Discover our primary selection of certified mobile generators, smart power banks, and high-efficiency power walls manufactured directly in our CNAS-certified facility.
Pioneering Next-Generation Renewable Energy and Portable EV Charging Infrastructure Globally.
Adapting to modern electrical architectures, high-density cell chemistry, and decentralized vehicle-to-load systems.
Shifting from traditional lithium-ion structures to ultra-stable Lithium Iron Phosphate (LiFePO4) and pioneering solid-state battery integrations. This path minimizes thermal runaway hazards while pushing volumetric energy density past 280 Wh/kg.
Integrating bidirectional dynamic power control systems that allow units to function as both chargers and active grid-tied buffers. Direct implementation of Vehicle-to-Home (V2H) and Vehicle-to-Grid (V2G) interfaces.
Deploying microprocessors embedded with machine learning engines directly on the BMS. This enables real-time prognostic monitoring, dynamic thermal control, and predictive cycle-life mapping via cloud-linked databases.
Addressing complex commercial, industrial, and infrastructure challenges with structured energy storage ecosystems.
Designed for remote operations, critical manufacturing floors, and data centers. Integrating our 215kW energy systems ensures zero-latency failover capability, insulating operations from unstable utility grids and grid-level price surges.
Enables properties to save significantly on energy bills. Our systems store power during cheap, off-peak hours and discharge it when rates spike, maintaining smooth operation for heavy industrial machinery and multi-vehicle fleets.
Engineered to perform in harsh locations. Built for mobile command centers, military outposts, and emergency disaster relief operations. These units are highly resistant to impact, dust, and water ingress.
Wenzhou has long served as a vital hub for China's private economic sector, particularly in precision electronics, power grids, and low-voltage electrical component assembly. At Zhejiang Wenzhou New Energy Technology Co., Ltd., we leverage this regional ecosystem to build a highly vertical, responsive supply chain.
Our factory implements a modernized Factory 4.0 layout. We utilize robotic cell assembly machinery, high-precision laser-welding rigs, and computerized aging test chambers that run 24 hours a day to test every cell's performance profile. By keeping critical processes—from design and mechanical machining to software coding and final assembly—in-house, we eliminate outsourcing delay risks and maintain strict control over our component tolerances.
This geographical and logistical advantage translates to shorter lead times, lower material acquisition costs, and faster customization. We can deliver high-quality, customized products quickly, ensuring that global enterprises can rapidly adapt to shifts in market demand.
How we help enterprise buyers address complex global requirements, from high-capacity specifications to customized aesthetics.
Configuring split-phase output options (110V/220V), modifying nominal output frequencies (50Hz/60Hz), and adjusting MPPT charging thresholds to match local commercial voltages.
Modifying case structures to satisfy IP65 water-ingress levels, adding reinforced structural bracing for mine sites, or integrating specialized colorways and custom logo branding.
Rewriting battery management parameters, building customized white-label mobile applications, and tailoring system telemetry reporting formats to match pre-existing databases.
Deploying blockchain-based component traceability, providing real-time production tracking, and arranging multi-destination shipping options for overseas drop-shipping operations.
Navigating the complex landscape of international safety certifications, grid codes, and operational regulations.
Full compliance with UL 2743 standards for portable power packs, UL 1973 for battery integration, FCC Part 15 subpart B for EMI emissions, and DOT UN38.3 standards for secure lithium transport.
CE marking conforming to EN 62133 safety mandates, EN 61000 standards for electromagnetic compatibility, and complete compliance with the RoHS directive to guarantee eco-friendly disposal profiles.
Our line of multi-in-one inverters and industrial units comply with G99, AS4777, and IEEE 1547 standards, allowing seamless grid-tie capability without causing phase disruptions or safety issues.
Integrating generation, storage, and inversion in a robust, unified engineering ecosystem.
Combines power generation, storage, and inversion in one unit, reducing system complexity and ensuring stable operation.
Primarily uses solar energy, reducing dependency on the grid and lowering carbon emissions, consistent with sustainability goals.
Compact and easy to carry and install, making it ideal for home, outdoor, and emergency scenarios.
Supports demand-based charging, automatically optimizing strategies for efficient energy use.
Offers long-term benefits with a one-time investment, reducing electricity costs—especially suitable for users without fixed charging infrastructure.
Serves as a reliable backup power source during grid failures, ensuring continued operation of essential devices.
Answers to critical technical, procurement, and safety questions from enterprise buyers.
We use Grade-A Lithium Iron Phosphate (LiFePO4) chemistry because of its thermal stability and long lifecycle (over 4,000 charge cycles to 80% DoD). Our battery packs are managed by a multi-layered Battery Management System (BMS) that monitors individual cell voltage, temperature, and current flow. The system is designed to isolate cells in the event of voltage spikes or thermal anomalies, preventing thermal runaway.
For standard orders, manufacturing requires 20 to 30 days. Custom OEM/ODM orders involving modifications to casing designs, specialized connector configurations, or custom software tuning typically require 45 to 60 days. This timeline includes design approvals, functional prototyping, and rigorous quality validation.
Our 5th-generation hybrid inverter uses advanced Silicon Carbide (SiC) switching devices and a refined multi-level topology. By optimizing switching frequency patterns and reducing magnetic losses in the transformer assembly, we minimize power dissipation. This ensures that 98.5% of harvested solar energy or stored battery power is successfully converted to usable AC electricity.
Yes. We implement a blockchain-secured component ledger system. Every critical sub-assembly, from the LFP cell batches down to the specific integrated circuits on the BMS board, receives a cryptographically signed QR code tag during manufacturing. Enterprise customers can scan this tag to view complete factory testing logs, component origins, and assembly dates, ensuring transparent quality assurance.
Yes. Our mobile emergency generators (such as the 5kW and 10kW units) feature high-current AC outlets and customized EV interfaces. These units act as mobile range extenders, delivering pure sine wave power to EV onboard chargers and providing crucial emergency charging for stranded vehicles.
Explore our technical catalog of high-capacity solar walls, off-grid generation modules, and commercial-scale systems.