Brief: Want to know what makes the Turtle Series 20ft Liquid-Cooled Energy Storage Container so effective for large-scale projects? We walk you through its high-density design, global transport compatibility, and robust all-weather performance, showcasing how it delivers reliable power for utility and industrial applications.
Related Product Features:
Delivers 6.25MWh of rated energy with a high energy density of 430Wh/L, utilizing long-life, zero-degradation LFP battery cells.
Features intelligent liquid cooling and operates efficiently from -30°C to 55°C, with performance adjustments above 45°C.
Achieves over 90% system efficiency and supports up to 8000 charge-discharge cycles for long-term reliability.
Designed for global use, meeting 99% of transport standards and capable of building a 50MWh system with just 8 containers.
Offers 30% higher energy density per unit area and reduces land usage by 20%, lowering overall system integration costs by 15%.
Provides robust protection with IP55 rating, aerosol and water fire protection systems, and operates at altitudes up to 4000m.
Includes self-powered or external-powered auxiliary supply, RS485/CAN communication, and Modbus TCP/CAN2.0 protocol support.
Compact 20-foot container dimensions (6058*2438*2896mm) with a weight of approximately 52 tons for efficient deployment.
FAQs:
What is the energy capacity and density of this storage system?
The Turtle CL6.25 system has a rated energy of 6.25MWh and a high energy density of 430Wh/L, using long-life LFP battery cells for compact, high-performance storage.
How scalable is this system for utility-scale projects?
It is highly scalable; just 8 of these 20-foot containers can build a 50MWh storage system, and it meets 99% of global transport standards for easy deployment.
What are the operating conditions and safety features?
It operates from -30°C to 55°C (with reduction above 45°C) and up to 4000m altitude, featuring IP55 protection, aerosol and water fire suppression, and active warning systems for safety.
How does the system contribute to cost and space efficiency?
It offers 30% higher energy density per unit area, reduces land usage by 20%, and lowers system integration costs by 15% through its simplified, compact design.