| Target Customers | EPC / Installers / System Integrators / Distributors |
| Thermal Management Approach | Intelligent Liquid Cooling Management |
| Intended Project Users | Utilities, EPC Companies and Energy Developers |
| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production |
| Recommended Installation Scenario | Solar Farms, Power Stations and Industrial Sites |
| Product Category | Commercial & Industrial Energy Storage |
| Energy Management Use | Demand Management & Energy Cost Optimization |
| Payment Terms | L/C,T/T,Western Union |
| Energy Storage Solution Type | Utility Battery Storage Solution |
| Renewable Integration | Solar PV Energy Storage Projects |
| Deployment Scale | Medium-Scale C&I Energy Storage Projects |
| System Integration Level | Containerized Energy Storage Platform |
| Suitable Projects | Factories / Warehouses / Commercial Buildings |
| Supply Ability | 5000 Units per Month |
| Deployment Advantage | Large-Scale Project Installation and Operation Support |
| Primary Application | Peak Shaving & Load Shifting |
| Primary Project Application | Renewable Energy and Grid Support Projects |
| Energy Optimization Function | Renewable Power Management and Grid Flexibility |
| Packaging Details | Heavy-Duty Wooden Case with Protective Foam |
| System Format | Integrated Cabinet-Type BESS |
| Place of Origin | China |
| Model Number | BESS-215KWH-105KW-W |
| Certification | IEC62477-1 , IEC61000-6/2/4 , UN3536 |
| Brand Name | Voltertech |
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Product Specification
| Target Customers | EPC / Installers / System Integrators / Distributors | Thermal Management Approach | Intelligent Liquid Cooling Management |
| Intended Project Users | Utilities, EPC Companies and Energy Developers | Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production |
| Recommended Installation Scenario | Solar Farms, Power Stations and Industrial Sites | Product Category | Commercial & Industrial Energy Storage |
| Energy Management Use | Demand Management & Energy Cost Optimization | Payment Terms | L/C,T/T,Western Union |
| Energy Storage Solution Type | Utility Battery Storage Solution | Renewable Integration | Solar PV Energy Storage Projects |
| Deployment Scale | Medium-Scale C&I Energy Storage Projects | System Integration Level | Containerized Energy Storage Platform |
| Suitable Projects | Factories / Warehouses / Commercial Buildings | Supply Ability | 5000 Units per Month |
| Deployment Advantage | Large-Scale Project Installation and Operation Support | Primary Application | Peak Shaving & Load Shifting |
| Primary Project Application | Renewable Energy and Grid Support Projects | Energy Optimization Function | Renewable Power Management and Grid Flexibility |
| Packaging Details | Heavy-Duty Wooden Case with Protective Foam | System Format | Integrated Cabinet-Type BESS |
| Place of Origin | China | Model Number | BESS-215KWH-105KW-W |
| Certification | IEC62477-1 , IEC61000-6/2/4 , UN3536 | Brand Name | Voltertech |
| High Light | 215kWh Commercial Battery Energy Storage System ,Liquid Cooled C&I Energy Storage System ,Peak Shaving Battery Energy Storage System | ||
215kWh Liquid Cooled Commercial Battery Energy Storage System.
Designed for commercial and industrial energy storage projects, this cabinet-based system combines high-capacity LiFePO4 battery storage, liquid thermal management and power conversion capabilities in one solution. It is suitable for businesses seeking peak shaving, load shifting, solar energy utilization and more flexible control of electricity consumption.
With 215kWh of battery capacity, the system is designed for medium-scale C&I applications such as factories, warehouses, commercial buildings, industrial facilities and distributed solar energy projects. The high-voltage battery architecture supports stable charging and discharging for applications where reliable daily energy storage is required.
Liquid cooling helps maintain a more controlled operating temperature across the battery system during charging and discharging. More consistent thermal conditions are particularly valuable for commercial energy storage applications that may operate frequently or experience sustained power demand.
| Battery Chemistry | LiFePO4 |
| Total Capacity | 215kWh |
| Nominal Capacity | 280Ah |
| Nominal Voltage | 768V |
| Operating Voltage Range | 648V – 864V |
| Nominal Charging Current | 140A |
| Nominal Discharging Current | 140A |
| Cooling Mode | Liquid Cooling |
| Cycle Life | 8,000 Cycles |
| Calendar Life | 15 Years |
| Rated Output Power | 100kW |
| Maximum AC Current | 167A |
| Rated Operating Voltage | AC 230 / 400V |
| Grid Frequency | 50 / 60Hz |
| AC Harmonic Voltage | <3% |
| Operating Temperature | -20°C to +60°C |
| Storage Temperature | -30°C to +45°C |
| Operating Relative Humidity | 5% – 95% |
| Working Altitude | ≤2000m |
| Communication | LAN / RS485 / CAN |
| Protection Level | IP54 |
| Dimensions | 1400 × 1385 × 2203mm |
| Net Weight | Approx. 2.5T |
The system can be considered for factories, warehouses, commercial facilities, industrial sites and solar-plus-storage projects. Typical project objectives include reducing peak electricity demand, shifting energy consumption to different periods, storing surplus solar generation and improving overall energy management flexibility.
Final system sizing should be based on the customer's actual load profile, daily electricity consumption, grid conditions, photovoltaic capacity and required operating strategy rather than battery capacity alone.
It depends on the factory's load profile and required operating time. Peak demand in kW, daily electricity consumption in kWh and the expected battery discharge duration should be reviewed before selecting the final storage capacity.
Yes. The battery can store energy during selected periods and discharge when site demand increases. The actual peak shaving strategy should be designed according to the facility load profile, electricity tariff structure and local grid requirements.
Yes, it can be used as part of a properly designed solar-plus-storage system. The solar array capacity, electrical architecture, load demand and energy storage strategy should be evaluated together before final configuration.
The required capacity depends on several factors, including peak load, daily electricity consumption, desired backup or discharge duration, solar generation capacity and the main purpose of the energy storage system.
Providing the site peak load in kW, daily electricity consumption in kWh, grid voltage and frequency, existing or planned solar PV capacity, operating hours and required storage purpose will help determine a more suitable system configuration.
Liquid cooling provides controlled thermal management for the battery system and helps maintain more consistent battery temperatures during operation. This is useful for applications involving regular charging and discharging cycles.
The system has an IP54 protection rating. Actual installation should still consider local ambient temperature, humidity, ventilation, site foundation, electrical safety requirements and applicable local regulations.
Larger energy storage projects can be evaluated using multiple storage units depending on the required total battery capacity, power demand, electrical architecture and site control strategy. A project-specific system design is recommended.
For system selection, provide your required storage capacity, peak load, daily electricity consumption, grid voltage, solar PV capacity and intended application. A suitable commercial energy storage configuration can then be evaluated according to the actual project requirements.
Company Details
Business Type:
Manufacturer
Year Established:
15 Years
Total Annual:
5000000-10000000
Employee Number:
50~100
Ecer Certification:
Verified Supplier
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