| Load Profile Fit | Sustained C&I Demand with Defined Discharge Periods |
| Deployment Planning | Equipment Space, Access & Structural Load Evaluation |
| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production |
| Grid Integration Context | 400V-Class Commercial & Industrial Projects |
| Payment Terms | L/C,T/T,Western Union |
| Power-to-Energy Balance | Size Output Power and Stored Energy Together |
| Selection Priority | Site Power Requirement Before Capacity Oversizing |
| Series Upgrade Position | Higher-Power Step Above 215kWh / 233kWh Options |
| Supply Ability | 5000 Units per Month |
| Project Sizing Trigger | Sites Requiring Higher PCS Power Than 105kW-Class Systems |
| Project Stage | New-Build / Retrofit / BESS Capacity Planning |
| Packaging Details | Heavy-Duty Wooden Case with Protective Foam |
| Place of Origin | China |
| Model Number | BESS-261KWH-125KW-W-2 |
| Certification | IEC62477-1 , IEC61000-6/2/4 , UN3536 |
| Brand Name | Voltertech |
View Detail Information
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Product Specification
| Load Profile Fit | Sustained C&I Demand with Defined Discharge Periods | Deployment Planning | Equipment Space, Access & Structural Load Evaluation |
| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production | Grid Integration Context | 400V-Class Commercial & Industrial Projects |
| Payment Terms | L/C,T/T,Western Union | Power-to-Energy Balance | Size Output Power and Stored Energy Together |
| Selection Priority | Site Power Requirement Before Capacity Oversizing | Series Upgrade Position | Higher-Power Step Above 215kWh / 233kWh Options |
| Supply Ability | 5000 Units per Month | Project Sizing Trigger | Sites Requiring Higher PCS Power Than 105kW-Class Systems |
| Project Stage | New-Build / Retrofit / BESS Capacity Planning | Packaging Details | Heavy-Duty Wooden Case with Protective Foam |
| Place of Origin | China | Model Number | BESS-261KWH-125KW-W-2 |
| Certification | IEC62477-1 , IEC61000-6/2/4 , UN3536 | Brand Name | Voltertech |
| High Light | 261kWh Commercial Energy Storage System ,125kW C&I Battery Energy Storage System ,Liquid Cooling BESS | ||
The 261kWh C&I BESS with 125kW PCS and Liquid Cooling is designed for commercial and industrial energy storage projects where both site power demand and required battery energy need to be considered during system sizing.
The system combines 261kWh of nominal LiFePO4 battery energy with a 125kW rated PCS. The battery uses a 314Ah, 832V architecture with a specified operating voltage range of 702–936V and maximum charging and discharging current of 157A.
A BESS should not be selected only by comparing battery capacities in kWh.
The 261kWh rating describes the amount of nominal battery energy available, while the 125kW PCS rating describes the rated AC power conversion capability of the system.
For project sizing, these two values need to be evaluated together against the site's actual load curve.
Within this product series, the 215kWh and 233kWh configurations use a 105kW rated PCS, while the 261kWh configuration increases rated PCS output to 125kW.
This means the 261kWh version is not simply a higher-capacity alternative designed only to extend discharge time. It also provides a higher rated power level.
For a site where 105kW of PCS capacity does not provide enough power for the target operating strategy, the 125kW configuration can be evaluated as the next system size.
Available in the 215kWh / 233kWh series options
Lower rated PCS power
May be sufficient where target discharge power remains within the 105kW range
Rated PCS output: 125kW
Battery energy: 261kWh
Provides additional power capacity together with additional stored energy
In some C&I projects, battery capacity is not the first limitation. The required discharge power can determine whether a 105kW or 125kW PCS is more appropriate.
The nominal 261kWh battery capacity can be divided by different discharge power levels to understand the basic relationship between power and operating duration.
These are theoretical calculations based on nominal battery energy. Actual operating duration depends on usable SOC range, conversion losses, system settings and the real site load profile.
The 125kW figure represents rated PCS output. The actual operating power can vary according to the site's control strategy and energy requirement.
For example, a project may use a lower discharge power for a longer period rather than continuously operating at the full rated PCS power.
The battery system uses LiFePO4 chemistry with a nominal capacity of 314Ah and nominal voltage of 832V.
