Follow us for more information!

15kWh Wall Mounted Battery

15kWh Wall Mounted Battery

Home Battery Backup

The PXU-B280-10 is a 15kWh wall-mounted LiFePO4 battery designed for residential solar energy storage systems with higher daily energy demands.

Home > Products > Residential ESS > Home Battery Backup > 15kWh Wall Mounted Battery

The PXU-B280-10 is a 15kWh wall-mounted LiFePO4 battery designed for residential solar energy storage systems with higher daily energy demands. It integrates intelligent battery management with four-channel temperature monitoring, accurate SOC and SOH estimation, adjustable protection parameters, charge balancing, and multiple sleep modes to enhance safety and operating efficiency. Featuring dual RS485 communication, LED status indicators, and low standby power consumption, it delivers reliable long-term performance while supporting flexible system expansion for future capacity growth.


Key Advantages

① Flexible Parallel Expansion: These series batteries all support 1–16 units in parallel, allowing users to freely expand total storage capacity as needed.

② Strong Wide-Temp Adaptability: It works stably for discharging from -20°C to +60°C and charging from 0°C to +55°C, adapting to most regional indoor temperature environments.

③ Complete Power Specifications: Three capacity options (5.12/10.24/14.336kWh) with matched max output power cover small, medium and large household solar storage scenarios.


Technical Specifications

Model PXU-B280-10
Usable Energy 14.336KWh
Battery Chemistry LiFePO4
Nominal Voltage 51.2
Operating Voltage Range 58.6
Charge Cut-off Voltage 44
Discharge Cut-off Voltage 11
Max. Charge/Discharge Current 200A @120S
Recommended Charge/Discharge Current 200A
Max. Output Power 10000W
Rated Output Power ≤8000W
Depth of Discharge ≥95%
Parallel Connection 1-16 in parallel
Communication Interface CAN&RS485
IP Rating IP20
Cycle Life ≥8000@25°C, 70%DOD
Operating Temperature Range Discharge.-20°C to +60°C Charge.+0°C to +55°C
Net Weight 119.1
Dimensions 889.74*443*245
Wi-Fi Connectivity


Filters

How can we help you?

If you have any questions regarding this specific product or your project, we are here to help!

Products

Recommended Products

Frequently
Asked Questions

  • What is an Energy Storage System (ESS)?

    An Energy Storage System (ESS) is a technology or set of technologies designed to capture, store, and release electrical energy (or energy in other forms that can be converted to electricity) on demand. Its core purpose is to address the temporal and spatial mismatches between energy supply and demand—for example, storing excess energy generated during low-demand periods (e.g., midday solar production) and releasing it during high-demand periods (e.g., evening peak usage) or when supply is limited (e.g., nighttime wind lulls).

  • What are the core functions of ESS?

    ESS solves critical challenges in modern energy systems by performing five key roles:
    Peak Shaving: Reduces reliance on expensive "peak power plants" (which only operate during high-demand hours) by releasing stored energy during peak periods. This lowers electricity costs for users and grid stress. 
    Load Leveling: Smooths out fluctuations in energy supply (e.g., variable output from solar/wind) by absorbing excess energy when production is high and discharging when production drops. 
    Backup Power: Provides emergency electricity during grid outages (e.g., residential battery systems for blackouts, hospital backup ESS). 
    Grid Stabilization: Maintains grid reliability by regulating frequency (frequency response) and voltage—critical for integrating high shares of renewable energy, which can cause sudden supply swings. 
    Renewable Integration: Enables more solar and wind power to be used (instead of wasted, or "curtailed") by storing surplus energy that would otherwise exceed immediate demand.

  • What’s the Core Components of ESS?

    Battery Cells and Modules: The main energy storage units, typically based on lithium-ion chemistries such as LFP for safety and longevity.
    Battery Management System (BMS): Ensures balanced voltage and temperature across cells for optimal safety. 
    Power Conversion System (PCS/Inverter): Converts energy between DC and AC for smooth integration with loads or grids. 
    Energy Management System (EMS): Acts as the “brain” — optimizing operation, predicting consumption, and maximizing ROI. 
    Thermal & Fire-Safety Systems: Maintain safe temperature levels and comply with UL/IEC standards.

  • How Energy Storage Systems Work?

    Charging: Energy source (grid/photovoltaic/wind power) → AC → PCS (rectification) → DC → energy storage medium (storage)
    Control: EMS (decision-making)+BMS (protection) → full process linkage PCS/energy storage medium
    Discharge: energy storage medium (release) → DC → PCS (inverter) → AC → energy destination (grid/load/emergency)
    Guarantee: Auxiliary system (cooling/fire protection) → Full process safety guarantee
    Core closed-loop: AC ↔ PCS ↔ Energy storage medium ↔ PCS ↔ AC (EMS/BMS+auxiliary system escort)

News

Latest Project and News


Please Leave
us a
Message
Home
Products
WhatsApp
Contact

Go Top

Get in touch
Looking for support or a quote? We are here for you! Please fill out the form below and we will get back to you as soon as possible!
*
*
*
*
*
Fields marked with * are required