2kWh Off Grid Power Storage Systems With 550W Solar 1000W AC Charging

Product Summary
2kWh Off Grid Energy Storage System with 550W Solar and 1000W AC Charging This 2kWh off grid energy storage system combines a 2000Wh LiFePO4 battery, 1000W pure sine wave inverter, 550W solar input and 1000W AC charging. It is designed for selected loads at cabins, remote offices, communication ...
Basic Properties
Place of Origin: China
Brand Name: Voltertech
Certification: MSDS , UN38.3
Model Number: PS-2KWH-1KW-EU-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

2kWh Off Grid Energy Storage System with 550W Solar and 1000W AC Charging

This 2kWh off grid energy storage system combines a 2000Wh LiFePO4 battery, 1000W pure sine wave inverter, 550W solar input and 1000W AC charging. It is designed for selected loads at cabins, remote offices, communication stations and temporary work locations.

Map the Complete Off-Grid Operating Day

A larger off-grid station should be selected from a 24-hour load schedule. Record the normal power, operating period and importance of every connected device.

The 2000Wh capacity represents nominal stored energy. Available AC energy will be lower after inverter efficiency, internal demand, environmental conditions and backup reserve are included.

Base Loads

Routers, security systems, lighting and communication devices may operate for long periods and should be calculated first.

Scheduled Work Loads

Computers and selected equipment can be operated during periods of stronger solar generation or generator availability.

Emergency Reserve

Retain part of the battery energy when essential communication or safety equipment must remain available after poor weather.

Plan the 550W Solar Recovery Window

The solar input accepts 12–60V and up to 550W. The panel arrangement must remain within the voltage range during normal operation and maximum open-circuit conditions.

Solar sizing should account for the energy consumed by daytime loads as well as the energy needed to recharge the battery. A system using nearly 2kWh per day requires enough panel production to replace that energy within the available sunlight period.

Shade, panel temperature, orientation and poor weather can reduce daily charging. An off-grid design should not rely on maximum panel power throughout the day.

Use 1000W AC Charging During Low-Solar Periods

The AC input accepts 90–280V and supports up to 1000W charging. This provides a faster recovery path from compatible utility or generator power.

When a generator is used, its continuous capacity should cover the station charging demand together with any other connected generator loads.

The supplied specification lists a 60Hz platform. Generator frequency and load frequency compatibility must be confirmed before commissioning.

Control Power Demand within the 1000W Output

The inverter supplies a rated 1000W pure sine wave output at 220–240V. Combined continuous loads must remain within this limit.

No separate surge-power value is listed in the supplied table. Pumps, compressors, refrigerators and motor-driven tools should therefore be reviewed before being included in the load plan.

USB and PD 20W Type-C outputs provide direct charging for compatible electronics, although their consumption still reduces the battery reserve.

System Boundaries and Site Placement

The station integrates the battery, inverter and charging functions. Solar panels, generator equipment, extension wiring and site-specific protection are separate project items.

The unit weighs 18.5kg net and can be relocated when needed. It should remain on a stable surface in a dry, covered and ventilated location.

This system is intended for selected off-grid loads. It should not automatically be presented as a complete power source for every load at the site.

2kWh Off-Grid Energy Specifications

Off-Grid Energy Capacity 2000Wh LiFePO4 Battery
AC Output Rating 1000W / 220–240V / Pure Sine Wave
Frequency Specification 60Hz Input / 60Hz ±0.5% Output
Solar Charging Input 12–60V / 550W Maximum
AC or Generator Charging 90–280V / 1000W
Device Output Options AC Outlet / USB 2.0 / Type-C PD 20W
EPS Transfer Time Below 50ms
System Dimensions and Weight 280 × 230 × 285mm / 18.5kg Net / 20.1kg Gross
Environmental Range -10°C to 40°C / 20–95% RH / Noise Below 50dB

2kWh Off-Grid System FAQ

Is this a complete solar power system?

It integrates battery, inverter and charging functions, but solar panels and site wiring are selected separately.

Can it supply every load in a cabin?

Suitability depends on simultaneous power, daily energy use and whether high-consumption loads are restricted.

Can a generator recharge the station at 1000W?

The generator must provide compatible voltage, frequency and sufficient stable power after other loads are considered.

Can the system operate a pump or compressor?

The equipment’s startup demand must be confirmed because no separate surge-output rating is stated.

What information is needed for project sizing?

Provide the 24-hour load schedule, peak power, solar conditions, generator data and required emergency reserve.

Remote-Site Energy and Recharge Review

Need to evaluate selected loads, solar recovery and generator support?

Submit the Remote-Site Energy Plan

Product Details
Highlight:

2kWh Off Grid Power Storage Systems

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Off Grid Power Storage Systems 1000W

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550W Off Grid Solar Power Storage

Off-Grid Capacity Level: Extended Essential - Load Energy System
Remote Site Category: Cabin / Remote Office / Communication Station
Twenty - Four-Hour Planning: Base Load Plus Scheduled Equipment
Solar Recovery Strategy: Larger PV Input For Daily Battery Restoration
Generator Support Role: Fast Recovery During Low-Solar Periods
Backup Reserve Design: Separate Daily Use From Emergency Capacity
Load Control Scope: Selected Loads Rather Than Complete Site Supply
Deployment Format: Relocatable Integrated Storage Unit

Customer Service

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