OEM Lithium-Ion Battery 241kwh for Grid Connected/off Grid Solar Energy Industrial/Commercial Energy Storage Systems LiFePO4
Product Specifications
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241KWh
Product Details
| Customization: | Available |
|---|---|
| Nominal Voltage: | 2.4V ~ 1000V |
| Warranty: | 2 Years+ |
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Basic Info.
- Model NO.
- 241Kwh
- Nominal Capacity
- 241kwh
- Cycle Life
- 3000~20000
- Chemistry
- LFP Lto
- Operational Temp
- -40ºC-70ºC
- Change/Discharge Rate
- 0.5c~20c
- Transport Package
- on Pallets
- Specification
- kWh
- Trademark
- TNE/OEM
- Origin
- China
Product Description

The liquid-cooled energy storage battery system has a capacity of 241kWh, and the battery system includes battery pack, liquid cooling, BMS and fire protection system. The whole system is connected to 220V AC power.
Battery cabinet parameter table
| Category | Technical parameters | |
| Basic parameters | Cell type | 3.2V/314Ah,LFP |
| System rated capacity | 241kWh | |
| Battery grouping | 5*1P48S | |
| System voltage | 660~864V | |
| Charge-discharge rate | ≤0.5P | |
| Battery efficiency | ≥ 94% (excluding AC auxiliary power). | |
| Operating temperature range | Discharge: -20~55°C; Charging: 0~55°C | |
| Fire fighting method | Aerosol fire protection | |
| Communication mode | CAN,RS485,Modbus-TCP,LAN | |
| Cooling method | Liquid cooling | |
| Protection level | IP54 | |
| Anti-corrosion grade | C4 | |
| weight | 2.4t | |
| Dimensions (W*D*H) | 1000*1350*2065 mm (without ring) | |
| Humidity range | 0~95% (non-condensing) | |
| Highest working altitude | 5000m (>3000m degraded). | |
| authentication | GB_T 36276-2023,UN38.3,IEC62619 | |
System configuration
Energy storage batteries
Energy storage batteries
Schematic diagram of the appearance of PACK
Battery box parameter table
| No. | Name | 1P48S 314Ah |
| 1 | Cell type | LFP |
| 2 | Charging rate | ≤0.5P |
| 3 | discharge rate | ≤0.5P |
| 4 | Composition | 1P48S |
| 5 | Nominal capacity | 314Ah |
| 6 | Nominal energy | 48.2304kWh |
| 7 | Nominal voltage | 153.6V |
| 8 | Operating voltage range | 129.6~172.8V |
| 9 | Voltage acquisition | Full Acquisition + Total Positive/Total Negative |
| 10 | Temperature acquisition | 10K/B value 3435 |
| 11 | Maximum operating temperature range | Charging 0°C~55°C; Discharge -30°C~55°C |
| 12 | Optimum operating temperature | 25ºC±2ºC; |
| 13 | Transport and storage temperature (30% SOC for battery). | -20°C~45°C within one month; -20°C~25°C within 6 months |
| 14 | Insulation performance | The resistance value ≥ 500MΩ@2500VDC |
| 15 | Withstand voltage | Leakage current ≤ 1mA @4500VDC, no electric spark and no breakdown |
| 16 | IP rating | ≥IP67 |
| 17 | Ambient humidity | < 90% RH (non-condensing) |
| 18 | Cooling method | Liquid cooling |
| 19 | Product weight | 310kg |
| 20 | Dimensions (W*D*H) | 790±2mm×1132±2mm×248±2mm |
Battery Management System
The energy storage system is equipped with a complete battery management system, using a secondary management architecture and secondary software protection, including module level and battery cluster level, to achieve comprehensive control, management and protection of the battery system and ensure the safe and stable operation of the battery system.
When a single battery cabinet cannot meet the needs, multiple battery cabinets can be connected in parallel to form a battery system with a larger capacity, then the battery management system can be upgraded to a three-level management architecture and three-level software protection according to the needs of use, from the stack level to the cluster level to the module level, to achieve comprehensive control, management and protection of the battery system and ensure the safe and stable operation of the battery system.
BMS architecture diagram
Schematic diagram of the high-pressure box
Technical parameters of high-pressure box
| No. | Name | Technical parameters |
| 1 | Rated current | 250A |
| 2 | Operating voltage | 1000V |
| 3 | SOC accuracy | 5% |
Thermal management system
The entire thermal management system uses liquid cooling to control the temperature of the battery system. The integrated liquid cooling unit and reasonable pipeline design are used to control the effective temperature of the battery cells inside the battery system, so that the working environment of the energy storage system is within the optimal range, and the service life of the entire system is extended and the operation is safe and reliable.
Schematic diagram of liquid cooling unit
Technical parameters of liquid cooling units
| No. | Technical requirements | Specifications |
| 1 | Power Rating (Refrigeration) | 3kW |
| 2 | Rated cooling capacity | ~5kW |
| 3 | Heating power | ~3kW |
| 4 | Coolant | 50% water + 50% ethylene glycol |
| 5 | Operating temperature | -30~55ºC |
| 6 | High voltage power supply | 220VAC±10% |
| 7 | Refrigerant | R410a |
| 8 | Unit electrical protection level | IP55 |
| 9 | Dimensions | L700×W900×H245mm |
| 10 | Communication mode | RS485/CAN |
Fire protection system
divide the energy storage system into multiple levels for protection,
PACK level: early detection and rapid extinguishing of root fire sources.
