High-capacity energy modules engineered for reliable peak demand shaving, grid optimization, and microgrid integrations. Configured to align with DGEG certifications and E-Redes grid specifications.
Smart liquid-cooled architecture optimized for peak load displacement in high-availability enterprise configurations.
Robust thermal management to ensure system lifespan and peak power stabilization in agricultural zones.
Modular, flexible commercial battery configuration with smart EMS for office hubs and light industries.
Compact, high-density LFP portable power source optimized for field work and emergency response units.
Portugal’s industrial sectors—ranging from the high-consumption textile hubs in Porto and Braga to the vast agricultural and winery operations across the Alentejo and Douro regions—face unprecedented operational pressures. With electricity pricing characterized by extreme peak hours and high network access tariffs, businesses without energy buffers risk escalating operating costs. Furthermore, the Portuguese National Energy and Climate Plan (PNEC 2030) targets a 47% share of renewable energy sources in gross final energy consumption, requiring local companies to accelerate solar integration and deploy localized storage arrays.
The implementation of a 215kW commercial energy storage system allows facilities to absorb on-site solar generation surplus, mitigate demand charges, and benefit from peak-to-valley tariff arbitrage. In addition, the system provides crucial grid stabilization, resolving power quality drops that commonly disrupt manufacturing machinery in rural or heavily loaded industrial sectors.
For mid-tier commercial operations and manufacturing sites with peak power requirements between 100kW and 1MW, a modular 215kW/430kWh configuration represents the optimal capital-to-savings balance. It operates seamlessly under standard local grid constraints and bypasses complex licensing thresholds associated with megawatt-scale utility connections.
| Operational Need | Without ESS | With 215kW ESS Integration |
|---|---|---|
| Peak Demand Penalties | Paid directly to utility based on highest monthly spikes. | Peak shaved. Battery discharges to cap imports during grid load surges. |
| Solar PV Utilization | Surplus power fed to grid at low feed-in tariffs. | Maximized self-consumption. Solar stored locally for evening usage. |
| Grid Outages | Immediate halt of operations and production losses. | Seamless backup switchover (<20ms transition for critical loads). |
Engineered for endurance and thermal stability. Our system utilizes CATL Tier-1 LFP chemistry with an intelligent liquid cooling framework that prolongs cell life by maintaining temperature variation under 3°C.
Equipped with high-capacity Lithium Iron Phosphate (LFP) cells. Featuring a multi-layered active Balancing Battery Management System (BMS) checking voltage, temperature, and SOC at cell, module, and rack levels.
Integrated intelligent temperature control. Reduces cell-to-cell thermal variance, preventing localized overheating, slowing down capacity degradation, and maximizing the system's lifetime energy output (LCOS).
Equipped with specialized aerosol-based and Novec 1230 clean agent systems. Sensors monitor carbon monoxide and off-gases, delivering microsecond response fire containment directly at the module level.
As standard-setting manufacturers in the energy storage landscape, we balance high-volume factory performance with precise localization. Operating an extensive 15,000+ square meter factory in Wenzhou, China, our manufacturing line integrates robotic cell sorting, CNAS-accredited testing rigs, and EMC testing facilities to ensure each 215kW module conforms to international standards. This structural capacity allows us to serve tier-1 global distributors and design solutions tailored to regional requirements.
By using blockchain-enabled traceability, we map every component from battery mineral procurement to final factory calibration, giving developers complete supply chain transparency. For the Portuguese market, this backend control is backed by regional logistics support, quick custom clearances, and full compliance documentation to guarantee quick, reliable site deployments.
Deploying commercial energy storage in Portugal requires complete compliance with local energy authorities. We handle the technical documentation required for E-Redes grid approvals and DGEG licensing.
Our 215kW ESS system is equipped with advanced active and reactive power control. This meets E-Redes grid feed-in regulations, ensuring seamless integration and protecting the system against high-voltage network disconnections.
Fully certified under international standards including CE-LVD, CE-EMC, IEC 62619, IEC 63056, and UN38.3. This compliance guarantees fire-safe operations and simplifies the commercial building insurance process in Portugal.
Supported by a network of localized engineering partnerships across Portugal. We offer remote system monitoring, dynamic firmware upgrades, and on-site support to ensure uninterrupted operations.
In addition to our flagship 215kW liquid-cooled commercial storage units, we design and manufacture complementary systems to support clean power transitions globally and in local Portuguese markets.
Durable mono-crystalline PV panels optimized for high irradiance performance across mainland Portugal.
High-density wall-mounted storage modules designed for backup power in commercial buildings and farms.
Robust wall-mounted storage configurations designed to optimize deep-well pumping and automated irrigation systems.
Modular remote solar generation architectures engineered for remote sites, eco-resorts, and cell towers.
Sleek, high-density residential energy storage designed for luxury villas and small commercial offices.
Durable, long-lasting storage cabinet system optimized for high-discharge retail applications.
Smart solar inverters featuring integrated dual MPPT inputs, ensuring maximum power tracking for unstable grid areas.
Super-lightweight pocket power bank optimized for field measurements, data collectors, and off-grid inspections.
Established in 2020, Zhejiang Wenzhou New Energy Technology Co., Ltd. has established itself as an innovative developer in the renewable energy sector. Spanning a 15,000+ square meter state-of-the-art facility, our factory houses advanced CNAS-certified laboratories, EMC testing facilities, and specialized R&D zones operating under strict ISO 9001, ISO 14001, and ISO 45001 management protocols. This ensures complete end-to-end quality control from raw materials to final programming and validation testing.
As a global supplier in commercial energy systems, solar inverters, and hybrid energy storage systems, we specialize in high-capacity solar systems, custom grid-forming setups, and portable power technologies. With 36 patented technologies, including our 5th-gen hybrid inverter achieving 98.5% conversion efficiency, we ship systems to more than 28 countries, supporting critical installations and offering OEM/ODM services to Fortune 500 companies.
Our team of over 200 technical experts and our 50,000-unit annual production capacity allow us to quickly scale production to meet project needs, customizing systems for diverse grid requirements.
We provide 7x24 multilingual customer support backed by a blockchain-enabled component traceability system, allowing us to resolve 90% of technical support issues within 2 hours. Committed to global sustainability targets, we are actively working toward Net-Zero Factory certification, with a roadmap to reduce carbon footprints by 1 million tons by 2030. Through smart IoT-enabled energy ecosystems and cross-border engineering partnerships, we empower businesses to transition to clean, reliable operations.
Connect with our system engineers to model your ROI, calculate peak-shaving potential, and plan your DGEG application roadmap in Portugal.
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