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38.4kWh ESS (High Voltage) LiFePO4 Battery – 384V 100Ah
SKU: AQ-ESS-384100
Voltage: 384 V
Capacity: 100 Ah
Power: 38.4 KWh
Cycle Life: 6000
Voltage: 384 V
Capacity: 100 Ah
Power: 38.4 KWh
Cycle Life: 6000
MRP:
₹1,110,144 Original price was: ₹1,110,144.₹812,784Current price is: ₹812,784.
FAST CHARGING
ZERO MAINTENANCE
5 YEAR WARRANTY
SOLAR READY
- BRAND NEW & 100% GENUINE
- Premium Yet Affordable
- Built for Durability
Note: Datasheet will be sent to your email
| ESS battery Application |
High Voltage |
|---|
Key Features
⚡ High-Capacity Energy Storage
Provides 38.4kWh of nominal energy for applications requiring substantial energy storage capacity.
🔋 High-Voltage ESS Architecture
The 384V configuration is designed for compatible high-voltage energy storage applications.
🌱 LiFePO4 Battery Technology
Uses LiFePO4 chemistry for a stable and reliable energy storage solution.
📦 Modular Battery Architecture
Eight individual battery modules are combined to create the complete high-voltage ESS rack.
☀️ Solar Energy Storage
Suitable for storing energy generated from compatible solar power systems for later use.
🔗 BMU & PDU Integration
The rack incorporates BMU and PDU with the eight-module series configuration.
🛡️ Battery Management & Protection
The battery management system monitors key battery parameters and supports fault detection and cell balancing.
📈 High-Capacity System Design
The 38.4kWh configuration is suited to applications requiring greater energy storage capacity.
🏢 Residential, Commercial & Industrial Applications
The datasheet identifies residential, commercial, and industrial applications for the battery system.
Specification
Product Highlights
- Nominal Voltage: 384V
- Operating Voltage: 300V–438V
- Nominal Capacity: 100Ah
- Nominal Energy: 38.4kWh
- Cluster Configuration: 8S 1P (Single Clusters)
- Key Components: Eight modules in series with BMU & PDU
- Battery Chemistry: LiFePO4
- Rack Weight: Approx. 450 kg
- Rack Colour: White
- Dimensions (L × W × H): As per Design
Module Specifications
- Nominal Voltage: 48V
- Operating Voltage: 37.5V–54.75V
- Continuous Power: 4.8kW
- Continuous Charging Current: 25A
- Nominal Discharge Current: 100A
- Capacity: 100Ah
- Dimensions: As per Design
- Weight (Approx.): 50 kg
- Mounting Option: Floor Mount
Product Specifications
- Cluster Configuration: 8S 1P (Single Clusters)
- Key Components: Eight modules in series with BMU & PDU
- Nominal Capacity: 100Ah
- Nominal Energy: 38.4kWh
- Nominal Voltage: 384V
- Operating Voltage: 300V–438V
- Weight: Approx. 450 kg
- Rack Colour: White
- Dimensions (L × W × H): As per Design
Description
The 38.4kWh ESS (High Voltage) LiFePO4 Battery – 384V 100Ah is a high-capacity energy storage solution designed for solar energy storage, commercial backup, industrial energy storage, and renewable energy applications. With a 384V nominal voltage and 100Ah capacity, it provides 38.4kWh of nominal energy in a high-voltage rack configuration.
The system is built using eight 48V battery modules connected in series with BMU and PDU, creating an 8S 1P high-voltage ESS configuration. The complete rack is specified at approximately 450kg, with an operating voltage range of 300V–438V.
Applications
- Solar Energy Storage
- Commercial Energy Storage
- Industrial Energy Storage
- Renewable Energy Storage
- Commercial Backup Power
- Energy Management Systems
- Microgrid Applications
- Large-Scale Solar Storage
- Residential Energy Storage
- Commercial Buildings
- Industrial Facilities
- High-Capacity ESS Projects
Compatible Solar Systems
A 38.4kWh ESS battery can be considered for medium to large solar installations depending on daily energy consumption, solar generation, backup requirements, inverter capacity, and overall system configuration.
| SOLAR SYSTEM SIZE | RECOMMENDED BATTERY |
|---|---|
| 10kW solar system | 20–30kWh ESS battery |
| 15kW solar system | 30–40kWh ESS battery |
| 20kW solar system | 30–45kWh ESS battery |
| 30kW solar system | 40kWh+ ESS battery |
Note: These are general sizing guidelines and should not be treated as fixed engineering recommendations. The appropriate battery capacity depends on actual electricity consumption, solar generation, connected load, required backup duration, inverter/system configuration, and other project requirements.
To estimate your requirements, use the Electricity Load Calculator and Inverter Size Calculator.
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