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FAQ

1. What is the configuration of a 100kWh air-cooled LFP energy storage system?

A 100kWh system typically consists of 280Ah LFP cells arranged in series-parallel configurations (e.g., 1P32S per module, multiple modules in parallel), integrated with a BMS, air-cooled cabinet, PCS inverter, and EMS. It delivers stable DC output and supports AC-coupling for grid interaction.

2. How does air cooling manage heat in a 100kWh LFP battery system?

The system uses high-efficiency axial or centrifugal fans to drive airflow across cell surfaces. Paired with temperature sensors and smart controllers, the cooling system dynamically adjusts fan speed to maintain safe thermal conditions and extend battery life.

3. What are the safety features of the 100kWh air-cooled LFP storage cabinet?

The system includes BMS-level protections (overvoltage, undervoltage, overcurrent, overtemperature), EMS alarms, airflow fault detection, smoke sensors, and optional aerosol fire suppression. The cabinet design follows IEC and UL standards.

4. What are the dimensions and installation requirements for a 100kWh air-cooled system?

The system is typically housed in an IP54-rated outdoor cabinet or indoor rack with footprint around 1.5–2.5 m². It requires proper ventilation space, ambient temperature control (recommended 0–35°C), and stable concrete foundation or platform.

5. What are typical applications for a 100kWh air-cooled LFP system?

Ideal for industrial peak shaving, commercial load shifting, PV-storage hybrid systems, telecom base stations, data centers, and EV charging stations. Air cooling is particularly suited for moderate environments with stable ambient conditions.

6. How long is the expected lifespan and warranty of the system?

With ≥6000 cycles and proper thermal management, the system lifespan is 10–15 years. Highjoule provides 5–10 year product warranties and optional O&M packages, ensuring long-term reliability and performance.

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