Battery(ce) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Jul 16, 2025~Aug 12, 2025
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Battery Product List

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Lithium-ion battery 12V specification [Iron phosphate/Built-in BMS]

A 12V lithium iron phosphate ion battery that is easy to replace from a lead-acid battery. It enables long life and high current charge and discharge, and peripheral devices are also available.

Suitable for 12V batteries used in automobiles, ships, electric carts, and for cycle operation in standalone solar power systems for storage batteries such as outdoor lights, sign lights, and indicator lights. For detailed information, please visit the website below. https://offgrid-solar.jp/html/page212.html 【Features】 - Cycle life: 5300 cycles (at 80% depth of discharge) - Cell balance maintenance and safety circuit design with BMS - Capable of high current input/output: 1C during charging, 3C during discharging (Epsilon is 2C) - Epsilon 150Ah type operates at low temperatures and includes Bluetooth communication *For more details, please refer to the PDF document or feel free to contact us.

  • Photovoltaic power generation system (solar system, energy-saving housing, electricity sales business)

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Industrial storage batteries that contribute to the decarbonization of school facilities and disaster prevention measures.

Promoting measures against global warming, environmental education, and initiatives aimed at decarbonization, as well as the introduction of industrial storage batteries as a power source during disasters, are effective.

▼Benefits of Introducing Storage Batteries in School Facilities With the promotion of the Ministry of Education, Culture, Sports, Science and Technology, the introduction of storage batteries in school facilities is progressing. Not only schools and community centers but also welfare facilities are highly likely to serve as evacuation centers, and more facilities are considering the introduction of renewable energy equipment and storage batteries as measures for disaster preparedness. About half of public elementary and junior high schools have been in use for over 40 years, and as the aging of school facilities reaches its peak, there is a demand for environmental burden reduction measures in school facilities aimed at achieving carbon neutrality by 2050 through "energy conservation" via high insulation and high-efficiency air conditioning, as well as "energy creation" using renewable energy. Furthermore, as a countermeasure against increasingly severe disasters, it has become essential to strengthen the evacuation functions of facilities, including indoor gymnasiums that serve as community evacuation centers. The introduction of industrial storage batteries combined with solar power generation in school facilities is expected to not only secure power supply during emergencies and enhance evacuation functions but also serve as educational materials for environmental education, reduce costs, and lower environmental impact. More school facilities are considering the introduction of renewable energy equipment and storage batteries as measures for disaster preparedness.

  • Solar power generation equipment

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Disaster measures in schools and the use of industrial storage batteries in decarbonization-leading regions.

The introduction of storage batteries in schools in decarbonization-leading regions brings multifaceted benefits such as improved energy efficiency, enhanced safety during disasters, and the promotion of environmental education.

"Decarbonization Leading Regions" refers to areas designated by the Japanese government as regions that are particularly engaged in advanced initiatives aimed at reducing greenhouse gas emissions. In these regions, efforts are made to introduce renewable energy tailored to local characteristics, utilize energy efficiently, and implement advanced technologies for decarbonization, serving as model cases for future nationwide deployment. Additionally, these initiatives contribute to the economic growth of the region and the establishment of a sustainable society. ▼ Effects of Introducing Industrial Storage Batteries in Schools School facilities are important public assets in the community and serve various roles. In decarbonization leading regions, the use of industrial storage batteries in school facilities becomes one of the important initiatives that lead to energy efficiency, securing power during disasters, and further contributes to environmental education. ▼ Benefits of Introducing Industrial Storage Batteries in School Facilities - Strengthening disaster prevention functions as evacuation centers in collaboration with the community (BCP measures / securing power during emergencies) - Reducing environmental impact - Educational materials for environmental education - Reducing electricity costs after installation - Effective use of space

  • Solar power generation equipment

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