ACCELERATING THE TRANSITION TO SMARTER ENERGY STORAGE

Empowering homes, businesses, and utility-scale projects with reliable battery energy storage systems for peak shaving, renewable integration, backup power, and energy independence.

LOGO

Factory Direct Supply | OEM & ODM Support | SKD & CKD Available

Factory-Direct Battery Energy Storage Systems

From residential battery systems to commercial, industrial, and utility-scale BESS projects, we design and manufacture reliable energy storage solutions tailored to your application, operating conditions, and local market requirements.

✓ Factory Direct Pricing

✓ Customized Energy Solutions

✓ OEM / ODM / SKD / CKD Support

✓ Global Project Delivery Experience

company

100

R&D Staff

500

Workers

5GW

Factory capacity

15

Years Experience

RESIDENTIAL ESS

C&I BESS

Utility BESS

CKD&SKD

ENERGY CLOUD PLATFORM

GREEN ENERGY residential energy storage systems are designed to help homeowners store solar energy, reduce reliance on the grid, and maintain reliable backup power when needed. Our home battery storage solutions can be configured for different household energy demands and integrated with rooftop solar systems to maximize solar self-consumption and optimize daily energy use.

From daily energy shifting and nighttime power supply to backup power during grid outages, our residential ESS provides a flexible way to manage household electricity. The systems are suitable for homes, villas, and residential properties seeking greater energy independence, higher renewable energy utilization, and more reliable power availability.

GREEN ENERGY commercial and industrial battery energy storage systems (C&I BESS) are engineered to help businesses optimize electricity consumption, reduce peak demand, and improve the economic value of renewable energy. By storing electricity during low-tariff periods and discharging during peak-demand periods, the system can support peak shaving, load shifting, and demand charge management.

Our C&I energy storage solutions are suitable for factories, industrial parks, commercial buildings, warehouses, data centers, EV charging facilities, and other high-load applications. They can also be integrated with photovoltaic systems to increase solar self-consumption, reduce grid dependency, and improve overall energy efficiency.

GREEN ENERGY utility-scale battery energy storage systems are designed for large-scale energy projects that require high-capacity, reliable, and flexible power storage. Our utility-scale BESS solutions can be deployed for renewable energy integration, grid stabilization, energy shifting, and other grid-support applications.

From containerized battery storage systems to large-scale integrated BESS projects, our solutions can be configured according to project capacity, power requirements, grid conditions, and site-specific requirements. By enabling energy to be stored when electricity is available and dispatched when it is needed, utility-scale energy storage helps improve renewable energy utilization and provides greater flexibility for modern power systems.

GREEN ENERGY provides flexible CKD and SKD energy storage solutions for partners looking to establish or expand local battery manufacturing and assembly capabilities. Instead of importing fully assembled systems, partners can source key battery system components, semi-knocked-down kits, or completely knocked-down kits according to their localization strategy and production capabilities.

Our CKD and SKD solutions can support residential, commercial, and industrial energy storage products, with options for OEM, ODM, private labeling, and localized production. We provide technical documentation, component configuration, assembly guidance, and engineering support to help partners shorten market entry time while increasing local manufacturing value.

GREEN ENERGY Energy Cloud provides a digital platform for monitoring, managing, and analyzing connected energy storage systems throughout their operational lifecycle. By connecting residential ESS, commercial and industrial BESS, and large-scale energy storage assets to a centralized cloud platform, operators can gain greater visibility into system performance, energy consumption, alarms, and operating status.

The platform can support remote system monitoring, performance analysis, fault diagnostics, and operational management, helping customers and service teams identify potential issues and respond more efficiently. From individual residential battery systems to distributed commercial energy storage fleets, Energy Cloud provides a digital foundation for smarter energy management and long-term system operation.

- WHAT WE SOLVE -

The Challenges Energy Storage Projects Cannot Afford to Ignore

From residential installations to utility-scale battery projects, long-term reliability depends on engineering decisions made long before commissioning begins. We focus on the technical details that determine safety, availability, and return on investment.

Thermal Runaway & Cell Temperature Consistency

Cell temperature imbalance accelerates aging, reduces usable capacity, and increases thermal runaway risk — especially under high C-rate operation and hot climate conditions.

Optimized airflow or liquid cooling design ensures minimal temperature deviation across battery cells and modules, improving cycle life and operational safety.

PCS Compatibility & DC Voltage Matching

Mismatch between battery voltage windows and PCS operating ranges can result in clipping, reduced power output, or unavailable battery capacity.

Battery architecture and DC bus design are engineered around the selected PCS platform to maximize usable energy and system efficiency.

Peak Demand Reduction vs Actual ROI

Many projects are oversized or incorrectly configured, resulting in disappointing peak shaving performance and longer-than-expected payback periods.

