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Scaling India’s Battery Manufacturing Capabilities with Safety-First Lithium Technology


IndIia’s transition toward electric mobility and clean energy is reshaping the country’s industrial priorities. As electric vehicles gain momentum and renewable energy systems expand, batteries have become a strategic component rather than a supporting one. The ability to manufacture safe, efficient, and high-performance batteries locally is now essential for sustaining this growth. In this evolving landscape, Una Eco is working toward strengthening India’s battery manufacturing ecosystem through technology-led collaboration and localized production.

Batteries as a Strategic Infrastructure Component

The PDF highlights that mobility functions as the backbone of a nation’s economy, enabling the movement of people, goods, and services. As the transportation sector shifts from fossil fuels to electric power, batteries emerge as the core energy source driving this change.

Beyond vehicles, batteries are also central to energy storage systems that support renewable power integration and grid stability. Their role is no longer limited to backup; they actively influence efficiency, reliability, and sustainability across multiple sectors. This growing dependence places higher expectations on battery safety, performance consistency, and lifecycle durability.

A Collaborative Model Rooted in Expertise

Una Eco Systems Private Limited operates as a joint venture between VD Networks India Pvt. Ltd. and Fine Eco Solution Corporation (FES) of Japan. This structure brings together complementary strengths that are critical for large-scale battery manufacturing.

VD Networks contributes strong execution capabilities, infrastructure development, and operational experience within India. FES adds advanced Japanese Battery Technology, backed by extensive research and manufacturing expertise in lithium-ion systems. The collaboration enables Una Eco to bridge the gap between global technology standards and local market requirements.

Hi-LMO™ Technology and Safety-Oriented Design

One of the most significant highlights from the PDF is Hi-LMO™, a lithium manganese oxide–based battery technology developed through Japanese technical collaboration. This chemistry is designed to prioritize safety without compromising performance.

Hi-LMO™ batteries demonstrate low internal impedance, allowing efficient energy flow during charging and discharging. This reduces energy loss and minimizes heat generation, which is especially important in high-temperature environments like India. The technology also offers excellent cell balance, helping maintain stable voltage and consistent output throughout the battery’s lifecycle.

These characteristics make Hi-LMO™ particularly suitable for applications that demand reliability under continuous and high-load usage.

Manufacturing Lithium-Ion Batteries in India

Local manufacturing is a central pillar of Una Eco’s strategy. As outlined in the PDF, the company is establishing a greenfield lithium-ion battery assembly facility at Sanand GIDC in Gujarat. The plant is being commissioned in phases and represents a significant investment in domestic production capacity.

By manufacturing battery modules and packs within India, Una Eco aims to reduce import dependency while maintaining stringent quality standards. This approach also enables faster customization and better alignment with Indian operating conditions, strengthening the country’s position among Lithium Battery Manufacturers in India.

Supporting Diverse Mobility Applications

The PDF details Una Eco’s focus on batteries for multiple vehicle categories, including electric two-wheelers and passenger vehicles. Two-wheelers dominate India’s EV landscape and require battery systems that are lightweight, efficient, and capable of frequent charging cycles.

Passenger vehicle applications, on the other hand, demand higher energy capacity, stable power delivery, and enhanced safety features. Hi-LMO™ technology supports both segments by offering consistent performance, strong thermal stability, and long service life. This flexibility allows Una Eco to address varied mobility requirements with a unified technology platform.

Energy Storage Beyond Transportation

In addition to mobility, Una Eco’s roadmap extends into stationary battery applications. The PDF highlights battery systems designed for hybrid inverters, battery grids, and renewable energy integration. As solar power adoption increases, reliable storage becomes essential for balancing generation and consumption.

Lithium-based Energy Storage Solutions enable efficient storage of excess energy and controlled power release when needed. Their high usable energy and stable cycling behavior make them suitable for continuous operation in residential, commercial, and infrastructure settings.

Intelligent Systems and Integrated Control

Another key aspect emphasized in the PDF is system integration. Una Eco plans to develop intelligent battery controller modules, vehicle control units, and IoT-enabled monitoring systems. These components allow real-time performance tracking, optimized charging behavior, and improved safety management.

Such integration transforms batteries from standalone components into intelligent energy systems capable of adapting to different operating conditions and usage patterns.

Conclusion: Strengthening the Foundation of India’s Energy Transition

The information in the PDF positions Una Eco as a company focused on building long-term value within India’s EV and energy storage sectors. By combining Japanese technical expertise, safety-focused lithium chemistry, and localized manufacturing, the company is contributing to a more resilient battery ecosystem.

As electric mobility and renewable energy continue to scale, advanced lithium battery technologies like Hi-LMO™ will play a critical role in supporting safe, efficient, and sustainable energy systems across India.


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