| PV Use Case | Solar Self-Consumption Improvement |
| Deployment Approach | Single or Multi-Cabinet Projects |
| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production |
| Project Buyers | EPC / ESCO / Energy Contractors |
| Payment Terms | L/C,T/T,Western Union |
| Energy Strategy | Time-of-Use Cost Optimization |
| Suitable Sites | Manufacturing / Logistics / Commercial Facilities |
| Load Management | Peak Demand Reduction |
| Supply Ability | 5000 Units per Month |
| Product Positioning | High-Capacity C&I Storage Cabinet |
| Operational Goal | Flexible Energy Dispatch & Demand Management |
| Packaging Details | Heavy-Duty Wooden Case with Protective Foam |
| Place of Origin | China |
| Model Number | BESS-233KWH-105KW-W |
| Certification | IEC62477-1 , IEC61000-6/2/4 , UN3536 |
| Brand Name | Voltertech |
View Detail Information
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Product Specification
| PV Use Case | Solar Self-Consumption Improvement | Deployment Approach | Single or Multi-Cabinet Projects |
| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production | Project Buyers | EPC / ESCO / Energy Contractors |
| Payment Terms | L/C,T/T,Western Union | Energy Strategy | Time-of-Use Cost Optimization |
| Suitable Sites | Manufacturing / Logistics / Commercial Facilities | Load Management | Peak Demand Reduction |
| Supply Ability | 5000 Units per Month | Product Positioning | High-Capacity C&I Storage Cabinet |
| Operational Goal | Flexible Energy Dispatch & Demand Management | Packaging Details | Heavy-Duty Wooden Case with Protective Foam |
| Place of Origin | China | Model Number | BESS-233KWH-105KW-W |
| Certification | IEC62477-1 , IEC61000-6/2/4 , UN3536 | Brand Name | Voltertech |
| High Light | 233kWh Commercial Battery Energy Storage Cabinet ,Liquid Cooling C&I Energy Storage System ,LiFePO4 Battery Chemistry Liquid Cooled Battery Storage | ||
233kWh Liquid Cooled Commercial Battery Energy Storage Cabinet.
Designed for commercial and industrial sites with significant daily electricity demand, this liquid cooled battery storage cabinet provides a practical solution for peak demand management, load shifting and improved solar self-consumption. Its 233kWh storage capacity makes it suitable for businesses seeking more flexible control over when electricity is stored and used.
Factories, warehouses and commercial facilities often experience significant changes in electricity demand throughout the day. A commercial battery storage system can charge during selected periods and discharge when site demand increases, helping businesses manage energy consumption more effectively.
When combined with an appropriate energy management strategy, the system can support peak shaving, time-of-use optimization and increased utilization of locally generated solar energy.
Effective thermal management is important for commercial battery storage systems that may charge and discharge frequently. Liquid cooling helps maintain a more controlled battery operating temperature and supports consistent thermal conditions across the energy storage cabinet.
This makes the system particularly suitable for C&I applications where regular cycling and long operating periods form part of the site's daily energy management strategy.
| Battery Chemistry | LiFePO4 |
| Total Capacity | 233kWh |
| Nominal Capacity | 280Ah |
| Nominal Voltage | 832V |
| Operating Voltage Range | 702V – 936V |
| 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 × 1000 × 2399mm |
| Net Weight | Approx. 2.3T |
For commercial facilities with an existing or planned solar PV system, battery storage can capture available photovoltaic energy for later on-site use. This can help increase solar self-consumption and reduce reliance on grid electricity during selected operating periods.
The final system configuration should consider PV capacity, daytime and evening load demand, available grid connection capacity and the intended battery charging and discharging strategy.
The 233kWh storage capacity is suitable for a range of medium-scale commercial and industrial projects, including manufacturing facilities, logistics warehouses, commercial buildings, industrial sites and distributed solar-plus-storage projects.
System selection should always be based on the actual site load profile rather than battery capacity alone. Peak demand, daily electricity consumption, required discharge duration and local electricity tariffs should all be considered before determining the final energy storage configuration.
Yes. The system can discharge stored energy during selected high-load periods to support peak demand management. The required battery power and discharge duration should be determined from the site's actual load profile.
Suitability depends on your peak load, daily electricity consumption and required operating duration. Providing recent load data or electricity consumption information allows the required storage capacity and power to be evaluated more accurately.
Yes. Battery charging and discharging can be scheduled around different electricity tariff periods when the local grid and project operating conditions allow it. The actual strategy should be based on local electricity pricing and site demand.
Yes. It can be incorporated into a properly designed solar-plus-storage project to store available PV generation for later use. PV capacity, site load and electrical architecture should be reviewed before final system configuration.
The operating duration depends on the electrical load. A facility using an average load of 50kW will have a very different discharge duration from a site operating near 100kW, so actual load data is required for accurate sizing.
Useful information includes peak load in kW, daily electricity consumption in kWh, grid voltage and frequency, operating hours, existing or planned solar PV capacity and the main objective of the storage project.
Liquid cooling helps manage battery temperature during charging and discharging and provides more controlled thermal conditions for applications involving frequent operation or sustained daily cycling.
Yes. For projects requiring greater storage capacity, a multi-cabinet solution can be evaluated according to the required total capacity, power demand, site layout, electrical architecture and energy management strategy.
Provide your site peak load, daily electricity consumption, grid voltage, solar PV capacity and intended operating strategy. We can evaluate whether a 233kWh battery storage configuration is suitable for your commercial or industrial project.
Discuss Your Energy Storage ProjectCompany Details
Business Type:
Manufacturer
Year Established:
15 Years
Total Annual:
5000000-10000000
Employee Number:
50~100
Ecer Certification:
Verified Supplier
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