Description
The REVOV E300 Lithium Battery is a high-capacity energy-storage solution designed for residential, commercial and industrial applications where reliable stored energy is required. With a 51.2V nominal voltage and 300Ah capacity, the E300 provides approximately 15.36kWh of nominal energy storage, making it suitable for larger solar, backup-power and off-grid installations.
The E300 uses Lithium Iron Phosphate (LiFePO₄) technology, a lithium chemistry well suited to stationary energy storage. REVOV’s published LiFePO₄ systems are designed for safety, reliability, longevity and regular daily cycling, with applications ranging from residential backup and solar storage to commercial, industrial, telecommunications and utility applications.
With its 51.2V architecture and substantial energy capacity, the E300 is suited to installations where a larger energy reserve is required. It can be integrated with compatible inverter and energy-management equipment to store renewable energy, provide backup during grid interruptions, reduce grid electricity consumption and support off-grid power requirements.
Key Specifications
| Specification | REVOV E300 |
|---|---|
| Brand | REVOV |
| Model | E300 |
| Battery Chemistry | Lithium Iron Phosphate (LiFePO₄) |
| Nominal Voltage | 51.2V |
| Nominal Capacity | 300Ah |
| Nominal Energy | Approximately 15.36kWh |
| Battery Type | Lithium energy-storage battery |
| System Voltage Class | 51.2V |
| Battery Management | BMS |
| Typical Use | Solar, backup, off-grid and renewable-energy storage |
| Communication | Model/system dependent |
| Installation | Compatible inverter-controlled energy-storage system |
Energy Capacity
The nominal energy capacity can be calculated as:
51.2V × 300Ah = 15,360Wh = 15.36kWh
This provides a substantial energy reserve for larger residential and commercial installations.
Actual usable energy will depend on the battery’s specified depth of discharge, inverter efficiency, operating conditions, battery-management settings and connected loads.
Specification note: REVOV has multiple battery ranges and generations. Exact figures such as maximum continuous charge/discharge current, dimensions, weight, operating temperature, cycle life, communications protocol, enclosure rating and warranty should be confirmed against the specific E300 product datasheet supplied with the unit before publishing them as fixed specifications.
LiFePO₄ Lithium Technology
The REVOV E300 is designed around Lithium Iron Phosphate (LiFePO₄) technology.
LiFePO₄ is widely used for stationary energy storage because it offers a combination of safety, longevity, thermal stability and efficient energy delivery. REVOV’s published LiFePO₄ systems specifically highlight safety, high energy density, temperature resilience and long service life.
Key benefits associated with LiFePO₄ energy storage include:
- High energy-storage capacity
- Efficient energy delivery
- Long service life
- Excellent thermal stability
- Low maintenance requirements
- Suitable for regular cycling
- High usable energy compared with many traditional battery technologies
- No routine electrolyte maintenance
- Suitable for renewable-energy storage
Integrated Battery Management
A battery management system is an important component of a modern lithium energy-storage system.
REVOV’s published battery documentation describes BMS functions including monitoring cell and battery voltage, controlling charging and discharging, temperature detection, cell balancing, over-current protection and other battery protection functions.
The BMS helps manage the battery during normal operation and provides protection when operating conditions fall outside the permitted parameters.
Solar Energy Storage
The REVOV E300 is an excellent choice for larger solar energy-storage systems.
Solar panels can generate electricity during the day, with excess energy directed into the battery rather than being wasted or exported, depending on the system configuration.
The stored energy can then be used during:
- Evenings
- Periods of low solar generation
- Cloudy conditions
- Grid interruptions
- High-demand periods
A typical installation can include solar panels, a compatible inverter/charger, the REVOV E300 battery, protection equipment and an appropriate energy-management system.
For homes and businesses with significant electricity consumption, the E300’s 15.36kWh nominal capacity can provide considerably more storage than smaller battery systems.
Residential Backup Power
The E300 can be incorporated into a home backup-power system to provide stored energy when grid electricity is unavailable.
Depending on inverter capacity and household consumption, it can support essential circuits such as:
- Lighting
- Refrigeration
- Wi-Fi and networking
- Security systems
- Television
- Computers
- Home-office equipment
- Selected household appliances
- Communications equipment
The actual backup runtime will depend on the combined power consumption of the connected equipment and the usable battery capacity.
Commercial & Business Backup
The larger capacity of the E300 makes it particularly useful for commercial backup applications.
Businesses can use battery storage to help maintain essential operations during electricity interruptions and reduce the impact of unreliable grid power.
