16kWh 6kW All In One LiFePO4 Energy Storage Battery With 9kW PV Input

Product Summary
16kWh 6kW All in One LiFePO4 Energy Storage System with 9kW PV Input This floor-standing energy storage system integrates a 16kWh LiFePO4 battery, 6kW pure sine wave inverter and MPPT solar charging function in one coordinated unit. It gives project buyers a simpler alternative to separately ...
Basic Properties
Place of Origin: China
Brand Name: Voltertech
Certification: MSDS , UN38.3
Model Number: ESS-16KWH-6KW-FS-A
Trading Properties
Minimum Order Quantity: 1 Set
Price: USD300-USD350
Payment Terms: L/C,T/T,Western Union
Supply Ability: 5000 Sets per Month
Product Description

16kWh 6kW All in One LiFePO4 Energy Storage System with 9kW PV Input

This floor-standing energy storage system integrates a 16kWh LiFePO4 battery, 6kW pure sine wave inverter and MPPT solar charging function in one coordinated unit. It gives project buyers a simpler alternative to separately arranging the battery, inverter and major control components.

With up to 9kW of photovoltaic input and two AC output channels, the system can be planned around essential loads, flexible loads and available solar generation. It is suitable for indoor residential, office, retail and small business energy projects that require solar storage and backup capability without a complex multi-cabinet layout.

One Integrated System Instead of Separate Components

The all in one structure reduces the number of separate products that must be selected and coordinated during project preparation. The battery and inverter are matched within the same system platform, while the compact floor-standing enclosure keeps the installation area organized.

Its 16kWh nominal energy capacity and 6kW rated output serve different purposes. Battery capacity influences how much energy can be stored, while inverter power determines how much compatible equipment can operate at the same time.

Integrated Project Layout

A single floor-standing unit simplifies space planning compared with installing separate battery and inverter enclosures.

Clearer Load Organization

Two AC output channels allow the project design to separate important equipment from loads that can be restricted when stored energy is limited.

Use More Solar Energy During the Day and Night

The MPPT charging section supports up to 9kW of photovoltaic input. Its 60–450Vdc MPPT range provides flexibility when configuring a compatible solar string, while the maximum photovoltaic open-circuit voltage is 500Vdc.

A larger PV input can help operate daytime loads and recharge the battery during the same solar window. The final array should be selected from local sunlight, daily consumption, panel voltage and the required battery recovery time.

The 9kW value is the maximum supported PV input rather than a mandatory array size. Smaller arrays may be used when they remain compatible with the MPPT voltage and input-current limits.

Plan the Right Loads for the 6kW Output

The system supplies 6kW of rated pure sine wave AC output and lists 9000VA of instantaneous power. It can support a combination of compatible lighting, computers, communication equipment, refrigeration and selected household or business loads.

Equipment containing motors, pumps, compressors or heating elements should be checked carefully. The continuous wattage, startup demand and number of devices operating together all affect system selection.

The source-transfer reference is 10ms in computer mode and 20ms in household-appliance mode. Equipment response can vary, so sensitive devices should be evaluated according to their own power requirements.

Monitoring and Indoor Installation

RS232, RS485 and dry-contact interfaces provide communication options for supported system monitoring and control requirements. An LCD offers convenient access to local operating information.

The IP21 enclosure is intended for a dry indoor or protected technical location. The unit should be placed on a stable floor with adequate ventilation and access for electrical connections.

Parallel-machine operation is not supported. The required output power and battery capacity should therefore be confirmed before the system is selected.

All in One Energy Storage Specifications

Integrated System Rating 6kW Inverter / 16kWh LiFePO4 Battery
Battery Configuration 51.2V / 314Ah / 16000Wh
AC Output 220/240Vac ±5% / 50 or 60Hz / Pure Sine Wave
Rated and Instantaneous Output 6kVA / 6kW Rated / 9000VA Instantaneous
PV Input and MPPT Range 9000W Maximum / 60–450Vdc MPPT / 500Vdc Maximum Voc / 27A
Charging Capacity 120A Maximum PV / AC / Total Charging Current
Battery Current Limits 160A Maximum Continuous Charge / 150A Maximum Continuous Discharge
Communication and Transfer RS232 / RS485 / Dry Contact / 10ms or 20ms Transfer
Dimensions and Environment 1050 × 460 × 240mm / 122kg Net / IP21 / -10°C to 55°C

16kWh All in One ESS FAQ

Are the battery and inverter included in the same unit?

Yes. The system combines the 16kWh battery, 6kW inverter and solar charging functions in one floor-standing enclosure.

What is the benefit of the two AC outputs?

They allow the project wiring to organize priority loads separately from equipment that can be limited when necessary.

Does the system require a full 9kW solar array?

No. Nine kilowatts is the maximum PV input. The final array depends on energy demand, sunlight and electrical compatibility.

Can two systems be connected in parallel for more power?

No. Parallel-machine operation is not supported for this configuration.

What should be provided for a project quotation?

Provide the appliance list, peak load, required backup time, solar-panel data, local AC standard and project quantity.

Get a More Accurate System Recommendation

Send us the equipment you need to power and the available solar-panel information. We will review whether the 6kW output, 16kWh battery and PV configuration match your project.

Request an All in One ESS Recommendation

Product Details
Highlight:

6kW LiFePO4 Energy Storage Battery

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16kWh LiFePO4 Energy Storage Battery

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All In One Energy Storage Battery

Integrated Solution Format: Battery, Inverter And Solar Charging In One Unit
Installation Style: Floor-Standing Indoor Energy System
Load Planning Method: Priority And Flexible Load Separation
Solar Energy Strategy: Store Daytime PV Energy For Later Use
AC Distribution Design: Two Output Channels For Organized Load Control
Suitable Project Profile: Homes, Offices, Shops And Small Business Sites
Homes, Offices, Shops And Small Business Sites: Standalone Operation; Parallel Function Not Supported
Quotation Preparation: Load List, PV Array Data And Local AC Standard

Customer Service

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