Featuring breakthrough thermal management, our active liquid cooling system delivers 2X faster heat dissipation versus air cooling, maintaining optimal 40°C~60°C operating range with 98% round-trip efficiency and zero thermal runaway risk. Engineered for 24/7 megawatt-scale operation, this is the ultimate solution for utility-scale storage and zero-carbon microgrids.
Liquid cooling enhances thermal management for NaCP 160Ah batteries, ensuring uniform temperature control, prolonged battery life, and stable performance in high-power or harsh-environment applications.
Sodium-ion offers a safer, more cost-effective solution with comparable cycle life and better thermal stability. It avoids supply constraints associated with lithium and cobalt, making it ideal for long-term scalable projects.
Liquid cooling provides precise and efficient heat dissipation, preventing localized overheating, reducing thermal stress, and enabling the system to maintain high efficiency and safety over thousands of cycles.
Each NaCP 160Ah cell typically operates at 3.0–3.2V, resulting in an energy content of ~480–512Wh per cell. These are assembled into modules and racks to build systems ranging from 100kWh to multi-MWh.
Applications include solar energy time-shifting, peak shaving, demand charge reduction, backup power for factories, data centers, EV charging stations, and remote microgrid support.
NaCP 160Ah batteries offer a cycle life of 3000–5000 cycles, similar to LFP, with strong performance retention and higher safety in temperature-sensitive environments.
Yes. Sodium-ion BESS with liquid cooling are designed with modular architecture. You can easily scale from hundreds of kWh to several MWh by adding standard racks and PCS/inverter units.
Sodium-ion chemistry is less prone to thermal runaway than lithium-ion. Combined with liquid cooling and fire monitoring systems, the risk of fire is significantly reduced, ensuring safe operation.
Yes. These systems support demand response, frequency regulation, and load shifting, and can participate in ancillary service markets just like lithium-based systems, with lower operational risks.
Maintenance includes periodic coolant level checks, system diagnostics via EMS/BMS, filter replacement, and performance inspections. The system is largely automated and designed for low O&M costs.
At Highjoule, we are committed to supporting our agents with reliable energy storage solutions that promotesuccess and sustainability. By becoming a Highjoule distributor, you'll gain access to quality products, dedicatedsupport, and the chance to contribute to the global energy transition.
Focusing on Energy Storage and Communication Solutions for 20+years
Focusing on Energy Storage and Communication Solutions for 20+years
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