Features of Hybrid Storage Energy System
● Ultra-High PV Integration: 2x PV oversizing, supports up to 250kW PV input(on 125kW inverter), 10 MPPTs, compatible with 21A high-current modules, significantly boost power generation efficiency.
● Dual Independent Battery Ports: 2 independent battery interfaces, 100A charge/discharge each, enabling flexible capacity expansion, support battery connection with different brand and different capacity under each inverter
● High Energy Density: Tier One brand 314AH lithium iron phosphate batteries provide a high energy storage capacity for the entire 241kWh, 261kWh, 522kWh battery hybrid storage energy system.
● Intelligent Monitoring: Equipped with an intelligent monitoring system, it monitors the energy storage cabinet's operating status and battery health in real time, supporting remote control and intelligent management.
● IP66/IP55 Protection & Strong Environmental Adaptability: Inverter IP66, battery cabinet IP55, equipped with shockproof, dustproof, and waterproof features, hybrid storage energy system operates stably in a variety of harsh outdoor environments.
Model :
Rated AC power :
Rated AC current :
Rated AC voltage :
Max. PV input power :
Max. PV input voltage :
Start-up Voltage:
MPPT No./Max.strings No.:
Max. Charge/discarge current:
Number of battery port:
Rated battery capacity :
Rated system voltage :
Battery type :
Protection level :
HT 80kW-261kWh , HT 125kW-261kWh
80kW / 125kW
121.6A/115.5A
3/N/PE, 220 V / 380 V, 230 V / 400 V
160kW / 250kW
950V
180V
10/20
100A*2
2
261kWh (Can be expanded to 2.61MWh)
832V
Lithium iron phosphate battery 314Ah(LFP)
IP66 for hybrid Inverter, IP55 for battery cabinet
Scalable and Customizable Hybrid Energy Storage Systems
❶ Depending on project requirements, single inverters from 50kW/60kW/80kW/100kW/125kW can be selected. Multiple inverters can be paralleled, supporting up to 1.25MW of parallel inverter operation (STS cabinet optional for 6+ inverters)
❷ The hybrid energy storage system offers multiple selectable battery pack options of 241 kWh, 261 kWh, and 522 kWh, and supports up to 10 units in parallel, enabling system scalability up to 1250 kW / 5220 kWh.
❸ The design is diverse, supporting both integrated cabinet design and container design style.
❹ The inverter provides a multi-functional three-in-one interface, enabling seamless integration of grid-connected photovoltaic, wind power generation and diesel generators.
❺ The hybrid energy storage system can be compatible with 100Ah - 314Ah battery modules, reducing the overall system cost and meeting the needs of multiple customers.
❻ The hybrid energy storage system supports both air-cooling and liquid-cooling methods.
Hybrid Storage Energy System Structure Diagram
Battery Module 1P52S (Cell)
Voltage: 166.4V
●Thermal simulation extremely optimized flow channel design.
●The temperature difference is within 2℃, the cell is stable and reliable.
●Metal shell thermal barrier, no heat diffusion at 1000℃.
●Thermal isolation between cells to achieve no heat diffusion.
●Precise fire protection design, fire suppression inside the package.
Battery Management System
●Communication function: communicate with energy management system, BMU, PCS and other components;
●Calculation function: calculate the SOC, SOH, charge and discharge capacity in the battery system, count the extreme value information of cluster monomers, etc;
●Control function: control the opening and closing of the battery system;
●Alarm protection: battery system abnormality alarm and protection;
●Balancing function: Active balancing to ensure the consistency of battery cells in the battery system;
●Temperature control strategy: intelligent temperature control;
●Storage function: real-time recording of important logs, events, collected data, etc;
●Real-time monitoring: collects and displays equipment operation status, key data and alarm information, ensuring that users can grasp the equipment status at any time
●Alarm maintenance: local sound and light alarm prompts, support failure prediction, alarm push and maintenance management, improve system operation efficiency and reliability.
●Remote management: support the switching operation, mode switching and parameter setting of the equipment, realize remote control and parameter configuration of the equipment through the network to improve management efficiency.
●Energy efficiency optimization: trend analysis and energy efficiency assessment based on cloud data, dynamically adjusting the equipment operation mode according to the set strategy and real-time load conditions to achieve energy optimization.
Customized hybrid energy storage system Application Scenario
High-Energy Industrial Parks
Value Proposition of the Hybrid Energy Storage System:
● Demand Management: The system monitors real-time load. When high-power equipment starts and causes load spikes, the battery instantly discharges for "peak shaving," reducing monthly demand charges.
● Off-Grid Backup: In case of grid failure, the system switches within 10ms to keep critical equipment powered.
Solar-Storage-Charging Stations
● Dynamic Transformer Augmentation: When multiple EVs fast-charge simultaneously, the battery cabinet and grid together power the chargers, avoiding transformer overload.
● Peak-Valley Arbitrage: Store energy during low-tariff night hours and discharge during high-tariff daytime for EV charging, capturing the price difference.
Islands, Mines & Weak-Grid Areas
Value Proposition of the Hybrid Energy Storage System:
● Diesel-Hybrid Operation: The inverter supports a diesel generator interface. When battery capacity is low, the generator starts automatically and runs at its most economical power level, saving more than 50% on fuel.
● Grid-Forming Mode: With up to 10 parallel units, the system can build an independent micro grid to ensure stable operation across the entire mine or island facility.
Commercial Complexes & Office Buildings
● Backup Power: Replaces diesel generators to keep hospital operating rooms, hotel elevators, and weak-current systems safe during power outages.
● AI-driven scheduling: Using cloud data, the system automatically optimizes charge/discharge based on weather forecasts and nextday tariff predictions.
Hybrid Energy Storage System Installation Case
Greece
Hybrid Energy storage system: 80kW/261kWh
Application scenario:Clinic
Delivery data:Oct,2025
Application:To reduce transformer capacity, an 80kW + 261kWh hybrid energy storage system was installed. This system stores energy during off-peak hours and discharges it to charge vehicles during peak hours, profiting from the price difference.
FREQUENTLY ASKED QUESTIONS
We offer flexible configurations including battery capacity, cooling method selection (air or liquid), inverter power,cabinet dimensions all tailored to your site requirements and operational goals.
It is completely possible and there is no need to dismantle the existing equipment.
Using the AC coupling method: Install the HT hybrid energy storage system on the AC output side of the original solar inverter.
The system will automatically monitor the dynamics of solar, grid and the battery to maximize the self-consumption rate of photovoltaic power while protecting the original investment.
Typically not, which significantly saves on civil construction costs.
The inverter has an IP66 protection rating.
The battery cabinet has an IP55 protection rating.
The entire hybrid energy storage system can be installed directly in open-air environments such as factory yards, parking lots, or rooftops.
The system supports the cloud platform . You can view real-time data on generation, consumption, and charge/discharge via a mobile App or web portal.
It also supports remote firmware updates, fault alarm push notifications, and other O&M functions.