A dedicated battery pack for mobile ESS, integrating high-output EV cells, a structure built for mobile environments, intelligent BMS protection, and a high-reliability thermal design for continuous operation.
Battery Pack
A dedicated battery pack for mobile ESS, integrating high-output EV cells, a structure built for mobile environments, intelligent BMS protection, and a high-reliability thermal design for continuous operation.
The inverter/converter transforms power into the required form, delivering stable conversion for immediate on-site use.
Inverter / Converter
The inverter/converter transforms power into the required form, delivering stable conversion for immediate on-site use.
The distribution panel safely delivers power, providing stable distribution across multiple devices.
Distribution Panel
The distribution panel safely delivers power, providing stable distribution across multiple devices.
The BMS monitors voltage, current, and temperature of battery cells in real time to precisely calculate SOC/SOH, and communicates energy status and available power to external systems.
BMS
The BMS monitors voltage, current, and temperature of battery cells in real time to precisely calculate SOC/SOH, and communicates energy status and available power to external systems.
Serving as the brain of the entire system, the controller manages battery status and power flow in real time.
Controller
Serving as the brain of the entire system, the controller manages battery status and power flow in real time.
Data starting from the battery
enables safe power operation across the entire system.
aeonus's energy system monitors battery status and power flow in real time.
Sensors and the BMS collect and analyze data including voltage, current, and temperature of each battery cell.
This data is sent to the system controller, which evaluates power usage and generates control signals for safe operation.
Power keeps flowing.
Risks are stopped.
aeonus's ESS automatically controls output and protection functions based on battery status and power usage conditions. The system detects risks such as overcharge, over-discharge, overheating, and overload in real time. When abnormal conditions occur, it adjusts power output or safely shuts down the system.