| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production |
| Short Pulse Capability | 300A for 1 Second |
| High - Current Charging Limit | 200A Continuous |
| Floating - Charge Setting | 28.0Vdc |
| Integrated BMS Protection | Overcharge / Overdischarge / Overcurrent / Short Circuit / Overtemperature |
| Supply Ability | 5000 Sets per Month |
| DC Terminal and Documentation | M8 / UN38.3 / MSDS |
| Battery Operating Window | 20.0–29.2Vdc |
| Payment Terms | L/C,T/T,Western Union |
| Optional Data Interfaces | CAN / RS485 / LCD |
| High - Current Discharge Limit | 200A Continuous |
| Packaging Details | Heavy-Duty Wooden Case with Protective Foam |
| Certification | MSDS , UN38.3 |
| Model Number | BAT-10KWH-25.6V-A-Q-2 |
| Brand Name | Voltertech |
| Place of Origin | China |
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Product Specification
| Delivery Time | 10-15 Days for Samples; 30-40 Days for Bulk Production | Short Pulse Capability | 300A for 1 Second |
| High - Current Charging Limit | 200A Continuous | Floating - Charge Setting | 28.0Vdc |
| Integrated BMS Protection | Overcharge / Overdischarge / Overcurrent / Short Circuit / Overtemperature | Supply Ability | 5000 Sets per Month |
| DC Terminal and Documentation | M8 / UN38.3 / MSDS | Battery Operating Window | 20.0–29.2Vdc |
| Payment Terms | L/C,T/T,Western Union | Optional Data Interfaces | CAN / RS485 / LCD |
| High - Current Discharge Limit | 200A Continuous | Packaging Details | Heavy-Duty Wooden Case with Protective Foam |
| Certification | MSDS , UN38.3 | Model Number | BAT-10KWH-25.6V-A-Q-2 |
| Brand Name | Voltertech | Place of Origin | China |
| High Light | 25.6V Floor Standing Lithium Battery ,400Ah Floor Standing Lithium Battery ,200A Charging 25.6V Lithium Battery | ||
25.6V 400Ah Floor Standing Lithium Battery with 200A Charging and CAN RS485
This 25.6V 400Ah floor standing lithium battery is designed for installers and system integrators evaluating a high-capacity battery for compatible low-voltage hybrid or off-grid inverters.
The battery supports up to 200A of continuous charging current and 200A of continuous discharge current. These ratings make DC current planning a central part of the installation, including inverter demand, cable cross-section, terminal connection and protective-device selection.
Optional CAN and RS485 communication interfaces are available for compatible inverter integration. An optional LCD can provide local access to supported battery information, but all optional functions should be confirmed before production.
1. Confirm the Complete DC Voltage Range
The inverter must support the battery’s nominal 25.6V platform and remain compatible with the full 20.0–29.2Vdc operating window.
2. Check the Charging Profile
The inverter or external charger should support the listed 28.0V floating-charge setting and remain within the 200A continuous charging limit.
3. Calculate Maximum Battery-Side Current
Continuous inverter current, cables, breakers, fuses and terminals should be planned around the documented 200A continuous discharge rating.
4. Verify the Communication Protocol
A CAN or RS485 port does not guarantee communication unless protocol, cable pin definition and equipment settings are compatible.
The 200A charging value is a maximum continuous battery limit rather than a requirement to charge at 200A. A lower setting may be appropriate according to the available solar power, utility charger capacity, generator charger capacity or the required charging time.
Charging cables and protection devices must be selected for the configured current and installation conditions. Long cable runs can increase voltage drop and heat, so practical cable routing and suitable conductor size are important.
The inverter’s low-voltage, charging-voltage and overcurrent settings must remain compatible with the battery. Communication should not be used as a substitute for confirming these electrical limits.
The battery has a listed pulse-discharge rating of 300A for one second. This may provide brief current headroom for a compatible temporary load condition, but it must not be treated as the continuous output rating.
Continuous cables, M8 terminals, busbars, breakers and fuses should be selected around the 200A continuous discharge value and applicable installation requirements. The pulse figure should not be used to justify undersized DC components.
Compatible CAN or RS485 communication may allow supported battery operating information to be exchanged with the inverter. The actual data available depends on the selected protocol and equipment configuration.
When communication compatibility has not been confirmed, installers should not assume that state-of-charge reporting, alarm information or automatic charging-current control will be available.
CAN, RS485 and LCD are optional configurations. Confirm the inverter brand, exact model, protocol, cable definition and required interface hardware before placing the order.
| System Energy Platform | 25.6Vdc / 400Ah / 10.24kWh LiFePO4 |
| DC Operating Window | 20.0–29.2Vdc |
| Charging Configuration | 28.0Vdc Float / 200A Continuous Maximum |
| Discharge Performance | 200A Continuous / 300A for 1 Second |
| BMS Protection Coverage | Overcharge / Overdischarge / Overcurrent / Short Circuit / Overtemperature |
| Optional Interfaces | CAN / RS485 / LCD |
| DC Connection Hardware | M8 Battery Terminal |
| Safety Documentation | UN38.3 / MSDS |
| Mechanical and Environmental Data | 800 × 660 × 139mm / 88kg / IP20 / Dry Indoor Location |
No. The 200A value is the maximum continuous charging limit. A lower current can be configured according to the charger and project requirements.
No. The inverter and battery must use a compatible protocol, correct communication cable and matching configuration.
Continuous system components should be selected around the 200A continuous rating and the applicable installation conditions.
Provide the inverter brand, exact model, battery-voltage range, maximum charge current and supported CAN or RS485 protocol.
No outdoor claim should be made. The IP20 enclosure requires a protected, dry and non-condensing indoor location.
Before production, the inverter model, voltage limits, charging current, communication protocol, DC cable requirements and optional LCD configuration should be confirmed.
Preparing a high-current 25.6V battery installation?
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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