46.08kWh 12kW LiFePO4 Off Grid Energy System With Dual AC MPPT Charging

Product Summary
46.08kWh 12kW Off Grid LiFePO4 Energy System with Dual AC and MPPT Charging This off grid LiFePO4 energy system provides 46.08kWh of nominal battery storage with 12kW pure sine wave AC output. Dual MPPT charging, two AC outputs and optional generator or utility charging support a flexible energy ...
Basic Properties
Place of Origin: China
Brand Name: Voltertech
Certification: MSDS , UN38.3
Model Number: ESS-46KWH-12KW-A-2
Trading Properties
Minimum Order Quantity: 2 Units
Price: Negotiable
Payment Terms: L/C,T/T,Western Union
Supply Ability: 5000 Units per Month
Product Description

46.08kWh 12kW Off Grid LiFePO4 Energy System with Dual AC and MPPT Charging

This off grid LiFePO4 energy system provides 46.08kWh of nominal battery storage with 12kW pure sine wave AC output. Dual MPPT charging, two AC outputs and optional generator or utility charging support a flexible energy plan for remote sites with substantial daily consumption.

It can be considered for farms, clinics, workshops, remote offices and small commercial facilities where essential loads need a larger energy reserve but the site can still manage peak power within the 12kW inverter rating.

Plan Energy Use across Different Load Zones

A larger battery bank is most effective when loads are separated by importance. Essential circuits may include refrigeration, communications, lighting and security equipment. Scheduled equipment can be operated when solar generation is strong.

Restricted loads such as electrical heating or large motors may need operating limits during low-solar periods. This prevents nonessential consumption from reducing the reserve available for priority equipment.

Recharge a Larger Battery Bank Efficiently

Two MPPT channels accept separate PV strings, each with a listed maximum of 5000W and 18A. The array should be designed to provide enough daily energy for both daytime loads and battery recovery.

With a 46.08kWh battery, solar charging time becomes an important part of project sizing. A large battery that is regularly discharged requires sufficient panel production to recover before the next operating cycle.

A compatible generator or utility source can provide recovery charging during extended cloudy periods. Generator capacity should account for battery charging and any other loads connected at the same time.

Manage 12kW Continuous and Motor Startup Demand

The inverter supplies 12kW continuous output and lists 22000VA instantaneous power. These ratings support a broad range of compatible loads, but motor and compressor startup demand should still be checked.

Two AC output channels can separate priority circuits from scheduled equipment. The complete output remains limited to 12kW, even when both channels are active.

Parallel inverter operation is supported when the project requires more AC power. Capacity and power expansion should be reviewed as one coordinated design.

The system supplies local off-grid loads and does not support grid-connected export.

46.08kWh Off-Grid Technical Data

Nominal Battery Reserve 46.08kWh / 51.2V / 900Ah
Continuous and Peak Reference 12kW Rated / 22000VA Instantaneous
AC Load Standard 220/230Vac ±5% / 50 or 60Hz / Pure Sine Wave
PV Collection Inputs Two MPPT Channels / 5000W and 18A per Channel
PV String Voltage 60–500Vdc MPPT / 500Vdc Maximum Voc
Backup AC Input 230Vac / Automatic 50–60Hz Detection
Battery Charge and Discharge Limits 100A Continuous Charge / 200A Continuous Discharge Maximum
Monitoring and Communication LCD / RS232 / RS485 / CAN
Battery Operating Environment IP21 / -15°C to 50°C Discharge / 0°C to 50°C Charge

46.08kWh Off-Grid System FAQ

Can the system support a remote workshop?

Suitability depends on the workshop’s continuous load, motor startup demand, operating hours and solar recharge capacity.

Does a 46.08kWh battery guarantee operation through several days?

No. Autonomy depends on daily consumption, solar production, reserve settings and generator support.

Can high-power loads be scheduled during the day?

Yes. Flexible loads can be operated during stronger solar production when system power limits are respected.

Can the system recover from a generator?

A compatible generator may provide AC charging when its voltage, frequency and capacity meet the inverter requirements.

What project data should be submitted?

Provide the load schedule, startup power, daily energy use, solar conditions, generator specification and required reserve.

Assess Solar Recovery before Ordering

Send the daily consumption, solar-array proposal and generator information. We will review whether the battery can recover within the available charging window.

Request an Off-Grid Charging Review

Product Details
Highlight:

LiFePO4 Off Grid Energy System

,

12kW Off Grid Energy System

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46.08kWh Off Grid Energy System

Off - Grid Reserve Level: Larger Energy Bank For Managed Loads
Site Energy Strategy: Daytime Solar Use With Extended Night Reserve
Load Zone Planning: Essential, Scheduled And Restricted Circuits
Solar Harvesting Method: Dual MPPT Input For Separate PV Strings
Recovery Charging: Generator Or Utility Support When Required
Peak Load Management: 12kW Continuous With Startup Review
Project Expansion: Parallel Power Configuration Supported
Suitable Remote Application: Farms , Workshops , Clinics And Remote Businesses

Customer Service

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