On July 11, 2025, Shenzhen Tuobang Co., Ltd. completed the shipment of a 1MW/2.236MWh liquid cooled energy storage container system in Huizhou, Guangdong Province. The system will be deployed in an industrial plant in Haryana, India and connected to the grid for operation. The successful implementation of this megawatt hour industrial and commercial energy storage system project fully demonstrates Shenzhen Topband Co., Ltd.'s leading strength in customized design and integration of high-capacity energy storage systems, marking an important breakthrough in the company's overseas industrial and commercial energy storage market layout. As one of the fastest-growing economies in the world, the demand for industrial electricity in the Republic of India continues to rise. However, due to limited infrastructure conditions, the local power grid has long faced challenges such as equipment aging and unstable power supply. In this context, the liquid cooled energy storage system developed by Shenzhen Tuobang Co., Ltd. provides customers with a more cost-effective and environmentally friendly energy solution by replacing traditional diesel generators.
The project adopts a highly integrated design with a standard 20 foot container height, and the main technical highlights include:
In terms of safety protection, it adopts 280Ah lithium iron phosphate battery cells, integrates multiple electrical protection functions, and is equipped with a dual redundant system of perfluorohexane and water fire protection
In terms of temperature control performance, the intelligent liquid cooling system can control the temperature difference of the battery cells within 5 ℃ and support wide temperature range operation from -20 ℃ to 55 ℃
In terms of intelligent management, it is equipped with the "Tuobang Zero Carbon Cloud" intelligent management platform, which enables millisecond level data collection and AI optimized charging and discharging strategies
The solution developed by Shenzhen Topband Co., Ltd. is specially optimized for the high-temperature and high humidity environment in India, and its successful implementation provides a replicable technological paradigm for other emerging markets such as Southeast Asia. The implementation of this project not only responds to the Indian government's policy orientation of promoting energy independence and net zero emissions, but also lays a solid foundation for Shenzhen Topband Co., Ltd. to further expand its global market. By providing stable and reliable energy storage solutions, the power supply guarantee capability of industrial enterprises in Haryana, India has been effectively enhanced, and the production difficulties caused by unstable local power grids have been solved; Secondly, the liquid cooled energy storage system replaces traditional high pollution diesel generators with zero emissions and low noise environmental characteristics, significantly reducing the energy consumption cost and carbon emissions level of enterprises; Once again, the project actively responds to the Indian government's policy orientation of promoting energy independence and net zero emissions, providing a practical and feasible technological path for the green transformation of the local energy structure; Finally, as a benchmark project for innovative research and development of Chinese energy storage enterprises, it not only verifies the technological adaptability of Shenzhen Topband Co., Ltd. in high temperature and high humidity environments, but also sets a successful example for China's energy storage equipment to "go global" and accumulates valuable experience for future development in emerging markets such as Southeast Asia. The implementation of this project fully demonstrates the technological strength and responsibility of Chinese enterprises in the global energy transformation process. (This article is from the official website of Jian Dao www.seetao.com. Reproduction without permission is prohibited, otherwise it will be prosecuted. Please indicate Jian Dao website+original link when reprinting.) Jian Dao website new energy column editor/Yang Beihua
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