Cluster level: Focus on the deployment and control of external fire sources, prevent proliferation, and suppress growth.

Schematic diagram of fire extinguishing device
Fire control logic diagram
Technical parameters of fire protection system
Technical parameters of fire protection system
| No. | Project | Performance/Parameters |
| 1 | Filling Medium | Aerosol |
| 2 | Filling agent quality | 5*40g (PACK level) + 1*300g (cluster level) |
| 3 | Supply voltage | 24V |
| 4 | Communication mode | Dry contact point |
| 5 | Protect the space | 5m³ |
| 6 | expiration date | 10 years |
Precautions
Safety precautions
Be sure to have professional electrical personnel or trained technicians to operate.
Make sure the high voltage power switch is disconnected during installation.
Please check the material carefully before installation, if there is any missing or damaged, please do not install dangerously.
Insulating gloves must be worn during installation, and the outside of metal tools must be tightly wrapped with insulating tape before use.
It is strictly forbidden to touch the total positive and negative of the battery pack at the same time during installation to avoid injury to people with high voltage.
Non-professionals are prohibited from disassembling the module shell, let alone touching the internal circuit board, so as not to cause electric shock accidents.
Without confirmation by the manufacturer's technicians, it is forbidden to modify or use this system on other projects to avoid serious accidents.
3.2 Safe Use Guidelines
Safeguard measures should be provided for the safe and reliable operation environment of the battery system.
The power should not be greater than the rated power when in use, and the system should be kept away from fire, heat and water sources during use, and if the battery leaks or emits a peculiar smell, it should be stopped immediately, and the relevant personnel should be notified in time to deal with it.
The battery system is fully charged and fully discharged every six months, and it is recommended to charge and discharge the rate of 0.5C, and make detailed records.
Before the energy storage battery is stored for a long time and runs, the battery system must be safely inspected to avoid equipment damage or system safety problems caused by loose connections, water vapor condensation, rust or mold.
Disclaimer of Liability
The specification is for reference only, please consult the company for any matters not mentioned in this specification, and the company will not notify you when the version of this specification is updated. Please refer to the signed technical agreement for the specific parameters of the system at the time of delivery.
Safety precautions
Be sure to have professional electrical personnel or trained technicians to operate.
Make sure the high voltage power switch is disconnected during installation.
Please check the material carefully before installation, if there is any missing or damaged, please do not install dangerously.
Insulating gloves must be worn during installation, and the outside of metal tools must be tightly wrapped with insulating tape before use.
It is strictly forbidden to touch the total positive and negative of the battery pack at the same time during installation to avoid injury to people with high voltage.
Non-professionals are prohibited from disassembling the module shell, let alone touching the internal circuit board, so as not to cause electric shock accidents.
Without confirmation by the manufacturer's technicians, it is forbidden to modify or use this system on other projects to avoid serious accidents.
3.2 Safe Use Guidelines
Safeguard measures should be provided for the safe and reliable operation environment of the battery system.
The power should not be greater than the rated power when in use, and the system should be kept away from fire, heat and water sources during use, and if the battery leaks or emits a peculiar smell, it should be stopped immediately, and the relevant personnel should be notified in time to deal with it.
The battery system is fully charged and fully discharged every six months, and it is recommended to charge and discharge the rate of 0.5C, and make detailed records.
Before the energy storage battery is stored for a long time and runs, the battery system must be safely inspected to avoid equipment damage or system safety problems caused by loose connections, water vapor condensation, rust or mold.
Disclaimer of Liability
The specification is for reference only, please consult the company for any matters not mentioned in this specification, and the company will not notify you when the version of this specification is updated. Please refer to the signed technical agreement for the specific parameters of the system at the time of delivery.
Tedian Energy - Your Trusted Partner in Quality Assurance and Transparency
TNE is a provider of intelligent power industry solutions that enable utility companies, energy companies, and industrial operators to optimize the efficiency, stability, and sustainability of power systems through innovative technology and expertise.
Core products
Advanced energy storage:
Supercapacitors: High power density, fast charging/discharging, ideal for grid frequency regulation and transient voltage support.
High power, long lifespan, low temperature resistance, and ultra safe battery: designed specifically for -40 ° C environments, capable of providing over 20000 cycles, with extremely high fire resistance and reliability under harsh conditions.
Third party quality assurance: Conduct independent inspections of power systems/components to ensure global standard compliance and supply chain reliability.
Main advantages
Extremely cold performance, non combustible safety design, and sustainable, recyclable components.
Customized solutions for microgrids, industrial voltage stability, and remote energy storage.
Support and Services
Comprehensive after-sales support includes technical maintenance, rapid troubleshooting (90% of critical issues resolved within 4 hours), and training to improve operational efficiency.
Core products
Advanced energy storage:
Supercapacitors: High power density, fast charging/discharging, ideal for grid frequency regulation and transient voltage support.
High power, long lifespan, low temperature resistance, and ultra safe battery: designed specifically for -40 ° C environments, capable of providing over 20000 cycles, with extremely high fire resistance and reliability under harsh conditions.
Third party quality assurance: Conduct independent inspections of power systems/components to ensure global standard compliance and supply chain reliability.
Main advantages
Extremely cold performance, non combustible safety design, and sustainable, recyclable components.
Customized solutions for microgrids, industrial voltage stability, and remote energy storage.
Support and Services
Comprehensive after-sales support includes technical maintenance, rapid troubleshooting (90% of critical issues resolved within 4 hours), and training to improve operational efficiency.
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