Engineered for extreme environmental resilience and high conversion efficiency.
Headquartered in Wenzhou, China's historic and dynamic hub of private economic enterprise, Zhejiang Wenzhou New Energy Technology Co., Ltd. has established itself as an industry-leading pioneer in integrated renewable energy designs and smart microgrid infrastructure since our foundation in 2020.
Spanning an advanced production footprint of 15,000+ square meters, our facilities represent the cutting edge of manufacturing intelligence. We host state-of-the-art, in-house CNAS-certified laboratories, advanced electromagnetic compatibility (EMC) testing zones, and specialized R&D engineering complexes. All facilities operate under rigorous compliance with internationally recognized management certifications, including ISO 9001:2015 (Quality Management System), ISO 14001:2015 (Environmental Management System), and ISO 45001:2018 (Occupational Health & Safety Management System), ensuring absolute traceability and uncompromised build quality from raw silicon and chemistry cells to finished systems.
By specializing in the design, optimization, and mass assembly of portable mobile generators, advanced solar hybrid inverters, and high-density residential/commercial energy storage networks, we supply direct integration pipelines for the global market.
Decoupling power reliance with military-grade efficiency and blockchain traceability.
Our proprietary 5th-generation hybrid inverter system integrates Silicon Carbide (SiC) MOSFETs to minimize thermal losses. Achieving a peak conversion efficiency rate of 98.5%, it supports multi-channel MPPT controllers that actively adapt to real-time solar irradiance fluctuations.
Using premium Lithium Iron Phosphate (LiFePO4) cell chemistry, our Power Wall products maintain safety even under high-load cycles. Supported by an advanced battery management system (BMS), the cells are dynamically monitored for thermal runaways, cell balance, and current overloads, exceeding 6,000 charge cycles.
Through an intelligent IoT-enabled web application interface, administrators track state-of-health metrics in real-time. Battery packs utilize a blockchain-based tracking network to trace materials, guarantee carbon credits, and enable fast diagnostics that resolve 90% of requests in 2 hours.
How our Sustainable Solar Off-Grid Power Walls adapt to varying geographic and operational challenges.
Low-temperature environments severely impact normal chemical reactions in standard lithium cells, leading to rapid capacity degradation. Our optimized ODM Power Walls feature integrated internal thermal warming jackets controlled by advanced BMS algorithms. During sub-zero charging phases, the system routes minor solar inputs to raise the core temperature of the battery array to safe parameters before beginning charging cycles. This feature ensures sustained efficiency in northern US states, Canada, and Scandinavia.
In locations with high ambient temperatures and dust storms (e.g., GCC countries), electronic enclosures face challenges from dust ingress and heat accumulation. Our modular off-grid systems feature fully sealed IP65-rated battery enclosures along with liquid cooling and phase-change material heat sinks. This design keeps the battery systems running within safe thermal limits even when ambient temperatures exceed 50°C, and prevents fine dust from damaging the internal inverters.
Saline-rich humid air accelerates the oxidation and degradation of copper tracks, terminals, and structural mounts. Our manufacturing line uses marine-grade anti-corrosive coatings on physical frames, alongside conformal coatings on printed circuit board assembly (PCBA) substrates. This ensures that remote coastal microgrids and eco-resorts receive decades of continuous service without internal short circuits caused by moisture accumulation.
Thin air at high elevations reduces the effectiveness of convection cooling systems. To address this, our hybrid solar platforms employ derated component structures alongside active fan control to maintain operational efficiency. This makes them ideal for high-altitude eco-lodges, telecommunication relay towers, and remote agricultural pumping stations that require reliable power supply without grid access.
Leveraging localized hardware ecosystems to deliver cost-optimized, industrial-grade power solutions.
