Explore our high-performance off-grid inverters, battery management systems, and smart C&I storage systems engineered for ultimate resilience.
The global push toward decarbonization has turned Commercial and Industrial (C&I) solar off-grid energy storage from a clean-energy alternative into a necessity. Heavy industrial facilities, agricultural grids, telecommunication hubs, and remote data centers face high electricity tariffs, unpredictable grid access, and stringent carbon-emission targets. For these operators, off-grid and hybrid energy infrastructure systems provide energy independence, resilience against grid outages, and protection against power spikes.
In regions such as North America, Europe, and the Asia-Pacific, off-grid systems with microgrid architectures are expanding. The deployment of long-life Lithium Iron Phosphate (LiFePO4) chemistries, combined with high-efficiency multi-inverter configurations, allows industrial operations to operate independently. As grid capacity declines due to aging infrastructure, microgrids provide constant power to ensure facility uptime.
Zhejiang Wenzhou New Energy Technology Co., Ltd. (suggested full name), headquartered in Wenzhou, China's hub of private economy, has been developing renewable energy solutions since its establishment in 2020. Spanning 15,000+ square meters, our facility houses CNAS-certified laboratories, EMC testing centers, and specialized R&D zones operating under ISO 9001, ISO 14001, and ISO 45001 management systems. This ensures quality control from raw materials to finished products.
As a manufacturer of solar power generation systems and portable energy solutions, we specialize in the R&D and manufacturing of mobile generators, solar inverters, and hybrid energy storage products. With 36 patented technologies, including our 5th-gen hybrid inverter achieving 98.5% conversion efficiency, we export to 28+ countries and provide OEM/ODM services for Fortune 500 clients. Our 200+ technical experts and 50,000-unit annual production capacity enable rapid customization for diverse energy needs.
To support corporate transparency, we implement a 7×24 multilingual customer support structure backed by a blockchain-enabled traceability system that resolves 90% of issues within 2 hours. Committed to sustainability, we are pursuing Net-Zero Factory certification with a roadmap to reduce global carbon emissions by 1 million tons by 2030. Through intelligent IoT-enabled energy ecosystems and cross-border partnerships, we help businesses transition toward greener operations.
Our 5th-generation hybrid inverters reduce thermal loss during conversion, maximizing PV-to-battery efficiency.
Advanced Lithium Iron Phosphate battery packs provide more than 6,000 duty cycles, outperforming traditional Lead-Acid options.
Real-time system monitoring paired with a blockchain-based ledger provides tracking of cell chemistry and operational performance.
Industrial off-grid power systems require specific engineering depending on the environment. A standard configuration includes high-capacity photovoltaic arrays, heavy-duty smart charge controllers (MPPT), a central battery energy storage system (BESS), and power conditioning units (inverters). Below are some common application scenarios:
A momentary voltage sag can disrupt data services. Deploying systems like the OEM 215kW Industrial Energy Storage System provides power conditioning and backup capabilities. Our systems switch to battery power within 10 milliseconds of a grid failure, ensuring continuous operation of data processing equipment.
Industrial installations operating far from municipal infrastructure rely on diesel generation. Integrating a hybrid system utilizing our 100kW and 215kW Industrial energy storage systems reduces fuel consumption. Photovoltaic power charges the storage system during peak solar hours, shifting the base load away from diesel generators.
Modern commercial greenhouses, automated dairy farms, and crop-processing operations use energy for temperature control and irrigation. Implementing our Solar off-grid power generation energy solutions allows agricultural facilities to operate independently of regional utilities, reducing carbon intensity and operational costs.
To complement our inverters and energy storage units, we design customized solar panel support structures. These structures are built to withstand high wind zones, seismic activity, and corrosive marine environments, ensuring structural longevity alongside the system's electrical components.
Our engineering research focuses on three primary pillars of power management:
By transitioning from traditional low-voltage configurations to high-voltage battery architecture (exceeding 800V DC), we decrease line current, minimize cabling requirements, and improve round-trip conversion efficiency. This change reduces heat generation in industrial facilities, extending battery cell life.
Future iterations of our smart energy systems will integrate predictive analytics models. By evaluating weather patterns and regional tariff data, the system optimizes charge and discharge cycles, allowing commercial facilities to manage peak utility pricing.
Our R&D team is evaluating solid-state battery technology. Once commercially viable, solid-state cells will offer higher energy density and improved thermal safety profiles compared to liquid-electrolyte designs.
Reliable components designed and manufactured to meet global industrial standards.