Potential applications include:
- Offices
- Retail stores
- Workshops
- Small factories
- Warehouses
- Restaurants
- Farms
- Medical and professional practices
- Communications facilities
- Security installations
The battery can be incorporated into a larger energy-storage system where additional capacity is required and the equipment supports the intended configuration.
Off-Grid Energy Systems
The REVOV E300 can form the energy-storage component of a properly designed off-grid solar system.
This makes it suitable for locations such as:
- Remote homes
- Farms
- Lodges
- Game reserves
- Cabins
- Workshops
- Remote offices
- Construction sites
- Rural properties
In an off-grid installation, solar panels generate energy, while the E300 stores excess electricity for use when renewable generation is unavailable.
An appropriately sized inverter/charger manages the conversion and distribution of stored energy to AC loads.
Solar, Wind & Hybrid Energy Storage
REVOV identifies solar, wind and hybrid energy storage among the applications for its LiFePO₄ energy-storage systems.
The E300 can therefore be considered for hybrid renewable-energy systems combining sources such as:
- Solar PV
- Wind generation
- Grid electricity
- Battery storage
- Backup generators
A hybrid system can intelligently manage multiple energy sources to improve energy availability and reduce dependence on the grid.
UPS & Critical Power
The E300 can also be used in appropriately designed UPS and critical-power systems.
Potential applications include:
- IT infrastructure
- Computer rooms
- Networking equipment
- Security systems
- Communications equipment
- Data-processing equipment
- Critical business systems
REVOV’s published battery applications include computer-room UPS systems and telecommunications base stations.
The exact suitability of the E300 for a particular UPS should be confirmed based on inverter/UPS compatibility, required discharge current and BMS communication requirements.
Telecommunications & Remote Infrastructure
Reliable battery backup is important for telecommunications and remote communications infrastructure.
The E300’s large energy capacity makes it suitable for consideration in appropriately designed backup systems for:
- Telecoms infrastructure
- Communication sites
- Remote monitoring
- Security systems
- Network equipment
- Radio equipment
- Remote installations
REVOV specifically lists telecoms base stations among the applications for its LiFePO₄ energy-storage systems.
Reducing Grid Electricity Usage
The E300 can be used for solar self-consumption and energy management.
Instead of relying entirely on electricity from the grid, excess renewable energy can be stored during periods of generation and used later.
This can help businesses and homeowners:
- Increase solar self-consumption
- Reduce grid electricity consumption
- Store excess renewable energy
- Provide backup power
- Manage energy use during high-demand periods
For commercial customers, battery storage can also potentially assist with reducing peak demand, subject to the local electricity tariff and system design.
Why Choose the REVOV E300?
15.36kWh Nominal Storage
The E300’s 15.36kWh nominal capacity makes it suitable for substantially larger energy-storage requirements than smaller 5kWh-class batteries.
51.2V Architecture
The 51.2V system voltage is well suited to larger inverter-based energy-storage systems and renewable-energy installations.
LiFePO₄ Chemistry
LiFePO₄ technology provides an attractive combination of safety, longevity and energy-storage performance.
Suitable for Daily Cycling
REVOV’s published LiFePO₄ systems are specifically designed for applications where batteries may be cycled regularly, including solar and renewable-energy storage.
Scalable Energy Storage
Larger energy-storage installations can be designed around multiple compatible battery units where supported by the relevant REVOV battery and inverter configuration.
Application Summary
The REVOV E300 is suitable for consideration in:
- Residential solar storage
- Home backup power
- Commercial backup power
- Factory and industrial backup
- Off-grid solar systems
- Solar and wind hybrid systems
- Renewable-energy storage
- UPS systems
- Telecommunications backup
- Data and IT infrastructure
- Peak-demand management
- Grid electricity reduction
- Remote power systems
- Farms and agricultural installations
- Lodges and hospitality facilities
- Security and communications systems
Installation & Compatibility
The REVOV E300 should be installed as part of a properly engineered energy-storage system.
The inverter/charger, solar equipment, protection devices and battery-management/communication systems must be compatible with the battery.
Before installation, the following should be confirmed against the exact E300 datasheet:
- Inverter compatibility
- Maximum charge current
- Maximum continuous discharge current
- Recommended charge voltage
- BMS communication requirements
- Permitted operating temperature
- Battery configuration requirements
- DC protection requirements
- Earthing requirements
- Approved parallel configurations








Reviews
There are no reviews yet.