Our strategic manufacturing base in Wenzhou grants us direct access to one of the world's most dense electrical, component, and raw material engineering clusters. Wenzhou’s established industrial infrastructure provides significant advantages for global energy projects:
| Production Metric | Standard Supply Chain | Wenzhou Integrated Facility |
|---|---|---|
| Prototype to Mass Production | 12 - 16 Weeks | 6 - 8 Weeks |
| Component QC Pass Rate | 98.2% | 99.7% (ISO-certified labs) |
| Traceability Level | Manual Lot Tracking | Real-Time Blockchain Logging |
| Logistics Turnaround | Variable Port Delays | 24-Hour Port Routing (Ningbo/Shanghai) |
Strategic vision mapping our journey toward the 2030 target of reducing carbon emissions by 1 million tons.
Industrial facilities and corporate data centers are increasingly turning to off-grid solar infrastructure to meet ESG standards. Our 215kW Industrial Storage Systems help companies reduce peak demand charges and establish independent backup power networks that keep operations running during grid outages.
We are actively transitioning our production facilities to earn Net-Zero Factory Certification. By utilizing rooftop solar arrays, thermal recovery systems, and battery loop testing systems, we aim to offset manufacturing emissions and reduce global carbon output by 1 million tons by 2030.
Our technological roadmap focuses on integrating next-generation solid-state battery cells into our product lines. Solid-state technology will help double energy density metrics, improve thermal safety under high load cycles, and reduce overall footprint requirements by 40%.
Ensuring seamless installations, regulatory compliance, and post-installation support.
Navigating the certification landscape for electrical installations requires a compliance-focused manufacturing partner. Our off-grid energy storage platforms are designed and tested to meet international standards:
Through our dedicated service network, we partner with regional engineering firms and certified installers to ensure our clients receive prompt technical support and seamless integration.
To protect operational continuity, we offer a structured support system for all commercial, OEM, and ODM clients:
Providing clear answers to common questions about engineering, integration, and procurement.
Our Power Wall product line uses modular, scalable configurations tailored to different load profiles:
All models share the same LFP cell quality, integrated BMS systems, and dynamic cooling architectures, with capacity configurations optimized to meet specific demand requirements.
Traditional inverters typically operate at efficiency levels between 95% and 96%, with energy lost as heat during the conversion process from direct current (DC) to alternating current (AC). Our 5th-generation inverter addresses this by using Silicon Carbide (SiC) power semiconductor switches. SiC has lower internal resistance and faster switching speeds compared to traditional silicon components, reducing power losses during operation.
Additionally, our system employs dynamic multi-core microcontrollers running proprietary tracking algorithms. These algorithms adjust the system's operating parameters in real-time to align with the current load and solar input, helping to keep performance optimized.
To support global compliance, our products are certified under several international standards:
Customers can request copy certificates and lab test reports during the project evaluation phase.
During assembly, each unit is registered with a unique digital identifier recorded on a secure database. This record traces the source of raw materials, cell batch details, testing measurements, and quality inspections. For our clients, this system provides transparent data for ESG audits and helps simplify remote diagnostics, allowing our engineering team to quickly identify components if troubleshooting is required.
We offer customizable design options for commercial partners, distributor networks, and large-scale installers. Customization services include:
Customization requests are managed by our dedicated Wenzhou design team, with prototype timelines typically ranging between 4 and 6 weeks depending on requirements.
The solar-powered portable charging station with integrated inverter combines power generation, storage, and inversion functions into one system. It collects energy through solar panels, converts it into electricity, and stores it in built-in batteries. The inverter then converts direct current into alternating current to charge electric vehicles or other devices. Additionally, its intelligent control system adjusts charging power based on battery status and real-time demand to enhance efficiency.
The solar off-grid power system is designed as a home backup power solution. As modern life becomes increasingly dependent on electricity, grid outages can cause significant inconvenience for households. This system uses high-efficiency solar panels to capture sunlight during the day, converting it into electricity stored in advanced lithium iron phosphate batteries. Even during power grid failures, it can deliver a steady energy supply to household devices.
From pocket-sized charging stations to megawatt-scale industrial containers.