering both cylindrical and prismatic lithium-ion cell formats. It will support manufacturing across LFP (Lithium Iron Phosphate) and NMC (Nickel Manganese Cobalt) chemistries, enabling a diversified product portfolio. This dual-chemistry strategy positions Exide to cater to varied performance, safety, and cost requirements across applications, including electric vehicles, energy storage systems, and industrial use cases.
Planned Production Configuration Overview
The facility structure integrates multiple cell formats and chemistries to ensure broad application coverage and technological flexibility.
| Parameter | Details |
|---|---|
| Initial Capacity | 6 GWh |
| Scalable Capacity | 12 GWh |
| Cell Formats | Cylindrical, Prismatic |
| Chemistries | LFP, NMC |
| Production Lines | 4 Lines |
Strategic Significance for Domestic Battery Ecosystem
The development of this facility reinforces India’s ambition to localize advanced battery manufacturing and reduce reliance on imports. By investing in both infrastructure and diversified chemistry capabilities, Exide Industries is positioning itself as a key contributor to the country’s energy transition. The Bengaluru plant is expected to support growing electrification trends, particularly in the automotive sector, while also enabling supply chain resilience and technological self-sufficiency.
Frequently Asked Questions
When will Exide Industries’ lithium-ion plant in Bengaluru start production?
The lithium-ion manufacturing facility is expected to become operational during FY2027, with initial customer sample deliveries beginning earlier. Cylindrical cell production lines are planned to start supplying samples by Q1 FY2027, followed by prismatic cell trials. The project is currently in advanced stages of installation, validation, and homologation, indicating readiness for industrial operations. This phased approach ensures quality validation before full-scale commercial production begins.
What is the planned capacity and technology scope of the Bengaluru battery plant?
The facility will start with an initial production capacity of 6 GWh, which can be expanded up to 12 GWh based on demand. It includes four production lines designed for both cylindrical and prismatic lithium-ion cells. The plant supports LFP and NMC chemistries, enabling flexibility across different applications such as electric vehicles and energy storage. This diversified configuration ensures adaptability to evolving market and performance requirements.
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