GRANKIA Electric (GUANGDONG) Co., Ltd.

HV25K512 25.6kwh stackable lithium ion polymer battery 512V

GRANKIA HV25K512 25.6kwh stackable lithium ion polymer battery 512V offers high charge/discharge efficiency, minimizing energy losses and maximizing the utility of stored energy.

High energy density means you can store more energy in less space, which is particularly beneficial for urban settings or locations with limited installation area. Advanced BMS technology ensures the lithium ion polymer battery operates within safe parameters, significantly reducing maintenance requirements compared to traditional battery technologies.

GRANKIA HV25K512 25.6kwh stackable lithium ion polymer battery 512V

Stackable Lithium ion Polymer Battery Features

High Voltage Operation

Operating at 512V, the lithium ion polymer battery reduces the need for complex voltage conversion equipment, providing a direct match for many high-voltage systems like solar inverters or grid-tied battery storage systems.

Long Cycle Life

Built with advanced LiFePO4 chemistry, this battery boasts an extended cycle life of over 6,000 cycles at 80% depth of discharge (DoD). This ensures years of reliable performance, reducing the need for frequent replacements and lowering overall costs.

Fast Charging Capability

The stacked lithium iron phosphate battery supports rapid charging, allowing for quick turnaround times between uses. This feature is particularly beneficial for applications requiring frequent cycling, such as electric vehicles and commercial energy storage systems.

Scalable and Modular Design

This battery’s modular design allows for easy stacking, enabling users to expand their energy storage capacity as needed. Multiple units can be combined to achieve desired energy levels, ranging from 10 kWh to 25 kWh by adding additional modules.

Advanced Battery Management System (BMS)

It is equipped with an intelligent BMS that monitors and manages cell voltage, current, temperature, and state of charge (SoC) in real-time. This ensures optimal performance, prevents overcharging or deep discharging, and extends the battery’s lifespan.

Integrated Communication Interfaces

The battery is equipped with RS485, CAN communication interfaces, enabling seamless integration with energy management systems (EMS), solar inverters, and monitoring platforms. This allows for real-time data tracking and remote control.

Energy Independence

Enables users to store energy from renewable sources like solar panels, reducing reliance on the grid and providing energy autonomy during power outages or peak pricing times.

 

Lithium ion Solar Battery Wiring

How to Maintain

Regular Maintenance Checks

Visual Inspection

Regularly check for any physical damage, leaks, or signs of corrosion on the battery housing or connections. Look for any swelling or deformation which could indicate internal issues.

Connection Integrity
Inspect all electrical connections for tightness and corrosion. Clean or replace connectors as needed to ensure good conductivity and prevent overheating.
Cooling System
If your system includes active cooling, check that fans or liquid cooling systems are functioning correctly. Clean any dust or debris from vents or cooling elements.

Battery Management System (BMS) Monitoring

Monitor BMS Data
Use the interface provided by the BMS (either through a display, app, or software) to monitor battery health metrics like voltage, current, temperature, and state of charge (SoC). Look for any anomalies or warnings.
Software Updates
Ensure the BMS firmware is up-to-date. Manufacturers often release updates to improve performance, safety, or to add new features.

Operational Practice

Charge and Discharge Cycles

Avoid deep discharges frequently; try to keep the battery between 20% to 80% SoC for everyday use. Periodic full cycles can be beneficial for recalibrating the battery’s state of charge estimation.

Avoid Extreme Temperatures

Keep the battery within the recommended temperature range. Extreme cold or heat can degrade battery performance and life. Use insulation or climate control if necessary.
Balanced Charging
Ensure that the BMS is balancing the charge across all cells to prevent any single cell from being overcharged or undercharged, which can lead to degradation or failure.

 

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