The specified operating voltage range is 702V to 936V. Maximum charging current and maximum discharging current are both listed at 157A.
These electrical parameters should be evaluated together with the PCS and DC-side system architecture during project engineering.
The supplied specification identifies liquid cooling as the battery thermal management method.
For commercial energy storage applications with repeated charging and discharging, the cooling system forms part of maintaining suitable battery operating conditions.
The specified operating temperature range is -20°C to +60°C and the storage temperature range is -30°C to +45°C.
The PCS is rated at 125kW output power with a maximum AC current of 216A.
Rated AC voltage is 230/400V and the specified grid frequency is 50/60Hz. THDi is listed at less than 3%.
Final AC connection, conductor sizing, protective devices and grid interface design should be determined according to the actual project and local electrical requirements.
Swipe left or right to view the complete specification table.
| Parameter | Specification |
|---|---|
| System Type | Liquid Cooling Commercial Energy Storage System |
| Battery Chemistry | LiFePO4 |
| Rated Energy | 261kWh |
| Battery Capacity | 314Ah |
| Nominal Battery Voltage | 832V |
| Battery Voltage Range | 702–936V |
| Maximum Charging Current | 157A |
| Maximum Discharging Current | 157A |
| Rated PCS Output Power | 125kW |
| Maximum AC Current | 216A |
| Rated AC Voltage | 230 / 400V |
| Grid Frequency | 50 / 60Hz |
| THDi | <3% |
| Cooling Method | Liquid Cooling |
| Cycle Life | ≥8000 Cycles |
| Calendar Life | 15 Years |
| Protection Rating | IP54 |
| Communication | CAN / RS485 / LAN |
| Dimensions | 1400 × 1000 × 2399mm |
| Net Weight | Approx. 2400kg |
The system measures 1400 × 1000 × 2399mm and has an approximate net weight of 2400kg.
Project planning should therefore consider equipment transportation, access route, installation area, supporting structure or foundation and maintenance clearance before delivery.
The supplied specification lists IP54 protection, 5%–95% relative humidity and an operating altitude of up to 2000m.
This question is important when comparing different C&I BESS configurations.
If the site's target discharge power remains within a lower PCS range but more operating time is required, increasing battery energy may be the main priority.
If the site needs a higher instantaneous discharge power as well as more stored energy, the 125kW / 261kWh configuration may be more relevant.
For commercial and industrial storage, a project quotation is more useful when it is based on real site data rather than only a requested battery capacity.
125kW is the rated PCS output power, while 261kWh is the nominal battery energy capacity. The power rating determines the rate at which energy can be converted, while the energy rating affects how long that power can be sustained.
The nominal energy-to-power ratio is approximately 2.09 hours because 261kWh divided by 125kW equals about 2.09 hours. Actual discharge duration depends on usable battery energy, losses and operating settings.
The difference is not only battery energy. According to the supplied product series specification, the 233kWh configuration uses a 105kW rated PCS, while the 261kWh configuration increases rated PCS output to 125kW and uses a 314Ah battery capacity.
The decision should be based on the target discharge power required by the site. If the project's energy management strategy requires more than the practical power range of a 105kW PCS, the 125kW configuration can be evaluated.
The simple nominal calculation is approximately 2.61 hours. Actual operating duration will be affected by usable SOC range, PCS conversion losses, reserve settings and site load variation.
The nominal battery voltage is 832V, with a specified operating voltage range of 702V to 936V.
The supplied technical specification lists a maximum charging current of 157A and maximum discharging current of 157A.
Yes. Liquid cooling is listed as the battery cooling method in the supplied technical specification.
The supplied specification lists CAN, RS485 and LAN communication interfaces.
Provide the site load curve, peak demand, target power reduction, required discharge duration, grid voltage and frequency, PV capacity if applicable and installation conditions. These details help evaluate whether 125kW / 261kWh is the appropriate power and energy combination.
Send us your site load curve, peak demand, required discharge power and target operating duration. We can help evaluate whether the 125kW / 261kWh configuration or another C&I BESS size better matches the project.
Check Your C&I BESS SizingCompany Details
Business Type:
Manufacturer
Year Established:
15 Years
Total Annual:
5000000-10000000
Employee Number:
50~100
Ecer Certification:
Verified Supplier
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