Instantly accessible high-output power at sites without electrical infrastructure.
Transforming ESS from "installed equipment" to a "mobile power asset" through high-output, high-safety battery technology.
The core battery pack of the indego Mobile ESS system, enabling indego's mobility and scalability.
High-Output
Custom Design
Safety
Thermal Reliability
Key Features
Equipped with EV-grade cells capable of high-output charge & discharge
Custom-designed for mobile ESS with vibration and shock absorption
BMS and protection features ensuring safety
High-reliability thermal design maintaining performance under continuous operation
Product Specifications
MoBatt 55kWh
Min
Nominal (Typical)
Max
Unit
Nominal Voltage
Single
352.32
V
Pair
704.64
Voltage Range
Single
288
-
408
V
Pair
576
-
816
Battery Weight
≤ 360.0 ± 5%
kg
Dimension
Width
1405
1415
1425
mm
Length
1331.8
1341.8
1351.8
Height
120.3
131.3
141.3
Applications
Compatible with indego Mobile and indego Station.
FAQ
Frequently Asked Questions
A
aeonus' MoBatt uses EV-grade cells proven for high-output charge and discharge.
This allows MoBatt to maintain power quality even under conditions of high instantaneous loads and significant output fluctuations.
A
aeonus' MoBatt is designed with a vibration- and shock-absorbing structure built for vehicle transport and on-site mobility. Through optimized cell mounting, pack structure, and load distribution design, impacts during transport are prevented from being directly transmitted to the cells and electrical components — enabling safe operation in mobile environments without compromising service life.
A
aeonus' MoBatt ensures safety through a multi-layered protection structure centered on the BMS.
The BMS monitors voltage, current, and temperature in real time, with an active safety design that immediately controls and disconnects the system in cases of overcharge, over-discharge, overcurrent, or overtemperature.
A
aeonus' MoBatt features a high-reliability thermal design built for continuous operation. By minimizing temperature variations between cells and structurally preventing localized heat concentration, the pack maintains both output performance and safety even during prolonged high-power operation.