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OFF GRID PROJECT

Island of power is our target
Enjoy safe, reliable, and cost-effective green electricity
Expertise-driven, stable performance, superior LCOE, worry-free operation

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Solar microgrid(Off-grid) system service

A solar microgrid(Off-grid) is a localized and self-contained energy system capable of generating, distributing, storing, and regulating electric current. Essentially a scaled-down version of the main power grid, it can operate either in parallel with the central grid or in island mode, with seamless switching between the two when required. Microgrids can draw energy from conventional sources, renewable sources, or a hybrid combination. The more a microgrid is optimized for renewable energy (such as solar power), the lower its environmental impact and long-term operational costs.

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One-stand BESS container solution

LVFU C-20
Up to 60 kvA peak output power

Up to 60 kWp solar PV input

Up to 60 kW DG/Grid AC input

Up to 260 kWh battery capacity

LVFU C-40
Up to 120 kVA peak output power

Up to 120 kWp solar PV input

Up to 120 kW DG/Grid AC input

Up to 520 kWh battery capacity

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Microgrid Solution Expert
Delivering end-to-end turnkey solutions
Image by Zbynek Burival
Microgrid Sizing Design
Professional detailed design solutions supporting capacity comparison, with minute-level design report generation
Image by Erwan Hesry
Pre-integrated Core Equipment
Key equipment pre-commissioned at factory, significantly reducing on-site testing time
 EMS configuration

Zero grid bills 100% farm power

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Use case
Island

Global map surveys indicate there are approximately 100,000 islands worldwide, making island power supply a critical application area for renewable energy microgrids. By deploying photovoltaic (PV) systems, wind power generation, and energy storage solutions, these islands can access continuous, zero-emission electricity. For islands with existing diesel generators, hybrid microgrids can significantly reduce fossil fuel consumption, enhance economic efficiency, and mitigate environmental pollution and carbon emissions.

Most mines and oilfields are located in remote areas without grid access, yet demand substantial power loads. Traditional solutions—whether grid extension or heavy oil/diesel generators—incur high costs and offer unreliable supply. Solar microgrids present a cost-effective alternative that dramatically improves power reliability while slashing operational expenses.

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Use case
Mining & Oilfield Operations
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Use case
Remote Village

In regions where grid expansion is impractical or prohibitively expensive, standalone microgrids provide an ideal solution. When grid infrastructure later becomes available, these systems can either continue operating autonomously or seamlessly integrate with the main grid. Zhongteng Microgrid’s Energy Management System (EMS) control logic enables effortless switching between these two modes.

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