Load profile analysis and simulation-based sizing help optimize system capacity, charge/discharge strategy, and project economics.

Scalability & Future Capacity Expansion

Energy demand often grows faster than expected, while many battery systems offer limited expansion flexibility after deployment.

Modular system architecture enables seamless future expansion without redesigning the entire electrical infrastructure.

Generator Cycling in Hybrid Systems

Frequent diesel generator start-stop cycles increase fuel consumption, maintenance costs, and equipment wear in hybrid microgrid applications.

Advanced EMS strategies coordinate PV, BESS, and diesel generation to minimize fuel consumption and maximize renewable penetration.

- VERIFIED BEFORE SHIPMENT -

Quality Control & EOL Inspection

Global Standards & Traceability: Every shipped system and CKD/SKD kit includes detailed Factory Acceptance Test (FAT) reports. Fully compliant with global grid-tie and safety benchmarks (UL9540A, UL1973, IEC62619, CE, UN38.3).

IQC - Incoming Quality Control

COMPONENTS & CKD PRECISION

Precision voltage/IR screening for cells, alongside strict dimensional tolerance and insulation checks for BMS boards, wire harnesses, and mechanical enclosures. We guarantee 100% parts compatibility.

In-Process Quality Control

MANUFACTURING ALIGNMENT

Digital torque tracking for critical fastening points, combined with strict pneumatic leak detection for cooling systems and high-voltage insulation tests during ESS assembly. We eliminate risks of loose connections and thermal management leakage.

End-of-Line System Validation

PLUG-AND-PLAY ASSURANCE

100% End-of-Line (EOL) functional testing for residential systems and C&I cabinets. We calibrate multi-level BMS/EMS protection logics and simulate communication with global mainstream inverters to ensure plug-and-play field readiness.

System FAT & Reliability Test

LONG-TERM RELIABILITY

100% full-load charge-discharge cycling (FAT) in environmental control chambers to monitor thermal uniformity and dynamic balancing. We weed out early-stage electronic faults, guaranteeing a safe, 15+ year operational lifespan.

- HOW WE WORK WETH YOU -

Our Engineering Delivery Flow & SLA Commitments

From early-stage prototypes to repeat production, we support your engineers and equipment manufacturers with flexible solutions for residential ,C&I or local assembly applications.

Engineering & Design Review

Comprehensive Design for Manufacturing (DFM) and solution analysis based on your 2D/3D drawings or project requirements.

24-Hour Guarantee

Rapid Prototyping

Fast-track production for customized ESS cabinet prototypes, BMS board samples, or initial CKD metalwork to quickly validate structural layout and physical fit.

15-Day Fast Sampling

Rigorous Testing & Calibration

Subjecting the prototype to full-load charging/discharging, inverter protocol testing, and thermal runaway simulation to ensure flawless field logic.

100% Traceable Data

Low-Volume Production

Initiating small-batch production to freeze assembly standard operating procedures (SOP), optimize production line jigs, and validate overseas CKD local handling.

 

- COMMON QUESTIONS -

Frequently Asked Engineering Questions

We specialize in residential energy storage (wall-mounted, stacked, and all-in-one systems), commercial & industrial (C&I) ESS cabinets, and supply CKD/SKD kits for overseas local assembly.

Yes. Our BMS/EMS supports pre-configured protocols with global tier-1 inverter brands (e.g., SMA, Victron, Deye, Growatt, GoodWe). Custom protocol matching is available during the design phase.

Absolutely. We provide complete CKD/SKD hardware kits, internal structures, and pre-tested sub-assemblies to help clients utilize local manufacturing and save on import duties.

We exclusively use Lithium Iron Phosphate (LiFePO4/LFP) chemistry from global Tier-1 suppliers, ensuring the highest safety, thermal stability, and cycle life for energy storage.

We implement a multi-level protection strategy: Tier-1 LFP cells, a highly precise multi-tier BMS (Cell/Module/System level), built-in aerosol/gas fire suppression, and structural physical isolation.

For C&I systems, we offer both advanced liquid cooling (for high uniformity and density) and forced-air cooling. For residential ESS, optimized natural convection or smart fans are applied.

Our systems are designed for a 15+ year operational lifespan. The individual modules offer 6000 cycles at 80% DOD (Depth of Discharge) under standard operating temperatures.

Our products and manufacturing systems comply with global benchmarks, including UL9540A, UL1973, IEC62619, CE-BESS, UN38.3, and local grid connection codes.

Our smart EMS supports peak-shaving, time-of-use (TOU) optimization, backup power scheduling, and remote monitoring, maximizing ROI for end users.

Yes, we provide full OEM/ODM services, including structural enclosure modifications, corporate branding/labeling, and custom color coating to match your local market portfolio.

What can we do for you ?