End of line testing for industrial batteries

Ensure battery reliability and safety in your production line with advanced testing capabilities designed to identify performance issues and verify compliance with industry standards.

Charges Industrial Battery Cells Efficiently

The EFT Battery Chargers from Sovema Group provide a tailored solution for industrial battery manufacturing needs, offering efficient energy use and consistent charge cycles. This system excels in maintaining optimal charge rates across varied industrial applications. It ensures reliable power management by utilizing an adaptable power control system, capable of handling diverse production demands with ease. The EFT Chargers support seamless integration into existing production lines with PLC controls and remote monitoring capabilities, minimizing downtime and enhancing throughput. Engineered for durability, these chargers contribute to reduced energy consumption through advanced power optimization techniques, making them a sustainable choice for high-volume battery production environments.

Benefits

  • Enhances production efficiency by maintaining optimal charge cycles.
  • Lowers energy costs through advanced power optimization techniques.
  • Seamlessly integrates into existing production lines with PLC controls.
  • Minimizes maintenance with robust, durable design.
  • Supports remote monitoring for proactive maintenance and reduced downtime.

General


Applications
End products
Steps before
Steps after
Input ingredients
Output ingredients
Market info
Sovema Group is known for its expertise in manufacturing advanced equipment for lead-acid battery production, offering turnkey solutions and innovative technology to enhance battery manufacturing efficiency and quality.

Operating Characteristics


Automation level
Manual / PLC / SCADA
Batch vs. continuous operation
Batch / Inline Continuous
CIP/SIP
CIP 121°C / SIP 135°C
Cleaning method
CIP / Manual
Energy efficiency
0.5–2 kWh/kg moisture

Material Compatibility


Density/particle size
0.5–2.5 g/cm³ / 50–1000 µm