MECC High Voltage Battery 314AH, the epitome of safety and reliability in the world of energy storage. This cutting-edge lithium iron phosphate battery system is specifically designed to cater to the demanding needs of UPS, home storage, and industrial as well as commercial energy storage fields. Whether you're looking to secure uninterrupted power supply, optimize home energy consumption, or enhance industrial energy capabilities, this battery energy storage system delivers the solution you need with unmatched versatility and reliability.
Detailed Product Features:
1. High-Efficiency LiFePO₄ Battery Technology
Delivers a long lifespan, enhanced safety, and high energy density
Maintains a 90% Depth of Discharge (DoD) for maximum energy utilization
2. Discharge and Charge Control
Enhanced control mechanisms allow for efficient management of both charging and discharging processes, optimizing performance and extending battery life.
3. Standardized Module Design
The system's modular design promotes ease of installation and scalability, allowing for straightforward integration into various energy storage applications. Up to 15 battery racks can be managed in parallel.
4. Safe, Reliable, and Long Life
Built with safety at its forefront, our battery system offers unmatched reliability and longevity, ensuring peace of mind for all users.
5. Flexible Capacity
The system's design supports capacity expansion, enabling customization to meet specific energy requirements, providing a tailored solution for every user.

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MODEL |
MECC153.6-314AH |
MECC204.8-314AH |
MECC256.0-314AH |
MECC307.2-314AH |
MECC358.4-314AH |
MECC409.6-314AH |
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Battery Type |
LiFePO4(LFP) |
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Battery Module |
51.2V 314AH |
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Number of Modules |
3PCS |
4PCS |
5PCS |
6PCS |
7PCS |
8PCS |
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Nominal Voltage(V) |
153.6V |
204.8V |
256.0V |
307.2V |
358.4V |
409.6V |
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Nominal Capacity(KWH) |
48KWH |
64KWH |
80KWH |
96KWH |
112KWh |
128KWH |
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Dimension(mm) |
575*800*1250 |
575*800*1530 |
575*800*1800 |
1080*800*1250 |
1080*800*1250 |
1080*800*1530 |
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Weight(kg) |
396 |
530 |
665 |
795 |
930 |
1060 |
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Operating Voltage |
134-172.8V |
179-230.4V |
224-288V |
268-345.6V |
313.6-403.2V |
358-460.8V |
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MAX Charge/Discharge Current |
200A(MAX); 100A(Recommended) |
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Remmended Charge/ |
200A(MAX); 100A(Recommended) |
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Cycle Life |
>6000. 25°C |
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BMS |
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BMS Monitoring PRM |
SOC, System voltage, current, cell voltage,cell temperature, module temperature |
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Communication |
CAN/RS-485/WIFI |
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GENERAL |
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Operating Temp Range |
-10℃-50℃ |
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Transport or Storage |
-20℃-60℃ |
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Humidity |
15% - 85% (No Condensing) |
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Installation |
Floor Installation |
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Cases


FAQ
Can the system be customized for deployment in remote, off-grid locations?
The off-grid optimized design makes it an excellent choice for remote installations. With self-consumption capabilities and the ability to operate independently from utility grids, it's ideal for rural electrification, mining operations, or island communities. The system can be configured with appropriate power electronics to create complete microgrid solutions that may incorporate solar, wind, or generator backup, providing reliable power where traditional grid connections are unavailable or unreliable.
What industry standards and certifications does this battery system comply with?
While specific certifications aren't visible in the image, systems of this class typically meet rigorous international standards including UL1973 for energy storage systems, IEC62619 for industrial batteries, and UN38.3 for transportation safety. The design incorporates requirements for electrical safety, thermal management, and backup power redundancy. These certifications ensure the system meets stringent safety and performance benchmarks for commercial and industrial deployment.
How does the system's technical versatility address diverse energy market needs?
The layered rack design with multiple voltage options (51.2V-716.8V) and clearly labeled application icons (for microgrid, V2G, peak shifting, etc.) demonstrates exceptional adaptability. Whether for commercial demand charge management, renewable energy time-shifting, emergency backup, or grid services participation, the system's comprehensive feature set addresses the full spectrum of modern energy storage requirements. This technical versatility future-proofs investments as energy markets evolve toward more dynamic, decentralized models.
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